diff options
Diffstat (limited to 'latex')
-rwxr-xr-x | latex/Initial_body | 116 | ||||
-rw-r--r-- | latex/TEX | 3752 | ||||
-rw-r--r-- | latex/TEX_final.aux | 926 | ||||
-rw-r--r-- | latex/TEX_final.log | 1314 | ||||
-rw-r--r-- | latex/TEX_final.out | 5 | ||||
-rw-r--r-- | latex/TEX_final.tex | 3870 | ||||
-rwxr-xr-x | latex/book_10.pdf | bin | 475964 -> 234558 bytes | |||
-rwxr-xr-x | latex/book_1004.pdf | bin | 622548 -> 395236 bytes | |||
-rwxr-xr-x | latex/book_1016.pdf | bin | 495789 -> 274912 bytes | |||
-rwxr-xr-x | latex/book_1022.pdf | bin | 305918 -> 192639 bytes | |||
-rwxr-xr-x | latex/book_1026.pdf | bin | 546111 -> 286286 bytes | |||
-rwxr-xr-x | latex/book_1034.pdf | bin | 530018 -> 273943 bytes | |||
-rwxr-xr-x | latex/book_104.pdf | bin | 1818408 -> 1619503 bytes | |||
-rw-r--r-- | latex/book_1040.pdf | bin | 43985 -> 412518 bytes | |||
-rwxr-xr-x | latex/book_1046.pdf | bin | 896324 -> 494047 bytes | |||
-rwxr-xr-x | latex/book_1049.pdf | bin | 925660 -> 464225 bytes | |||
-rwxr-xr-x | latex/book_1052.pdf | bin | 1121730 -> 623512 bytes | |||
-rwxr-xr-x | latex/book_1055.pdf | bin | 687521 -> 393742 bytes | |||
-rwxr-xr-x | latex/book_1061.pdf | bin | 790110 -> 413543 bytes | |||
-rwxr-xr-x | latex/book_1067.pdf | bin | 623146 -> 326419 bytes | |||
-rwxr-xr-x | latex/book_1073.pdf | bin | 1210583 -> 617871 bytes | |||
-rwxr-xr-x | latex/book_1076.pdf | bin | 1704627 -> 744754 bytes | |||
-rwxr-xr-x | latex/book_1085.pdf | bin | 426454 -> 262904 bytes | |||
-rwxr-xr-x | latex/book_1088.pdf | bin | 1908852 -> 989056 bytes | |||
-rwxr-xr-x | latex/book_1092.pdf | bin | 2688121 -> 1336398 bytes | |||
-rwxr-xr-x | latex/book_1100.pdf | bin | 337618 -> 204241 bytes | |||
-rwxr-xr-x | latex/book_1106.pdf | bin | 485699 -> 260788 bytes | |||
-rwxr-xr-x | latex/book_1109.pdf | bin | 895104 -> 466810 bytes | |||
-rwxr-xr-x | latex/book_1118.pdf | bin | 43108 -> 475468 bytes | |||
-rwxr-xr-x | latex/book_1133.pdf | bin | 888758 -> 523040 bytes | |||
-rwxr-xr-x | latex/book_116.pdf | bin | 250028 -> 166212 bytes | |||
-rwxr-xr-x | latex/book_1163.pdf | bin | 2529540 -> 1909883 bytes | |||
-rwxr-xr-x | latex/book_1172.pdf | bin | 579039 -> 350910 bytes | |||
-rwxr-xr-x | latex/book_1184.pdf | bin | 458751 -> 252966 bytes | |||
-rwxr-xr-x | latex/book_1187.pdf | bin | 73048 -> 254604 bytes | |||
-rwxr-xr-x | latex/book_1199.pdf | bin | 369217 -> 228128 bytes | |||
-rwxr-xr-x | latex/book_1202.pdf | bin | 1756420 -> 1228813 bytes | |||
-rwxr-xr-x | latex/book_1208.pdf | bin | 781973 -> 397948 bytes | |||
-rwxr-xr-x | latex/book_1217.pdf | bin | 44186 -> 334796 bytes | |||
-rwxr-xr-x | latex/book_122.pdf | bin | 6737313 -> 6082306 bytes | |||
-rwxr-xr-x | latex/book_1223.pdf | bin | 931869 -> 454383 bytes | |||
-rwxr-xr-x | latex/book_1226.pdf | bin | 26587801 -> 25835161 bytes | |||
-rwxr-xr-x | latex/book_1238.pdf | bin | 45081 -> 425459 bytes | |||
-rwxr-xr-x | latex/book_1241.pdf | bin | 670209 -> 331824 bytes | |||
-rwxr-xr-x | latex/book_1244.pdf | bin | 1122552 -> 589142 bytes | |||
-rwxr-xr-x | latex/book_1247.pdf | bin | 1216387 -> 587199 bytes | |||
-rwxr-xr-x | latex/book_125.pdf | bin | 1856961 -> 1616090 bytes | |||
-rwxr-xr-x | latex/book_1271.pdf | bin | 1720516 -> 875747 bytes | |||
-rwxr-xr-x | latex/book_1280.pdf | bin | 255052 -> 172905 bytes | |||
-rwxr-xr-x | latex/book_1286.pdf | bin | 579823 -> 294152 bytes | |||
-rwxr-xr-x | latex/book_1299.pdf | bin | 9362 -> 253024 bytes | |||
-rwxr-xr-x | latex/book_1301.pdf | bin | 672079 -> 349018 bytes | |||
-rwxr-xr-x | latex/book_1309.pdf | bin | 1899450 -> 1538598 bytes | |||
-rwxr-xr-x | latex/book_132.pdf | bin | 626192 -> 430322 bytes | |||
-rwxr-xr-x | latex/book_1322.pdf | bin | 786579 -> 396570 bytes | |||
-rwxr-xr-x | latex/book_1332.pdf | bin | 1689719 -> 734176 bytes | |||
-rwxr-xr-x | latex/book_135.pdf | bin | 1721028 -> 1247653 bytes | |||
-rwxr-xr-x | latex/book_1358.pdf | bin | 1015604 -> 557595 bytes | |||
-rwxr-xr-x | latex/book_1364.pdf | bin | 546102 -> 283498 bytes | |||
-rwxr-xr-x | latex/book_1367.pdf | bin | 395299 -> 245655 bytes | |||
-rwxr-xr-x | latex/book_137.pdf | bin | 352824 -> 235274 bytes | |||
-rwxr-xr-x | latex/book_1370.pdf | bin | 1076052 -> 592173 bytes | |||
-rwxr-xr-x | latex/book_1373.pdf | bin | 1325044 -> 696079 bytes | |||
-rwxr-xr-x | latex/book_1376.pdf | bin | 311127 -> 197000 bytes | |||
-rwxr-xr-x | latex/book_1379.pdf | bin | 689535 -> 373364 bytes | |||
-rwxr-xr-x | latex/book_1382.pdf | bin | 921244 -> 481167 bytes | |||
-rwxr-xr-x | latex/book_1385.pdf | bin | 373561 -> 215584 bytes | |||
-rwxr-xr-x | latex/book_1388.pdf | bin | 543370 -> 277496 bytes | |||
-rwxr-xr-x | latex/book_1394.pdf | bin | 479498 -> 284564 bytes | |||
-rwxr-xr-x | latex/book_1397.pdf | bin | 417697 -> 254465 bytes | |||
-rwxr-xr-x | latex/book_14.pdf | bin | 895534 -> 496048 bytes | |||
-rwxr-xr-x | latex/book_1436.pdf | bin | 376553 -> 229389 bytes | |||
-rwxr-xr-x | latex/book_1439.pdf | bin | 483129 -> 259437 bytes | |||
-rwxr-xr-x | latex/book_1442.pdf | bin | 546888 -> 286309 bytes | |||
-rw-r--r-- | latex/book_1445.pdf | bin | 44502 -> 967647 bytes | |||
-rwxr-xr-x | latex/book_1448.pdf | bin | 369773 -> 224301 bytes | |||
-rwxr-xr-x | latex/book_1457.pdf | bin | 453959 -> 251450 bytes | |||
-rwxr-xr-x | latex/book_1460.pdf | bin | 43784 -> 245041 bytes | |||
-rwxr-xr-x | latex/book_1466.pdf | bin | 44578 -> 334073 bytes | |||
-rwxr-xr-x | latex/book_1472.pdf | bin | 477718 -> 257255 bytes | |||
-rwxr-xr-x | latex/book_1478.pdf | bin | 475159 -> 278904 bytes | |||
-rwxr-xr-x | latex/book_1484.pdf | bin | 628945 -> 309869 bytes | |||
-rwxr-xr-x | latex/book_149.pdf | bin | 1235878 -> 628290 bytes | |||
-rwxr-xr-x | latex/book_1511.pdf | bin | 504348 -> 287087 bytes | |||
-rwxr-xr-x | latex/book_1514.pdf | bin | 43555 -> 439146 bytes | |||
-rwxr-xr-x | latex/book_1523.pdf | bin | 955775 -> 484205 bytes | |||
-rwxr-xr-x | latex/book_1529.pdf | bin | 1381102 -> 736908 bytes | |||
-rwxr-xr-x | latex/book_1535.pdf | bin | 573556 -> 367869 bytes | |||
-rwxr-xr-x | latex/book_1538.pdf | bin | 882857 -> 460576 bytes | |||
-rwxr-xr-x | latex/book_154.pdf | bin | 1922929 -> 1681600 bytes | |||
-rwxr-xr-x | latex/book_1541.pdf | bin | 618599 -> 344668 bytes | |||
-rwxr-xr-x | latex/book_1544.pdf | bin | 746991 -> 434949 bytes | |||
-rwxr-xr-x | latex/book_1571.pdf | bin | 615646 -> 332214 bytes | |||
-rwxr-xr-x | latex/book_1574.pdf | bin | 13732739 -> 13447570 bytes | |||
-rwxr-xr-x | latex/book_1580.pdf | bin | 462341 -> 291866 bytes | |||
-rwxr-xr-x | latex/book_1583.pdf | bin | 14037819 -> 13858954 bytes | |||
-rwxr-xr-x | latex/book_1592.pdf | bin | 1444390 -> 4485168 bytes | |||
-rwxr-xr-x | latex/book_1595.pdf | bin | 379945 -> 246711 bytes | |||
-rwxr-xr-x | latex/book_1598.pdf | bin | 262466 -> 186393 bytes | |||
-rwxr-xr-x | latex/book_1619.pdf | bin | 478378 -> 278220 bytes | |||
-rwxr-xr-x | latex/book_162.pdf | bin | 545728 -> 450727 bytes | |||
-rwxr-xr-x | latex/book_1628.pdf | bin | 1139000 -> 548488 bytes | |||
-rwxr-xr-x | latex/book_1631.pdf | bin | 518849 -> 288592 bytes | |||
-rwxr-xr-x | latex/book_1634.pdf | bin | 509774 -> 273397 bytes | |||
-rwxr-xr-x | latex/book_1640.pdf | bin | 445259 -> 244527 bytes | |||
-rwxr-xr-x | latex/book_1646.pdf | bin | 1153346 -> 635588 bytes | |||
-rwxr-xr-x | latex/book_1652.pdf | bin | 370387 -> 221179 bytes | |||
-rw-r--r-- | latex/book_1655.pdf | bin | 650514 -> 368455 bytes | |||
-rwxr-xr-x | latex/book_1658.pdf | bin | 1686705 -> 1051945 bytes | |||
-rwxr-xr-x | latex/book_1664.pdf | bin | 429414 -> 262504 bytes | |||
-rwxr-xr-x | latex/book_167.pdf | bin | 1000834 -> 557201 bytes | |||
-rwxr-xr-x | latex/book_1670.pdf | bin | 1490033 -> 660538 bytes | |||
-rwxr-xr-x | latex/book_1673.pdf | bin | 893496 -> 425418 bytes | |||
-rwxr-xr-x | latex/book_1682.pdf | bin | 670456 -> 378298 bytes | |||
-rwxr-xr-x | latex/book_1691.pdf | bin | 862317 -> 499989 bytes | |||
-rwxr-xr-x | latex/book_1697.pdf | bin | 435186 -> 256626 bytes | |||
-rwxr-xr-x | latex/book_1703.pdf | bin | 577538 -> 298935 bytes | |||
-rwxr-xr-x | latex/book_1709.pdf | bin | 392337 -> 224629 bytes | |||
-rwxr-xr-x | latex/book_172.pdf | bin | 631447 -> 371303 bytes | |||
-rwxr-xr-x | latex/book_1727.pdf | bin | 466899 -> 253331 bytes | |||
-rwxr-xr-x | latex/book_1730.pdf | bin | 460007 -> 268886 bytes | |||
-rwxr-xr-x | latex/book_1733.pdf | bin | 694446 -> 358670 bytes | |||
-rwxr-xr-x | latex/book_1736.pdf | bin | 841144 -> 499087 bytes | |||
-rwxr-xr-x | latex/book_1739.pdf | bin | 417623 -> 252579 bytes | |||
-rwxr-xr-x | latex/book_174.pdf | bin | 483194 -> 295120 bytes | |||
-rwxr-xr-x | latex/book_1748.pdf | bin | 739501 -> 401170 bytes | |||
-rwxr-xr-x | latex/book_1752.pdf | bin | 864662 -> 460645 bytes | |||
-rwxr-xr-x | latex/book_1754.pdf | bin | 481482 -> 282689 bytes | |||
-rwxr-xr-x | latex/book_1757.pdf | bin | 1002814 -> 506557 bytes | |||
-rwxr-xr-x | latex/book_1760.pdf | bin | 1334294 -> 628457 bytes | |||
-rwxr-xr-x | latex/book_1766.pdf | bin | 44970 -> 0 bytes | |||
-rwxr-xr-x | latex/book_1775.pdf | bin | 1016433 -> 524675 bytes | |||
-rwxr-xr-x | latex/book_1784.pdf | bin | 388044 -> 233946 bytes | |||
-rwxr-xr-x | latex/book_1787.pdf | bin | 411478 -> 248885 bytes | |||
-rwxr-xr-x | latex/book_1793.pdf | bin | 353551 -> 205442 bytes | |||
-rwxr-xr-x | latex/book_1802.pdf | bin | 622622 -> 338604 bytes | |||
-rwxr-xr-x | latex/book_181.pdf | bin | 1226993 -> 615375 bytes | |||
-rwxr-xr-x | latex/book_182.pdf | bin | 499465 -> 287927 bytes | |||
-rwxr-xr-x | latex/book_1820.pdf | bin | 1081462 -> 600226 bytes | |||
-rwxr-xr-x | latex/book_1823.pdf | bin | 429128 -> 248159 bytes | |||
-rwxr-xr-x | latex/book_1826.pdf | bin | 907347 -> 615886 bytes | |||
-rwxr-xr-x | latex/book_1835.pdf | bin | 891717 -> 485076 bytes | |||
-rwxr-xr-x | latex/book_1847.pdf | bin | 990853 -> 562948 bytes | |||
-rwxr-xr-x | latex/book_1850.pdf | bin | 44760 -> 355971 bytes | |||
-rwxr-xr-x | latex/book_1853.pdf | bin | 319709 -> 198137 bytes | |||
-rwxr-xr-x | latex/book_1859.pdf | bin | 44901 -> 342503 bytes | |||
-rwxr-xr-x | latex/book_1862.pdf | bin | 45137 -> 709449 bytes | |||
-rwxr-xr-x | latex/book_1868.pdf | bin | 581495 -> 361464 bytes | |||
-rwxr-xr-x | latex/book_1871.pdf | bin | 946794 -> 528827 bytes | |||
-rwxr-xr-x | latex/book_1883.pdf | bin | 548213 -> 314297 bytes | |||
-rwxr-xr-x | latex/book_1892.pdf | bin | 742378 -> 395656 bytes | |||
-rwxr-xr-x | latex/book_1895.pdf | bin | 974383 -> 509443 bytes | |||
-rwxr-xr-x | latex/book_1898.pdf | bin | 1323421 -> 609552 bytes | |||
-rwxr-xr-x | latex/book_1904.pdf | bin | 1920675 -> 1527949 bytes | |||
-rwxr-xr-x | latex/book_191.pdf | bin | 702965 -> 403568 bytes | |||
-rwxr-xr-x | latex/book_1910.pdf | bin | 44092 -> 606349 bytes | |||
-rwxr-xr-x | latex/book_1913.pdf | bin | 472021 -> 285501 bytes | |||
-rwxr-xr-x | latex/book_1922.pdf | bin | 426972 -> 235798 bytes | |||
-rwxr-xr-x | latex/book_1928.pdf | bin | 806100 -> 391957 bytes | |||
-rwxr-xr-x | latex/book_1931.pdf | bin | 681626 -> 375801 bytes | |||
-rwxr-xr-x | latex/book_1938.pdf | bin | 8617991 -> 22694531 bytes | |||
-rwxr-xr-x | latex/book_1943.pdf | bin | 1076033 -> 587885 bytes | |||
-rwxr-xr-x | latex/book_1946.pdf | bin | 594975 -> 328480 bytes | |||
-rwxr-xr-x | latex/book_1949.pdf | bin | 708490 -> 390080 bytes | |||
-rw-r--r-- | latex/book_1952.pdf | bin | 44474 -> 332539 bytes | |||
-rwxr-xr-x | latex/book_1955.pdf | bin | 1026643 -> 582447 bytes | |||
-rwxr-xr-x | latex/book_1958.pdf | bin | 433396 -> 267288 bytes | |||
-rwxr-xr-x | latex/book_196.pdf | bin | 330905 -> 212239 bytes | |||
-rwxr-xr-x | latex/book_1962.pdf | bin | 45043 -> 268840 bytes | |||
-rw-r--r-- | latex/book_1964.pdf | bin | 1223448 -> 635464 bytes | |||
-rwxr-xr-x | latex/book_1967.pdf | bin | 445024 -> 243459 bytes | |||
-rwxr-xr-x | latex/book_1970.pdf | bin | 963815 -> 547020 bytes | |||
-rwxr-xr-x | latex/book_1976.pdf | bin | 61725 -> 442087 bytes | |||
-rwxr-xr-x | latex/book_1979.pdf | bin | 705984 -> 406251 bytes | |||
-rwxr-xr-x | latex/book_1985.pdf | bin | 553720 -> 324739 bytes | |||
-rwxr-xr-x | latex/book_199.pdf | bin | 558555 -> 328585 bytes | |||
-rwxr-xr-x | latex/book_1991.pdf | bin | 531209 -> 347725 bytes | |||
-rwxr-xr-x | latex/book_1994.pdf | bin | 684733 -> 354823 bytes | |||
-rwxr-xr-x | latex/book_1997.pdf | bin | 734190 -> 397872 bytes | |||
-rwxr-xr-x | latex/book_20.pdf | bin | 287031 -> 202464 bytes | |||
-rwxr-xr-x | latex/book_2006.pdf | bin | 901512 -> 526123 bytes | |||
-rwxr-xr-x | latex/book_2015.pdf | bin | 528144 -> 281850 bytes | |||
-rwxr-xr-x | latex/book_2021.pdf | bin | 674465 -> 330817 bytes | |||
-rwxr-xr-x | latex/book_2024.pdf | bin | 603722 -> 302587 bytes | |||
-rwxr-xr-x | latex/book_2045.pdf | bin | 755259 -> 383893 bytes | |||
-rwxr-xr-x | latex/book_2048.pdf | bin | 1036575 -> 587813 bytes | |||
-rwxr-xr-x | latex/book_2054.pdf | bin | 415466 -> 246733 bytes | |||
-rwxr-xr-x | latex/book_2063.pdf | bin | 677627 -> 397400 bytes | |||
-rwxr-xr-x | latex/book_2066.pdf | bin | 478465 -> 263635 bytes | |||
-rwxr-xr-x | latex/book_2072.pdf | bin | 430978 -> 254314 bytes | |||
-rwxr-xr-x | latex/book_2078.pdf | bin | 783625 -> 420070 bytes | |||
-rwxr-xr-x | latex/book_2081.pdf | bin | 409902 -> 253389 bytes | |||
-rwxr-xr-x | latex/book_2084.pdf | bin | 1721870 -> 852156 bytes | |||
-rwxr-xr-x | latex/book_2087.pdf | bin | 2820548 -> 1724900 bytes | |||
-rwxr-xr-x | latex/book_2090.pdf | bin | 763672 -> 451507 bytes | |||
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-rwxr-xr-x | latex/book_2096.pdf | bin | 44529 -> 372002 bytes | |||
-rwxr-xr-x | latex/book_2102.pdf | bin | 681323 -> 363306 bytes | |||
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-rwxr-xr-x | latex/book_22.pdf | bin | 2445048 -> 2177114 bytes | |||
-rwxr-xr-x | latex/book_2201.pdf | bin | 703990 -> 368129 bytes | |||
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-rwxr-xr-x | latex/book_2207.pdf | bin | 503531 -> 288884 bytes | |||
-rwxr-xr-x | latex/book_2210.pdf | bin | 598543 -> 334609 bytes | |||
-rwxr-xr-x | latex/book_2213.pdf | bin | 618508 -> 338753 bytes | |||
-rwxr-xr-x | latex/book_2216.pdf | bin | 385606 -> 235372 bytes | |||
-rwxr-xr-x | latex/book_2219.pdf | bin | 848601 -> 459096 bytes | |||
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-rwxr-xr-x | latex/book_2231.pdf | bin | 517091 -> 293817 bytes | |||
-rwxr-xr-x | latex/book_2234.pdf | bin | 391874 -> 238787 bytes | |||
-rwxr-xr-x | latex/book_2240.pdf | bin | 2585016 -> 647100 bytes | |||
-rwxr-xr-x | latex/book_2243.pdf | bin | 764567 -> 512464 bytes | |||
-rwxr-xr-x | latex/book_2252.pdf | bin | 1579114 -> 937859 bytes | |||
-rwxr-xr-x | latex/book_2258.pdf | bin | 500582 -> 288866 bytes | |||
-rwxr-xr-x | latex/book_226.pdf | bin | 943745 -> 453674 bytes | |||
-rwxr-xr-x | latex/book_2267.pdf | bin | 406620 -> 248751 bytes | |||
-rwxr-xr-x | latex/book_2273.pdf | bin | 689944 -> 373310 bytes | |||
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-rwxr-xr-x | latex/book_2282.pdf | bin | 388645 -> 241692 bytes | |||
-rwxr-xr-x | latex/book_2288.pdf | bin | 579643 -> 321273 bytes | |||
-rwxr-xr-x | latex/book_2294.pdf | bin | 648651 -> 332574 bytes | |||
-rwxr-xr-x | latex/book_2297.pdf | bin | 370176 -> 230457 bytes | |||
-rwxr-xr-x | latex/book_23.pdf | bin | 2045197 -> 1268718 bytes | |||
-rwxr-xr-x | latex/book_2300.pdf | bin | 953484 -> 532227 bytes | |||
-rwxr-xr-x | latex/book_2309.pdf | bin | 513888 -> 293055 bytes | |||
-rwxr-xr-x | latex/book_2318.pdf | bin | 789687 -> 388273 bytes | |||
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diff --git a/latex/Initial_body b/latex/Initial_body index c8d357648..fd17d7be3 100755 --- a/latex/Initial_body +++ b/latex/Initial_body @@ -1,58 +1,62 @@ \nonstopmode -\documentclass[12pt]{report}
-\usepackage{hyperref}
-\hypersetup{colorlinks=true,linkcolor=blue}
-\usepackage{theorem,graphicx}
-\usepackage{listings,alltt}
-\bibliographystyle{plain}
-
-
-\lstset{ %configuring the display of scilab codes
- tabsize=4,
- language=scilab,
- basicstyle=\ttfamily,
- aboveskip={1\baselineskip},
- showstringspaces=false,
- breaklines=true,
- showspaces=false,
- numbers=left,
- numberstyle=\small,
- stringstyle=\normalfont,
- keywordstyle=\color{red},
- emph={clc, all, gca},
- emphstyle=\color{red},
- commentstyle=\color{blue}\normalfont}
-
-
-% code environment
-{\theorembodyfont{\rmfamily} \newtheorem{codemass}{Scilab code}[chapter]}
-\newenvironment{code}%
-{\begin{codemass}}{\hrule \end{codemass}}
-
-{\theorembodyfont{\rmfamily} \newtheorem{accmass}{Acc}[chapter]}
-\newenvironment{acc-code}%
-{\begin{accmass}}{\end{accmass}}
-
-
-% create listing for code
-
-\newcommand\tcaption[1]
- {\addcontentsline{cod}{section}{\protect\numberline {\thecodemass}#1}}
-\makeatletter \newcommand\listofcode
- {\chapter*{List of Scilab Codes\markboth%
- {\bf List of Scilab Codes}{}}%
-\renewcommand*\l@section{\@dottedtocline{1}{1.5em}{5em}}%
-\addcontentsline{toc}{chapter}{\protect\numberline{List of Scilab Codes}}
-\@starttoc{cod}}
-\newcommand\l@matlab[3]
- {#1 \par\noindent#2, #3 \par}
-\renewcommand\@pnumwidth{2.1em}
-%\makeatother
-
-\makeatletter
-\def\curlable#1{\def\thecodemass{#1}\def\@currentlabel{#1}}
-\makeatother
-
-\newcommand{\coderef}[1]{Exa~\ref{#1}}
-\newcommand{\figref}[1]{Fig.~\ref{#1}}
+\documentclass[12pt]{report} +\usepackage{hyperref} +\usepackage{bookmark} +\hypersetup{colorlinks=true,linkcolor=blue} +\usepackage{theorem,graphicx} +\usepackage{listings,alltt} +\usepackage[final]{pdfpages} +\bibliographystyle{plain} +\usepackage{tocloft} + + + +\lstset{ %configuring the display of scilab codes + tabsize=4, + language=scilab, + basicstyle=\ttfamily, + aboveskip={1\baselineskip}, + showstringspaces=false, + breaklines=true, + showspaces=false, + numbers=left, + numberstyle=\small, + stringstyle=\normalfont, + keywordstyle=\color{red}, + emph={clc, all, gca}, + emphstyle=\color{red}, + commentstyle=\color{blue}\normalfont} + + +% code environment +{\theorembodyfont{\rmfamily} \newtheorem{codemass}{Scilab code}[chapter]} +\newenvironment{code}% +{\begin{codemass}}{\hrule \end{codemass}} + +{\theorembodyfont{\rmfamily} \newtheorem{accmass}{Acc}[chapter]} +\newenvironment{acc-code}% +{\begin{accmass}}{\end{accmass}} + + +% create listing for code + +\newcommand\tcaption[1] + {\addcontentsline{cod}{section}{\protect\numberline {\thecodemass}#1}} +\makeatletter \newcommand\listofcode + {\chapter*{List of Scilab Codes\markboth% + {\bf List of Scilab Codes}{}}% +\renewcommand*\l@section{\@dottedtocline{1}{5em}{6em}}% +\addcontentsline{toc}{chapter}{\protect\numberline{List of Scilab Codes}} +\@starttoc{cod}} +\newcommand\l@matlab[3] + {#1 \par\noindent#2, #3 \par} +\renewcommand\@pnumwidth{2.1em} +%\makeatother + +\makeatletter +\def\curlable#1{\def\thecodemass{#1}\def\@currentlabel{#1}} +\makeatother + +\newcommand{\coderef}[1]{Exa~\ref{#1}} +\newcommand{\figref}[1]{Fig.~\ref{#1}} @@ -1,17 +1,17 @@ -\title{Scilab Textbook Companion for \\Power Electronics: Principles \& Applications\\by J. M. Jacob\footnote{Funded by a grant from the National Mission on Education through ICT, http://spoken-tutorial.org/NMEICT-Intro. This Textbook Companion and Scilab codes written in it can be downloaded from the "Textbook Companion Project" section at the website http://scilab.in}} -\author{ Created by \\Amitdas\\B.tech\\Others\\ISM Dhanbad\\ College Teacher\\Tarun Kumar Das\\Cross-Checked by \\Chaitanya\\} +\title{Scilab Textbook Companion for \\Fundamental Of Physics\\by D. Haliday, R. Resnick And J. Walker\footnote{Funded by a grant from the National Mission on Education through ICT, http://spoken-tutorial.org/NMEICT-Intro. This Textbook Companion and Scilab codes written in it can be downloaded from the "Textbook Companion Project" section at the website http://scilab.in}} +\author{ Created by \\Aman Mangal\\B.TECH (pursuing)\\Computer Engineering\\IIT Bombay\\ College Teacher\\Not Decided\\Cross-Checked by \\Prashant Dave, IIT Bombay\\} \date{\today} \begin{document} \maketitle \chapter*{Book Description} \begin{description} -\item [Title:] Power Electronics: Principles \& Applications -\item [Author:] J. M. Jacob -\item [Publisher:] Cengage Learning, New Delhi -\item [Edition:] 4 -\item [Year:] 2009 -\item [ISBN:] 9788131501184 +\item [Title:] Fundamental Of Physics +\item [Author:] D. Haliday, R. Resnick And J. Walker +\item [Publisher:] John Wiley And Sons Inc. +\item [Edition:] 6 +\item [Year:] 2011 +\item [ISBN:] 9971-51-330-7 \end{description} \newpage @@ -24,591 +24,3885 @@ Scilab numbering policy used in this document and the relation to the above book \end{description} For example, Exa~3.51 means solved example 3.51 of this book. Sec~2.3 means a scilab code whose theory is explained in Section 2.3 of the book. +\newpage +\vspace*{3cm} \tableofcontents \listofcode - -\chapter{Advanced operational amplifier principles } +\newpage +\vspace*{3cm} +\listoffigures +\chapter{Measurement} \vspace*{10mm} \curlable{Exa~1.1} \begin{code} -\tcaption{1}{1} -\lstinputlisting{../2075/CH1/EX1.1/pe1_1.sce} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH1/EX1.1/Example1_1.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~1.2} \begin{code} -\tcaption{2}{2} -\lstinputlisting{../2075/CH1/EX1.2/pe1_2.sce} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH1/EX1.2/Example1_2.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~1.3} \begin{code} -\tcaption{3}{3} -\lstinputlisting{../2075/CH1/EX1.3/pe1_3.sce} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH1/EX1.3/Example1_3.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~1.4} \begin{code} -\tcaption{4}{4} -\lstinputlisting{../2075/CH1/EX1.4/pe1_4.sce} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH1/EX1.4/Example1_4.sce} \end{code} \vspace*{10mm} -\curlable{Exa~1.5} +\chapter{Motion Along a Straight Line} + +\vspace*{10mm} +\curlable{Exa~2.1.a} +\begin{code} +\tcaption{Sample Problem 1a} +\begin{verbatim} +Sample Problem 1a +\end{verbatim} +\lstinputlisting{../24/CH2/EX2.1.a/Example2_1a.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:275} for dependency: {\begin{alltt} \hspace{2mm} Example2_1a.sce \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~2.1.b} +\begin{code} +\tcaption{Sample Problem 1b} +\begin{verbatim} +Sample Problem 1b +\end{verbatim} +\lstinputlisting{../24/CH2/EX2.1.b/Example2_1b.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:275} for dependency: {\begin{alltt} \hspace{2mm} Example2_1a.sce \end{alltt}} + +check Appendix \ref{AP:276} for dependency: {\begin{alltt} \hspace{2mm} Example2_1b.sce \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~2.1.c} \begin{code} -\tcaption{5}{5} -\lstinputlisting{../2075/CH1/EX1.5/pe1_5.sce} +\tcaption{Sample Problem 1c} +\begin{verbatim} +Sample Problem 1c +\end{verbatim} +\lstinputlisting{../24/CH2/EX2.1.c/Example2_1c.sce} \end{code} \vspace*{10mm} -\curlable{Exa~1.6a} +\curlable{Fig~2.1.c} +\begin{figure} +\includegraphics[width=5in]{../24/CH2/EX2.1.c/Example2_1c_graph.jpg} +\caption{Sample Problem 1c} +\end{figure} + +\vspace*{10mm} +check Appendix \ref{AP:275} for dependency: {\begin{alltt} \hspace{2mm} Example2_1a.sce \end{alltt}} + +check Appendix \ref{AP:276} for dependency: {\begin{alltt} \hspace{2mm} Example2_1b.sce \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~2.1.d} \begin{code} -\tcaption{6}{6} -\lstinputlisting{../2075/CH1/EX1.6a/pe1_6a.sce} +\tcaption{Sample Problem 1d} +\begin{verbatim} +Sample Problem 1d +\end{verbatim} +\lstinputlisting{../24/CH2/EX2.1.d/Example2_1d.sce} \end{code} \vspace*{10mm} -\curlable{Exa~1.6b} +\vspace*{10mm} +\curlable{Exa~2.2} \begin{code} -\tcaption{7}{7} -\lstinputlisting{../2075/CH1/EX1.6b/pe1_6b.sce} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH2/EX2.2/Example2_2.sce} \end{code} \vspace*{10mm} -\curlable{Exa~1.7} +\curlable{Fig~2.2} +\begin{figure} +\includegraphics[width=5in]{../24/CH2/EX2.2/Example2_2_graph.jpg} +\caption{Sample Problem 2} +\end{figure} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~2.3} \begin{code} -\tcaption{8}{8} -\lstinputlisting{../2075/CH1/EX1.7/pe1_7.sce} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH2/EX2.3/Example2_3.sce} \end{code} \vspace*{10mm} -\curlable{Exa~1.9} +\vspace*{10mm} +\curlable{Exa~2.4} \begin{code} -\tcaption{9}{9} -\lstinputlisting{../2075/CH1/EX1.9/pe1_9.sce} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH2/EX2.4/Example2_4.sce} \end{code} \vspace*{10mm} -\curlable{Exa~1.11} +\vspace*{10mm} +\curlable{Exa~2.5} \begin{code} -\tcaption{10}{10} -\lstinputlisting{../2075/CH1/EX1.11/pe1_11.sce} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH2/EX2.5/Example2_5.sce} \end{code} -\chapter{Power electronics circuit layout} +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~2.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH2/EX2.6/Example2_6.sce} +\end{code} \vspace*{10mm} -\curlable{Exa~2.9} +\vspace*{10mm} +\curlable{Exa~2.7} \begin{code} -\tcaption{1}{1} -\lstinputlisting{../2075/CH2/EX2.9/pe2_9.sce} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH2/EX2.7/Example2_7.sce} \end{code} -\chapter{Power parameter calculation} +\vspace*{10mm} +\chapter{Vectors} + +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} \vspace*{10mm} \curlable{Exa~3.1} \begin{code} -\tcaption{1}{1} -\lstinputlisting{../2075/CH3/EX3.1/pe3_1.sce} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH3/EX3.1/Example3_1.sce} \end{code} \vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} \curlable{Exa~3.2} \begin{code} -\tcaption{2}{2} -\lstinputlisting{../2075/CH3/EX3.2/pe3_2.sce} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH3/EX3.2/Example3_2.sce} \end{code} \vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} \curlable{Exa~3.3} \begin{code} -\tcaption{3}{3} -\lstinputlisting{../2075/CH3/EX3.3/pe3_3.sce} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH3/EX3.3/Example3_3.sce} \end{code} \vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} \curlable{Exa~3.4} \begin{code} -\tcaption{4}{4} -\lstinputlisting{../2075/CH3/EX3.4/pe3_4.sce} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH3/EX3.4/Example3_4.sce} \end{code} \vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} \curlable{Exa~3.5} \begin{code} -\tcaption{5}{5} -\lstinputlisting{../2075/CH3/EX3.5/pe3_5.sce} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH3/EX3.5/Example3_5.sce} \end{code} \vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} \curlable{Exa~3.6} \begin{code} -\tcaption{6}{6} -\lstinputlisting{../2075/CH3/EX3.6/pe3_6.sce} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH3/EX3.6/Example3_6.sce} \end{code} \vspace*{10mm} +check Appendix \ref{AP:277} for dependency: {\begin{alltt} \hspace{2mm} cross_product.sci \end{alltt}} + +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} \curlable{Exa~3.7} \begin{code} -\tcaption{7}{7} -\lstinputlisting{../2075/CH3/EX3.7/pe3_7.sce} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH3/EX3.7/Example3_7.sce} \end{code} \vspace*{10mm} +check Appendix \ref{AP:277} for dependency: {\begin{alltt} \hspace{2mm} cross_product.sci \end{alltt}} + +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} \curlable{Exa~3.8} \begin{code} -\tcaption{8}{8} -\lstinputlisting{../2075/CH3/EX3.8/pe3_8.sce} +\tcaption{Sample Problem 8} +\begin{verbatim} +Sample Problem 8 +\end{verbatim} +\lstinputlisting{../24/CH3/EX3.8/Example3_8.sce} \end{code} \vspace*{10mm} -\curlable{Exa~3.9} -\begin{code} -\tcaption{9}{9} -\lstinputlisting{../2075/CH3/EX3.9/pe3_9.sce} -\end{code} +\chapter{Motion in Two and Three Dimesions} \vspace*{10mm} -\curlable{Exa~3.10} +\curlable{Exa~4.1} \begin{code} -\tcaption{10}{10} -\lstinputlisting{../2075/CH3/EX3.10/pe3_10.sce} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH4/EX4.1/Example4_1.sce} \end{code} \vspace*{10mm} -\curlable{Exa~3.11} +\vspace*{10mm} +\curlable{Exa~4.2.a} \begin{code} -\tcaption{11}{11} -\lstinputlisting{../2075/CH3/EX3.11/pe3_11.sce} +\tcaption{Sample Problem 2a} +\begin{verbatim} +Sample Problem 2a +\end{verbatim} +\lstinputlisting{../24/CH4/EX4.2.a/Example4_2a.sce} \end{code} -\chapter{Linear power amplifier integrated circuits} +\vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +check Appendix \ref{AP:278} for dependency: {\begin{alltt} \hspace{2mm} Example4_2a.sce \end{alltt}} \vspace*{10mm} -\curlable{Exa~4.1} +\curlable{Exa~4.2.b} \begin{code} -\tcaption{1}{1} -\lstinputlisting{../2075/CH4/EX4.1/pe4_1.sce} +\tcaption{Sample Problem 2b} +\begin{verbatim} +Sample Problem 2b +\end{verbatim} +\lstinputlisting{../24/CH4/EX4.2.b/Example4_2b.sce} \end{code} \vspace*{10mm} -\curlable{Exa~4.2} -\begin{code} -\tcaption{2}{2} -\lstinputlisting{../2075/CH4/EX4.2/pe4_2.sce} -\end{code} +\curlable{Fig~4.2.b} +\begin{figure} +\includegraphics[width=5in]{../24/CH4/EX4.2.b/Example4_2b_graph.jpg} +\caption{Sample Problem 2b} +\end{figure} + +\vspace*{10mm} +check Appendix \ref{AP:278} for dependency: {\begin{alltt} \hspace{2mm} Example4_2a.sce \end{alltt}} \vspace*{10mm} \curlable{Exa~4.3} \begin{code} -\tcaption{3}{3} -\lstinputlisting{../2075/CH4/EX4.3/pe4_3.sce} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH4/EX4.3/Example4_3.sce} \end{code} \vspace*{10mm} +check Appendix \ref{AP:279} for dependency: {\begin{alltt} \hspace{2mm} Example4_3.sce \end{alltt}} + +\vspace*{10mm} \curlable{Exa~4.4} \begin{code} -\tcaption{4}{4} -\lstinputlisting{../2075/CH4/EX4.4/pe4_4.sce} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH4/EX4.4/Example4_4.sce} \end{code} \vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} \curlable{Exa~4.5} \begin{code} -\tcaption{5}{5} -\lstinputlisting{../2075/CH4/EX4.5/pe4_5.sce} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH4/EX4.5/Example4_5.sce} \end{code} \vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} \curlable{Exa~4.6} \begin{code} -\tcaption{6}{6} -\lstinputlisting{../2075/CH4/EX4.6/pe4_6.sce} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH4/EX4.6/Example4_6.sce} \end{code} \vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} \curlable{Exa~4.7} \begin{code} -\tcaption{7}{7} -\lstinputlisting{../2075/CH4/EX4.7/pe4_7.sce} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH4/EX4.7/Example4_7.sce} \end{code} \vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} \curlable{Exa~4.8} \begin{code} -\tcaption{8}{8} -\lstinputlisting{../2075/CH4/EX4.8/pe4_8.sce} +\tcaption{Sample Problem 8} +\begin{verbatim} +Sample Problem 8 +\end{verbatim} +\lstinputlisting{../24/CH4/EX4.8/Example4_8.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~4.9} \begin{code} -\tcaption{9}{9} -\lstinputlisting{../2075/CH4/EX4.9/pe4_9.sce} +\tcaption{Sample Problem 9} +\begin{verbatim} +Sample Problem 9 +\end{verbatim} +\lstinputlisting{../24/CH4/EX4.9/Example4_9.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~4.10} \begin{code} -\tcaption{10}{10} -\lstinputlisting{../2075/CH4/EX4.10/pe4_10.sce} +\tcaption{Sample Problem 10} +\begin{verbatim} +Sample Problem 10 +\end{verbatim} +\lstinputlisting{../24/CH4/EX4.10/Example4_10.sce} \end{code} \vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} \curlable{Exa~4.11} \begin{code} -\tcaption{11}{11} -\lstinputlisting{../2075/CH4/EX4.11/pe4_11.sce} +\tcaption{Sample Problem 11} +\begin{verbatim} +Sample Problem 11 +\end{verbatim} +\lstinputlisting{../24/CH4/EX4.11/Example4_11.sce} \end{code} \vspace*{10mm} -\curlable{Exa~4.12} -\begin{code} -\tcaption{12}{12} -\lstinputlisting{../2075/CH4/EX4.12/pe4_12.sce} -\end{code} +\chapter{Force and Motion l} + +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} \vspace*{10mm} -\curlable{Exa~4.13} +\curlable{Exa~5.1} \begin{code} -\tcaption{13}{13} -\lstinputlisting{../2075/CH4/EX4.13/pe4_13.sce} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH5/EX5.1/Example5_1.sce} \end{code} \vspace*{10mm} -\curlable{Exa~4.14} -\begin{code} -\tcaption{14}{14} -\lstinputlisting{../2075/CH4/EX4.14/pe4_14.sce} -\end{code} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} \vspace*{10mm} -\curlable{Exa~4.15} +\curlable{Exa~5.2} \begin{code} -\tcaption{15}{15} -\lstinputlisting{../2075/CH4/EX4.15/pe4_15.sce} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH5/EX5.2/Example5_2.sce} \end{code} -\chapter{Discrete linear power amplifier } +\vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} \vspace*{10mm} -\curlable{Exa~5.1} +\curlable{Exa~5.3} \begin{code} -\tcaption{1}{1} -\lstinputlisting{../2075/CH5/EX5.1/pe5_1.sce} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH5/EX5.3/Example5_3.sce} \end{code} \vspace*{10mm} -\curlable{Exa~5.2} -\begin{code} -\tcaption{2}{2} -\lstinputlisting{../2075/CH5/EX5.2/pe5_2.sce} -\end{code} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} \vspace*{10mm} -\curlable{Exa~5.3} +\curlable{Exa~5.4} \begin{code} -\tcaption{3}{3} -\lstinputlisting{../2075/CH5/EX5.3/pe5_3.sce} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH5/EX5.4/Example5_4.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~5.5} \begin{code} -\tcaption{4}{4} -\lstinputlisting{../2075/CH5/EX5.5/pe5_5.sce} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH5/EX5.5/Example5_5.sce} \end{code} \vspace*{10mm} +\curlable{Fig~5.5} +\begin{figure} +\includegraphics[width=5in]{../24/CH5/EX5.5/Example5_5_FBD.jpg} +\caption{Sample Problem 5} +\end{figure} + +\vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} \curlable{Exa~5.6} \begin{code} -\tcaption{5}{5} -\lstinputlisting{../2075/CH5/EX5.6/pe5_6.sce} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH5/EX5.6/Example5_6.sce} \end{code} \vspace*{10mm} +\curlable{Fig~5.6} +\begin{figure} +\includegraphics[width=5in]{../24/CH5/EX5.6/Example5_6_FBD.jpg} +\caption{Sample Problem 6} +\end{figure} + +\vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} \curlable{Exa~5.7} \begin{code} -\tcaption{6}{6} -\lstinputlisting{../2075/CH5/EX5.7/pe5_7.sce} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH5/EX5.7/Example5_7.sce} \end{code} \vspace*{10mm} +\curlable{Fig~5.7} +\begin{figure} +\includegraphics[width=5in]{../24/CH5/EX5.7/Example5_7_FBD.jpg} +\caption{Sample Problem 7} +\end{figure} + +\vspace*{10mm} +\vspace*{10mm} \curlable{Exa~5.8} \begin{code} -\tcaption{7}{7} -\lstinputlisting{../2075/CH5/EX5.8/pe5_8.sce} +\tcaption{Sample Problem 8} +\begin{verbatim} +Sample Problem 8 +\end{verbatim} +\lstinputlisting{../24/CH5/EX5.8/Example5_8.sce} \end{code} \vspace*{10mm} +\curlable{Fig~5.8} +\begin{figure} +\includegraphics[width=5in]{../24/CH5/EX5.8/Example5_8_FBD.jpg} +\caption{Sample Problem 8} +\end{figure} + +\vspace*{10mm} +\vspace*{10mm} \curlable{Exa~5.9} \begin{code} -\tcaption{8}{8} -\lstinputlisting{../2075/CH5/EX5.9/pe5_8.sce} +\tcaption{Sample Problem 9} +\begin{verbatim} +Sample Problem 9 +\end{verbatim} +\lstinputlisting{../24/CH5/EX5.9/Example5_9.sce} \end{code} \vspace*{10mm} -\curlable{Exa~5.10} -\begin{code} -\tcaption{9}{9} -\lstinputlisting{../2075/CH5/EX5.10/pe5_10.sce} -\end{code} +\curlable{Fig~5.9} +\begin{figure} +\includegraphics[width=5in]{../24/CH5/EX5.9/Example5_9_FBD.jpg} +\caption{Sample Problem 9} +\end{figure} \vspace*{10mm} -\curlable{Exa~5.11} -\begin{code} -\tcaption{10}{10} -\lstinputlisting{../2075/CH5/EX5.11/pe5_11.sce} -\end{code} +\chapter{Force and Motion ll} \vspace*{10mm} -\curlable{Exa~5.12} +\curlable{Exa~6.1} \begin{code} -\tcaption{11}{11} -\lstinputlisting{../2075/CH5/EX5.12/pe5_12.sce} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH6/EX6.1/Example6_1.sce} \end{code} \vspace*{10mm} -\curlable{Exa~5.13} -\begin{code} -\tcaption{12}{12} -\lstinputlisting{../2075/CH5/EX5.13/pe5_13.sce} -\end{code} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} \vspace*{10mm} -\curlable{Exa~5.14} +\curlable{Exa~6.2} \begin{code} -\tcaption{13}{13} -\lstinputlisting{../2075/CH5/EX5.14/pe5_14.sce} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH6/EX6.2/Example6_2.sce} \end{code} -\chapter{Power switches} +\vspace*{10mm} +\curlable{Fig~6.2} +\begin{figure} +\includegraphics[width=5in]{../24/CH6/EX6.2/Example6_2_FBD.jpg} +\caption{Sample Problem 2} +\end{figure} \vspace*{10mm} -\curlable{Exa~6.1} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~6.3} \begin{code} -\tcaption{1}{1} -\lstinputlisting{../2075/CH6/EX6.1/pe6_1.sce} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH6/EX6.3/Example6_3.sce} \end{code} \vspace*{10mm} +\curlable{Fig~6.3} +\begin{figure} +\includegraphics[width=5in]{../24/CH6/EX6.3/Example6_3_FBD.jpg} +\caption{Sample Problem 3} +\end{figure} + +\vspace*{10mm} +\vspace*{10mm} \curlable{Exa~6.4} \begin{code} -\tcaption{2}{2} -\lstinputlisting{../2075/CH6/EX6.4/pe6_4.sce} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH6/EX6.4/Example6_4.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~6.5} \begin{code} -\tcaption{3}{3} -\lstinputlisting{../2075/CH6/EX6.5/pe6_5.sce} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH6/EX6.5/Example6_5.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~6.6} \begin{code} -\tcaption{4}{4} -\lstinputlisting{../2075/CH6/EX6.6/pe6_6.sce} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH6/EX6.6/Example6_6.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~6.7} \begin{code} -\tcaption{5}{5} -\lstinputlisting{../2075/CH6/EX6.7/pe6_7.sce} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH6/EX6.7/Example6_7.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~6.8} \begin{code} -\tcaption{6}{6} -\lstinputlisting{../2075/CH6/EX6.8/pe6_8.sce} +\tcaption{Sample Problem 8} +\begin{verbatim} +Sample Problem 8 +\end{verbatim} +\lstinputlisting{../24/CH6/EX6.8/Example6_8.sce} \end{code} \vspace*{10mm} +\curlable{Fig~6.8} +\begin{figure} +\includegraphics[width=5in]{../24/CH6/EX6.8/Example6_8_FBD.jpg} +\caption{Sample Problem 8} +\end{figure} + +\vspace*{10mm} +\vspace*{10mm} \curlable{Exa~6.9} \begin{code} -\tcaption{7}{7} -\lstinputlisting{../2075/CH6/EX6.9/pe6_9.sce} +\tcaption{Sample Problem 9} +\begin{verbatim} +Sample Problem 9 +\end{verbatim} +\lstinputlisting{../24/CH6/EX6.9/Example6_9.sce} \end{code} \vspace*{10mm} -\curlable{Exa~6.10} -\begin{code} -\tcaption{8}{8} -\lstinputlisting{../2075/CH6/EX6.10/pe6_10.sce} -\end{code} +\curlable{Fig~6.9} +\begin{figure} +\includegraphics[width=5in]{../24/CH6/EX6.9/Example6_9_FBD.jpg} +\caption{Sample Problem 9} +\end{figure} \vspace*{10mm} -\curlable{Exa~6.11} -\begin{code} -\tcaption{9}{9} -\lstinputlisting{../2075/CH6/EX6.11/pe6_11.sce} -\end{code} +\chapter{Kinetic Energy and Work} -\chapter{Switching power supplies } +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} \vspace*{10mm} \curlable{Exa~7.1} \begin{code} -\tcaption{1}{1} -\lstinputlisting{../2075/CH7/EX7.1/pe7_1.sce} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH7/EX7.1/Example7_1.sce} \end{code} \vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} \curlable{Exa~7.2} \begin{code} -\tcaption{2}{2} -\lstinputlisting{../2075/CH7/EX7.2/pe7_2.sce} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH7/EX7.2/Example7_2.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~7.3} \begin{code} -\tcaption{3}{3} -\lstinputlisting{../2075/CH7/EX7.3/pe7_3.sce} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH7/EX7.3/Example7_3.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~7.4} \begin{code} -\tcaption{4}{4} -\lstinputlisting{../2075/CH7/EX7.4/pe7_4.sce} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH7/EX7.4/Example7_4.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~7.5} \begin{code} -\tcaption{5}{5} -\lstinputlisting{../2075/CH7/EX7.5/pe7_5.sce} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH7/EX7.5/Example7_5.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~7.6} \begin{code} -\tcaption{6}{6} -\lstinputlisting{../2075/CH7/EX7.6/pe7_6.sce} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH7/EX7.6/Example7_6.sce} \end{code} \vspace*{10mm} +\curlable{Fig~7.6} +\begin{figure} +\includegraphics[width=5in]{../24/CH7/EX7.6/Example7_6_FBD.jpg} +\caption{Sample Problem 6} +\end{figure} + +\vspace*{10mm} +\vspace*{10mm} \curlable{Exa~7.7} \begin{code} -\tcaption{7}{7} -\lstinputlisting{../2075/CH7/EX7.7/pe7_7.sce} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH7/EX7.7/Example7_7.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~7.8} \begin{code} -\tcaption{8}{8} -\lstinputlisting{../2075/CH7/EX7.8/pe7_8.sce} +\tcaption{Sample Problem 8} +\begin{verbatim} +Sample Problem 8 +\end{verbatim} +\lstinputlisting{../24/CH7/EX7.8/Example7_8.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~7.9} +\begin{code} +\tcaption{Sample Problem 9} +\begin{verbatim} +Sample Problem 9 +\end{verbatim} +\lstinputlisting{../24/CH7/EX7.9/Example7_9.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~7.10} +\begin{code} +\tcaption{Sample Problem 10} +\begin{verbatim} +Sample Problem 10 +\end{verbatim} +\lstinputlisting{../24/CH7/EX7.10/Example7_10.sce} +\end{code} + +\vspace*{10mm} +\chapter{Potential and Conservation of Energy} + +\vspace*{10mm} +\curlable{Exa~8.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH8/EX8.1/Example8_1.sce} \end{code} -\chapter{Thyristors} +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~8.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH8/EX8.2/Example8_2.sce} +\end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~8.3} \begin{code} -\tcaption{1}{1} -\lstinputlisting{../2075/CH8/EX8.3/pe8_3.sce} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH8/EX8.3/Example8_3.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~8.4} \begin{code} -\tcaption{2}{2} -\lstinputlisting{../2075/CH8/EX8.4/pe8_4.sce} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH8/EX8.4/Example8_4.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~8.5} \begin{code} -\tcaption{3}{3} -\lstinputlisting{../2075/CH8/EX8.5/pe8_5.sce} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH8/EX8.5/Example8_5.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~8.6} \begin{code} -\tcaption{4}{4} -\lstinputlisting{../2075/CH8/EX8.6/pe8_6.sce} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH8/EX8.6/Example8_6.sce} \end{code} \vspace*{10mm} -\curlable{Exa~8.8} +\vspace*{10mm} +\curlable{Exa~8.7} \begin{code} -\tcaption{5}{5} -\lstinputlisting{../2075/CH8/EX8.8/pe8_8.sce} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH8/EX8.7/Example8_7.sce} \end{code} \vspace*{10mm} -\curlable{Exa~8.9} +\vspace*{10mm} +\curlable{Exa~8.8} \begin{code} -\tcaption{6}{6} -\lstinputlisting{../2075/CH8/EX8.9/pe8_9.sce} +\tcaption{Sample Problem 8} +\begin{verbatim} +Sample Problem 8 +\end{verbatim} +\lstinputlisting{../24/CH8/EX8.8/Example8_8.sce} \end{code} -\chapter{Power conversion and motor drive applicaions} +\vspace*{10mm} +\chapter{System of Particles} + +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} \vspace*{10mm} \curlable{Exa~9.1} \begin{code} -\tcaption{1}{1} -\lstinputlisting{../2075/CH9/EX9.1/pe9_1.sce} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH9/EX9.1/Example9_1.sce} \end{code} \vspace*{10mm} +\curlable{Fig~9.1} +\begin{figure} +\includegraphics[width=5in]{../24/CH9/EX9.1/Example9_1_figure.jpg} +\caption{Sample Problem 1} +\end{figure} + +\vspace*{10mm} +\vspace*{10mm} \curlable{Exa~9.2} \begin{code} -\tcaption{2}{2} -\lstinputlisting{../2075/CH9/EX9.2/pe9_2.sce} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH9/EX9.2/Example9_2.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~9.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH9/EX9.3/Example9_3.sce} \end{code} \vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} \curlable{Exa~9.4} \begin{code} -\tcaption{3}{3} -\lstinputlisting{../2075/CH9/EX9.4/pe9_4.sce} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH9/EX9.4/Example9_4.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~9.5} \begin{code} -\tcaption{4}{4} -\lstinputlisting{../2075/CH9/EX9.5/pe9_5.sce} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH9/EX9.5/Example9_5.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~9.6} \begin{code} -\tcaption{5}{5} -\lstinputlisting{../2075/CH9/EX9.6/pe9_6.sce} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH9/EX9.6/Example9_6.sce} \end{code} \vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} \curlable{Exa~9.7} \begin{code} -\tcaption{6}{6} -\lstinputlisting{../2075/CH9/EX9.7/pe9_7.sce} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH9/EX9.7/Example9_7.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~9.8} \begin{code} -\tcaption{7}{7} -\lstinputlisting{../2075/CH9/EX9.8/pe9_8.sce} +\tcaption{Sample Problem 8} +\begin{verbatim} +Sample Problem 8 +\end{verbatim} +\lstinputlisting{../24/CH9/EX9.8/Example9_8.sce} \end{code} \vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} \curlable{Exa~9.9} \begin{code} -\tcaption{8}{8} -\lstinputlisting{../2075/CH9/EX9.9/pe9_9.sce} +\tcaption{Sample Problem 9} +\begin{verbatim} +Sample Problem 9 +\end{verbatim} +\lstinputlisting{../24/CH9/EX9.9/Example9_9.sce} +\end{code} + +\vspace*{10mm} +\chapter{Collisions} + +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~10.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH10/EX10.1/Example10_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~10.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH10/EX10.2/Example10_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~10.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH10/EX10.3/Example10_3.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:280} for dependency: {\begin{alltt} \hspace{2mm} collision.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~10.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH10/EX10.4/Example10_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~10.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH10/EX10.5/Example10_5.sce} +\end{code} + +\vspace*{10mm} +\chapter{Rotation} + +\vspace*{10mm} +\curlable{Exa~11.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH11/EX11.1/Example11_1.sce} +\end{code} + +\vspace*{10mm} +\curlable{Fig~11.1} +\begin{figure} +\includegraphics[width=5in]{../24/CH11/EX11.1/Example11_1_graph.jpg} +\caption{Sample Problem 1} +\end{figure} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~11.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH11/EX11.2/Example11_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~11.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH11/EX11.3/Example11_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~11.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH11/EX11.4/Example11_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~11.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH11/EX11.6/Example11_6.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~11.7} +\begin{code} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH11/EX11.7/Example11_7.sce} +\end{code} + +\vspace*{10mm} +\curlable{Fig~11.7} +\begin{figure} +\includegraphics[width=5in]{../24/CH11/EX11.7/Example11_7_FBD.jpg} +\caption{Sample Problem 7} +\end{figure} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~11.8} +\begin{code} +\tcaption{Sample Problem 8} +\begin{verbatim} +Sample Problem 8 +\end{verbatim} +\lstinputlisting{../24/CH11/EX11.8/Example11_8.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:281} for dependency: {\begin{alltt} \hspace{2mm} Example11_7.sce \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~11.9} +\begin{code} +\tcaption{Sample Problem 9} +\begin{verbatim} +Sample Problem 9 +\end{verbatim} +\lstinputlisting{../24/CH11/EX11.9/Example11_9.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~11.10} +\begin{code} +\tcaption{Sample Problem 10} +\begin{verbatim} +Sample Problem 10 +\end{verbatim} +\lstinputlisting{../24/CH11/EX11.10/Example11_10.sce} +\end{code} + +\vspace*{10mm} +\chapter{Rolling Torque and Angular Momentum} + +\vspace*{10mm} +\curlable{Exa~12.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH12/EX12.1/Example12_1.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~12.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH12/EX12.2/Example12_2.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:277} for dependency: {\begin{alltt} \hspace{2mm} cross_product.sci \end{alltt}} + +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~12.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH12/EX12.3/Example12_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~12.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH12/EX12.4/Example12_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~12.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH12/EX12.6/Example12_6.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~12.7} +\begin{code} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH12/EX12.7/Example12_7.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~12.8} +\begin{code} +\tcaption{Sample Problem 8} +\begin{verbatim} +Sample Problem 8 +\end{verbatim} +\lstinputlisting{../24/CH12/EX12.8/Example12_8.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~12.9} +\begin{code} +\tcaption{Sample Problem 9} +\begin{verbatim} +Sample Problem 9 +\end{verbatim} +\lstinputlisting{../24/CH12/EX12.9/Example12_9.sce} +\end{code} + +\vspace*{10mm} +\chapter{Equilibrium and Elasticity} + +\vspace*{10mm} +\curlable{Exa~13.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH13/EX13.1/Example13_1.sce} +\end{code} + +\vspace*{10mm} +\curlable{Fig~13.1} +\begin{figure} +\includegraphics[width=5in]{../24/CH13/EX13.1/Example13_1_FBD.jpg} +\caption{Sample Problem 1} +\end{figure} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~13.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH13/EX13.2/Example13_2.sce} +\end{code} + +\vspace*{10mm} +\curlable{Fig~13.2} +\begin{figure} +\includegraphics[width=5in]{../24/CH13/EX13.2/Example13_2_FBD.jpg} +\caption{Sample Problem 2} +\end{figure} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~13.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH13/EX13.3/Example13_3.sce} +\end{code} + +\vspace*{10mm} +\curlable{Fig~13.3} +\begin{figure} +\includegraphics[width=5in]{../24/CH13/EX13.3/Example13_3_FBD.jpg} +\caption{Sample Problem 3} +\end{figure} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~13.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH13/EX13.4/Example13_4.sce} +\end{code} + +\vspace*{10mm} +\curlable{Fig~13.4} +\begin{figure} +\includegraphics[width=5in]{../24/CH13/EX13.4/Example13_4_FBD.jpg} +\caption{Sample Problem 4} +\end{figure} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~13.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH13/EX13.5/Example13_5.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~13.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH13/EX13.6/Example13_6.sce} +\end{code} + +\vspace*{10mm} +\chapter{Gravitation} + +check Appendix \ref{AP:273} for dependency: {\begin{alltt} \hspace{2mm} Gravitation.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~14.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH14/EX14.1/Example14_1.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:273} for dependency: {\begin{alltt} \hspace{2mm} Gravitation.sci \end{alltt}} + +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~14.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH14/EX14.2/Example14_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~14.3.a} +\begin{code} +\tcaption{Sample Problem 3a} +\begin{verbatim} +Sample Problem 3a +\end{verbatim} +\lstinputlisting{../24/CH14/EX14.3.a/Example14_3a.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:273} for dependency: {\begin{alltt} \hspace{2mm} Gravitation.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~14.3.b} +\begin{code} +\tcaption{Sample Problem 3b} +\begin{verbatim} +Sample Problem 3b +\end{verbatim} +\lstinputlisting{../24/CH14/EX14.3.b/Example14_3b.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:273} for dependency: {\begin{alltt} \hspace{2mm} Gravitation.sci \end{alltt}} + +check Appendix \ref{AP:273} for dependency: {\begin{alltt} \hspace{2mm} Gravitation.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~14.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH14/EX14.5/Example14_5.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:273} for dependency: {\begin{alltt} \hspace{2mm} Gravitation.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~14.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH14/EX14.6/Example14_6.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:273} for dependency: {\begin{alltt} \hspace{2mm} Gravitation.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~14.7} +\begin{code} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH14/EX14.7/Example14_7.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:273} for dependency: {\begin{alltt} \hspace{2mm} Gravitation.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~14.8} +\begin{code} +\tcaption{Sample Problem 8} +\begin{verbatim} +Sample Problem 8 +\end{verbatim} +\lstinputlisting{../24/CH14/EX14.8/Example14_8.sce} +\end{code} + +\vspace*{10mm} +\chapter{Fluids} + +\vspace*{10mm} +\curlable{Exa~15.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH15/EX15.1/Example15_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~15.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH15/EX15.2/Example15_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~15.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH15/EX15.3/Example15_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~15.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH15/EX15.4/Example15_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~15.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH15/EX15.5/Example15_5.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~15.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH15/EX15.6/Example15_6.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:282} for dependency: {\begin{alltt} \hspace{2mm} Bernauli.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~15.7} +\begin{code} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH15/EX15.7/Example15_7.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:282} for dependency: {\begin{alltt} \hspace{2mm} Bernauli.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~15.8} +\begin{code} +\tcaption{Sample Problem 8} +\begin{verbatim} +Sample Problem 8 +\end{verbatim} +\lstinputlisting{../24/CH15/EX15.8/Example15_8.sce} +\end{code} + +\vspace*{10mm} +\chapter{Oscillation} + +\vspace*{10mm} +\curlable{Exa~16.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH16/EX16.1/Example16_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~16.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH16/EX16.2/Example16_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~16.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH16/EX16.3/Example16_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~16.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH16/EX16.4/Example16_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~16.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH16/EX16.5/Example16_5.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~16.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH16/EX16.6/Example16_6.sce} +\end{code} + +\vspace*{10mm} +\curlable{Fig~16.6} +\begin{figure} +\includegraphics[width=5in]{../24/CH16/EX16.6/Example16_6_FBD.JPG} +\caption{Sample Problem 6} +\end{figure} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~16.7} +\begin{code} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH16/EX16.7/Example16_7.sce} +\end{code} + +\vspace*{10mm} +\chapter{Waves l} + +\vspace*{10mm} +\curlable{Exa~17.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH17/EX17.1/Example17_1.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:283} for dependency: {\begin{alltt} \hspace{2mm} Example17_1.sce \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~17.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH17/EX17.2/Example17_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~17.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH17/EX17.3/Example17_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~17.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH17/EX17.4/Example17_4.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~17.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH17/EX17.5/Example17_5.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~17.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH17/EX17.6/Example17_6.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~17.7} +\begin{code} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH17/EX17.7/Example17_7.sce} +\end{code} + +\vspace*{10mm} +\chapter{Waves ll} + +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~18.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH18/EX18.1/Example18_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~18.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH18/EX18.2/Example18_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~18.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH18/EX18.3/Example18_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~18.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH18/EX18.4/Example18_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~18.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH18/EX18.5/Example18_5.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~18.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH18/EX18.6/Example18_6.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~18.8} +\begin{code} +\tcaption{Sample Problem 8} +\begin{verbatim} +Sample Problem 8 +\end{verbatim} +\lstinputlisting{../24/CH18/EX18.8/Example18_8.sce} +\end{code} + +\vspace*{10mm} +\chapter{Temprature Heat and the First Law of Thermodynamic} + +\vspace*{10mm} +\curlable{Exa~19.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH19/EX19.1/Example19_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~19.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH19/EX19.2/Example19_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~19.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH19/EX19.3/Example19_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~19.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH19/EX19.4/Example19_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~19.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH19/EX19.5/Example19_5.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~19.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH19/EX19.6/Example19_6.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~19.7} +\begin{code} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH19/EX19.7/Example19_7.sce} +\end{code} + +\vspace*{10mm} +\chapter{The Kinetic Theory of Gases} + +\vspace*{10mm} +\curlable{Exa~20.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH20/EX20.1/Example20_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~20.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH20/EX20.2/Example20_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~20.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH20/EX20.3/Example20_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~20.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH20/EX20.4/Example20_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~20.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH20/EX20.5/Example20_5.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~20.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH20/EX20.6/Example20_6.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~20.7} +\begin{code} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH20/EX20.7/Example20_7.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~20.9} +\begin{code} +\tcaption{Sample Problem 9} +\begin{verbatim} +Sample Problem 9 +\end{verbatim} +\lstinputlisting{../24/CH20/EX20.9/Example20_9.sce} +\end{code} + +\vspace*{10mm} +\chapter{Entropy and the Second Law of Thermodynamics} + +\vspace*{10mm} +\curlable{Exa~21.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH21/EX21.1/Example21_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~21.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH21/EX21.2/Example21_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~21.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH21/EX21.3/Example21_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~21.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH21/EX21.4/Example21_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~21.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH21/EX21.5/Example21_5.sce} +\end{code} + +\vspace*{10mm} +\chapter{Electric Charge} + +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +check Appendix \ref{AP:284} for dependency: {\begin{alltt} \hspace{2mm} electrostatics.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~22.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH22/EX22.1/Example22_1.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:284} for dependency: {\begin{alltt} \hspace{2mm} electrostatics.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~22.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH22/EX22.2/Example22_2.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:284} for dependency: {\begin{alltt} \hspace{2mm} electrostatics.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~22.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH22/EX22.3/Example22_3.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:273} for dependency: {\begin{alltt} \hspace{2mm} Gravitation.sci \end{alltt}} + +check Appendix \ref{AP:284} for dependency: {\begin{alltt} \hspace{2mm} electrostatics.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~22.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH22/EX22.4/Example22_4.sce} +\end{code} + +\vspace*{10mm} +\chapter{Electric Fields} + +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +check Appendix \ref{AP:284} for dependency: {\begin{alltt} \hspace{2mm} electrostatics.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~23.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH23/EX23.2/Example23_2.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +check Appendix \ref{AP:284} for dependency: {\begin{alltt} \hspace{2mm} electrostatics.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~23.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH23/EX23.3/Example23_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~23.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH23/EX23.4/Example23_4.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~23.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH23/EX23.5/Example23_5.sce} +\end{code} + +\vspace*{10mm} +\chapter{Gauss Law} + +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~24.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH24/EX24.1/Example24_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~24.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH24/EX24.2/Example24_2.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:284} for dependency: {\begin{alltt} \hspace{2mm} electrostatics.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~24.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH24/EX24.3/Example24_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~24.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH24/EX24.4/Example24_4.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:284} for dependency: {\begin{alltt} \hspace{2mm} electrostatics.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~24.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH24/EX24.5/Example24_5.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:284} for dependency: {\begin{alltt} \hspace{2mm} electrostatics.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~24.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH24/EX24.6/Example24_6.sce} +\end{code} + +\vspace*{10mm} +\chapter{Electric Potential} + +check Appendix \ref{AP:284} for dependency: {\begin{alltt} \hspace{2mm} electrostatics.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~25.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH25/EX25.1/Example25_1.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:284} for dependency: {\begin{alltt} \hspace{2mm} electrostatics.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~25.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH25/EX25.3/Example25_3.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:284} for dependency: {\begin{alltt} \hspace{2mm} electrostatics.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~25.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH25/EX25.4/Example25_4.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:284} for dependency: {\begin{alltt} \hspace{2mm} electrostatics.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~25.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH25/EX25.6/Example25_6.sce} +\end{code} + +\vspace*{10mm} +\chapter{Capacitance} + +check Appendix \ref{AP:284} for dependency: {\begin{alltt} \hspace{2mm} electrostatics.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~26.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH26/EX26.1/Example26_1.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:284} for dependency: {\begin{alltt} \hspace{2mm} electrostatics.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~26.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH26/EX26.2/Example26_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~26.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH26/EX26.3/Example26_3.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:284} for dependency: {\begin{alltt} \hspace{2mm} electrostatics.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~26.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH26/EX26.4/Example26_4.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:284} for dependency: {\begin{alltt} \hspace{2mm} electrostatics.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~26.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH26/EX26.5/Example26_5.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:284} for dependency: {\begin{alltt} \hspace{2mm} electrostatics.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~26.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH26/EX26.6/Example26_6.sce} +\end{code} + +\vspace*{10mm} +\chapter{Current and Resistance} + +\vspace*{10mm} +\curlable{Exa~27.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH27/EX27.1/Example27_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~27.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH27/EX27.2/Example27_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~27.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH27/EX27.3/Example27_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~27.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH27/EX27.4/Example27_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~27.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH27/EX27.5/Example27_5.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~27.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH27/EX27.6/Example27_6.sce} +\end{code} + +\vspace*{10mm} +\chapter{Circuits} + +\vspace*{10mm} +\curlable{Exa~28.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH28/EX28.1/Example28_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~28.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH28/EX28.2/Example28_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~28.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH28/EX28.3/Example28_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~28.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH28/EX28.4/Example28_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~28.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH28/EX28.5/Example28_5.sce} +\end{code} + +\vspace*{10mm} +\chapter{Magnetic fields} + +\vspace*{10mm} +\curlable{Exa~29.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH29/EX29.1/Example29_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~29.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH29/EX29.2/Example29_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~29.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH29/EX29.3/Example29_3.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~29.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH29/EX29.4/Example29_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~29.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH29/EX29.5/Example29_5.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~29.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH29/EX29.6/Example29_6.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~29.7} +\begin{code} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH29/EX29.7/Example29_7.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~29.8} +\begin{code} +\tcaption{Sample Problem 8} +\begin{verbatim} +Sample Problem 8 +\end{verbatim} +\lstinputlisting{../24/CH29/EX29.8/Example29_8.sce} +\end{code} + +\vspace*{10mm} +\chapter{Magnetic fields due to Current} + +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~30.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH30/EX30.2/Example30_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~30.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH30/EX30.3/Example30_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~30.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH30/EX30.4/Example30_4.sce} +\end{code} + +\vspace*{10mm} +\chapter{Induction and Inductance} + +\vspace*{10mm} +\curlable{Exa~31.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH31/EX31.1/Example31_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~31.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH31/EX31.2/Example31_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~31.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH31/EX31.3/Example31_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~31.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH31/EX31.4/Example31_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~31.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH31/EX31.5/Example31_5.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~31.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH31/EX31.6/Example31_6.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~31.7} +\begin{code} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH31/EX31.7/Example31_7.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~31.8} +\begin{code} +\tcaption{Sample Problem 8} +\begin{verbatim} +Sample Problem 8 +\end{verbatim} +\lstinputlisting{../24/CH31/EX31.8/Example31_8.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~31.9} +\begin{code} +\tcaption{Sample Problem 9} +\begin{verbatim} +Sample Problem 9 +\end{verbatim} +\lstinputlisting{../24/CH31/EX31.9/Example31_9.sce} +\end{code} + +\vspace*{10mm} +\chapter{Magnetism of Matter Maxwell Equation} + +\vspace*{10mm} +\curlable{Exa~32.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH32/EX32.1/Example32_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~32.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH32/EX32.2/Example32_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~32.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH32/EX32.3/Example32_3.sce} +\end{code} + +\vspace*{10mm} +\chapter{Electromagnetic Oscillations and Alternating Current} + +\vspace*{10mm} +\curlable{Exa~33.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH33/EX33.1/Example33_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~33.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH33/EX33.2/Example33_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~33.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH33/EX33.3/Example33_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~33.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH33/EX33.4/Example33_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~33.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH33/EX33.5/Example33_5.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~33.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH33/EX33.6/Example33_6.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~33.7} +\begin{code} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH33/EX33.7/Example33_7.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~33.8} +\begin{code} +\tcaption{Sample Problem 8} +\begin{verbatim} +Sample Problem 8 +\end{verbatim} +\lstinputlisting{../24/CH33/EX33.8/Example33_8.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~33.9} +\begin{code} +\tcaption{Sample Problem 9} +\begin{verbatim} +Sample Problem 9 +\end{verbatim} +\lstinputlisting{../24/CH33/EX33.9/Example33_9.sce} +\end{code} + +\vspace*{10mm} +\chapter{Electromagnetic Waves} + +\vspace*{10mm} +\curlable{Exa~34.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH34/EX34.1/Example34_1.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:273} for dependency: {\begin{alltt} \hspace{2mm} Gravitation.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~34.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH34/EX34.2/Example34_2.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~34.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH34/EX34.3/Example34_3.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~34.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH34/EX34.4/Example34_4.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~34.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH34/EX34.5/Example34_5.sce} +\end{code} + +\vspace*{10mm} +\chapter{Images} + +\vspace*{10mm} +\curlable{Exa~35.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH35/EX35.1/Example35_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~35.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH35/EX35.2/Example35_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~35.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH35/EX35.3/Example35_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~35.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH35/EX35.4/Example35_4.sce} +\end{code} + +\vspace*{10mm} +\chapter{Interference} + +\vspace*{10mm} +\curlable{Exa~36.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH36/EX36.1/Example36_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~36.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH36/EX36.2/Example36_2.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~36.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH36/EX36.3/Example36_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~36.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH36/EX36.4/Example36_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~36.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH36/EX36.5/Example36_5.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~36.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH36/EX36.6/Example36_6.sce} +\end{code} + +\vspace*{10mm} +\chapter{Diffraction} + +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~37.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH37/EX37.1/Example37_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~37.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH37/EX37.2/Example37_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~37.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH37/EX37.3/Example37_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~37.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH37/EX37.4/Example37_4.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~37.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH37/EX37.5/Example37_5.sce} +\end{code} + +\vspace*{10mm} +\chapter{Relativity} + +\vspace*{10mm} +\curlable{Exa~38.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH38/EX38.1/Example38_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~38.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH38/EX38.2/Example38_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~38.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH38/EX38.3/Example38_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~38.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH38/EX38.4/Example38_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~38.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH38/EX38.5/Example38_5.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~38.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH38/EX38.6/Example38_6.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~38.7} +\begin{code} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH38/EX38.7/Example38_7.sce} +\end{code} + +\vspace*{10mm} +\chapter{Photons and Matter Waves} + +\vspace*{10mm} +\curlable{Exa~39.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH39/EX39.1/Example39_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~39.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH39/EX39.2/Example39_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~39.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH39/EX39.3/Example39_3.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~39.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH39/EX39.4/Example39_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~39.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH39/EX39.5/Example39_5.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~39.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH39/EX39.6/Example39_6.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~39.7} +\begin{code} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH39/EX39.7/Example39_7.sce} +\end{code} + +\vspace*{10mm} +\chapter{More About Matter waves} + +check Appendix \ref{AP:285} for dependency: {\begin{alltt} \hspace{2mm} quantum.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~40.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH40/EX40.1/Example40_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~40.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH40/EX40.3/Example40_3.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:285} for dependency: {\begin{alltt} \hspace{2mm} quantum.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~40.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH40/EX40.4/Example40_4.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:285} for dependency: {\begin{alltt} \hspace{2mm} quantum.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~40.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH40/EX40.6/Example40_6.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~40.8} +\begin{code} +\tcaption{Sample Problem 8} +\begin{verbatim} +Sample Problem 8 +\end{verbatim} +\lstinputlisting{../24/CH40/EX40.8/Example40_8.sce} +\end{code} + +\vspace*{10mm} +\chapter{All About Atoms} + +\vspace*{10mm} +\curlable{Exa~41.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH41/EX41.1/Example41_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~41.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH41/EX41.2/Example41_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~41.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH41/EX41.3/Example41_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Fig~41.3} +\begin{figure} +\includegraphics[width=5in]{../24/CH41/EX41.3/Example41_3a.jpg} +\caption{Sample Problem 3} +\end{figure} + +\vspace*{10mm} +\curlable{Exa~41.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH41/EX41.4/Example41_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~41.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH41/EX41.5/Example41_5.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~41.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH41/EX41.6/Example41_6.sce} +\end{code} + +\vspace*{10mm} +\chapter{Conduction of Electricity in Solids} + +\vspace*{10mm} +\curlable{Exa~42.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH42/EX42.1/Example42_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~42.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH42/EX42.2/Example42_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~42.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH42/EX42.3/Example42_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~42.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH42/EX42.4/Example42_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~42.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH42/EX42.5/Example42_5.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~42.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH42/EX42.6/Example42_6.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~42.7} +\begin{code} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH42/EX42.7/Example42_7.sce} +\end{code} + +\vspace*{10mm} +\chapter{Nuclear Physics} + +\vspace*{10mm} +\curlable{Exa~43.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH43/EX43.1/Example43_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~43.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH43/EX43.2/Example43_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~43.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH43/EX43.3/Example43_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~43.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH43/EX43.4/Example43_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~43.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH43/EX43.5/Example43_5.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~43.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH43/EX43.6/Example43_6.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~43.7} +\begin{code} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH43/EX43.7/Example43_7.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~43.8} +\begin{code} +\tcaption{Sample Problem 8} +\begin{verbatim} +Sample Problem 8 +\end{verbatim} +\lstinputlisting{../24/CH43/EX43.8/Example43_8.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~43.9} +\begin{code} +\tcaption{Sample Problem 9} +\begin{verbatim} +Sample Problem 9 +\end{verbatim} +\lstinputlisting{../24/CH43/EX43.9/Example43_9.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~43.10} +\begin{code} +\tcaption{Sample Problem 10} +\begin{verbatim} +Sample Problem 10 +\end{verbatim} +\lstinputlisting{../24/CH43/EX43.10/Example43_10.sce} +\end{code} + +\vspace*{10mm} +\chapter{Energy from the Nucleus} + +\vspace*{10mm} +\curlable{Exa~44.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH44/EX44.1/Example44_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~44.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH44/EX44.2/Example44_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~44.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH44/EX44.3/Example44_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~44.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH44/EX44.4/Example44_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~44.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH44/EX44.5/Example44_5.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~44.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH44/EX44.6/Example44_6.sce} +\end{code} + +\vspace*{10mm} +\chapter{Quarks Leptons and the Big Bang} + +\vspace*{10mm} +\curlable{Exa~45.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH45/EX45.1/Example45_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~45.2} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH45/EX45.2/Example45_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~45.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH45/EX45.3/Example45_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~45.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH45/EX45.6/Example45_6.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~45.7} +\begin{code} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH45/EX45.7/Example45_7.sce} +\end{code} + +\vspace*{10mm} +\chapter*{Appendix} + +\curlable{AP~1} +\begin{code} +\label{AP:285} +\tcaption {Modern Physics}{Modern Physics} +\lstinputlisting{../24/DEPENDENCIES/quantum.sci} +\end{code} + +\curlable{AP~2} +\begin{code} +\label{AP:272} +\tcaption {degree_rad}{degree_rad} +\lstinputlisting{../24/DEPENDENCIES/degree_rad.sci} +\end{code} + +\curlable{AP~3} +\begin{code} +\label{AP:273} +\tcaption {gravitation}{gravitation} +\lstinputlisting{../24/DEPENDENCIES/Gravitation.sci} +\end{code} + +\curlable{AP~4} +\begin{code} +\label{AP:284} +\tcaption {electrostatic}{electrostatic} +\lstinputlisting{../24/DEPENDENCIES/electrostatics.sci} +\end{code} + +\curlable{AP~5} +\begin{code} +\label{AP:283} +\tcaption {Example 17-1}{Example 17-1} +\lstinputlisting{../24/DEPENDENCIES/Example17_1.sce} +\end{code} + +\curlable{AP~6} +\begin{code} +\label{AP:282} +\tcaption {Bernauli's Equation}{Bernauli's Equation} +\lstinputlisting{../24/DEPENDENCIES/Bernauli.sci} +\end{code} + +\curlable{AP~7} +\begin{code} +\label{AP:277} +\tcaption {Cross Product}{Cross Product} +\lstinputlisting{../24/DEPENDENCIES/cross_product.sci} +\end{code} + +\curlable{AP~8} +\begin{code} +\label{AP:281} +\tcaption {Example 11-7}{Example 11-7} +\lstinputlisting{../24/DEPENDENCIES/Example11_7.sce} +\end{code} + +\curlable{AP~9} +\begin{code} +\label{AP:280} +\tcaption {collision}{collision} +\lstinputlisting{../24/DEPENDENCIES/collision.sci} +\end{code} + +\curlable{AP~10} +\begin{code} +\label{AP:279} +\tcaption {Example 4-3}{Example 4-3} +\lstinputlisting{../24/DEPENDENCIES/Example4_3.sce} +\end{code} + +\curlable{AP~11} +\begin{code} +\label{AP:278} +\tcaption {Example 4-2a}{Example 4-2a} +\lstinputlisting{../24/DEPENDENCIES/Example4_2a.sce} +\end{code} + +\curlable{AP~12} +\begin{code} +\label{AP:276} +\tcaption {Example 2-1b}{Example 2-1b} +\lstinputlisting{../24/DEPENDENCIES/Example2_1b.sce} +\end{code} + +\curlable{AP~13} +\begin{code} +\label{AP:275} +\tcaption {Example 2-1a}{Example 2-1a} +\lstinputlisting{../24/DEPENDENCIES/Example2_1a.sce} \end{code} diff --git a/latex/TEX_final.aux b/latex/TEX_final.aux index c585311d9..b699d0688 100644 --- a/latex/TEX_final.aux +++ b/latex/TEX_final.aux @@ -1,93 +1,837 @@ \relax -\ifx\hyper@anchor\@undefined -\global \let \oldcontentsline\contentsline -\gdef \contentsline#1#2#3#4{\oldcontentsline{#1}{#2}{#3}} -\global \let \oldnewlabel\newlabel -\gdef 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+]) +(../24/CH21/EX21.3/Example21_3.sce [158]) (../24/CH21/EX21.4/Example21_4.sce +[159]) (../24/CH21/EX21.5/Example21_5.sce) [160] +Chapter 22. + +LaTeX Warning: Reference `AP:284' on page 161 undefined on input line 2213. + +(../24/CH22/EX22.1/Example22_1.sce [161 + +]) + +LaTeX Warning: Reference `AP:284' on page 162 undefined on input line 2226. + +(../24/CH22/EX22.2/Example22_2.sce [162]) + +LaTeX Warning: Reference `AP:284' on page 163 undefined on input line 2239. + +(../24/CH22/EX22.3/Example22_3.sce [163]) + +LaTeX Warning: Reference `AP:273' on page 164 undefined on input line 2252. + + +LaTeX Warning: Reference `AP:284' on page 164 undefined on input line 2254. + +(../24/CH22/EX22.4/Example22_4.sce) [164] [165] +Chapter 23. + +LaTeX Warning: Reference `AP:284' on page 166 undefined on input line 2271. + +(../24/CH23/EX23.2/Example23_2.sce [166 + +]) + +LaTeX Warning: Reference `AP:284' on page 167 undefined on input line 2286. + +(../24/CH23/EX23.3/Example23_3.sce) [167] 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-\newcommand{\figref}[1]{Fig.~\ref{#1}}
- -\title{Scilab Textbook Companion for \\Power Electronics: Principles \& Applications\\by J. M. Jacob\footnote{Funded by a grant from the National Mission on Education through ICT, http://spoken-tutorial.org/NMEICT-Intro. This Textbook Companion and Scilab codes written in it can be downloaded from the "Textbook Companion Project" section at the website http://scilab.in}} -\author{ Created by \\Amitdas\\B.tech\\Others\\ISM Dhanbad\\ College Teacher\\Tarun Kumar Das\\Cross-Checked by \\Chaitanya\\} +\documentclass[12pt]{report} +\usepackage{hyperref} +\usepackage{bookmark} +\hypersetup{colorlinks=true,linkcolor=blue} +\usepackage{theorem,graphicx} +\usepackage{listings,alltt} +\usepackage[final]{pdfpages} +\bibliographystyle{plain} +\usepackage{tocloft} + + + +\lstset{ %configuring the display of scilab codes + tabsize=4, + language=scilab, + basicstyle=\ttfamily, + aboveskip={1\baselineskip}, + showstringspaces=false, + breaklines=true, + showspaces=false, + numbers=left, + numberstyle=\small, + stringstyle=\normalfont, + keywordstyle=\color{red}, + emph={clc, all, gca}, + emphstyle=\color{red}, + commentstyle=\color{blue}\normalfont} + + +% code environment +{\theorembodyfont{\rmfamily} \newtheorem{codemass}{Scilab code}[chapter]} +\newenvironment{code}% +{\begin{codemass}}{\hrule \end{codemass}} + +{\theorembodyfont{\rmfamily} \newtheorem{accmass}{Acc}[chapter]} +\newenvironment{acc-code}% +{\begin{accmass}}{\end{accmass}} + + +% create listing for code + +\newcommand\tcaption[1] + {\addcontentsline{cod}{section}{\protect\numberline {\thecodemass}#1}} +\makeatletter \newcommand\listofcode + {\chapter*{List of Scilab Codes\markboth% + {\bf List of Scilab Codes}{}}% +\renewcommand*\l@section{\@dottedtocline{1}{5em}{6em}}% +\addcontentsline{toc}{chapter}{\protect\numberline{List of Scilab Codes}} +\@starttoc{cod}} +\newcommand\l@matlab[3] + {#1 \par\noindent#2, #3 \par} +\renewcommand\@pnumwidth{2.1em} +%\makeatother + +\makeatletter +\def\curlable#1{\def\thecodemass{#1}\def\@currentlabel{#1}} +\makeatother + +\newcommand{\coderef}[1]{Exa~\ref{#1}} +\newcommand{\figref}[1]{Fig.~\ref{#1}} + +\title{Scilab Textbook Companion for \\Fundamental Of Physics\\by D. Haliday, R. Resnick And J. Walker\footnote{Funded by a grant from the National Mission on Education through ICT, http://spoken-tutorial.org/NMEICT-Intro. This Textbook Companion and Scilab codes written in it can be downloaded from the "Textbook Companion Project" section at the website http://scilab.in}} +\author{ Created by \\Aman Mangal\\B.TECH (pursuing)\\Computer Engineering\\IIT Bombay\\ College Teacher\\Not Decided\\Cross-Checked by \\Prashant Dave, IIT Bombay\\} \date{\today} \begin{document} \maketitle \chapter*{Book Description} \begin{description} -\item [Title:] Power Electronics: Principles \& Applications -\item [Author:] J. M. Jacob -\item [Publisher:] Cengage Learning, New Delhi -\item [Edition:] 4 -\item [Year:] 2009 -\item [ISBN:] 9788131501184 +\item [Title:] Fundamental Of Physics +\item [Author:] D. Haliday, R. Resnick And J. Walker +\item [Publisher:] John Wiley And Sons Inc. +\item [Edition:] 6 +\item [Year:] 2011 +\item [ISBN:] 9971-51-330-7 \end{description} \newpage @@ -82,592 +86,3886 @@ Scilab numbering policy used in this document and the relation to the above book \end{description} For example, Exa~3.51 means solved example 3.51 of this book. Sec~2.3 means a scilab code whose theory is explained in Section 2.3 of the book. +\newpage +\vspace*{3cm} \tableofcontents \listofcode - -\chapter{Advanced operational amplifier principles } +\newpage +\vspace*{3cm} +\listoffigures +\chapter{Measurement} \vspace*{10mm} \curlable{Exa~1.1} \begin{code} -\tcaption{1}{1} -\lstinputlisting{../2075/CH1/EX1.1/pe1_1.sce} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH1/EX1.1/Example1_1.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~1.2} \begin{code} -\tcaption{2}{2} -\lstinputlisting{../2075/CH1/EX1.2/pe1_2.sce} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH1/EX1.2/Example1_2.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~1.3} \begin{code} -\tcaption{3}{3} -\lstinputlisting{../2075/CH1/EX1.3/pe1_3.sce} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH1/EX1.3/Example1_3.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~1.4} \begin{code} -\tcaption{4}{4} -\lstinputlisting{../2075/CH1/EX1.4/pe1_4.sce} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH1/EX1.4/Example1_4.sce} \end{code} \vspace*{10mm} -\curlable{Exa~1.5} +\chapter{Motion Along a Straight Line} + +\vspace*{10mm} +\curlable{Exa~2.1.a} +\begin{code} +\tcaption{Sample Problem 1a} +\begin{verbatim} +Sample Problem 1a +\end{verbatim} +\lstinputlisting{../24/CH2/EX2.1.a/Example2_1a.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:275} for dependency: {\begin{alltt} \hspace{2mm} Example2_1a.sce \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~2.1.b} +\begin{code} +\tcaption{Sample Problem 1b} +\begin{verbatim} +Sample Problem 1b +\end{verbatim} +\lstinputlisting{../24/CH2/EX2.1.b/Example2_1b.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:275} for dependency: {\begin{alltt} \hspace{2mm} Example2_1a.sce \end{alltt}} + +check Appendix \ref{AP:276} for dependency: {\begin{alltt} \hspace{2mm} Example2_1b.sce \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~2.1.c} \begin{code} -\tcaption{5}{5} -\lstinputlisting{../2075/CH1/EX1.5/pe1_5.sce} +\tcaption{Sample Problem 1c} +\begin{verbatim} +Sample Problem 1c +\end{verbatim} +\lstinputlisting{../24/CH2/EX2.1.c/Example2_1c.sce} \end{code} \vspace*{10mm} -\curlable{Exa~1.6a} +\curlable{Fig~2.1.c} +\begin{figure} +\includegraphics[width=5in]{../24/CH2/EX2.1.c/Example2_1c_graph.jpg} +\caption{Sample Problem 1c} +\end{figure} + +\vspace*{10mm} +check Appendix \ref{AP:275} for dependency: {\begin{alltt} \hspace{2mm} Example2_1a.sce \end{alltt}} + +check Appendix \ref{AP:276} for dependency: {\begin{alltt} \hspace{2mm} Example2_1b.sce \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~2.1.d} \begin{code} -\tcaption{6}{6} -\lstinputlisting{../2075/CH1/EX1.6a/pe1_6a.sce} +\tcaption{Sample Problem 1d} +\begin{verbatim} +Sample Problem 1d +\end{verbatim} +\lstinputlisting{../24/CH2/EX2.1.d/Example2_1d.sce} \end{code} \vspace*{10mm} -\curlable{Exa~1.6b} +\vspace*{10mm} +\curlable{Exa~2.2} \begin{code} -\tcaption{7}{7} -\lstinputlisting{../2075/CH1/EX1.6b/pe1_6b.sce} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH2/EX2.2/Example2_2.sce} \end{code} \vspace*{10mm} -\curlable{Exa~1.7} +\curlable{Fig~2.2} +\begin{figure} +\includegraphics[width=5in]{../24/CH2/EX2.2/Example2_2_graph.jpg} +\caption{Sample Problem 2} +\end{figure} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~2.3} \begin{code} -\tcaption{8}{8} -\lstinputlisting{../2075/CH1/EX1.7/pe1_7.sce} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH2/EX2.3/Example2_3.sce} \end{code} \vspace*{10mm} -\curlable{Exa~1.9} +\vspace*{10mm} +\curlable{Exa~2.4} \begin{code} -\tcaption{9}{9} -\lstinputlisting{../2075/CH1/EX1.9/pe1_9.sce} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH2/EX2.4/Example2_4.sce} \end{code} \vspace*{10mm} -\curlable{Exa~1.11} +\vspace*{10mm} +\curlable{Exa~2.5} \begin{code} -\tcaption{10}{10} -\lstinputlisting{../2075/CH1/EX1.11/pe1_11.sce} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH2/EX2.5/Example2_5.sce} \end{code} -\chapter{Power electronics circuit layout} +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~2.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH2/EX2.6/Example2_6.sce} +\end{code} \vspace*{10mm} -\curlable{Exa~2.9} +\vspace*{10mm} +\curlable{Exa~2.7} \begin{code} -\tcaption{1}{1} -\lstinputlisting{../2075/CH2/EX2.9/pe2_9.sce} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH2/EX2.7/Example2_7.sce} \end{code} -\chapter{Power parameter calculation} +\vspace*{10mm} +\chapter{Vectors} + +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} \vspace*{10mm} \curlable{Exa~3.1} \begin{code} -\tcaption{1}{1} -\lstinputlisting{../2075/CH3/EX3.1/pe3_1.sce} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH3/EX3.1/Example3_1.sce} \end{code} \vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} \curlable{Exa~3.2} \begin{code} -\tcaption{2}{2} -\lstinputlisting{../2075/CH3/EX3.2/pe3_2.sce} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH3/EX3.2/Example3_2.sce} \end{code} \vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} \curlable{Exa~3.3} \begin{code} -\tcaption{3}{3} -\lstinputlisting{../2075/CH3/EX3.3/pe3_3.sce} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH3/EX3.3/Example3_3.sce} \end{code} \vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} \curlable{Exa~3.4} \begin{code} -\tcaption{4}{4} -\lstinputlisting{../2075/CH3/EX3.4/pe3_4.sce} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH3/EX3.4/Example3_4.sce} \end{code} \vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} \curlable{Exa~3.5} \begin{code} -\tcaption{5}{5} -\lstinputlisting{../2075/CH3/EX3.5/pe3_5.sce} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH3/EX3.5/Example3_5.sce} \end{code} \vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} \curlable{Exa~3.6} \begin{code} -\tcaption{6}{6} -\lstinputlisting{../2075/CH3/EX3.6/pe3_6.sce} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH3/EX3.6/Example3_6.sce} \end{code} \vspace*{10mm} +check Appendix \ref{AP:277} for dependency: {\begin{alltt} \hspace{2mm} cross_product.sci \end{alltt}} + +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} \curlable{Exa~3.7} \begin{code} -\tcaption{7}{7} -\lstinputlisting{../2075/CH3/EX3.7/pe3_7.sce} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH3/EX3.7/Example3_7.sce} \end{code} \vspace*{10mm} +check Appendix \ref{AP:277} for dependency: {\begin{alltt} \hspace{2mm} cross_product.sci \end{alltt}} + +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} \curlable{Exa~3.8} \begin{code} -\tcaption{8}{8} -\lstinputlisting{../2075/CH3/EX3.8/pe3_8.sce} +\tcaption{Sample Problem 8} +\begin{verbatim} +Sample Problem 8 +\end{verbatim} +\lstinputlisting{../24/CH3/EX3.8/Example3_8.sce} \end{code} \vspace*{10mm} -\curlable{Exa~3.9} -\begin{code} -\tcaption{9}{9} -\lstinputlisting{../2075/CH3/EX3.9/pe3_9.sce} -\end{code} +\chapter{Motion in Two and Three Dimesions} \vspace*{10mm} -\curlable{Exa~3.10} +\curlable{Exa~4.1} \begin{code} -\tcaption{10}{10} -\lstinputlisting{../2075/CH3/EX3.10/pe3_10.sce} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH4/EX4.1/Example4_1.sce} \end{code} \vspace*{10mm} -\curlable{Exa~3.11} +\vspace*{10mm} +\curlable{Exa~4.2.a} \begin{code} -\tcaption{11}{11} -\lstinputlisting{../2075/CH3/EX3.11/pe3_11.sce} +\tcaption{Sample Problem 2a} +\begin{verbatim} +Sample Problem 2a +\end{verbatim} +\lstinputlisting{../24/CH4/EX4.2.a/Example4_2a.sce} \end{code} -\chapter{Linear power amplifier integrated circuits} +\vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +check Appendix \ref{AP:278} for dependency: {\begin{alltt} \hspace{2mm} Example4_2a.sce \end{alltt}} \vspace*{10mm} -\curlable{Exa~4.1} +\curlable{Exa~4.2.b} \begin{code} -\tcaption{1}{1} -\lstinputlisting{../2075/CH4/EX4.1/pe4_1.sce} +\tcaption{Sample Problem 2b} +\begin{verbatim} +Sample Problem 2b +\end{verbatim} +\lstinputlisting{../24/CH4/EX4.2.b/Example4_2b.sce} \end{code} \vspace*{10mm} -\curlable{Exa~4.2} -\begin{code} -\tcaption{2}{2} -\lstinputlisting{../2075/CH4/EX4.2/pe4_2.sce} -\end{code} +\curlable{Fig~4.2.b} +\begin{figure} +\includegraphics[width=5in]{../24/CH4/EX4.2.b/Example4_2b_graph.jpg} +\caption{Sample Problem 2b} +\end{figure} + +\vspace*{10mm} +check Appendix \ref{AP:278} for dependency: {\begin{alltt} \hspace{2mm} Example4_2a.sce \end{alltt}} \vspace*{10mm} \curlable{Exa~4.3} \begin{code} -\tcaption{3}{3} -\lstinputlisting{../2075/CH4/EX4.3/pe4_3.sce} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH4/EX4.3/Example4_3.sce} \end{code} \vspace*{10mm} +check Appendix \ref{AP:279} for dependency: {\begin{alltt} \hspace{2mm} Example4_3.sce \end{alltt}} + +\vspace*{10mm} \curlable{Exa~4.4} \begin{code} -\tcaption{4}{4} -\lstinputlisting{../2075/CH4/EX4.4/pe4_4.sce} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH4/EX4.4/Example4_4.sce} \end{code} \vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} \curlable{Exa~4.5} \begin{code} -\tcaption{5}{5} -\lstinputlisting{../2075/CH4/EX4.5/pe4_5.sce} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH4/EX4.5/Example4_5.sce} \end{code} \vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} \curlable{Exa~4.6} \begin{code} -\tcaption{6}{6} -\lstinputlisting{../2075/CH4/EX4.6/pe4_6.sce} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH4/EX4.6/Example4_6.sce} \end{code} \vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} \curlable{Exa~4.7} \begin{code} -\tcaption{7}{7} -\lstinputlisting{../2075/CH4/EX4.7/pe4_7.sce} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH4/EX4.7/Example4_7.sce} \end{code} \vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} \curlable{Exa~4.8} \begin{code} -\tcaption{8}{8} -\lstinputlisting{../2075/CH4/EX4.8/pe4_8.sce} +\tcaption{Sample Problem 8} +\begin{verbatim} +Sample Problem 8 +\end{verbatim} +\lstinputlisting{../24/CH4/EX4.8/Example4_8.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~4.9} \begin{code} -\tcaption{9}{9} -\lstinputlisting{../2075/CH4/EX4.9/pe4_9.sce} +\tcaption{Sample Problem 9} +\begin{verbatim} +Sample Problem 9 +\end{verbatim} +\lstinputlisting{../24/CH4/EX4.9/Example4_9.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~4.10} \begin{code} -\tcaption{10}{10} -\lstinputlisting{../2075/CH4/EX4.10/pe4_10.sce} +\tcaption{Sample Problem 10} +\begin{verbatim} +Sample Problem 10 +\end{verbatim} +\lstinputlisting{../24/CH4/EX4.10/Example4_10.sce} \end{code} \vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} \curlable{Exa~4.11} \begin{code} -\tcaption{11}{11} -\lstinputlisting{../2075/CH4/EX4.11/pe4_11.sce} +\tcaption{Sample Problem 11} +\begin{verbatim} +Sample Problem 11 +\end{verbatim} +\lstinputlisting{../24/CH4/EX4.11/Example4_11.sce} \end{code} \vspace*{10mm} -\curlable{Exa~4.12} -\begin{code} -\tcaption{12}{12} -\lstinputlisting{../2075/CH4/EX4.12/pe4_12.sce} -\end{code} +\chapter{Force and Motion l} + +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} \vspace*{10mm} -\curlable{Exa~4.13} +\curlable{Exa~5.1} \begin{code} -\tcaption{13}{13} -\lstinputlisting{../2075/CH4/EX4.13/pe4_13.sce} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH5/EX5.1/Example5_1.sce} \end{code} \vspace*{10mm} -\curlable{Exa~4.14} -\begin{code} -\tcaption{14}{14} -\lstinputlisting{../2075/CH4/EX4.14/pe4_14.sce} -\end{code} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} \vspace*{10mm} -\curlable{Exa~4.15} +\curlable{Exa~5.2} \begin{code} -\tcaption{15}{15} -\lstinputlisting{../2075/CH4/EX4.15/pe4_15.sce} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH5/EX5.2/Example5_2.sce} \end{code} -\chapter{Discrete linear power amplifier } +\vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} \vspace*{10mm} -\curlable{Exa~5.1} +\curlable{Exa~5.3} \begin{code} -\tcaption{1}{1} -\lstinputlisting{../2075/CH5/EX5.1/pe5_1.sce} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH5/EX5.3/Example5_3.sce} \end{code} \vspace*{10mm} -\curlable{Exa~5.2} -\begin{code} -\tcaption{2}{2} -\lstinputlisting{../2075/CH5/EX5.2/pe5_2.sce} -\end{code} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} \vspace*{10mm} -\curlable{Exa~5.3} +\curlable{Exa~5.4} \begin{code} -\tcaption{3}{3} -\lstinputlisting{../2075/CH5/EX5.3/pe5_3.sce} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH5/EX5.4/Example5_4.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~5.5} \begin{code} -\tcaption{4}{4} -\lstinputlisting{../2075/CH5/EX5.5/pe5_5.sce} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH5/EX5.5/Example5_5.sce} \end{code} \vspace*{10mm} +\curlable{Fig~5.5} +\begin{figure} +\includegraphics[width=5in]{../24/CH5/EX5.5/Example5_5_FBD.jpg} +\caption{Sample Problem 5} +\end{figure} + +\vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} \curlable{Exa~5.6} \begin{code} -\tcaption{5}{5} -\lstinputlisting{../2075/CH5/EX5.6/pe5_6.sce} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH5/EX5.6/Example5_6.sce} \end{code} \vspace*{10mm} +\curlable{Fig~5.6} +\begin{figure} +\includegraphics[width=5in]{../24/CH5/EX5.6/Example5_6_FBD.jpg} +\caption{Sample Problem 6} +\end{figure} + +\vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} \curlable{Exa~5.7} \begin{code} -\tcaption{6}{6} -\lstinputlisting{../2075/CH5/EX5.7/pe5_7.sce} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH5/EX5.7/Example5_7.sce} \end{code} \vspace*{10mm} +\curlable{Fig~5.7} +\begin{figure} +\includegraphics[width=5in]{../24/CH5/EX5.7/Example5_7_FBD.jpg} +\caption{Sample Problem 7} +\end{figure} + +\vspace*{10mm} +\vspace*{10mm} \curlable{Exa~5.8} \begin{code} -\tcaption{7}{7} -\lstinputlisting{../2075/CH5/EX5.8/pe5_8.sce} +\tcaption{Sample Problem 8} +\begin{verbatim} +Sample Problem 8 +\end{verbatim} +\lstinputlisting{../24/CH5/EX5.8/Example5_8.sce} \end{code} \vspace*{10mm} +\curlable{Fig~5.8} +\begin{figure} +\includegraphics[width=5in]{../24/CH5/EX5.8/Example5_8_FBD.jpg} +\caption{Sample Problem 8} +\end{figure} + +\vspace*{10mm} +\vspace*{10mm} \curlable{Exa~5.9} \begin{code} -\tcaption{8}{8} -\lstinputlisting{../2075/CH5/EX5.9/pe5_8.sce} +\tcaption{Sample Problem 9} +\begin{verbatim} +Sample Problem 9 +\end{verbatim} +\lstinputlisting{../24/CH5/EX5.9/Example5_9.sce} \end{code} \vspace*{10mm} -\curlable{Exa~5.10} -\begin{code} -\tcaption{9}{9} -\lstinputlisting{../2075/CH5/EX5.10/pe5_10.sce} -\end{code} +\curlable{Fig~5.9} +\begin{figure} +\includegraphics[width=5in]{../24/CH5/EX5.9/Example5_9_FBD.jpg} +\caption{Sample Problem 9} +\end{figure} \vspace*{10mm} -\curlable{Exa~5.11} -\begin{code} -\tcaption{10}{10} -\lstinputlisting{../2075/CH5/EX5.11/pe5_11.sce} -\end{code} +\chapter{Force and Motion ll} \vspace*{10mm} -\curlable{Exa~5.12} +\curlable{Exa~6.1} \begin{code} -\tcaption{11}{11} -\lstinputlisting{../2075/CH5/EX5.12/pe5_12.sce} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH6/EX6.1/Example6_1.sce} \end{code} \vspace*{10mm} -\curlable{Exa~5.13} -\begin{code} -\tcaption{12}{12} -\lstinputlisting{../2075/CH5/EX5.13/pe5_13.sce} -\end{code} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} \vspace*{10mm} -\curlable{Exa~5.14} +\curlable{Exa~6.2} \begin{code} -\tcaption{13}{13} -\lstinputlisting{../2075/CH5/EX5.14/pe5_14.sce} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH6/EX6.2/Example6_2.sce} \end{code} -\chapter{Power switches} +\vspace*{10mm} +\curlable{Fig~6.2} +\begin{figure} +\includegraphics[width=5in]{../24/CH6/EX6.2/Example6_2_FBD.jpg} +\caption{Sample Problem 2} +\end{figure} \vspace*{10mm} -\curlable{Exa~6.1} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~6.3} \begin{code} -\tcaption{1}{1} -\lstinputlisting{../2075/CH6/EX6.1/pe6_1.sce} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH6/EX6.3/Example6_3.sce} \end{code} \vspace*{10mm} +\curlable{Fig~6.3} +\begin{figure} +\includegraphics[width=5in]{../24/CH6/EX6.3/Example6_3_FBD.jpg} +\caption{Sample Problem 3} +\end{figure} + +\vspace*{10mm} +\vspace*{10mm} \curlable{Exa~6.4} \begin{code} -\tcaption{2}{2} -\lstinputlisting{../2075/CH6/EX6.4/pe6_4.sce} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH6/EX6.4/Example6_4.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~6.5} \begin{code} -\tcaption{3}{3} -\lstinputlisting{../2075/CH6/EX6.5/pe6_5.sce} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH6/EX6.5/Example6_5.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~6.6} \begin{code} -\tcaption{4}{4} -\lstinputlisting{../2075/CH6/EX6.6/pe6_6.sce} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH6/EX6.6/Example6_6.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~6.7} \begin{code} -\tcaption{5}{5} -\lstinputlisting{../2075/CH6/EX6.7/pe6_7.sce} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH6/EX6.7/Example6_7.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~6.8} \begin{code} -\tcaption{6}{6} -\lstinputlisting{../2075/CH6/EX6.8/pe6_8.sce} +\tcaption{Sample Problem 8} +\begin{verbatim} +Sample Problem 8 +\end{verbatim} +\lstinputlisting{../24/CH6/EX6.8/Example6_8.sce} \end{code} \vspace*{10mm} +\curlable{Fig~6.8} +\begin{figure} +\includegraphics[width=5in]{../24/CH6/EX6.8/Example6_8_FBD.jpg} +\caption{Sample Problem 8} +\end{figure} + +\vspace*{10mm} +\vspace*{10mm} \curlable{Exa~6.9} \begin{code} -\tcaption{7}{7} -\lstinputlisting{../2075/CH6/EX6.9/pe6_9.sce} +\tcaption{Sample Problem 9} +\begin{verbatim} +Sample Problem 9 +\end{verbatim} +\lstinputlisting{../24/CH6/EX6.9/Example6_9.sce} \end{code} \vspace*{10mm} -\curlable{Exa~6.10} -\begin{code} -\tcaption{8}{8} -\lstinputlisting{../2075/CH6/EX6.10/pe6_10.sce} -\end{code} +\curlable{Fig~6.9} +\begin{figure} +\includegraphics[width=5in]{../24/CH6/EX6.9/Example6_9_FBD.jpg} +\caption{Sample Problem 9} +\end{figure} \vspace*{10mm} -\curlable{Exa~6.11} -\begin{code} -\tcaption{9}{9} -\lstinputlisting{../2075/CH6/EX6.11/pe6_11.sce} -\end{code} +\chapter{Kinetic Energy and Work} -\chapter{Switching power supplies } +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} \vspace*{10mm} \curlable{Exa~7.1} \begin{code} -\tcaption{1}{1} -\lstinputlisting{../2075/CH7/EX7.1/pe7_1.sce} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH7/EX7.1/Example7_1.sce} \end{code} \vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} \curlable{Exa~7.2} \begin{code} -\tcaption{2}{2} -\lstinputlisting{../2075/CH7/EX7.2/pe7_2.sce} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH7/EX7.2/Example7_2.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~7.3} \begin{code} -\tcaption{3}{3} -\lstinputlisting{../2075/CH7/EX7.3/pe7_3.sce} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH7/EX7.3/Example7_3.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~7.4} \begin{code} -\tcaption{4}{4} -\lstinputlisting{../2075/CH7/EX7.4/pe7_4.sce} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH7/EX7.4/Example7_4.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~7.5} \begin{code} -\tcaption{5}{5} -\lstinputlisting{../2075/CH7/EX7.5/pe7_5.sce} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH7/EX7.5/Example7_5.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~7.6} \begin{code} -\tcaption{6}{6} -\lstinputlisting{../2075/CH7/EX7.6/pe7_6.sce} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH7/EX7.6/Example7_6.sce} \end{code} \vspace*{10mm} +\curlable{Fig~7.6} +\begin{figure} +\includegraphics[width=5in]{../24/CH7/EX7.6/Example7_6_FBD.jpg} +\caption{Sample Problem 6} +\end{figure} + +\vspace*{10mm} +\vspace*{10mm} \curlable{Exa~7.7} \begin{code} -\tcaption{7}{7} -\lstinputlisting{../2075/CH7/EX7.7/pe7_7.sce} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH7/EX7.7/Example7_7.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~7.8} \begin{code} -\tcaption{8}{8} -\lstinputlisting{../2075/CH7/EX7.8/pe7_8.sce} +\tcaption{Sample Problem 8} +\begin{verbatim} +Sample Problem 8 +\end{verbatim} +\lstinputlisting{../24/CH7/EX7.8/Example7_8.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~7.9} +\begin{code} +\tcaption{Sample Problem 9} +\begin{verbatim} +Sample Problem 9 +\end{verbatim} +\lstinputlisting{../24/CH7/EX7.9/Example7_9.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~7.10} +\begin{code} +\tcaption{Sample Problem 10} +\begin{verbatim} +Sample Problem 10 +\end{verbatim} +\lstinputlisting{../24/CH7/EX7.10/Example7_10.sce} +\end{code} + +\vspace*{10mm} +\chapter{Potential and Conservation of Energy} + +\vspace*{10mm} +\curlable{Exa~8.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH8/EX8.1/Example8_1.sce} \end{code} -\chapter{Thyristors} +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~8.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH8/EX8.2/Example8_2.sce} +\end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~8.3} \begin{code} -\tcaption{1}{1} -\lstinputlisting{../2075/CH8/EX8.3/pe8_3.sce} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH8/EX8.3/Example8_3.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~8.4} \begin{code} -\tcaption{2}{2} -\lstinputlisting{../2075/CH8/EX8.4/pe8_4.sce} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH8/EX8.4/Example8_4.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~8.5} \begin{code} -\tcaption{3}{3} -\lstinputlisting{../2075/CH8/EX8.5/pe8_5.sce} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH8/EX8.5/Example8_5.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~8.6} \begin{code} -\tcaption{4}{4} -\lstinputlisting{../2075/CH8/EX8.6/pe8_6.sce} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH8/EX8.6/Example8_6.sce} \end{code} \vspace*{10mm} -\curlable{Exa~8.8} +\vspace*{10mm} +\curlable{Exa~8.7} \begin{code} -\tcaption{5}{5} -\lstinputlisting{../2075/CH8/EX8.8/pe8_8.sce} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH8/EX8.7/Example8_7.sce} \end{code} \vspace*{10mm} -\curlable{Exa~8.9} +\vspace*{10mm} +\curlable{Exa~8.8} \begin{code} -\tcaption{6}{6} -\lstinputlisting{../2075/CH8/EX8.9/pe8_9.sce} +\tcaption{Sample Problem 8} +\begin{verbatim} +Sample Problem 8 +\end{verbatim} +\lstinputlisting{../24/CH8/EX8.8/Example8_8.sce} \end{code} -\chapter{Power conversion and motor drive applicaions} +\vspace*{10mm} +\chapter{System of Particles} + +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} \vspace*{10mm} \curlable{Exa~9.1} \begin{code} -\tcaption{1}{1} -\lstinputlisting{../2075/CH9/EX9.1/pe9_1.sce} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH9/EX9.1/Example9_1.sce} \end{code} \vspace*{10mm} +\curlable{Fig~9.1} +\begin{figure} +\includegraphics[width=5in]{../24/CH9/EX9.1/Example9_1_figure.jpg} +\caption{Sample Problem 1} +\end{figure} + +\vspace*{10mm} +\vspace*{10mm} \curlable{Exa~9.2} \begin{code} -\tcaption{2}{2} -\lstinputlisting{../2075/CH9/EX9.2/pe9_2.sce} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH9/EX9.2/Example9_2.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~9.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH9/EX9.3/Example9_3.sce} \end{code} \vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} \curlable{Exa~9.4} \begin{code} -\tcaption{3}{3} -\lstinputlisting{../2075/CH9/EX9.4/pe9_4.sce} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH9/EX9.4/Example9_4.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~9.5} \begin{code} -\tcaption{4}{4} -\lstinputlisting{../2075/CH9/EX9.5/pe9_5.sce} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH9/EX9.5/Example9_5.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~9.6} \begin{code} -\tcaption{5}{5} -\lstinputlisting{../2075/CH9/EX9.6/pe9_6.sce} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH9/EX9.6/Example9_6.sce} \end{code} \vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} \curlable{Exa~9.7} \begin{code} -\tcaption{6}{6} -\lstinputlisting{../2075/CH9/EX9.7/pe9_7.sce} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH9/EX9.7/Example9_7.sce} \end{code} \vspace*{10mm} +\vspace*{10mm} \curlable{Exa~9.8} \begin{code} -\tcaption{7}{7} -\lstinputlisting{../2075/CH9/EX9.8/pe9_8.sce} +\tcaption{Sample Problem 8} +\begin{verbatim} +Sample Problem 8 +\end{verbatim} +\lstinputlisting{../24/CH9/EX9.8/Example9_8.sce} \end{code} \vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} \curlable{Exa~9.9} \begin{code} -\tcaption{8}{8} -\lstinputlisting{../2075/CH9/EX9.9/pe9_9.sce} +\tcaption{Sample Problem 9} +\begin{verbatim} +Sample Problem 9 +\end{verbatim} +\lstinputlisting{../24/CH9/EX9.9/Example9_9.sce} +\end{code} + +\vspace*{10mm} +\chapter{Collisions} + +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~10.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH10/EX10.1/Example10_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~10.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH10/EX10.2/Example10_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~10.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH10/EX10.3/Example10_3.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:280} for dependency: {\begin{alltt} \hspace{2mm} collision.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~10.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH10/EX10.4/Example10_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~10.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH10/EX10.5/Example10_5.sce} +\end{code} + +\vspace*{10mm} +\chapter{Rotation} + +\vspace*{10mm} +\curlable{Exa~11.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH11/EX11.1/Example11_1.sce} +\end{code} + +\vspace*{10mm} +\curlable{Fig~11.1} +\begin{figure} +\includegraphics[width=5in]{../24/CH11/EX11.1/Example11_1_graph.jpg} +\caption{Sample Problem 1} +\end{figure} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~11.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH11/EX11.2/Example11_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~11.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH11/EX11.3/Example11_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~11.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH11/EX11.4/Example11_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~11.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH11/EX11.6/Example11_6.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~11.7} +\begin{code} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH11/EX11.7/Example11_7.sce} +\end{code} + +\vspace*{10mm} +\curlable{Fig~11.7} +\begin{figure} +\includegraphics[width=5in]{../24/CH11/EX11.7/Example11_7_FBD.jpg} +\caption{Sample Problem 7} +\end{figure} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~11.8} +\begin{code} +\tcaption{Sample Problem 8} +\begin{verbatim} +Sample Problem 8 +\end{verbatim} +\lstinputlisting{../24/CH11/EX11.8/Example11_8.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:281} for dependency: {\begin{alltt} \hspace{2mm} Example11_7.sce \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~11.9} +\begin{code} +\tcaption{Sample Problem 9} +\begin{verbatim} +Sample Problem 9 +\end{verbatim} +\lstinputlisting{../24/CH11/EX11.9/Example11_9.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~11.10} +\begin{code} +\tcaption{Sample Problem 10} +\begin{verbatim} +Sample Problem 10 +\end{verbatim} +\lstinputlisting{../24/CH11/EX11.10/Example11_10.sce} +\end{code} + +\vspace*{10mm} +\chapter{Rolling Torque and Angular Momentum} + +\vspace*{10mm} +\curlable{Exa~12.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH12/EX12.1/Example12_1.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~12.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH12/EX12.2/Example12_2.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:277} for dependency: {\begin{alltt} \hspace{2mm} cross_product.sci \end{alltt}} + +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~12.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH12/EX12.3/Example12_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~12.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH12/EX12.4/Example12_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~12.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH12/EX12.6/Example12_6.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~12.7} +\begin{code} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH12/EX12.7/Example12_7.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~12.8} +\begin{code} +\tcaption{Sample Problem 8} +\begin{verbatim} +Sample Problem 8 +\end{verbatim} +\lstinputlisting{../24/CH12/EX12.8/Example12_8.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~12.9} +\begin{code} +\tcaption{Sample Problem 9} +\begin{verbatim} +Sample Problem 9 +\end{verbatim} +\lstinputlisting{../24/CH12/EX12.9/Example12_9.sce} +\end{code} + +\vspace*{10mm} +\chapter{Equilibrium and Elasticity} + +\vspace*{10mm} +\curlable{Exa~13.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH13/EX13.1/Example13_1.sce} +\end{code} + +\vspace*{10mm} +\curlable{Fig~13.1} +\begin{figure} +\includegraphics[width=5in]{../24/CH13/EX13.1/Example13_1_FBD.jpg} +\caption{Sample Problem 1} +\end{figure} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~13.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH13/EX13.2/Example13_2.sce} +\end{code} + +\vspace*{10mm} +\curlable{Fig~13.2} +\begin{figure} +\includegraphics[width=5in]{../24/CH13/EX13.2/Example13_2_FBD.jpg} +\caption{Sample Problem 2} +\end{figure} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~13.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH13/EX13.3/Example13_3.sce} +\end{code} + +\vspace*{10mm} +\curlable{Fig~13.3} +\begin{figure} +\includegraphics[width=5in]{../24/CH13/EX13.3/Example13_3_FBD.jpg} +\caption{Sample Problem 3} +\end{figure} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~13.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH13/EX13.4/Example13_4.sce} +\end{code} + +\vspace*{10mm} +\curlable{Fig~13.4} +\begin{figure} +\includegraphics[width=5in]{../24/CH13/EX13.4/Example13_4_FBD.jpg} +\caption{Sample Problem 4} +\end{figure} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~13.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH13/EX13.5/Example13_5.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~13.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH13/EX13.6/Example13_6.sce} +\end{code} + +\vspace*{10mm} +\chapter{Gravitation} + +check Appendix \ref{AP:273} for dependency: {\begin{alltt} \hspace{2mm} Gravitation.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~14.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH14/EX14.1/Example14_1.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:273} for dependency: {\begin{alltt} \hspace{2mm} Gravitation.sci \end{alltt}} + +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~14.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH14/EX14.2/Example14_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~14.3.a} +\begin{code} +\tcaption{Sample Problem 3a} +\begin{verbatim} +Sample Problem 3a +\end{verbatim} +\lstinputlisting{../24/CH14/EX14.3.a/Example14_3a.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:273} for dependency: {\begin{alltt} \hspace{2mm} Gravitation.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~14.3.b} +\begin{code} +\tcaption{Sample Problem 3b} +\begin{verbatim} +Sample Problem 3b +\end{verbatim} +\lstinputlisting{../24/CH14/EX14.3.b/Example14_3b.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:273} for dependency: {\begin{alltt} \hspace{2mm} Gravitation.sci \end{alltt}} + +check Appendix \ref{AP:273} for dependency: {\begin{alltt} \hspace{2mm} Gravitation.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~14.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH14/EX14.5/Example14_5.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:273} for dependency: {\begin{alltt} \hspace{2mm} Gravitation.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~14.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH14/EX14.6/Example14_6.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:273} for dependency: {\begin{alltt} \hspace{2mm} Gravitation.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~14.7} +\begin{code} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH14/EX14.7/Example14_7.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:273} for dependency: {\begin{alltt} \hspace{2mm} Gravitation.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~14.8} +\begin{code} +\tcaption{Sample Problem 8} +\begin{verbatim} +Sample Problem 8 +\end{verbatim} +\lstinputlisting{../24/CH14/EX14.8/Example14_8.sce} +\end{code} + +\vspace*{10mm} +\chapter{Fluids} + +\vspace*{10mm} +\curlable{Exa~15.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH15/EX15.1/Example15_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~15.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH15/EX15.2/Example15_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~15.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH15/EX15.3/Example15_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~15.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH15/EX15.4/Example15_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~15.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH15/EX15.5/Example15_5.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~15.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH15/EX15.6/Example15_6.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:282} for dependency: {\begin{alltt} \hspace{2mm} Bernauli.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~15.7} +\begin{code} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH15/EX15.7/Example15_7.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:282} for dependency: {\begin{alltt} \hspace{2mm} Bernauli.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~15.8} +\begin{code} +\tcaption{Sample Problem 8} +\begin{verbatim} +Sample Problem 8 +\end{verbatim} +\lstinputlisting{../24/CH15/EX15.8/Example15_8.sce} +\end{code} + +\vspace*{10mm} +\chapter{Oscillation} + +\vspace*{10mm} +\curlable{Exa~16.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH16/EX16.1/Example16_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~16.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH16/EX16.2/Example16_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~16.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH16/EX16.3/Example16_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~16.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH16/EX16.4/Example16_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~16.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH16/EX16.5/Example16_5.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~16.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH16/EX16.6/Example16_6.sce} +\end{code} + +\vspace*{10mm} +\curlable{Fig~16.6} +\begin{figure} +\includegraphics[width=5in]{../24/CH16/EX16.6/Example16_6_FBD.JPG} +\caption{Sample Problem 6} +\end{figure} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~16.7} +\begin{code} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH16/EX16.7/Example16_7.sce} +\end{code} + +\vspace*{10mm} +\chapter{Waves l} + +\vspace*{10mm} +\curlable{Exa~17.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH17/EX17.1/Example17_1.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:283} for dependency: {\begin{alltt} \hspace{2mm} Example17_1.sce \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~17.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH17/EX17.2/Example17_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~17.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH17/EX17.3/Example17_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~17.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH17/EX17.4/Example17_4.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~17.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH17/EX17.5/Example17_5.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~17.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH17/EX17.6/Example17_6.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~17.7} +\begin{code} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH17/EX17.7/Example17_7.sce} +\end{code} + +\vspace*{10mm} +\chapter{Waves ll} + +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~18.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH18/EX18.1/Example18_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~18.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH18/EX18.2/Example18_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~18.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH18/EX18.3/Example18_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~18.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH18/EX18.4/Example18_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~18.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH18/EX18.5/Example18_5.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~18.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH18/EX18.6/Example18_6.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~18.8} +\begin{code} +\tcaption{Sample Problem 8} +\begin{verbatim} +Sample Problem 8 +\end{verbatim} +\lstinputlisting{../24/CH18/EX18.8/Example18_8.sce} +\end{code} + +\vspace*{10mm} +\chapter{Temprature Heat and the First Law of Thermodynamic} + +\vspace*{10mm} +\curlable{Exa~19.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH19/EX19.1/Example19_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~19.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH19/EX19.2/Example19_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~19.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH19/EX19.3/Example19_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~19.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH19/EX19.4/Example19_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~19.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH19/EX19.5/Example19_5.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~19.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH19/EX19.6/Example19_6.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~19.7} +\begin{code} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH19/EX19.7/Example19_7.sce} +\end{code} + +\vspace*{10mm} +\chapter{The Kinetic Theory of Gases} + +\vspace*{10mm} +\curlable{Exa~20.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH20/EX20.1/Example20_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~20.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH20/EX20.2/Example20_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~20.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH20/EX20.3/Example20_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~20.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH20/EX20.4/Example20_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~20.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH20/EX20.5/Example20_5.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~20.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH20/EX20.6/Example20_6.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~20.7} +\begin{code} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH20/EX20.7/Example20_7.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~20.9} +\begin{code} +\tcaption{Sample Problem 9} +\begin{verbatim} +Sample Problem 9 +\end{verbatim} +\lstinputlisting{../24/CH20/EX20.9/Example20_9.sce} +\end{code} + +\vspace*{10mm} +\chapter{Entropy and the Second Law of Thermodynamics} + +\vspace*{10mm} +\curlable{Exa~21.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH21/EX21.1/Example21_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~21.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH21/EX21.2/Example21_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~21.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH21/EX21.3/Example21_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~21.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH21/EX21.4/Example21_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~21.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH21/EX21.5/Example21_5.sce} +\end{code} + +\vspace*{10mm} +\chapter{Electric Charge} + +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +check Appendix \ref{AP:284} for dependency: {\begin{alltt} \hspace{2mm} electrostatics.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~22.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH22/EX22.1/Example22_1.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:284} for dependency: {\begin{alltt} \hspace{2mm} electrostatics.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~22.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH22/EX22.2/Example22_2.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:284} for dependency: {\begin{alltt} \hspace{2mm} electrostatics.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~22.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH22/EX22.3/Example22_3.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:273} for dependency: {\begin{alltt} \hspace{2mm} Gravitation.sci \end{alltt}} + +check Appendix \ref{AP:284} for dependency: {\begin{alltt} \hspace{2mm} electrostatics.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~22.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH22/EX22.4/Example22_4.sce} +\end{code} + +\vspace*{10mm} +\chapter{Electric Fields} + +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +check Appendix \ref{AP:284} for dependency: {\begin{alltt} \hspace{2mm} electrostatics.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~23.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH23/EX23.2/Example23_2.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +check Appendix \ref{AP:284} for dependency: {\begin{alltt} \hspace{2mm} electrostatics.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~23.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH23/EX23.3/Example23_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~23.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH23/EX23.4/Example23_4.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~23.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH23/EX23.5/Example23_5.sce} +\end{code} + +\vspace*{10mm} +\chapter{Gauss Law} + +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~24.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH24/EX24.1/Example24_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~24.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH24/EX24.2/Example24_2.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:284} for dependency: {\begin{alltt} \hspace{2mm} electrostatics.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~24.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH24/EX24.3/Example24_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~24.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH24/EX24.4/Example24_4.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:284} for dependency: {\begin{alltt} \hspace{2mm} electrostatics.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~24.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH24/EX24.5/Example24_5.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:284} for dependency: {\begin{alltt} \hspace{2mm} electrostatics.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~24.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH24/EX24.6/Example24_6.sce} +\end{code} + +\vspace*{10mm} +\chapter{Electric Potential} + +check Appendix \ref{AP:284} for dependency: {\begin{alltt} \hspace{2mm} electrostatics.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~25.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH25/EX25.1/Example25_1.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:284} for dependency: {\begin{alltt} \hspace{2mm} electrostatics.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~25.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH25/EX25.3/Example25_3.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:284} for dependency: {\begin{alltt} \hspace{2mm} electrostatics.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~25.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH25/EX25.4/Example25_4.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:284} for dependency: {\begin{alltt} \hspace{2mm} electrostatics.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~25.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH25/EX25.6/Example25_6.sce} +\end{code} + +\vspace*{10mm} +\chapter{Capacitance} + +check Appendix \ref{AP:284} for dependency: {\begin{alltt} \hspace{2mm} electrostatics.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~26.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH26/EX26.1/Example26_1.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:284} for dependency: {\begin{alltt} \hspace{2mm} electrostatics.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~26.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH26/EX26.2/Example26_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~26.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH26/EX26.3/Example26_3.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:284} for dependency: {\begin{alltt} \hspace{2mm} electrostatics.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~26.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH26/EX26.4/Example26_4.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:284} for dependency: {\begin{alltt} \hspace{2mm} electrostatics.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~26.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH26/EX26.5/Example26_5.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:284} for dependency: {\begin{alltt} \hspace{2mm} electrostatics.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~26.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH26/EX26.6/Example26_6.sce} +\end{code} + +\vspace*{10mm} +\chapter{Current and Resistance} + +\vspace*{10mm} +\curlable{Exa~27.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH27/EX27.1/Example27_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~27.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH27/EX27.2/Example27_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~27.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH27/EX27.3/Example27_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~27.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH27/EX27.4/Example27_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~27.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH27/EX27.5/Example27_5.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~27.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH27/EX27.6/Example27_6.sce} +\end{code} + +\vspace*{10mm} +\chapter{Circuits} + +\vspace*{10mm} +\curlable{Exa~28.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH28/EX28.1/Example28_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~28.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH28/EX28.2/Example28_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~28.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH28/EX28.3/Example28_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~28.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH28/EX28.4/Example28_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~28.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH28/EX28.5/Example28_5.sce} +\end{code} + +\vspace*{10mm} +\chapter{Magnetic fields} + +\vspace*{10mm} +\curlable{Exa~29.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH29/EX29.1/Example29_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~29.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH29/EX29.2/Example29_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~29.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH29/EX29.3/Example29_3.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~29.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH29/EX29.4/Example29_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~29.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH29/EX29.5/Example29_5.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~29.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH29/EX29.6/Example29_6.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~29.7} +\begin{code} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH29/EX29.7/Example29_7.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~29.8} +\begin{code} +\tcaption{Sample Problem 8} +\begin{verbatim} +Sample Problem 8 +\end{verbatim} +\lstinputlisting{../24/CH29/EX29.8/Example29_8.sce} +\end{code} + +\vspace*{10mm} +\chapter{Magnetic fields due to Current} + +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~30.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH30/EX30.2/Example30_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~30.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH30/EX30.3/Example30_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~30.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH30/EX30.4/Example30_4.sce} +\end{code} + +\vspace*{10mm} +\chapter{Induction and Inductance} + +\vspace*{10mm} +\curlable{Exa~31.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH31/EX31.1/Example31_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~31.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH31/EX31.2/Example31_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~31.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH31/EX31.3/Example31_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~31.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH31/EX31.4/Example31_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~31.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH31/EX31.5/Example31_5.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~31.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH31/EX31.6/Example31_6.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~31.7} +\begin{code} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH31/EX31.7/Example31_7.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~31.8} +\begin{code} +\tcaption{Sample Problem 8} +\begin{verbatim} +Sample Problem 8 +\end{verbatim} +\lstinputlisting{../24/CH31/EX31.8/Example31_8.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~31.9} +\begin{code} +\tcaption{Sample Problem 9} +\begin{verbatim} +Sample Problem 9 +\end{verbatim} +\lstinputlisting{../24/CH31/EX31.9/Example31_9.sce} +\end{code} + +\vspace*{10mm} +\chapter{Magnetism of Matter Maxwell Equation} + +\vspace*{10mm} +\curlable{Exa~32.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH32/EX32.1/Example32_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~32.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH32/EX32.2/Example32_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~32.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH32/EX32.3/Example32_3.sce} +\end{code} + +\vspace*{10mm} +\chapter{Electromagnetic Oscillations and Alternating Current} + +\vspace*{10mm} +\curlable{Exa~33.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH33/EX33.1/Example33_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~33.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH33/EX33.2/Example33_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~33.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH33/EX33.3/Example33_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~33.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH33/EX33.4/Example33_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~33.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH33/EX33.5/Example33_5.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~33.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH33/EX33.6/Example33_6.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~33.7} +\begin{code} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH33/EX33.7/Example33_7.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~33.8} +\begin{code} +\tcaption{Sample Problem 8} +\begin{verbatim} +Sample Problem 8 +\end{verbatim} +\lstinputlisting{../24/CH33/EX33.8/Example33_8.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~33.9} +\begin{code} +\tcaption{Sample Problem 9} +\begin{verbatim} +Sample Problem 9 +\end{verbatim} +\lstinputlisting{../24/CH33/EX33.9/Example33_9.sce} +\end{code} + +\vspace*{10mm} +\chapter{Electromagnetic Waves} + +\vspace*{10mm} +\curlable{Exa~34.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH34/EX34.1/Example34_1.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:273} for dependency: {\begin{alltt} \hspace{2mm} Gravitation.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~34.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH34/EX34.2/Example34_2.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~34.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH34/EX34.3/Example34_3.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~34.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH34/EX34.4/Example34_4.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~34.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH34/EX34.5/Example34_5.sce} +\end{code} + +\vspace*{10mm} +\chapter{Images} + +\vspace*{10mm} +\curlable{Exa~35.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH35/EX35.1/Example35_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~35.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH35/EX35.2/Example35_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~35.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH35/EX35.3/Example35_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~35.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH35/EX35.4/Example35_4.sce} +\end{code} + +\vspace*{10mm} +\chapter{Interference} + +\vspace*{10mm} +\curlable{Exa~36.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH36/EX36.1/Example36_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~36.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH36/EX36.2/Example36_2.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~36.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH36/EX36.3/Example36_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~36.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH36/EX36.4/Example36_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~36.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH36/EX36.5/Example36_5.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~36.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH36/EX36.6/Example36_6.sce} +\end{code} + +\vspace*{10mm} +\chapter{Diffraction} + +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~37.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH37/EX37.1/Example37_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~37.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH37/EX37.2/Example37_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~37.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH37/EX37.3/Example37_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~37.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH37/EX37.4/Example37_4.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~37.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH37/EX37.5/Example37_5.sce} +\end{code} + +\vspace*{10mm} +\chapter{Relativity} + +\vspace*{10mm} +\curlable{Exa~38.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH38/EX38.1/Example38_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~38.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH38/EX38.2/Example38_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~38.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH38/EX38.3/Example38_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~38.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH38/EX38.4/Example38_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~38.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH38/EX38.5/Example38_5.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~38.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH38/EX38.6/Example38_6.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~38.7} +\begin{code} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH38/EX38.7/Example38_7.sce} +\end{code} + +\vspace*{10mm} +\chapter{Photons and Matter Waves} + +\vspace*{10mm} +\curlable{Exa~39.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH39/EX39.1/Example39_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~39.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH39/EX39.2/Example39_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~39.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH39/EX39.3/Example39_3.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:272} for dependency: {\begin{alltt} \hspace{2mm} degree_rad.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~39.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH39/EX39.4/Example39_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~39.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH39/EX39.5/Example39_5.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~39.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH39/EX39.6/Example39_6.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~39.7} +\begin{code} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH39/EX39.7/Example39_7.sce} +\end{code} + +\vspace*{10mm} +\chapter{More About Matter waves} + +check Appendix \ref{AP:285} for dependency: {\begin{alltt} \hspace{2mm} quantum.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~40.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH40/EX40.1/Example40_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~40.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH40/EX40.3/Example40_3.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:285} for dependency: {\begin{alltt} \hspace{2mm} quantum.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~40.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH40/EX40.4/Example40_4.sce} +\end{code} + +\vspace*{10mm} +check Appendix \ref{AP:285} for dependency: {\begin{alltt} \hspace{2mm} quantum.sci \end{alltt}} + +\vspace*{10mm} +\curlable{Exa~40.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH40/EX40.6/Example40_6.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~40.8} +\begin{code} +\tcaption{Sample Problem 8} +\begin{verbatim} +Sample Problem 8 +\end{verbatim} +\lstinputlisting{../24/CH40/EX40.8/Example40_8.sce} +\end{code} + +\vspace*{10mm} +\chapter{All About Atoms} + +\vspace*{10mm} +\curlable{Exa~41.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH41/EX41.1/Example41_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~41.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH41/EX41.2/Example41_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~41.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH41/EX41.3/Example41_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Fig~41.3} +\begin{figure} +\includegraphics[width=5in]{../24/CH41/EX41.3/Example41_3a.jpg} +\caption{Sample Problem 3} +\end{figure} + +\vspace*{10mm} +\curlable{Exa~41.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH41/EX41.4/Example41_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~41.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH41/EX41.5/Example41_5.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~41.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH41/EX41.6/Example41_6.sce} +\end{code} + +\vspace*{10mm} +\chapter{Conduction of Electricity in Solids} + +\vspace*{10mm} +\curlable{Exa~42.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH42/EX42.1/Example42_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~42.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH42/EX42.2/Example42_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~42.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH42/EX42.3/Example42_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~42.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH42/EX42.4/Example42_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~42.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH42/EX42.5/Example42_5.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~42.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH42/EX42.6/Example42_6.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~42.7} +\begin{code} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH42/EX42.7/Example42_7.sce} +\end{code} + +\vspace*{10mm} +\chapter{Nuclear Physics} + +\vspace*{10mm} +\curlable{Exa~43.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH43/EX43.1/Example43_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~43.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH43/EX43.2/Example43_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~43.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH43/EX43.3/Example43_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~43.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH43/EX43.4/Example43_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~43.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH43/EX43.5/Example43_5.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~43.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH43/EX43.6/Example43_6.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~43.7} +\begin{code} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH43/EX43.7/Example43_7.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~43.8} +\begin{code} +\tcaption{Sample Problem 8} +\begin{verbatim} +Sample Problem 8 +\end{verbatim} +\lstinputlisting{../24/CH43/EX43.8/Example43_8.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~43.9} +\begin{code} +\tcaption{Sample Problem 9} +\begin{verbatim} +Sample Problem 9 +\end{verbatim} +\lstinputlisting{../24/CH43/EX43.9/Example43_9.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~43.10} +\begin{code} +\tcaption{Sample Problem 10} +\begin{verbatim} +Sample Problem 10 +\end{verbatim} +\lstinputlisting{../24/CH43/EX43.10/Example43_10.sce} +\end{code} + +\vspace*{10mm} +\chapter{Energy from the Nucleus} + +\vspace*{10mm} +\curlable{Exa~44.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH44/EX44.1/Example44_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~44.2} +\begin{code} +\tcaption{Sample Problem 2} +\begin{verbatim} +Sample Problem 2 +\end{verbatim} +\lstinputlisting{../24/CH44/EX44.2/Example44_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~44.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH44/EX44.3/Example44_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~44.4} +\begin{code} +\tcaption{Sample Problem 4} +\begin{verbatim} +Sample Problem 4 +\end{verbatim} +\lstinputlisting{../24/CH44/EX44.4/Example44_4.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~44.5} +\begin{code} +\tcaption{Sample Problem 5} +\begin{verbatim} +Sample Problem 5 +\end{verbatim} +\lstinputlisting{../24/CH44/EX44.5/Example44_5.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~44.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH44/EX44.6/Example44_6.sce} +\end{code} + +\vspace*{10mm} +\chapter{Quarks Leptons and the Big Bang} + +\vspace*{10mm} +\curlable{Exa~45.1} +\begin{code} +\tcaption{Sample Problem 1} +\begin{verbatim} +Sample Problem 1 +\end{verbatim} +\lstinputlisting{../24/CH45/EX45.1/Example45_1.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~45.2} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH45/EX45.2/Example45_2.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~45.3} +\begin{code} +\tcaption{Sample Problem 3} +\begin{verbatim} +Sample Problem 3 +\end{verbatim} +\lstinputlisting{../24/CH45/EX45.3/Example45_3.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~45.6} +\begin{code} +\tcaption{Sample Problem 6} +\begin{verbatim} +Sample Problem 6 +\end{verbatim} +\lstinputlisting{../24/CH45/EX45.6/Example45_6.sce} +\end{code} + +\vspace*{10mm} +\vspace*{10mm} +\curlable{Exa~45.7} +\begin{code} +\tcaption{Sample Problem 7} +\begin{verbatim} +Sample Problem 7 +\end{verbatim} +\lstinputlisting{../24/CH45/EX45.7/Example45_7.sce} +\end{code} + +\vspace*{10mm} +\chapter*{Appendix} + +\curlable{AP~1} +\begin{code} +\label{AP:285} +\tcaption {Modern Physics}{Modern Physics} +\lstinputlisting{../24/DEPENDENCIES/quantum.sci} +\end{code} + +\curlable{AP~2} +\begin{code} +\label{AP:272} +\tcaption {degree_rad}{degree_rad} +\lstinputlisting{../24/DEPENDENCIES/degree_rad.sci} +\end{code} + +\curlable{AP~3} +\begin{code} +\label{AP:273} +\tcaption {gravitation}{gravitation} +\lstinputlisting{../24/DEPENDENCIES/Gravitation.sci} +\end{code} + +\curlable{AP~4} +\begin{code} +\label{AP:284} +\tcaption {electrostatic}{electrostatic} +\lstinputlisting{../24/DEPENDENCIES/electrostatics.sci} +\end{code} + +\curlable{AP~5} +\begin{code} +\label{AP:283} +\tcaption {Example 17-1}{Example 17-1} +\lstinputlisting{../24/DEPENDENCIES/Example17_1.sce} +\end{code} + +\curlable{AP~6} +\begin{code} +\label{AP:282} +\tcaption {Bernauli's Equation}{Bernauli's Equation} +\lstinputlisting{../24/DEPENDENCIES/Bernauli.sci} +\end{code} + +\curlable{AP~7} +\begin{code} +\label{AP:277} +\tcaption {Cross Product}{Cross Product} +\lstinputlisting{../24/DEPENDENCIES/cross_product.sci} +\end{code} + +\curlable{AP~8} +\begin{code} +\label{AP:281} +\tcaption {Example 11-7}{Example 11-7} +\lstinputlisting{../24/DEPENDENCIES/Example11_7.sce} +\end{code} + +\curlable{AP~9} +\begin{code} +\label{AP:280} +\tcaption {collision}{collision} +\lstinputlisting{../24/DEPENDENCIES/collision.sci} +\end{code} + +\curlable{AP~10} +\begin{code} +\label{AP:279} +\tcaption {Example 4-3}{Example 4-3} +\lstinputlisting{../24/DEPENDENCIES/Example4_3.sce} +\end{code} + +\curlable{AP~11} +\begin{code} +\label{AP:278} +\tcaption {Example 4-2a}{Example 4-2a} +\lstinputlisting{../24/DEPENDENCIES/Example4_2a.sce} +\end{code} + +\curlable{AP~12} +\begin{code} +\label{AP:276} +\tcaption {Example 2-1b}{Example 2-1b} +\lstinputlisting{../24/DEPENDENCIES/Example2_1b.sce} +\end{code} + +\curlable{AP~13} +\begin{code} +\label{AP:275} +\tcaption {Example 2-1a}{Example 2-1a} +\lstinputlisting{../24/DEPENDENCIES/Example2_1a.sce} \end{code} \end{document} diff --git a/latex/book_10.pdf b/latex/book_10.pdf Binary files differindex 1c66f7db1..97047c35a 100755 --- a/latex/book_10.pdf +++ b/latex/book_10.pdf diff --git a/latex/book_1004.pdf b/latex/book_1004.pdf Binary files differindex 5eb10783b..05fc4ac58 100755 --- a/latex/book_1004.pdf +++ b/latex/book_1004.pdf diff --git a/latex/book_1016.pdf 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amplifier principles #1.4#4#pe1_4.sce#2075/CH1/EX1.4/pe1_4.sce#S##78257 -1#Advanced operational amplifier principles #1.5#5#pe1_5.sce#2075/CH1/EX1.5/pe1_5.sce#S##78259 -1#Advanced operational amplifier principles #1.6a#6#pe1_6a.sce#2075/CH1/EX1.6a/pe1_6a.sce#S##78261 -1#Advanced operational amplifier principles #1.6b#7#pe1_6b.sce#2075/CH1/EX1.6b/pe1_6b.sce#S##78263 -1#Advanced operational amplifier principles #1.7#8#pe1_7.sce#2075/CH1/EX1.7/pe1_7.sce#S##78265 -1#Advanced operational amplifier principles #1.9#9#pe1_9.sce#2075/CH1/EX1.9/pe1_9.sce#S##78266 -1#Advanced operational amplifier principles #1.11#10#pe1_11.sce#2075/CH1/EX1.11/pe1_11.sce#S##78267 -2#Power electronics circuit layout#2.9#1#pe2_9.sce#2075/CH2/EX2.9/pe2_9.sce#S##78270 -3#Power parameter calculation#3.1#1#pe3_1.sce#2075/CH3/EX3.1/pe3_1.sce#S##78271 -3#Power parameter calculation#3.2#2#pe3_2.sce#2075/CH3/EX3.2/pe3_2.sce#S##78275 -3#Power parameter calculation#3.3#3#pe3_3.sce#2075/CH3/EX3.3/pe3_3.sce#S##78276 -3#Power parameter calculation#3.4#4#pe3_4.sce#2075/CH3/EX3.4/pe3_4.sce#S##78277 -3#Power parameter calculation#3.5#5#pe3_5.sce#2075/CH3/EX3.5/pe3_5.sce#S##78278 -3#Power parameter calculation#3.6#6#pe3_6.sce#2075/CH3/EX3.6/pe3_6.sce#S##78279 -3#Power parameter calculation#3.7#7#pe3_7.sce#2075/CH3/EX3.7/pe3_7.sce#S##78280 -3#Power parameter calculation#3.8#8#pe3_8.sce#2075/CH3/EX3.8/pe3_8.sce#S##78281 -3#Power parameter calculation#3.9#9#pe3_9.sce#2075/CH3/EX3.9/pe3_9.sce#S##78282 -3#Power parameter calculation#3.10#10#pe3_10.sce#2075/CH3/EX3.10/pe3_10.sce#S##78283 -3#Power parameter calculation#3.11#11#pe3_11.sce#2075/CH3/EX3.11/pe3_11.sce#S##78284 -4#Linear power amplifier integrated circuits#4.1#1#pe4_1.sce#2075/CH4/EX4.1/pe4_1.sce#S##78285 -4#Linear power amplifier integrated circuits#4.2#2#pe4_2.sce#2075/CH4/EX4.2/pe4_2.sce#S##78286 -4#Linear power amplifier integrated circuits#4.3#3#pe4_3.sce#2075/CH4/EX4.3/pe4_3.sce#S##78287 -4#Linear power amplifier integrated circuits#4.4#4#pe4_4.sce#2075/CH4/EX4.4/pe4_4.sce#S##78288 -4#Linear power amplifier integrated circuits#4.5#5#pe4_5.sce#2075/CH4/EX4.5/pe4_5.sce#S##78289 -4#Linear power amplifier integrated circuits#4.6#6#pe4_6.sce#2075/CH4/EX4.6/pe4_6.sce#S##78290 -4#Linear power amplifier integrated circuits#4.7#7#pe4_7.sce#2075/CH4/EX4.7/pe4_7.sce#S##78291 -4#Linear power amplifier integrated circuits#4.8#8#pe4_8.sce#2075/CH4/EX4.8/pe4_8.sce#S##78292 -4#Linear power amplifier integrated circuits#4.9#9#pe4_9.sce#2075/CH4/EX4.9/pe4_9.sce#S##78293 -4#Linear power amplifier integrated circuits#4.10#10#pe4_10.sce#2075/CH4/EX4.10/pe4_10.sce#S##78294 -4#Linear power amplifier integrated circuits#4.11#11#pe4_11.sce#2075/CH4/EX4.11/pe4_11.sce#S##78295 -4#Linear power amplifier integrated circuits#4.12#12#pe4_12.sce#2075/CH4/EX4.12/pe4_12.sce#S##78296 -4#Linear power amplifier integrated circuits#4.13#13#pe4_13.sce#2075/CH4/EX4.13/pe4_13.sce#S##78298 -4#Linear power amplifier integrated circuits#4.14#14#pe4_14.sce#2075/CH4/EX4.14/pe4_14.sce#S##78299 -4#Linear power amplifier integrated circuits#4.15#15#pe4_15.sce#2075/CH4/EX4.15/pe4_15.sce#S##78300 -5#Discrete linear power amplifier #5.1#1#pe5_1.sce#2075/CH5/EX5.1/pe5_1.sce#S##78301 -5#Discrete linear power amplifier #5.2#2#pe5_2.sce#2075/CH5/EX5.2/pe5_2.sce#S##78302 -5#Discrete linear power amplifier #5.3#3#pe5_3.sce#2075/CH5/EX5.3/pe5_3.sce#S##78303 -5#Discrete linear power amplifier #5.5#4#pe5_5.sce#2075/CH5/EX5.5/pe5_5.sce#S##78304 -5#Discrete linear power amplifier #5.6#5#pe5_6.sce#2075/CH5/EX5.6/pe5_6.sce#S##78305 -5#Discrete linear power amplifier #5.7#6#pe5_7.sce#2075/CH5/EX5.7/pe5_7.sce#S##78307 -5#Discrete linear power amplifier #5.8#7#pe5_8.sce#2075/CH5/EX5.8/pe5_8.sce#S##78308 -5#Discrete linear power amplifier #5.9#8#pe5_8.sce#2075/CH5/EX5.9/pe5_8.sce#S##78309 -5#Discrete linear power amplifier #5.10#9#pe5_10.sce#2075/CH5/EX5.10/pe5_10.sce#S##78310 -5#Discrete linear power amplifier #5.11#10#pe5_11.sce#2075/CH5/EX5.11/pe5_11.sce#S##78311 -5#Discrete linear power amplifier #5.12#11#pe5_12.sce#2075/CH5/EX5.12/pe5_12.sce#S##78312 -5#Discrete linear power amplifier #5.13#12#pe5_13.sce#2075/CH5/EX5.13/pe5_13.sce#S##78313 -5#Discrete linear power amplifier #5.14#13#pe5_14.sce#2075/CH5/EX5.14/pe5_14.sce#S##78314 -6#Power switches#6.1#1#pe6_1.sce#2075/CH6/EX6.1/pe6_1.sce#S##96423 -6#Power switches#6.4#2#pe6_4.sce#2075/CH6/EX6.4/pe6_4.sce#S##78516 -6#Power switches#6.5#3#pe6_5.sce#2075/CH6/EX6.5/pe6_5.sce#S##78517 -6#Power switches#6.6#4#pe6_6.sce#2075/CH6/EX6.6/pe6_6.sce#S##78518 -6#Power switches#6.7#5#pe6_7.sce#2075/CH6/EX6.7/pe6_7.sce#S##78519 -6#Power switches#6.8#6#pe6_8.sce#2075/CH6/EX6.8/pe6_8.sce#S##78520 -6#Power switches#6.9#7#pe6_9.sce#2075/CH6/EX6.9/pe6_9.sce#S##78521 -6#Power switches#6.10#8#pe6_10.sce#2075/CH6/EX6.10/pe6_10.sce#S##78522 -6#Power switches#6.11#9#pe6_11.sce#2075/CH6/EX6.11/pe6_11.sce#S##78523 -7#Switching power supplies #7.1#1#pe7_1.sce#2075/CH7/EX7.1/pe7_1.sce#S##78524 -7#Switching power supplies #7.2#2#pe7_2.sce#2075/CH7/EX7.2/pe7_2.sce#S##78525 -7#Switching power supplies #7.3#3#pe7_3.sce#2075/CH7/EX7.3/pe7_3.sce#S##78526 -7#Switching power supplies #7.4#4#pe7_4.sce#2075/CH7/EX7.4/pe7_4.sce#S##78527 -7#Switching power supplies #7.5#5#pe7_5.sce#2075/CH7/EX7.5/pe7_5.sce#S##78528 -7#Switching power supplies #7.6#6#pe7_6.sce#2075/CH7/EX7.6/pe7_6.sce#S##78529 -7#Switching power supplies #7.7#7#pe7_7.sce#2075/CH7/EX7.7/pe7_7.sce#S##78530 -7#Switching power supplies #7.8#8#pe7_8.sce#2075/CH7/EX7.8/pe7_8.sce#S##78531 -8#Thyristors#8.3#1#pe8_3.sce#2075/CH8/EX8.3/pe8_3.sce#S##78532 -8#Thyristors#8.4#2#pe8_4.sce#2075/CH8/EX8.4/pe8_4.sce#S##78533 -8#Thyristors#8.5#3#pe8_5.sce#2075/CH8/EX8.5/pe8_5.sce#S##78534 -8#Thyristors#8.6#4#pe8_6.sce#2075/CH8/EX8.6/pe8_6.sce#S##78535 -8#Thyristors#8.8#5#pe8_8.sce#2075/CH8/EX8.8/pe8_8.sce#S##78536 -8#Thyristors#8.9#6#pe8_9.sce#2075/CH8/EX8.9/pe8_9.sce#S##78537 -9#Power conversion and motor drive applicaions#9.1#1#pe9_1.sce#2075/CH9/EX9.1/pe9_1.sce#S##78538 -9#Power conversion and motor drive applicaions#9.2#2#pe9_2.sce#2075/CH9/EX9.2/pe9_2.sce#S##78539 -9#Power conversion and motor drive applicaions#9.4#3#pe9_4.sce#2075/CH9/EX9.4/pe9_4.sce#S##78540 -9#Power conversion and motor drive applicaions#9.5#4#pe9_5.sce#2075/CH9/EX9.5/pe9_5.sce#S##78541 -9#Power conversion and motor drive applicaions#9.6#5#pe9_6.sce#2075/CH9/EX9.6/pe9_6.sce#S##78542 -9#Power conversion and motor drive applicaions#9.7#6#pe9_7.sce#2075/CH9/EX9.7/pe9_7.sce#S##78543 -9#Power conversion and motor drive applicaions#9.8#7#pe9_8.sce#2075/CH9/EX9.8/pe9_8.sce#S##78544 -9#Power conversion and motor drive applicaions#9.9#8#pe9_9.sce#2075/CH9/EX9.9/pe9_9.sce#S##78545 +1#Measurement#1.1#Sample Problem 1#Example1_1.sce#24/CH1/EX1.1/Example1_1.sce#S##10535 +1#Measurement#1.1#Sample Problem 1#Example1_1_result.txt#24/CH1/EX1.1/Example1_1_result.txt#R##10536 +1#Measurement#1.2#Sample Problem 2#Example1_2.sce#24/CH1/EX1.2/Example1_2.sce#S##10537 +1#Measurement#1.2#Sample Problem 2#Example1_2_result.txt#24/CH1/EX1.2/Example1_2_result.txt#R##10538 +1#Measurement#1.3#Sample Problem 3#Example1_3.sce#24/CH1/EX1.3/Example1_3.sce#S##10539 +1#Measurement#1.3#Sample Problem 3#Example1_3_result.txt#24/CH1/EX1.3/Example1_3_result.txt#R##10540 +1#Measurement#1.4#Sample Problem 4#Example1_4.sce#24/CH1/EX1.4/Example1_4.sce#S##10541 +1#Measurement#1.4#Sample Problem 4#Example1_4_result.txt#24/CH1/EX1.4/Example1_4_result.txt#R##10542 +2#Motion Along a Straight Line#2.1.a#Sample Problem 1a#Example2_1a.sce#24/CH2/EX2.1.a/Example2_1a.sce#S##10543 +2#Motion Along a Straight Line#2.1.a#Sample Problem 1a#Example2_1a_result.txt#24/CH2/EX2.1.a/Example2_1a_result.txt#R##10544 +2#Motion Along a Straight Line#2.1.b#Sample Problem 1b#Example2_1a.sce#24/DEPENDENCIES/Example2_1a.sce#D#Example 2-1a#275 +2#Motion Along a Straight Line#2.1.b#Sample Problem 1b#Example2_1b.sce#24/CH2/EX2.1.b/Example2_1b.sce#S##10545 +2#Motion Along a Straight Line#2.1.b#Sample Problem 1b#Example2_1b_result.txt#24/CH2/EX2.1.b/Example2_1b_result.txt#R##10546 +2#Motion Along a Straight Line#2.1.c#Sample Problem 1c#Example2_1a.sce#24/DEPENDENCIES/Example2_1a.sce#D#Example 2-1a#275 +2#Motion Along a Straight Line#2.1.c#Sample Problem 1c#Example2_1b.sce#24/DEPENDENCIES/Example2_1b.sce#D#Example 2-1b#276 +2#Motion Along a Straight Line#2.1.c#Sample Problem 1c#Example2_1c.sce#24/CH2/EX2.1.c/Example2_1c.sce#S##10547 +2#Motion Along a Straight Line#2.1.c#Sample Problem 1c#Example2_1c_graph.jpg#24/CH2/EX2.1.c/Example2_1c_graph.jpg#R##10548 +2#Motion Along a Straight Line#2.1.c#Sample Problem 1c#Example2_1c_result.txt#24/CH2/EX2.1.c/Example2_1c_result.txt#R##10549 +2#Motion Along a Straight Line#2.1.d#Sample Problem 1d#Example2_1a.sce#24/DEPENDENCIES/Example2_1a.sce#D#Example 2-1a#275 +2#Motion Along a Straight Line#2.1.d#Sample Problem 1d#Example2_1b.sce#24/DEPENDENCIES/Example2_1b.sce#D#Example 2-1b#276 +2#Motion Along a Straight Line#2.1.d#Sample Problem 1d#Example2_1d.sce#24/CH2/EX2.1.d/Example2_1d.sce#S##10550 +2#Motion Along a Straight Line#2.1.d#Sample Problem 1d#Example2_1d_result.txt#24/CH2/EX2.1.d/Example2_1d_result.txt#R##10551 +2#Motion Along a Straight Line#2.2#Sample Problem 2#Example2_2.sce#24/CH2/EX2.2/Example2_2.sce#S##10565 +2#Motion Along a Straight Line#2.2#Sample Problem 2#Example2_2_graph.jpg#24/CH2/EX2.2/Example2_2_graph.jpg#R##10567 +2#Motion Along a Straight Line#2.2#Sample Problem 2#Example2_2_result.txt#24/CH2/EX2.2/Example2_2_result.txt#R##10566 +2#Motion Along a Straight Line#2.3#Sample Problem 3#Example2_3.sce#24/CH2/EX2.3/Example2_3.sce#S##10555 +2#Motion Along a Straight Line#2.3#Sample Problem 3#Example2_3_result.txt#24/CH2/EX2.3/Example2_3_result.txt#R##10556 +2#Motion Along a Straight Line#2.4#Sample Problem 4#Example2_4.sce#24/CH2/EX2.4/Example2_4.sce#S##10557 +2#Motion Along a Straight Line#2.4#Sample Problem 4#Example2_4_result.txt#24/CH2/EX2.4/Example2_4_result.txt#R##10558 +2#Motion Along a Straight Line#2.5#Sample Problem 5#Example2_5.sce#24/CH2/EX2.5/Example2_5.sce#S##10559 +2#Motion Along a Straight Line#2.5#Sample Problem 5#Example2_5_result.txt#24/CH2/EX2.5/Example2_5_result.txt#R##10560 +2#Motion Along a Straight Line#2.6#Sample Problem 6#Example2_6.sce#24/CH2/EX2.6/Example2_6.sce#S##10561 +2#Motion Along a Straight Line#2.6#Sample Problem 6#Example2_6_result.txt#24/CH2/EX2.6/Example2_6_result.txt#R##10562 +2#Motion Along a Straight Line#2.7#Sample Problem 7#Example2_7.sce#24/CH2/EX2.7/Example2_7.sce#S##10563 +2#Motion Along a Straight Line#2.7#Sample Problem 7#Example2_7_result.txt#24/CH2/EX2.7/Example2_7_result.txt#R##10564 +3#Vectors#3.1#Sample Problem 1#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +3#Vectors#3.1#Sample Problem 1#Example3_1.sce#24/CH3/EX3.1/Example3_1.sce#S##10568 +3#Vectors#3.1#Sample Problem 1#Example3_1_result.txt#24/CH3/EX3.1/Example3_1_result.txt#R##10569 +3#Vectors#3.2#Sample Problem 2#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +3#Vectors#3.2#Sample Problem 2#Example3_2.sce#24/CH3/EX3.2/Example3_2.sce#S##10570 +3#Vectors#3.2#Sample Problem 2#Example3_2_result.txt#24/CH3/EX3.2/Example3_2_result.txt#R##10571 +3#Vectors#3.3#Sample Problem 3#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +3#Vectors#3.3#Sample Problem 3#Example3_3.sce#24/CH3/EX3.3/Example3_3.sce#S##10572 +3#Vectors#3.3#Sample Problem 3#Example3_3_result.txt#24/CH3/EX3.3/Example3_3_result.txt#R##10573 +3#Vectors#3.4#Sample Problem 4#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +3#Vectors#3.4#Sample Problem 4#Example3_4.sce#24/CH3/EX3.4/Example3_4.sce#S##10574 +3#Vectors#3.4#Sample Problem 4#Example3_4_result.txt#24/CH3/EX3.4/Example3_4_result.txt#R##10575 +3#Vectors#3.5#Sample Problem 5#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +3#Vectors#3.5#Sample Problem 5#Example3_5.sce#24/CH3/EX3.5/Example3_5.sce#S##10576 +3#Vectors#3.5#Sample Problem 5#Example3_5_result.txt#24/CH3/EX3.5/Example3_5_result.txt#R##10577 +3#Vectors#3.6#Sample Problem 6#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +3#Vectors#3.6#Sample Problem 6#Example3_6.sce#24/CH3/EX3.6/Example3_6.sce#S##10578 +3#Vectors#3.6#Sample Problem 6#Example3_6_result.txt#24/CH3/EX3.6/Example3_6_result.txt#R##10579 +3#Vectors#3.7#Sample Problem 7#cross_product.sci#24/DEPENDENCIES/cross_product.sci#D#Cross Product#277 +3#Vectors#3.7#Sample Problem 7#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +3#Vectors#3.7#Sample Problem 7#Example3_7.sce#24/CH3/EX3.7/Example3_7.sce#S##10580 +3#Vectors#3.7#Sample Problem 7#Example3_7_result.txt#24/CH3/EX3.7/Example3_7_result.txt#R##10581 +3#Vectors#3.8#Sample Problem 8#cross_product.sci#24/DEPENDENCIES/cross_product.sci#D#Cross Product#277 +3#Vectors#3.8#Sample Problem 8#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +3#Vectors#3.8#Sample Problem 8#Example3_8.sce#24/CH3/EX3.8/Example3_8.sce#S##10582 +3#Vectors#3.8#Sample Problem 8#Example3_8_result.txt#24/CH3/EX3.8/Example3_8_result.txt#R##10583 +4#Motion in Two and Three Dimesions#4.1#Sample Problem 1#Example4_1.sce#24/CH4/EX4.1/Example4_1.sce#S##10584 +4#Motion in Two and Three Dimesions#4.1#Sample Problem 1#Example4_1_result.txt#24/CH4/EX4.1/Example4_1_result.txt#R##10585 +4#Motion in Two and Three Dimesions#4.2.a#Sample Problem 2a#Example4_2a.sce#24/CH4/EX4.2.a/Example4_2a.sce#S##10586 +4#Motion in Two and Three Dimesions#4.2.a#Sample Problem 2a#Example4_2a_result.txt#24/CH4/EX4.2.a/Example4_2a_result.txt#R##10587 +4#Motion in Two and Three Dimesions#4.2.a#Sample Problem 2a#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +4#Motion in Two and Three Dimesions#4.2.b#Sample Problem 2b#Example4_2a.sce#24/DEPENDENCIES/Example4_2a.sce#D#Example 4-2a#278 +4#Motion in Two and Three Dimesions#4.2.b#Sample Problem 2b#Example4_2b.sce#24/CH4/EX4.2.b/Example4_2b.sce#S##10588 +4#Motion in Two and Three Dimesions#4.2.b#Sample Problem 2b#Example4_2b_graph.jpg#24/CH4/EX4.2.b/Example4_2b_graph.jpg#R##10590 +4#Motion in Two and Three Dimesions#4.2.b#Sample Problem 2b#Example4_2b_result.txt#24/CH4/EX4.2.b/Example4_2b_result.txt#R##10589 +4#Motion in Two and Three Dimesions#4.3#Sample Problem 3#Example4_2a.sce#24/DEPENDENCIES/Example4_2a.sce#D#Example 4-2a#278 +4#Motion in Two and Three Dimesions#4.3#Sample Problem 3#Example4_3.sce#24/CH4/EX4.3/Example4_3.sce#S##10591 +4#Motion in Two and Three Dimesions#4.3#Sample Problem 3#Example4_3_result.txt#24/CH4/EX4.3/Example4_3_result.txt#R##10595 +4#Motion in Two and Three Dimesions#4.4#Sample Problem 4#Example4_3.sce#24/DEPENDENCIES/Example4_3.sce#D#Example 4-3#279 +4#Motion in Two and Three Dimesions#4.4#Sample Problem 4#Example4_4.sce#24/CH4/EX4.4/Example4_4.sce#S##10593 +4#Motion in Two and Three Dimesions#4.4#Sample Problem 4#Example4_4_result.txt#24/CH4/EX4.4/Example4_4_result.txt#R##10594 +4#Motion in Two and Three Dimesions#4.5#Sample Problem 5#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +4#Motion in Two and Three Dimesions#4.5#Sample Problem 5#Example4_5.sce#24/CH4/EX4.5/Example4_5.sce#S##10596 +4#Motion in Two and Three Dimesions#4.5#Sample Problem 5#Example4_5_result.txt#24/CH4/EX4.5/Example4_5_result.txt#R##10597 +4#Motion in Two and Three Dimesions#4.6#Sample Problem 6#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +4#Motion in Two and Three Dimesions#4.6#Sample Problem 6#Example4_6.sce#24/CH4/EX4.6/Example4_6.sce#S##10598 +4#Motion in Two and Three Dimesions#4.6#Sample Problem 6#Example4_6_result.txt#24/CH4/EX4.6/Example4_6_result.txt#R##10599 +4#Motion in Two and Three Dimesions#4.7#Sample Problem 7#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +4#Motion in Two and Three Dimesions#4.7#Sample Problem 7#Example4_7.sce#24/CH4/EX4.7/Example4_7.sce#S##10600 +4#Motion in Two and Three Dimesions#4.7#Sample Problem 7#Example4_7_result.txt#24/CH4/EX4.7/Example4_7_result.txt#R##10601 +4#Motion in Two and Three Dimesions#4.8#Sample Problem 8#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +4#Motion in Two and Three Dimesions#4.8#Sample Problem 8#Example4_8.sce#24/CH4/EX4.8/Example4_8.sce#S##10602 +4#Motion in Two and Three Dimesions#4.8#Sample Problem 8#Example4_8_result.txt#24/CH4/EX4.8/Example4_8_result.txt#R##10603 +4#Motion in Two and Three Dimesions#4.9#Sample Problem 9#Example4_9.sce#24/CH4/EX4.9/Example4_9.sce#S##10604 +4#Motion in Two and Three Dimesions#4.9#Sample Problem 9#Example4_9_result.txt#24/CH4/EX4.9/Example4_9_result.txt#R##10605 +4#Motion in Two and Three Dimesions#4.10#Sample Problem 10#Example4_10.sce#24/CH4/EX4.10/Example4_10.sce#S##10606 +4#Motion in Two and Three Dimesions#4.10#Sample Problem 10#Example4_10_result.txt#24/CH4/EX4.10/Example4_10_result.txt#R##10607 +4#Motion in Two and Three Dimesions#4.11#Sample Problem 11#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +4#Motion in Two and Three Dimesions#4.11#Sample Problem 11#Example4_11.sce#24/CH4/EX4.11/Example4_11.sce#S##10608 +4#Motion in Two and Three Dimesions#4.11#Sample Problem 11#Example4_11_result.txt#24/CH4/EX4.11/Example4_11_result.txt#R##10609 +5#Force and Motion l#5.1#Sample Problem 1#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +5#Force and Motion l#5.1#Sample Problem 1#Example5_1.sce#24/CH5/EX5.1/Example5_1.sce#S##10610 +5#Force and Motion l#5.1#Sample Problem 1#Example5_1_result.txt#24/CH5/EX5.1/Example5_1_result.txt#R##10611 +5#Force and Motion l#5.2#Sample Problem 2#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +5#Force and Motion l#5.2#Sample Problem 2#Example5_2.sce#24/CH5/EX5.2/Example5_2.sce#S##10612 +5#Force and Motion l#5.2#Sample Problem 2#Example5_2_result.txt#24/CH5/EX5.2/Example5_2_result.txt#R##10613 +5#Force and Motion l#5.3#Sample Problem 3#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +5#Force and Motion l#5.3#Sample Problem 3#Example5_3.sce#24/CH5/EX5.3/Example5_3.sce#S##10614 +5#Force and Motion l#5.3#Sample Problem 3#Example5_3_result.txt#24/CH5/EX5.3/Example5_3_result.txt#R##10615 +5#Force and Motion l#5.4#Sample Problem 4#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +5#Force and Motion l#5.4#Sample Problem 4#Example5_4.sce#24/CH5/EX5.4/Example5_4.sce#S##10616 +5#Force and Motion l#5.4#Sample Problem 4#Example5_4_result.txt#24/CH5/EX5.4/Example5_4_result.txt#R##10617 +5#Force and Motion l#5.5#Sample Problem 5#Example5_5.sce#24/CH5/EX5.5/Example5_5.sce#S##10618 +5#Force and Motion l#5.5#Sample Problem 5#Example5_5_FBD.jpg#24/CH5/EX5.5/Example5_5_FBD.jpg#R##10620 +5#Force and Motion l#5.5#Sample Problem 5#Example5_5_result.txt#24/CH5/EX5.5/Example5_5_result.txt#R##10619 +5#Force and Motion l#5.6#Sample Problem 6#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +5#Force and Motion l#5.6#Sample Problem 6#Example5_6.sce#24/CH5/EX5.6/Example5_6.sce#S##10621 +5#Force and Motion l#5.6#Sample Problem 6#Example5_6_FBD.jpg#24/CH5/EX5.6/Example5_6_FBD.jpg#R##10623 +5#Force and Motion l#5.6#Sample Problem 6#Example5_6_result.txt#24/CH5/EX5.6/Example5_6_result.txt#R##10622 +5#Force and Motion l#5.7#Sample Problem 7#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +5#Force and Motion l#5.7#Sample Problem 7#Example5_7.sce#24/CH5/EX5.7/Example5_7.sce#S##10624 +5#Force and Motion l#5.7#Sample Problem 7#Example5_7_FBD.jpg#24/CH5/EX5.7/Example5_7_FBD.jpg#R##10626 +5#Force and Motion l#5.7#Sample Problem 7#Example5_7_result.txt#24/CH5/EX5.7/Example5_7_result.txt#R##10625 +5#Force and Motion l#5.8#Sample Problem 8#Example5_8.sce#24/CH5/EX5.8/Example5_8.sce#S##10627 +5#Force and Motion l#5.8#Sample Problem 8#Example5_8_FBD.jpg#24/CH5/EX5.8/Example5_8_FBD.jpg#R##10629 +5#Force and Motion l#5.8#Sample Problem 8#Example5_8_result.txt#24/CH5/EX5.8/Example5_8_result.txt#R##10628 +5#Force and Motion l#5.9#Sample Problem 9#Example5_9.sce#24/CH5/EX5.9/Example5_9.sce#S##10630 +5#Force and Motion l#5.9#Sample Problem 9#Example5_9_FBD.jpg#24/CH5/EX5.9/Example5_9_FBD.jpg#R##10631 +5#Force and Motion l#5.9#Sample Problem 9#Example5_9_result.txt#24/CH5/EX5.9/Example5_9_result.txt#R##10632 +6#Force and Motion ll#6.1#Sample Problem 1#Example6_1.sce#24/CH6/EX6.1/Example6_1.sce#S##10633 +6#Force and Motion ll#6.1#Sample Problem 1#Example6_1_result.txt#24/CH6/EX6.1/Example6_1_result.txt#R##10634 +6#Force and Motion ll#6.2#Sample Problem 2#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +6#Force and Motion ll#6.2#Sample Problem 2#Example6_2.sce#24/CH6/EX6.2/Example6_2.sce#S##10635 +6#Force and Motion ll#6.2#Sample Problem 2#Example6_2_FBD.jpg#24/CH6/EX6.2/Example6_2_FBD.jpg#R##10636 +6#Force and Motion ll#6.2#Sample Problem 2#Example6_2_result.txt#24/CH6/EX6.2/Example6_2_result.txt#R##10637 +6#Force and Motion ll#6.3#Sample Problem 3#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +6#Force and Motion ll#6.3#Sample Problem 3#Example6_3.sce#24/CH6/EX6.3/Example6_3.sce#S##10638 +6#Force and Motion ll#6.3#Sample Problem 3#Example6_3_FBD.jpg#24/CH6/EX6.3/Example6_3_FBD.jpg#R##10639 +6#Force and Motion ll#6.3#Sample Problem 3#Example6_3_result.txt#24/CH6/EX6.3/Example6_3_result.txt#R##10640 +6#Force and Motion ll#6.4#Sample Problem 4#Example6_4.sce#24/CH6/EX6.4/Example6_4.sce#S##10641 +6#Force and Motion ll#6.4#Sample Problem 4#Example6_4_result.txt#24/CH6/EX6.4/Example6_4_result.txt#R##10642 +6#Force and Motion ll#6.5#Sample Problem 5#Example6_5.sce#24/CH6/EX6.5/Example6_5.sce#S##10643 +6#Force and Motion ll#6.5#Sample Problem 5#Example6_5_result.txt#24/CH6/EX6.5/Example6_5_result.txt#R##10644 +6#Force and Motion ll#6.6#Sample Problem 6#Example6_6.sce#24/CH6/EX6.6/Example6_6.sce#S##10645 +6#Force and Motion ll#6.6#Sample Problem 6#Example6_6_result.txt#24/CH6/EX6.6/Example6_6_result.txt#R##10646 +6#Force and Motion ll#6.7#Sample Problem 7#Example6_7.sce#24/CH6/EX6.7/Example6_7.sce#S##10647 +6#Force and Motion ll#6.7#Sample Problem 7#Example6_7_result.txt#24/CH6/EX6.7/Example6_7_result.txt#R##10648 +6#Force and Motion ll#6.8#Sample Problem 8#Example6_8.sce#24/CH6/EX6.8/Example6_8.sce#S##10649 +6#Force and Motion ll#6.8#Sample Problem 8#Example6_8_FBD.jpg#24/CH6/EX6.8/Example6_8_FBD.jpg#R##10650 +6#Force and Motion ll#6.8#Sample Problem 8#Example6_8_result.txt#24/CH6/EX6.8/Example6_8_result.txt#R##10651 +6#Force and Motion ll#6.9#Sample Problem 9#Example6_9.sce#24/CH6/EX6.9/Example6_9.sce#S##10652 +6#Force and Motion ll#6.9#Sample Problem 9#Example6_9_FBD.jpg#24/CH6/EX6.9/Example6_9_FBD.jpg#R##10653 +6#Force and Motion ll#6.9#Sample Problem 9#Example6_9_result.txt#24/CH6/EX6.9/Example6_9_result.txt#R##10654 +7#Kinetic Energy and Work#7.1#Sample Problem 1#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +7#Kinetic Energy and Work#7.1#Sample Problem 1#Example7_1.sce#24/CH7/EX7.1/Example7_1.sce#S##10655 +7#Kinetic Energy and Work#7.1#Sample Problem 1#Example7_1_result.txt#24/CH7/EX7.1/Example7_1_result.txt#R##10656 +7#Kinetic Energy and Work#7.2#Sample Problem 2#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +7#Kinetic Energy and Work#7.2#Sample Problem 2#Example7_2.sce#24/CH7/EX7.2/Example7_2.sce#S##10657 +7#Kinetic Energy and Work#7.2#Sample Problem 2#Example7_2_result.txt#24/CH7/EX7.2/Example7_2_result.txt#R##10658 +7#Kinetic Energy and Work#7.3#Sample Problem 3#Example7_3.sce#24/CH7/EX7.3/Example7_3.sce#S##10659 +7#Kinetic Energy and Work#7.3#Sample Problem 3#Example7_3_result.txt#24/CH7/EX7.3/Example7_3_result.txt#R##10660 +7#Kinetic Energy and Work#7.4#Sample Problem 4#Example7_4.sce#24/CH7/EX7.4/Example7_4.sce#S##10661 +7#Kinetic Energy and Work#7.4#Sample Problem 4#Example7_4_result.txt#24/CH7/EX7.4/Example7_4_result.txt#R##10662 +7#Kinetic Energy and Work#7.5#Sample Problem 5#Example7_5.sce#24/CH7/EX7.5/Example7_5.sce#S##10663 +7#Kinetic Energy and Work#7.5#Sample Problem 5#Example7_5_result.txt#24/CH7/EX7.5/Example7_5_result.txt#R##10664 +7#Kinetic Energy and Work#7.6#Sample Problem 6#Example7_6.sce#24/CH7/EX7.6/Example7_6.sce#S##10665 +7#Kinetic Energy and Work#7.6#Sample Problem 6#Example7_6_FBD.jpg#24/CH7/EX7.6/Example7_6_FBD.jpg#R##10666 +7#Kinetic Energy and Work#7.6#Sample Problem 6#Example7_6_result.txt#24/CH7/EX7.6/Example7_6_result.txt#R##10667 +7#Kinetic Energy and Work#7.7#Sample Problem 7#Example7_7.sce#24/CH7/EX7.7/Example7_7.sce#S##10668 +7#Kinetic Energy and Work#7.7#Sample Problem 7#Example7_7_result.txt#24/CH7/EX7.7/Example7_7_result.txt#R##10669 +7#Kinetic Energy and Work#7.8#Sample Problem 8#Example7_8.sce#24/CH7/EX7.8/Example7_8.sce#S##10670 +7#Kinetic Energy and Work#7.8#Sample Problem 8#Example7_8_result.txt#24/CH7/EX7.8/Example7_8_result.txt#R##10671 +7#Kinetic Energy and Work#7.9#Sample Problem 9#Example7_9.sce#24/CH7/EX7.9/Example7_9.sce#S##10672 +7#Kinetic Energy and Work#7.9#Sample Problem 9#Example7_9_result.txt#24/CH7/EX7.9/Example7_9_result.txt#R##10673 +7#Kinetic Energy and Work#7.10#Sample Problem 10#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +7#Kinetic Energy and Work#7.10#Sample Problem 10#Example7_10.sce#24/CH7/EX7.10/Example7_10.sce#S##10674 +7#Kinetic Energy and Work#7.10#Sample Problem 10#Example7_10_result.txt#24/CH7/EX7.10/Example7_10_result.txt#R##10675 +8#Potential and Conservation of Energy#8.1#Sample Problem 1#Example8_1.sce#24/CH8/EX8.1/Example8_1.sce#S##10676 +8#Potential and Conservation of Energy#8.1#Sample Problem 1#Example8_1_result.txt#24/CH8/EX8.1/Example8_1_result.txt#R##10677 +8#Potential and Conservation of Energy#8.2#Sample Problem 2#Example8_2.sce#24/CH8/EX8.2/Example8_2.sce#S##10678 +8#Potential and Conservation of Energy#8.2#Sample Problem 2#Example8_2_result.txt#24/CH8/EX8.2/Example8_2_result.txt#R##10679 +8#Potential and Conservation of Energy#8.3#Sample Problem 3#Example8_3.sce#24/CH8/EX8.3/Example8_3.sce#S##10680 +8#Potential and Conservation of Energy#8.3#Sample Problem 3#Example8_3_result.txt#24/CH8/EX8.3/Example8_3_result.txt#R##10681 +8#Potential and Conservation of Energy#8.4#Sample Problem 4#Example8_4.sce#24/CH8/EX8.4/Example8_4.sce#S##10682 +8#Potential and Conservation of Energy#8.4#Sample Problem 4#Example8_4_result.txt#24/CH8/EX8.4/Example8_4_result.txt#R##10683 +8#Potential and Conservation of Energy#8.5#Sample Problem 5#Example8_5.sce#24/CH8/EX8.5/Example8_5.sce#S##10684 +8#Potential and Conservation of Energy#8.5#Sample Problem 5#Example8_5_result.txt#24/CH8/EX8.5/Example8_5_result.txt#R##10685 +8#Potential and Conservation of Energy#8.6#Sample Problem 6#Example8_6.sce#24/CH8/EX8.6/Example8_6.sce#S##10686 +8#Potential and Conservation of Energy#8.6#Sample Problem 6#Example8_6_result.txt#24/CH8/EX8.6/Example8_6_result.txt#R##10687 +8#Potential and Conservation of Energy#8.7#Sample Problem 7#Example8_7.sce#24/CH8/EX8.7/Example8_7.sce#S##10688 +8#Potential and Conservation of Energy#8.7#Sample Problem 7#Example8_7_result.txt#24/CH8/EX8.7/Example8_7_result.txt#R##10689 +8#Potential and Conservation of Energy#8.8#Sample Problem 8#Example8_8.sce#24/CH8/EX8.8/Example8_8.sce#S##10690 +8#Potential and Conservation of Energy#8.8#Sample Problem 8#Example8_8_result.txt#24/CH8/EX8.8/Example8_8_result.txt#R##10691 +9#System of Particles#9.1#Sample Problem 1#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +9#System of Particles#9.1#Sample Problem 1#Example9_1.sce#24/CH9/EX9.1/Example9_1.sce#S##10692 +9#System of Particles#9.1#Sample Problem 1#Example9_1_figure.jpg#24/CH9/EX9.1/Example9_1_figure.jpg#R##10693 +9#System of Particles#9.1#Sample Problem 1#Example9_1_result.txt#24/CH9/EX9.1/Example9_1_result.txt#R##10694 +9#System of Particles#9.2#Sample Problem 2#Example9_2.sce#24/CH9/EX9.2/Example9_2.sce#S##10695 +9#System of Particles#9.2#Sample Problem 2#Example9_2_result.txt#24/CH9/EX9.2/Example9_2_result.txt#R##10696 +9#System of Particles#9.3#Sample Problem 3#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +9#System of Particles#9.3#Sample Problem 3#Example9_3.sce#24/CH9/EX9.3/Example9_3.sce#S##10697 +9#System of Particles#9.3#Sample Problem 3#Example9_3_result.txt#24/CH9/EX9.3/Example9_3_result.txt#R##10698 +9#System of Particles#9.4#Sample Problem 4#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +9#System of Particles#9.4#Sample Problem 4#Example9_4.sce#24/CH9/EX9.4/Example9_4.sce#S##10699 +9#System of Particles#9.4#Sample Problem 4#Example9_4_result.txt#24/CH9/EX9.4/Example9_4_result.txt#R##10700 +9#System of Particles#9.5#Sample Problem 5#Example9_5.sce#24/CH9/EX9.5/Example9_5.sce#S##10701 +9#System of Particles#9.5#Sample Problem 5#Example9_5_result.txt#24/CH9/EX9.5/Example9_5_result.txt#R##10702 +9#System of Particles#9.6#Sample Problem 6#Example9_6.sce#24/CH9/EX9.6/Example9_6.sce#S##10703 +9#System of Particles#9.6#Sample Problem 6#Example9_6_result.txt#24/CH9/EX9.6/Example9_6_result.txt#R##10704 +9#System of Particles#9.7#Sample Problem 7#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +9#System of Particles#9.7#Sample Problem 7#Example9_7.sce#24/CH9/EX9.7/Example9_7.sce#S##10705 +9#System of Particles#9.7#Sample Problem 7#Example9_7_result.txt#24/CH9/EX9.7/Example9_7_result.txt#R##10706 +9#System of Particles#9.8#Sample Problem 8#Example9_8.sce#24/CH9/EX9.8/Example9_8.sce#S##10707 +9#System of Particles#9.8#Sample Problem 8#Example9_8_result.txt#24/CH9/EX9.8/Example9_8_result.txt#R##10708 +9#System of Particles#9.9#Sample Problem 9#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +9#System of Particles#9.9#Sample Problem 9#Example9_9.sce#24/CH9/EX9.9/Example9_9.sce#S##10709 +9#System of Particles#9.9#Sample Problem 9#Example9_9_result.txt#24/CH9/EX9.9/Example9_9_result.txt#R##10710 +10#Collisions#10.1#Sample Problem 1#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +10#Collisions#10.1#Sample Problem 1#Example10_1.sce#24/CH10/EX10.1/Example10_1.sce#S##10733 +10#Collisions#10.1#Sample Problem 1#Example10_1_result.txt#24/CH10/EX10.1/Example10_1_result.txt#R##10734 +10#Collisions#10.2#Sample Problem 2#Example10_2.sce#24/CH10/EX10.2/Example10_2.sce#S##10735 +10#Collisions#10.2#Sample Problem 2#Example10_2_result.txt#24/CH10/EX10.2/Example10_2_result.txt#R##10736 +10#Collisions#10.3#Sample Problem 3#Example10_3.sce#24/CH10/EX10.3/Example10_3.sce#S##10737 +10#Collisions#10.3#Sample Problem 3#Example10_3_result.txt#24/CH10/EX10.3/Example10_3_result.txt#R##10738 +10#Collisions#10.4#Sample Problem 4#collision.sci#24/DEPENDENCIES/collision.sci#D#collision#280 +10#Collisions#10.4#Sample Problem 4#Example10_4.sce#24/CH10/EX10.4/Example10_4.sce#S##10739 +10#Collisions#10.4#Sample Problem 4#Example10_4_result.txt#24/CH10/EX10.4/Example10_4_result.txt#R##10740 +10#Collisions#10.5#Sample Problem 5#Example10_5.sce#24/CH10/EX10.5/Example10_5.sce#S##10741 +10#Collisions#10.5#Sample Problem 5#Example10_5_result.txt#24/CH10/EX10.5/Example10_5_result.txt#R##10742 +11#Rotation#11.1#Sample Problem 1#Example11_1.sce#24/CH11/EX11.1/Example11_1.sce#S##10743 +11#Rotation#11.1#Sample Problem 1#Example11_1_graph.jpg#24/CH11/EX11.1/Example11_1_graph.jpg#R##10745 +11#Rotation#11.1#Sample Problem 1#Example11_1_result.txt#24/CH11/EX11.1/Example11_1_result.txt#R##10744 +11#Rotation#11.2#Sample Problem 2#Example11_2.sce#24/CH11/EX11.2/Example11_2.sce#S##10746 +11#Rotation#11.2#Sample Problem 2#Example11_2_result.txt#24/CH11/EX11.2/Example11_2_result.txt#R##10747 +11#Rotation#11.3#Sample Problem 3#Example11_3.sce#24/CH11/EX11.3/Example11_3.sce#S##10748 +11#Rotation#11.3#Sample Problem 3#Example11_3_result.txt#24/CH11/EX11.3/Example11_3_result.txt#R##10749 +11#Rotation#11.4#Sample Problem 4#Example11_4.sce#24/CH11/EX11.4/Example11_4.sce#S##10750 +11#Rotation#11.4#Sample Problem 4#Example11_4_result.txt#24/CH11/EX11.4/Example11_4_result.txt#R##10751 +11#Rotation#11.6#Sample Problem 6#Example11_6.sce#24/CH11/EX11.6/Example11_6.sce#S##10752 +11#Rotation#11.6#Sample Problem 6#Example11_6_result.txt#24/CH11/EX11.6/Example11_6_result.txt#R##10753 +11#Rotation#11.7#Sample Problem 7#Example11_7.sce#24/CH11/EX11.7/Example11_7.sce#S##10754 +11#Rotation#11.7#Sample Problem 7#Example11_7_FBD.jpg#24/CH11/EX11.7/Example11_7_FBD.jpg#R##10755 +11#Rotation#11.7#Sample Problem 7#Example11_7_result.txt#24/CH11/EX11.7/Example11_7_result.txt#R##10756 +11#Rotation#11.8#Sample Problem 8#Example11_8.sce#24/CH11/EX11.8/Example11_8.sce#S##10757 +11#Rotation#11.8#Sample Problem 8#Example11_8_result.txt#24/CH11/EX11.8/Example11_8_result.txt#R##10758 +11#Rotation#11.9#Sample Problem 9#Example11_7.sce#24/DEPENDENCIES/Example11_7.sce#D#Example 11-7#281 +11#Rotation#11.9#Sample Problem 9#Example11_9.sce#24/CH11/EX11.9/Example11_9.sce#S##10759 +11#Rotation#11.9#Sample Problem 9#Example11_9_result.txt#24/CH11/EX11.9/Example11_9_result.txt#R##10760 +11#Rotation#11.10#Sample Problem 10#Example11_10.sce#24/CH11/EX11.10/Example11_10.sce#S##10761 +11#Rotation#11.10#Sample Problem 10#Example11_10_result.txt#24/CH11/EX11.10/Example11_10_result.txt#R##10762 +12#Rolling Torque and Angular Momentum#12.1#Sample Problem 1#Example12_1.sce#24/CH12/EX12.1/Example12_1.sce#S##10799 +12#Rolling Torque and Angular Momentum#12.1#Sample Problem 1#Example12_1_result.txt#24/CH12/EX12.1/Example12_1_result.txt#R##10800 +12#Rolling Torque and Angular Momentum#12.2#Sample Problem 2#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +12#Rolling Torque and Angular Momentum#12.2#Sample Problem 2#Example12_2.sce#24/CH12/EX12.2/Example12_2.sce#S##10801 +12#Rolling Torque and Angular Momentum#12.2#Sample Problem 2#Example12_2_result.txt#24/CH12/EX12.2/Example12_2_result.txt#R##10802 +12#Rolling Torque and Angular Momentum#12.3#Sample Problem 3#cross_product.sci#24/DEPENDENCIES/cross_product.sci#D#Cross Product#277 +12#Rolling Torque and Angular Momentum#12.3#Sample Problem 3#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +12#Rolling Torque and Angular Momentum#12.3#Sample Problem 3#Example12_3.sce#24/CH12/EX12.3/Example12_3.sce#S##10803 +12#Rolling Torque and Angular Momentum#12.3#Sample Problem 3#Example12_3_result.txt#24/CH12/EX12.3/Example12_3_result.txt#R##10804 +12#Rolling Torque and Angular Momentum#12.4#Sample Problem 4#Example12_4.sce#24/CH12/EX12.4/Example12_4.sce#S##10805 +12#Rolling Torque and Angular Momentum#12.4#Sample Problem 4#Example12_4_result.txt#24/CH12/EX12.4/Example12_4_result.txt#R##10806 +12#Rolling Torque and Angular Momentum#12.6#Sample Problem 6#Example12_6.sce#24/CH12/EX12.6/Example12_6.sce#S##10807 +12#Rolling Torque and Angular Momentum#12.6#Sample Problem 6#Example12_6_result.txt#24/CH12/EX12.6/Example12_6_result.txt#R##10808 +12#Rolling Torque and Angular Momentum#12.7#Sample Problem 7#Example12_7.sce#24/CH12/EX12.7/Example12_7.sce#S##10809 +12#Rolling Torque and Angular Momentum#12.7#Sample Problem 7#Example12_7_result.txt#24/CH12/EX12.7/Example12_7_result.txt#R##10810 +12#Rolling Torque and Angular Momentum#12.8#Sample Problem 8#Example12_8.sce#24/CH12/EX12.8/Example12_8.sce#S##10811 +12#Rolling Torque and Angular Momentum#12.8#Sample Problem 8#Example12_8_result.txt#24/CH12/EX12.8/Example12_8_result.txt#R##10812 +12#Rolling Torque and Angular Momentum#12.9#Sample Problem 9#Example12_9.sce#24/CH12/EX12.9/Example12_9.sce#S##10813 +12#Rolling Torque and Angular Momentum#12.9#Sample Problem 9#Example12_9_result.txt#24/CH12/EX12.9/Example12_9_result.txt#R##10814 +13#Equilibrium and Elasticity#13.1#Sample Problem 1#Example13_1.sce#24/CH13/EX13.1/Example13_1.sce#S##10815 +13#Equilibrium and Elasticity#13.1#Sample Problem 1#Example13_1_FBD.jpg#24/CH13/EX13.1/Example13_1_FBD.jpg#R##10816 +13#Equilibrium and Elasticity#13.1#Sample Problem 1#Example13_1_result.txt#24/CH13/EX13.1/Example13_1_result.txt#R##10817 +13#Equilibrium and Elasticity#13.2#Sample Problem 2#Example13_2.sce#24/CH13/EX13.2/Example13_2.sce#S##10818 +13#Equilibrium and Elasticity#13.2#Sample Problem 2#Example13_2_FBD.jpg#24/CH13/EX13.2/Example13_2_FBD.jpg#R##10819 +13#Equilibrium and Elasticity#13.2#Sample Problem 2#Example13_2_result.txt#24/CH13/EX13.2/Example13_2_result.txt#R##10820 +13#Equilibrium and Elasticity#13.3#Sample Problem 3#Example13_3.sce#24/CH13/EX13.3/Example13_3.sce#S##10821 +13#Equilibrium and Elasticity#13.3#Sample Problem 3#Example13_3_FBD.jpg#24/CH13/EX13.3/Example13_3_FBD.jpg#R##10822 +13#Equilibrium and Elasticity#13.3#Sample Problem 3#Example13_3_result.txt#24/CH13/EX13.3/Example13_3_result.txt#R##10823 +13#Equilibrium and Elasticity#13.4#Sample Problem 4#Example13_4.sce#24/CH13/EX13.4/Example13_4.sce#S##10824 +13#Equilibrium and Elasticity#13.4#Sample Problem 4#Example13_4_FBD.jpg#24/CH13/EX13.4/Example13_4_FBD.jpg#R##10825 +13#Equilibrium and Elasticity#13.4#Sample Problem 4#Example13_4_result.txt#24/CH13/EX13.4/Example13_4_result.txt#R##10826 +13#Equilibrium and Elasticity#13.5#Sample Problem 5#Example13_5.sce#24/CH13/EX13.5/Example13_5.sce#S##10827 +13#Equilibrium and Elasticity#13.5#Sample Problem 5#Example13_5_result.txt#24/CH13/EX13.5/Example13_5_result.txt#R##10828 +13#Equilibrium and Elasticity#13.6#Sample Problem 6#Example13_6.sce#24/CH13/EX13.6/Example13_6.sce#S##10829 +13#Equilibrium and Elasticity#13.6#Sample Problem 6#Example13_6_result.txt#24/CH13/EX13.6/Example13_6_result.txt#R##10830 +14#Gravitation#14.1#Sample Problem 1#Gravitation.sci#24/DEPENDENCIES/Gravitation.sci#D#gravitation#273 +14#Gravitation#14.1#Sample Problem 1#Example14_1.sce#24/CH14/EX14.1/Example14_1.sce#S##10831 +14#Gravitation#14.1#Sample Problem 1#Example14_1_result.txt#24/CH14/EX14.1/Example14_1_result.txt#R##10832 +14#Gravitation#14.2#Sample Problem 2#Gravitation.sci#24/DEPENDENCIES/Gravitation.sci#D#gravitation#273 +14#Gravitation#14.2#Sample Problem 2#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +14#Gravitation#14.2#Sample Problem 2#Example14_2.sce#24/CH14/EX14.2/Example14_2.sce#S##10833 +14#Gravitation#14.2#Sample Problem 2#Example14_2_result.txt#24/CH14/EX14.2/Example14_2_result.txt#R##10834 +14#Gravitation#14.3.a#Sample Problem 3a#Example14_3a.sce#24/CH14/EX14.3.a/Example14_3a.sce#S##10835 +14#Gravitation#14.3.a#Sample Problem 3a#Example14_3a_result.txt#24/CH14/EX14.3.a/Example14_3a_result.txt#R##10836 +14#Gravitation#14.3.a#Sample Problem 3a#Gravitation.sci#24/DEPENDENCIES/Gravitation.sci#D#gravitation#273 +14#Gravitation#14.3.b#Sample Problem 3b#Example14_3b.sce#24/CH14/EX14.3.b/Example14_3b.sce#S##10837 +14#Gravitation#14.3.b#Sample Problem 3b#Example14_3b_result.txt#24/CH14/EX14.3.b/Example14_3b_result.txt#R##10838 +14#Gravitation#14.3.b#Sample Problem 3b#Gravitation.sci#24/DEPENDENCIES/Gravitation.sci#D#gravitation#273 +14#Gravitation#14.5#Sample Problem 5#Gravitation.sci#24/DEPENDENCIES/Gravitation.sci#D#gravitation#273 +14#Gravitation#14.5#Sample Problem 5#Example14_5.sce#24/CH14/EX14.5/Example14_5.sce#S##10839 +14#Gravitation#14.5#Sample Problem 5#Example14_5_result.txt#24/CH14/EX14.5/Example14_5_result.txt#R##10840 +14#Gravitation#14.6#Sample Problem 6#Gravitation.sci#24/DEPENDENCIES/Gravitation.sci#D#gravitation#273 +14#Gravitation#14.6#Sample Problem 6#Example14_6.sce#24/CH14/EX14.6/Example14_6.sce#S##10841 +14#Gravitation#14.6#Sample Problem 6#Example14_6_result.txt#24/CH14/EX14.6/Example14_6_result.txt#R##10842 +14#Gravitation#14.7#Sample Problem 7#Gravitation.sci#24/DEPENDENCIES/Gravitation.sci#D#gravitation#273 +14#Gravitation#14.7#Sample Problem 7#Example14_7.sce#24/CH14/EX14.7/Example14_7.sce#S##10843 +14#Gravitation#14.7#Sample Problem 7#Example14_7_result.txt#24/CH14/EX14.7/Example14_7_result.txt#R##10844 +14#Gravitation#14.8#Sample Problem 8#Gravitation.sci#24/DEPENDENCIES/Gravitation.sci#D#gravitation#273 +14#Gravitation#14.8#Sample Problem 8#Example14_8.sce#24/CH14/EX14.8/Example14_8.sce#S##10845 +14#Gravitation#14.8#Sample Problem 8#Example14_8_result.txt#24/CH14/EX14.8/Example14_8_result.txt#R##10846 +15#Fluids#15.1#Sample Problem 1#Example15_1.sce#24/CH15/EX15.1/Example15_1.sce#S##10847 +15#Fluids#15.1#Sample Problem 1#Example15_1_result.txt#24/CH15/EX15.1/Example15_1_result.txt#R##10848 +15#Fluids#15.2#Sample Problem 2#Example15_2.sce#24/CH15/EX15.2/Example15_2.sce#S##10849 +15#Fluids#15.2#Sample Problem 2#Example15_2_result.txt#24/CH15/EX15.2/Example15_2_result.txt#R##10850 +15#Fluids#15.3#Sample Problem 3#Example15_3.sce#24/CH15/EX15.3/Example15_3.sce#S##10851 +15#Fluids#15.3#Sample Problem 3#Example15_3_result.txt#24/CH15/EX15.3/Example15_3_result.txt#R##10852 +15#Fluids#15.4#Sample Problem 4#Example15_4.sce#24/CH15/EX15.4/Example15_4.sce#S##10853 +15#Fluids#15.4#Sample Problem 4#Example15_4_result.txt#24/CH15/EX15.4/Example15_4_result.txt#R##10854 +15#Fluids#15.5#Sample Problem 5#Example15_5.sce#24/CH15/EX15.5/Example15_5.sce#S##10855 +15#Fluids#15.5#Sample Problem 5#Example15_5_result.txt#24/CH15/EX15.5/Example15_5_result.txt#R##10856 +15#Fluids#15.6#Sample Problem 6#Example15_6.sce#24/CH15/EX15.6/Example15_6.sce#S##10857 +15#Fluids#15.6#Sample Problem 6#Example15_6_result.txt#24/CH15/EX15.6/Example15_6_result.txt#R##10858 +15#Fluids#15.7#Sample Problem 7#Bernauli.sci#24/DEPENDENCIES/Bernauli.sci#D#Bernauli's Equation#282 +15#Fluids#15.7#Sample Problem 7#Example15_7.sce#24/CH15/EX15.7/Example15_7.sce#S##10859 +15#Fluids#15.7#Sample Problem 7#Example15_7_result.txt#24/CH15/EX15.7/Example15_7_result.txt#R##10860 +15#Fluids#15.8#Sample Problem 8#Bernauli.sci#24/DEPENDENCIES/Bernauli.sci#D#Bernauli's Equation#282 +15#Fluids#15.8#Sample Problem 8#Example15_8.sce#24/CH15/EX15.8/Example15_8.sce#S##10861 +15#Fluids#15.8#Sample Problem 8#Example15_8_result.txt#24/CH15/EX15.8/Example15_8_result.txt#R##10862 +16#Oscillation#16.1#Sample Problem 1#Example16_1.sce#24/CH16/EX16.1/Example16_1.sce#S##10867 +16#Oscillation#16.1#Sample Problem 1#Example16_1_result.txt#24/CH16/EX16.1/Example16_1_result.txt#R##10868 +16#Oscillation#16.2#Sample Problem 2#Example16_2.sce#24/CH16/EX16.2/Example16_2.sce#S##10869 +16#Oscillation#16.2#Sample Problem 2#Example16_2_result.txt#24/CH16/EX16.2/Example16_2_result.txt#R##10870 +16#Oscillation#16.3#Sample Problem 3#Example16_3.sce#24/CH16/EX16.3/Example16_3.sce#S##10871 +16#Oscillation#16.3#Sample Problem 3#Example16_3_result.txt#24/CH16/EX16.3/Example16_3_result.txt#R##10872 +16#Oscillation#16.4#Sample Problem 4#Example16_4.sce#24/CH16/EX16.4/Example16_4.sce#S##10873 +16#Oscillation#16.4#Sample Problem 4#Example16_4_result.txt#24/CH16/EX16.4/Example16_4_result.txt#R##10874 +16#Oscillation#16.5#Sample Problem 5#Example16_5.sce#24/CH16/EX16.5/Example16_5.sce#S##10875 +16#Oscillation#16.5#Sample Problem 5#Example16_5_result.txt#24/CH16/EX16.5/Example16_5_result.txt#R##10876 +16#Oscillation#16.6#Sample Problem 6#Example16_6.sce#24/CH16/EX16.6/Example16_6.sce#S##10877 +16#Oscillation#16.6#Sample Problem 6#Example16_6_FBD.JPG#24/CH16/EX16.6/Example16_6_FBD.JPG#R##10878 +16#Oscillation#16.6#Sample Problem 6#Example16_6_result.txt#24/CH16/EX16.6/Example16_6_result.txt#R##10879 +16#Oscillation#16.7#Sample Problem 7#Example16_7.sce#24/CH16/EX16.7/Example16_7.sce#S##10880 +16#Oscillation#16.7#Sample Problem 7#Example16_7_result.txt#24/CH16/EX16.7/Example16_7_result.txt#R##10881 +17#Waves l#17.1#Sample Problem 1#Example17_1.sce#24/CH17/EX17.1/Example17_1.sce#S##10886 +17#Waves l#17.1#Sample Problem 1#Example17_1_result.txt#24/CH17/EX17.1/Example17_1_result.txt#R##10887 +17#Waves l#17.2#Sample Problem 2#Example17_1.sce#24/DEPENDENCIES/Example17_1.sce#D#Example 17-1#283 +17#Waves l#17.2#Sample Problem 2#Example17_2.sce#24/CH17/EX17.2/Example17_2.sce#S##10884 +17#Waves l#17.2#Sample Problem 2#Example17_2_result.txt#24/CH17/EX17.2/Example17_2_result.txt#R##10885 +17#Waves l#17.3#Sample Problem 3#Example17_3.sce#24/CH17/EX17.3/Example17_3.sce#S##10888 +17#Waves l#17.3#Sample Problem 3#Example17_3_result.txt#24/CH17/EX17.3/Example17_3_result.txt#R##10889 +17#Waves l#17.4#Sample Problem 4#Example17_4.sce#24/CH17/EX17.4/Example17_4.sce#S##10890 +17#Waves l#17.4#Sample Problem 4#Example17_4_result.txt#24/CH17/EX17.4/Example17_4_result.txt#R##10891 +17#Waves l#17.5#Sample Problem 5#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +17#Waves l#17.5#Sample Problem 5#Example17_5.sce#24/CH17/EX17.5/Example17_5.sce#S##10882 +17#Waves l#17.5#Sample Problem 5#Example17_5_result.txt#24/CH17/EX17.5/Example17_5_result.txt#R##10883 +17#Waves l#17.6#Sample Problem 6#Example17_6.sce#24/CH17/EX17.6/Example17_6.sce#S##10892 +17#Waves l#17.6#Sample Problem 6#Example17_6_result.txt#24/CH17/EX17.6/Example17_6_result.txt#R##10893 +17#Waves l#17.7#Sample Problem 7#Example17_7.sce#24/CH17/EX17.7/Example17_7.sce#S##10894 +17#Waves l#17.7#Sample Problem 7#Example17_7_result.txt#24/CH17/EX17.7/Example17_7_result.txt#R##10895 +18#Waves ll#18.1#Sample Problem 1#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +18#Waves ll#18.1#Sample Problem 1#Example18_1.sce#24/CH18/EX18.1/Example18_1.sce#S##10896 +18#Waves ll#18.1#Sample Problem 1#Example18_1_result.txt#24/CH18/EX18.1/Example18_1_result.txt#R##10897 +18#Waves ll#18.2#Sample Problem 2#Example18_2.sce#24/CH18/EX18.2/Example18_2.sce#S##10898 +18#Waves ll#18.2#Sample Problem 2#Example18_2_result.txt#24/CH18/EX18.2/Example18_2_result.txt#R##10899 +18#Waves ll#18.3#Sample Problem 3#Example18_3.sce#24/CH18/EX18.3/Example18_3.sce#S##10900 +18#Waves ll#18.3#Sample Problem 3#Example18_3_result.txt#24/CH18/EX18.3/Example18_3_result.txt#R##10901 +18#Waves ll#18.4#Sample Problem 4#Example18_4.sce#24/CH18/EX18.4/Example18_4.sce#S##10902 +18#Waves ll#18.4#Sample Problem 4#Example18_4_result.txt#24/CH18/EX18.4/Example18_4_result.txt#R##10903 +18#Waves ll#18.5#Sample Problem 5#Example18_5.sce#24/CH18/EX18.5/Example18_5.sce#S##10904 +18#Waves ll#18.5#Sample Problem 5#Example18_5_result.txt#24/CH18/EX18.5/Example18_5_result.txt#R##10905 +18#Waves ll#18.6#Sample Problem 6#Example18_6.sce#24/CH18/EX18.6/Example18_6.sce#S##10906 +18#Waves ll#18.6#Sample Problem 6#Example18_6_result.txt#24/CH18/EX18.6/Example18_6_result.txt#R##10907 +18#Waves ll#18.8#Sample Problem 8#Example18_8.sce#24/CH18/EX18.8/Example18_8.sce#S##10908 +18#Waves ll#18.8#Sample Problem 8#Example18_8_result.txt#24/CH18/EX18.8/Example18_8_result.txt#R##10909 +19#Temprature Heat and the First Law of Thermodynamic#19.1#Sample Problem 1#Example19_1.sce#24/CH19/EX19.1/Example19_1.sce#S##10910 +19#Temprature Heat and the First Law of Thermodynamic#19.1#Sample Problem 1#Example19_1_result.txt#24/CH19/EX19.1/Example19_1_result.txt#R##10911 +19#Temprature Heat and the First Law of Thermodynamic#19.2#Sample Problem 2#Example19_2.sce#24/CH19/EX19.2/Example19_2.sce#S##10912 +19#Temprature Heat and the First Law of Thermodynamic#19.2#Sample Problem 2#Example19_2_result.txt#24/CH19/EX19.2/Example19_2_result.txt#R##10913 +19#Temprature Heat and the First Law of Thermodynamic#19.3#Sample Problem 3#Example19_3.sce#24/CH19/EX19.3/Example19_3.sce#S##10914 +19#Temprature Heat and the First Law of Thermodynamic#19.3#Sample Problem 3#Example19_3_result.txt#24/CH19/EX19.3/Example19_3_result.txt#R##10915 +19#Temprature Heat and the First Law of Thermodynamic#19.4#Sample Problem 4#Example19_4.sce#24/CH19/EX19.4/Example19_4.sce#S##10916 +19#Temprature Heat and the First Law of Thermodynamic#19.4#Sample Problem 4#Example19_4_result.txt#24/CH19/EX19.4/Example19_4_result.txt#R##10917 +19#Temprature Heat and the First Law of Thermodynamic#19.5#Sample Problem 5#Example19_5.sce#24/CH19/EX19.5/Example19_5.sce#S##10918 +19#Temprature Heat and the First Law of Thermodynamic#19.5#Sample Problem 5#Example19_5_result.txt#24/CH19/EX19.5/Example19_5_result.txt#R##10919 +19#Temprature Heat and the First Law of Thermodynamic#19.6#Sample Problem 6#Example19_6.sce#24/CH19/EX19.6/Example19_6.sce#S##10920 +19#Temprature Heat and the First Law of Thermodynamic#19.6#Sample Problem 6#Example19_6_result.txt#24/CH19/EX19.6/Example19_6_result.txt#R##10921 +19#Temprature Heat and the First Law of Thermodynamic#19.7#Sample Problem 7#Example19_7.sce#24/CH19/EX19.7/Example19_7.sce#S##10922 +19#Temprature Heat and the First Law of Thermodynamic#19.7#Sample Problem 7#Example19_7_result.txt#24/CH19/EX19.7/Example19_7_result.txt#R##10923 +20#The Kinetic Theory of Gases#20.1#Sample Problem 1#Example20_1.sce#24/CH20/EX20.1/Example20_1.sce#S##10924 +20#The Kinetic Theory of Gases#20.1#Sample Problem 1#Example20_1_result.txt#24/CH20/EX20.1/Example20_1_result.txt#R##10925 +20#The Kinetic Theory of Gases#20.2#Sample Problem 2#Example20_2.sce#24/CH20/EX20.2/Example20_2.sce#S##10926 +20#The Kinetic Theory of Gases#20.2#Sample Problem 2#Example20_2_result.txt#24/CH20/EX20.2/Example20_2_result.txt#R##10927 +20#The Kinetic Theory of Gases#20.3#Sample Problem 3#Example20_3.sce#24/CH20/EX20.3/Example20_3.sce#S##10928 +20#The Kinetic Theory of Gases#20.3#Sample Problem 3#Example20_3_result.txt#24/CH20/EX20.3/Example20_3_result.txt#R##10929 +20#The Kinetic Theory of Gases#20.4#Sample Problem 4#Example20_4.sce#24/CH20/EX20.4/Example20_4.sce#S##10930 +20#The Kinetic Theory of Gases#20.4#Sample Problem 4#Example20_4_result.txt#24/CH20/EX20.4/Example20_4_result.txt#R##10931 +20#The Kinetic Theory of Gases#20.5#Sample Problem 5#Example20_5.sce#24/CH20/EX20.5/Example20_5.sce#S##10932 +20#The Kinetic Theory of Gases#20.5#Sample Problem 5#Example20_5_result.txt#24/CH20/EX20.5/Example20_5_result.txt#R##10933 +20#The Kinetic Theory of Gases#20.6#Sample Problem 6#Example20_6.sce#24/CH20/EX20.6/Example20_6.sce#S##10934 +20#The Kinetic Theory of Gases#20.6#Sample Problem 6#Example20_6_result.txt#24/CH20/EX20.6/Example20_6_result.txt#R##10935 +20#The Kinetic Theory of Gases#20.7#Sample Problem 7#Example20_7.sce#24/CH20/EX20.7/Example20_7.sce#S##10936 +20#The Kinetic Theory of Gases#20.7#Sample Problem 7#Example20_7_result.txt#24/CH20/EX20.7/Example20_7_result.txt#R##10937 +20#The Kinetic Theory of Gases#20.9#Sample Problem 9#Example20_9.sce#24/CH20/EX20.9/Example20_9.sce#S##10938 +20#The Kinetic Theory of Gases#20.9#Sample Problem 9#Example20_9_result.txt#24/CH20/EX20.9/Example20_9_result.txt#R##10939 +21#Entropy and the Second Law of Thermodynamics#21.1#Sample Problem 1#Example21_1.sce#24/CH21/EX21.1/Example21_1.sce#S##10940 +21#Entropy and the Second Law of Thermodynamics#21.1#Sample Problem 1#Example21_1_result.txt#24/CH21/EX21.1/Example21_1_result.txt#R##10941 +21#Entropy and the Second Law of Thermodynamics#21.2#Sample Problem 2#Example21_2.sce#24/CH21/EX21.2/Example21_2.sce#S##10942 +21#Entropy and the Second Law of Thermodynamics#21.2#Sample Problem 2#Example21_2_result.txt#24/CH21/EX21.2/Example21_2_result.txt#R##10943 +21#Entropy and the Second Law of Thermodynamics#21.3#Sample Problem 3#Example21_3.sce#24/CH21/EX21.3/Example21_3.sce#S##10944 +21#Entropy and the Second Law of Thermodynamics#21.3#Sample Problem 3#Example21_3_result.txt#24/CH21/EX21.3/Example21_3_result.txt#R##10945 +21#Entropy and the Second Law of Thermodynamics#21.4#Sample Problem 4#Example21_4.sce#24/CH21/EX21.4/Example21_4.sce#S##10946 +21#Entropy and the Second Law of Thermodynamics#21.4#Sample Problem 4#Example21_4_result.txt#24/CH21/EX21.4/Example21_4_result.txt#R##10947 +21#Entropy and the Second Law of Thermodynamics#21.5#Sample Problem 5#Example21_5.sce#24/CH21/EX21.5/Example21_5.sce#S##10948 +21#Entropy and the Second Law of Thermodynamics#21.5#Sample Problem 5#Example21_5_result.txt#24/CH21/EX21.5/Example21_5_result.txt#R##10949 +22#Electric Charge#22.1#Sample Problem 1#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +22#Electric Charge#22.1#Sample Problem 1#electrostatics.sci#24/DEPENDENCIES/electrostatics.sci#D#electrostatic#284 +22#Electric Charge#22.1#Sample Problem 1#Example22_1.sce#24/CH22/EX22.1/Example22_1.sce#S##10950 +22#Electric Charge#22.1#Sample Problem 1#Example22_1_result.txt#24/CH22/EX22.1/Example22_1_result.txt#R##10951 +22#Electric Charge#22.2#Sample Problem 2#electrostatics.sci#24/DEPENDENCIES/electrostatics.sci#D#electrostatic#284 +22#Electric Charge#22.2#Sample Problem 2#Example22_2.sce#24/CH22/EX22.2/Example22_2.sce#S##10958 +22#Electric Charge#22.2#Sample Problem 2#Example22_2_result.txt#24/CH22/EX22.2/Example22_2_result.txt#R##10959 +22#Electric Charge#22.3#Sample Problem 3#electrostatics.sci#24/DEPENDENCIES/electrostatics.sci#D#electrostatic#284 +22#Electric Charge#22.3#Sample Problem 3#Example22_3.sce#24/CH22/EX22.3/Example22_3.sce#S##10960 +22#Electric Charge#22.3#Sample Problem 3#Example22_3_result.txt#24/CH22/EX22.3/Example22_3_result.txt#R##10961 +22#Electric Charge#22.4#Sample Problem 4#Gravitation.sci#24/DEPENDENCIES/Gravitation.sci#D#gravitation#273 +22#Electric Charge#22.4#Sample Problem 4#electrostatics.sci#24/DEPENDENCIES/electrostatics.sci#D#electrostatic#284 +22#Electric Charge#22.4#Sample Problem 4#Example22_4.sce#24/CH22/EX22.4/Example22_4.sce#S##10962 +22#Electric Charge#22.4#Sample Problem 4#Example22_4_result.txt#24/CH22/EX22.4/Example22_4_result.txt#R##10963 +23#Electric Fields#23.2#Sample Problem 2#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +23#Electric Fields#23.2#Sample Problem 2#electrostatics.sci#24/DEPENDENCIES/electrostatics.sci#D#electrostatic#284 +23#Electric Fields#23.2#Sample Problem 2#Example23_2.sce#24/CH23/EX23.2/Example23_2.sce#S##10964 +23#Electric Fields#23.2#Sample Problem 2#Example23_2_result.txt#24/CH23/EX23.2/Example23_2_result.txt#R##10965 +23#Electric Fields#23.3#Sample Problem 3#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +23#Electric Fields#23.3#Sample Problem 3#electrostatics.sci#24/DEPENDENCIES/electrostatics.sci#D#electrostatic#284 +23#Electric Fields#23.3#Sample Problem 3#Example23_3.sce#24/CH23/EX23.3/Example23_3.sce#S##10966 +23#Electric Fields#23.3#Sample Problem 3#Example23_3_result.txt#24/CH23/EX23.3/Example23_3_result.txt#R##10967 +23#Electric Fields#23.4#Sample Problem 4#Example23_4.sce#24/CH23/EX23.4/Example23_4.sce#S##10968 +23#Electric Fields#23.4#Sample Problem 4#Example23_4_result.txt#24/CH23/EX23.4/Example23_4_result.txt#R##10969 +23#Electric Fields#23.5#Sample Problem 5#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +23#Electric Fields#23.5#Sample Problem 5#Example23_5.sce#24/CH23/EX23.5/Example23_5.sce#S##10970 +23#Electric Fields#23.5#Sample Problem 5#Example23_5_result.txt#24/CH23/EX23.5/Example23_5_result.txt#R##10971 +24#Gauss Law#24.1#Sample Problem 1#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +24#Gauss Law#24.1#Sample Problem 1#Example24_1.sce#24/CH24/EX24.1/Example24_1.sce#S##10972 +24#Gauss Law#24.1#Sample Problem 1#Example24_1_result.txt#24/CH24/EX24.1/Example24_1_result.txt#R##10973 +24#Gauss Law#24.2#Sample Problem 2#Example24_2.sce#24/CH24/EX24.2/Example24_2.sce#S##10984 +24#Gauss Law#24.2#Sample Problem 2#Example24_2_result.txt#24/CH24/EX24.2/Example24_2_result.txt#R##10975 +24#Gauss Law#24.3#Sample Problem 3#electrostatics.sci#24/DEPENDENCIES/electrostatics.sci#D#electrostatic#284 +24#Gauss Law#24.3#Sample Problem 3#Example24_3.sce#24/CH24/EX24.3/Example24_3.sce#S##10976 +24#Gauss Law#24.3#Sample Problem 3#Example24_3_result.txt#24/CH24/EX24.3/Example24_3_result.txt#R##10977 +24#Gauss Law#24.4#Sample Problem 4#Example24_4.sce#24/CH24/EX24.4/Example24_4.sce#S##10978 +24#Gauss Law#24.4#Sample Problem 4#Example24_4_result.txt#24/CH24/EX24.4/Example24_4_result.txt#R##10979 +24#Gauss Law#24.5#Sample Problem 5#electrostatics.sci#24/DEPENDENCIES/electrostatics.sci#D#electrostatic#284 +24#Gauss Law#24.5#Sample Problem 5#Example24_5.sce#24/CH24/EX24.5/Example24_5.sce#S##10980 +24#Gauss Law#24.5#Sample Problem 5#Example24_5_result.txt#24/CH24/EX24.5/Example24_5_result.txt#R##10981 +24#Gauss Law#24.6#Sample Problem 6#electrostatics.sci#24/DEPENDENCIES/electrostatics.sci#D#electrostatic#284 +24#Gauss Law#24.6#Sample Problem 6#Example24_6.sce#24/CH24/EX24.6/Example24_6.sce#S##10982 +24#Gauss Law#24.6#Sample Problem 6#Example24_6_result.txt#24/CH24/EX24.6/Example24_6_result.txt#R##10983 +25#Electric Potential#25.1#Sample Problem 1#electrostatics.sci#24/DEPENDENCIES/electrostatics.sci#D#electrostatic#284 +25#Electric Potential#25.1#Sample Problem 1#Example25_1.sce#24/CH25/EX25.1/Example25_1.sce#S##10985 +25#Electric Potential#25.1#Sample Problem 1#Example25_1_result.txt#24/CH25/EX25.1/Example25_1_result.txt#R##10986 +25#Electric Potential#25.3#Sample Problem 3#electrostatics.sci#24/DEPENDENCIES/electrostatics.sci#D#electrostatic#284 +25#Electric Potential#25.3#Sample Problem 3#Example25_3.sce#24/CH25/EX25.3/Example25_3.sce#S##10987 +25#Electric Potential#25.3#Sample Problem 3#Example25_3_result.txt#24/CH25/EX25.3/Example25_3_result.txt#R##10988 +25#Electric Potential#25.4#Sample Problem 4#electrostatics.sci#24/DEPENDENCIES/electrostatics.sci#D#electrostatic#284 +25#Electric Potential#25.4#Sample Problem 4#Example25_4.sce#24/CH25/EX25.4/Example25_4.sce#S##10989 +25#Electric Potential#25.4#Sample Problem 4#Example25_4_result.txt#24/CH25/EX25.4/Example25_4_result.txt#R##10990 +25#Electric Potential#25.6#Sample Problem 6#electrostatics.sci#24/DEPENDENCIES/electrostatics.sci#D#electrostatic#284 +25#Electric Potential#25.6#Sample Problem 6#Example25_6.sce#24/CH25/EX25.6/Example25_6.sce#S##10991 +25#Electric Potential#25.6#Sample Problem 6#Example25_6_result.txt#24/CH25/EX25.6/Example25_6_result.txt#R##10992 +26#Capacitance#26.1#Sample Problem 1#electrostatics.sci#24/DEPENDENCIES/electrostatics.sci#D#electrostatic#284 +26#Capacitance#26.1#Sample Problem 1#Example26_1.sce#24/CH26/EX26.1/Example26_1.sce#S##11099 +26#Capacitance#26.1#Sample Problem 1#Example26_1_result.txt#24/CH26/EX26.1/Example26_1_result.txt#R##11100 +26#Capacitance#26.2#Sample Problem 2#electrostatics.sci#24/DEPENDENCIES/electrostatics.sci#D#electrostatic#284 +26#Capacitance#26.2#Sample Problem 2#Example26_2.sce#24/CH26/EX26.2/Example26_2.sce#S##11101 +26#Capacitance#26.2#Sample Problem 2#Example26_2_result.txt#24/CH26/EX26.2/Example26_2_result.txt#R##11102 +26#Capacitance#26.3#Sample Problem 3#Example26_3.sce#24/CH26/EX26.3/Example26_3.sce#S##11103 +26#Capacitance#26.3#Sample Problem 3#Example26_3_result.txt#24/CH26/EX26.3/Example26_3_result.txt#R##11104 +26#Capacitance#26.4#Sample Problem 4#electrostatics.sci#24/DEPENDENCIES/electrostatics.sci#D#electrostatic#284 +26#Capacitance#26.4#Sample Problem 4#Example26_4.sce#24/CH26/EX26.4/Example26_4.sce#S##11105 +26#Capacitance#26.4#Sample Problem 4#Example26_4_result.txt#24/CH26/EX26.4/Example26_4_result.txt#R##11106 +26#Capacitance#26.5#Sample Problem 5#electrostatics.sci#24/DEPENDENCIES/electrostatics.sci#D#electrostatic#284 +26#Capacitance#26.5#Sample Problem 5#Example26_5.sce#24/CH26/EX26.5/Example26_5.sce#S##11107 +26#Capacitance#26.5#Sample Problem 5#Example26_5_result.txt#24/CH26/EX26.5/Example26_5_result.txt#R##11108 +26#Capacitance#26.6#Sample Problem 6#electrostatics.sci#24/DEPENDENCIES/electrostatics.sci#D#electrostatic#284 +26#Capacitance#26.6#Sample Problem 6#Example26_6.sce#24/CH26/EX26.6/Example26_6.sce#S##11109 +26#Capacitance#26.6#Sample Problem 6#Example26_6_result.txt#24/CH26/EX26.6/Example26_6_result.txt#R##11110 +27#Current and Resistance#27.1#Sample Problem 1#Example27_1.sce#24/CH27/EX27.1/Example27_1.sce#S##11111 +27#Current and Resistance#27.1#Sample Problem 1#Example27_1_result.txt#24/CH27/EX27.1/Example27_1_result.txt#R##11112 +27#Current and Resistance#27.2#Sample Problem 2#Example27_2.sce#24/CH27/EX27.2/Example27_2.sce#S##11113 +27#Current and Resistance#27.2#Sample Problem 2#Example27_2_result.txt#24/CH27/EX27.2/Example27_2_result.txt#R##11114 +27#Current and Resistance#27.3#Sample Problem 3#Example27_3.sce#24/CH27/EX27.3/Example27_3.sce#S##11115 +27#Current and Resistance#27.3#Sample Problem 3#Example27_3_result.txt#24/CH27/EX27.3/Example27_3_result.txt#R##11116 +27#Current and Resistance#27.4#Sample Problem 4#Example27_4.sce#24/CH27/EX27.4/Example27_4.sce#S##11117 +27#Current and Resistance#27.4#Sample Problem 4#Example27_4_result.txt#24/CH27/EX27.4/Example27_4_result.txt#R##11118 +27#Current and Resistance#27.5#Sample Problem 5#Example27_5.sce#24/CH27/EX27.5/Example27_5.sce#S##11119 +27#Current and Resistance#27.5#Sample Problem 5#Example27_5_result.txt#24/CH27/EX27.5/Example27_5_result.txt#R##11120 +27#Current and Resistance#27.6#Sample Problem 6#Example27_6.sce#24/CH27/EX27.6/Example27_6.sce#S##11121 +27#Current and Resistance#27.6#Sample Problem 6#Example27_6_result.txt#24/CH27/EX27.6/Example27_6_result.txt#R##11122 +28#Circuits#28.1#Sample Problem 1#Example28_1.sce#24/CH28/EX28.1/Example28_1.sce#S##11123 +28#Circuits#28.1#Sample Problem 1#Example28_1_result.txt#24/CH28/EX28.1/Example28_1_result.txt#R##11124 +28#Circuits#28.2#Sample Problem 2#Example28_2.sce#24/CH28/EX28.2/Example28_2.sce#S##11125 +28#Circuits#28.2#Sample Problem 2#Example28_2_result.txt#24/CH28/EX28.2/Example28_2_result.txt#R##11126 +28#Circuits#28.3#Sample Problem 3#Example28_3.sce#24/CH28/EX28.3/Example28_3.sce#S##11127 +28#Circuits#28.3#Sample Problem 3#Example28_3_result.txt#24/CH28/EX28.3/Example28_3_result.txt#R##11128 +28#Circuits#28.4#Sample Problem 4#Example28_4.sce#24/CH28/EX28.4/Example28_4.sce#S##11129 +28#Circuits#28.4#Sample Problem 4#Example28_4_result.txt#24/CH28/EX28.4/Example28_4_result.txt#R##11130 +28#Circuits#28.5#Sample Problem 5#Example28_5.sce#24/CH28/EX28.5/Example28_5.sce#S##11131 +28#Circuits#28.5#Sample Problem 5#Example28_5_result.txt#24/CH28/EX28.5/Example28_5_result.txt#R##11132 +29#Magnetic fields#29.1#Sample Problem 1#Example29_1.sce#24/CH29/EX29.1/Example29_1.sce#S##11133 +29#Magnetic fields#29.1#Sample Problem 1#Example29_1_result.txt#24/CH29/EX29.1/Example29_1_result.txt#R##11134 +29#Magnetic fields#29.2#Sample Problem 2#Example29_2.sce#24/CH29/EX29.2/Example29_2.sce#S##11135 +29#Magnetic fields#29.2#Sample Problem 2#Example29_2_result.txt#24/CH29/EX29.2/Example29_2_result.txt#R##11136 +29#Magnetic fields#29.3#Sample Problem 3#Example29_3.sce#24/CH29/EX29.3/Example29_3.sce#S##11137 +29#Magnetic fields#29.3#Sample Problem 3#Example29_3_result.txt#24/CH29/EX29.3/Example29_3_result.txt#R##11138 +29#Magnetic fields#29.4#Sample Problem 4#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +29#Magnetic fields#29.4#Sample Problem 4#Example29_4.sce#24/CH29/EX29.4/Example29_4.sce#S##11139 +29#Magnetic fields#29.4#Sample Problem 4#Example29_4_result.txt#24/CH29/EX29.4/Example29_4_result.txt#R##11140 +29#Magnetic fields#29.5#Sample Problem 5#Example29_5.sce#24/CH29/EX29.5/Example29_5.sce#S##11141 +29#Magnetic fields#29.5#Sample Problem 5#Example29_5_result.txt#24/CH29/EX29.5/Example29_5_result.txt#R##11142 +29#Magnetic fields#29.6#Sample Problem 6#Example29_6.sce#24/CH29/EX29.6/Example29_6.sce#S##11143 +29#Magnetic fields#29.6#Sample Problem 6#Example29_6_result.txt#24/CH29/EX29.6/Example29_6_result.txt#R##11144 +29#Magnetic fields#29.7#Sample Problem 7#Example29_7.sce#24/CH29/EX29.7/Example29_7.sce#S##11145 +29#Magnetic fields#29.7#Sample Problem 7#Example29_7_result.txt#24/CH29/EX29.7/Example29_7_result.txt#R##11146 +29#Magnetic fields#29.8#Sample Problem 8#Example29_8.sce#24/CH29/EX29.8/Example29_8.sce#S##11147 +29#Magnetic fields#29.8#Sample Problem 8#Example29_8_result.txt#24/CH29/EX29.8/Example29_8_result.txt#R##11148 +30#Magnetic fields due to Current#30.2#Sample Problem 2#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +30#Magnetic fields due to Current#30.2#Sample Problem 2#Example30_2.sce#24/CH30/EX30.2/Example30_2.sce#S##11149 +30#Magnetic fields due to Current#30.2#Sample Problem 2#Example30_2_result.txt#24/CH30/EX30.2/Example30_2_result.txt#R##11150 +30#Magnetic fields due to Current#30.3#Sample Problem 3#Example30_3.sce#24/CH30/EX30.3/Example30_3.sce#S##11151 +30#Magnetic fields due to Current#30.3#Sample Problem 3#Example30_3_result.txt#24/CH30/EX30.3/Example30_3_result.txt#R##11152 +30#Magnetic fields due to Current#30.4#Sample Problem 4#Example30_4.sce#24/CH30/EX30.4/Example30_4.sce#S##11153 +30#Magnetic fields due to Current#30.4#Sample Problem 4#Example30_4_result.txt#24/CH30/EX30.4/Example30_4_result.txt#R##11154 +31#Induction and Inductance#31.1#Sample Problem 1#Example31_1.sce#24/CH31/EX31.1/Example31_1.sce#S##11155 +31#Induction and Inductance#31.1#Sample Problem 1#Example31_1_result.txt#24/CH31/EX31.1/Example31_1_result.txt#R##11156 +31#Induction and Inductance#31.2#Sample Problem 2#Example31_2.sce#24/CH31/EX31.2/Example31_2.sce#S##11157 +31#Induction and Inductance#31.2#Sample Problem 2#Example31_2_result.txt#24/CH31/EX31.2/Example31_2_result.txt#R##11158 +31#Induction and Inductance#31.3#Sample Problem 3#Example31_3.sce#24/CH31/EX31.3/Example31_3.sce#S##11159 +31#Induction and Inductance#31.3#Sample Problem 3#Example31_3_result.txt#24/CH31/EX31.3/Example31_3_result.txt#R##11160 +31#Induction and Inductance#31.4#Sample Problem 4#Example31_4.sce#24/CH31/EX31.4/Example31_4.sce#S##11161 +31#Induction and Inductance#31.4#Sample Problem 4#Example31_4_result.txt#24/CH31/EX31.4/Example31_4_result.txt#R##11162 +31#Induction and Inductance#31.5#Sample Problem 5#Example31_5.sce#24/CH31/EX31.5/Example31_5.sce#S##11163 +31#Induction and Inductance#31.5#Sample Problem 5#Example31_5_result.txt#24/CH31/EX31.5/Example31_5_result.txt#R##11164 +31#Induction and Inductance#31.6#Sample Problem 6#Example31_6.sce#24/CH31/EX31.6/Example31_6.sce#S##11165 +31#Induction and Inductance#31.6#Sample Problem 6#Example31_6_result.txt#24/CH31/EX31.6/Example31_6_result.txt#R##11166 +31#Induction and Inductance#31.7#Sample Problem 7#Example31_7.sce#24/CH31/EX31.7/Example31_7.sce#S##11167 +31#Induction and Inductance#31.7#Sample Problem 7#Example31_7_result.txt#24/CH31/EX31.7/Example31_7_result.txt#R##11168 +31#Induction and Inductance#31.8#Sample Problem 8#Example31_8.sce#24/CH31/EX31.8/Example31_8.sce#S##11169 +31#Induction and Inductance#31.8#Sample Problem 8#Example31_8_result.txt#24/CH31/EX31.8/Example31_8_result.txt#R##11170 +31#Induction and Inductance#31.9#Sample Problem 9#Example31_9.sce#24/CH31/EX31.9/Example31_9.sce#S##11171 +31#Induction and Inductance#31.9#Sample Problem 9#Example31_9_result.txt#24/CH31/EX31.9/Example31_9_result.txt#R##11172 +32#Magnetism of Matter Maxwell Equation#32.1#Sample Problem 1#Example32_1.sce#24/CH32/EX32.1/Example32_1.sce#S##11173 +32#Magnetism of Matter Maxwell Equation#32.1#Sample Problem 1#Example32_1_result.txt#24/CH32/EX32.1/Example32_1_result.txt#R##11174 +32#Magnetism of Matter Maxwell Equation#32.2#Sample Problem 2#Example32_2.sce#24/CH32/EX32.2/Example32_2.sce#S##11175 +32#Magnetism of Matter Maxwell Equation#32.2#Sample Problem 2#Example32_2_result.txt#24/CH32/EX32.2/Example32_2_result.txt#R##11176 +32#Magnetism of Matter Maxwell Equation#32.3#Sample Problem 3#Example32_3.sce#24/CH32/EX32.3/Example32_3.sce#S##11177 +32#Magnetism of Matter Maxwell Equation#32.3#Sample Problem 3#Example32_3_result.txt#24/CH32/EX32.3/Example32_3_result.txt#R##11178 +33#Electromagnetic Oscillations and Alternating Current#33.1#Sample Problem 1#Example33_1.sce#24/CH33/EX33.1/Example33_1.sce#S##11179 +33#Electromagnetic Oscillations and Alternating Current#33.1#Sample Problem 1#Example33_1_result.txt#24/CH33/EX33.1/Example33_1_result.txt#R##11180 +33#Electromagnetic Oscillations and Alternating Current#33.2#Sample Problem 2#Example33_2.sce#24/CH33/EX33.2/Example33_2.sce#S##11183 +33#Electromagnetic Oscillations and Alternating Current#33.2#Sample Problem 2#Example33_2_result.txt#24/CH33/EX33.2/Example33_2_result.txt#R##11184 +33#Electromagnetic Oscillations and Alternating Current#33.3#Sample Problem 3#Example33_3.sce#24/CH33/EX33.3/Example33_3.sce#S##11185 +33#Electromagnetic Oscillations and Alternating Current#33.3#Sample Problem 3#Example33_3_result.txt#24/CH33/EX33.3/Example33_3_result.txt#R##11186 +33#Electromagnetic Oscillations and Alternating Current#33.4#Sample Problem 4#Example33_4.sce#24/CH33/EX33.4/Example33_4.sce#S##11187 +33#Electromagnetic Oscillations and Alternating Current#33.4#Sample Problem 4#Example33_4_result.txt#24/CH33/EX33.4/Example33_4_result.txt#R##11188 +33#Electromagnetic Oscillations and Alternating Current#33.5#Sample Problem 5#Example33_5.sce#24/CH33/EX33.5/Example33_5.sce#S##11189 +33#Electromagnetic Oscillations and Alternating Current#33.5#Sample Problem 5#Example33_5_result.txt#24/CH33/EX33.5/Example33_5_result.txt#R##11190 +33#Electromagnetic Oscillations and Alternating Current#33.6#Sample Problem 6#Example33_6.sce#24/CH33/EX33.6/Example33_6.sce#S##11191 +33#Electromagnetic Oscillations and Alternating Current#33.6#Sample Problem 6#Example33_6_result.txt#24/CH33/EX33.6/Example33_6_result.txt#R##11192 +33#Electromagnetic Oscillations and Alternating Current#33.7#Sample Problem 7#Example33_7.sce#24/CH33/EX33.7/Example33_7.sce#S##11193 +33#Electromagnetic Oscillations and Alternating Current#33.7#Sample Problem 7#Example33_7_result.txt#24/CH33/EX33.7/Example33_7_result.txt#R##11194 +33#Electromagnetic Oscillations and Alternating Current#33.8#Sample Problem 8#Example33_8.sce#24/CH33/EX33.8/Example33_8.sce#S##11195 +33#Electromagnetic Oscillations and Alternating Current#33.8#Sample Problem 8#Example33_8_result.txt#24/CH33/EX33.8/Example33_8_result.txt#R##11196 +33#Electromagnetic Oscillations and Alternating Current#33.9#Sample Problem 9#Example33_9.sce#24/CH33/EX33.9/Example33_9.sce#S##11197 +33#Electromagnetic Oscillations and Alternating Current#33.9#Sample Problem 9#Example33_9_result.txt#24/CH33/EX33.9/Example33_9_result.txt#R##11198 +34#Electromagnetic Waves#34.1#Sample Problem 1#Example34_1.sce#24/CH34/EX34.1/Example34_1.sce#S##11199 +34#Electromagnetic Waves#34.1#Sample Problem 1#Example34_1_result.txt#24/CH34/EX34.1/Example34_1_result.txt#R##11200 +34#Electromagnetic Waves#34.2#Sample Problem 2#Gravitation.sci#24/DEPENDENCIES/Gravitation.sci#D#gravitation#273 +34#Electromagnetic Waves#34.2#Sample Problem 2#Example34_2.sce#24/CH34/EX34.2/Example34_2.sce#S##11201 +34#Electromagnetic Waves#34.2#Sample Problem 2#Example34_2_result.txt#24/CH34/EX34.2/Example34_2_result.txt#R##11202 +34#Electromagnetic Waves#34.3#Sample Problem 3#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +34#Electromagnetic Waves#34.3#Sample Problem 3#Example34_3.sce#24/CH34/EX34.3/Example34_3.sce#S##11203 +34#Electromagnetic Waves#34.3#Sample Problem 3#Example34_3_result.txt#24/CH34/EX34.3/Example34_3_result.txt#R##11204 +34#Electromagnetic Waves#34.4#Sample Problem 4#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +34#Electromagnetic Waves#34.4#Sample Problem 4#Example34_4.sce#24/CH34/EX34.4/Example34_4.sce#S##11205 +34#Electromagnetic Waves#34.4#Sample Problem 4#Example34_4_result.txt#24/CH34/EX34.4/Example34_4_result.txt#R##11206 +34#Electromagnetic Waves#34.5#Sample Problem 5#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +34#Electromagnetic Waves#34.5#Sample Problem 5#Example34_5.sce#24/CH34/EX34.5/Example34_5.sce#S##11207 +34#Electromagnetic Waves#34.5#Sample Problem 5#Example34_5_result.txt#24/CH34/EX34.5/Example34_5_result.txt#R##11208 +35#Images#35.1#Sample Problem 1#Example35_1.sce#24/CH35/EX35.1/Example35_1.sce#S##11209 +35#Images#35.1#Sample Problem 1#Example35_1_result.txt#24/CH35/EX35.1/Example35_1_result.txt#R##11210 +35#Images#35.2#Sample Problem 2#Example35_2.sce#24/CH35/EX35.2/Example35_2.sce#S##11211 +35#Images#35.2#Sample Problem 2#Example35_2_result.txt#24/CH35/EX35.2/Example35_2_result.txt#R##11212 +35#Images#35.3#Sample Problem 3#Example35_3.sce#24/CH35/EX35.3/Example35_3.sce#S##11213 +35#Images#35.3#Sample Problem 3#Example35_3_result.txt#24/CH35/EX35.3/Example35_3_result.txt#R##11214 +35#Images#35.4#Sample Problem 4#Example35_4.sce#24/CH35/EX35.4/Example35_4.sce#S##11215 +35#Images#35.4#Sample Problem 4#Example35_4_result.txt#24/CH35/EX35.4/Example35_4_result.txt#R##11216 +36#Interference#36.1#Sample Problem 1#Example36_1.sce#24/CH36/EX36.1/Example36_1.sce#S##11853 +36#Interference#36.1#Sample Problem 1#Example36_1_result.txt#24/CH36/EX36.1/Example36_1_result.txt#R##11854 +36#Interference#36.2#Sample Problem 2#Example36_2.sce#24/CH36/EX36.2/Example36_2.sce#S##11855 +36#Interference#36.2#Sample Problem 2#Example36_2_result.txt#24/CH36/EX36.2/Example36_2_result.txt#R##11856 +36#Interference#36.3#Sample Problem 3#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +36#Interference#36.3#Sample Problem 3#Example36_3.sce#24/CH36/EX36.3/Example36_3.sce#S##11857 +36#Interference#36.3#Sample Problem 3#Example36_3_result.txt#24/CH36/EX36.3/Example36_3_result.txt#R##11858 +36#Interference#36.4#Sample Problem 4#Example36_4.sce#24/CH36/EX36.4/Example36_4.sce#S##11859 +36#Interference#36.4#Sample Problem 4#Example36_4_result.txt#24/CH36/EX36.4/Example36_4_result.txt#R##11860 +36#Interference#36.5#Sample Problem 5#Example36_5.sce#24/CH36/EX36.5/Example36_5.sce#S##11861 +36#Interference#36.5#Sample Problem 5#Example36_5_result.txt#24/CH36/EX36.5/Example36_5_result.txt#R##11862 +36#Interference#36.6#Sample Problem 6#Example36_6.sce#24/CH36/EX36.6/Example36_6.sce#S##11863 +36#Interference#36.6#Sample Problem 6#Example36_6_result.txt#24/CH36/EX36.6/Example36_6_result.txt#R##11864 +37#Diffraction#37.1#Sample Problem 1#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +37#Diffraction#37.1#Sample Problem 1#Example37_1.sce#24/CH37/EX37.1/Example37_1.sce#S##11875 +37#Diffraction#37.1#Sample Problem 1#Example37_1_result.txt#24/CH37/EX37.1/Example37_1_result.txt#R##11876 +37#Diffraction#37.2#Sample Problem 2#Example37_2.sce#24/CH37/EX37.2/Example37_2.sce#S##11877 +37#Diffraction#37.2#Sample Problem 2#Example37_2_result.txt#24/CH37/EX37.2/Example37_2_result.txt#R##11878 +37#Diffraction#37.3#Sample Problem 3#Example37_3.sce#24/CH37/EX37.3/Example37_3.sce#S##11869 +37#Diffraction#37.3#Sample Problem 3#Example37_3_result.txt#24/CH37/EX37.3/Example37_3_result.txt#R##11870 +37#Diffraction#37.4#Sample Problem 4#Example37_4.sce#24/CH37/EX37.4/Example37_4.sce#S##11871 +37#Diffraction#37.4#Sample Problem 4#Example37_4_result.txt#24/CH37/EX37.4/Example37_4_result.txt#R##11872 +37#Diffraction#37.5#Sample Problem 5#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +37#Diffraction#37.5#Sample Problem 5#Example37_5.sce#24/CH37/EX37.5/Example37_5.sce#S##11873 +37#Diffraction#37.5#Sample Problem 5#Example37_5_result.txt#24/CH37/EX37.5/Example37_5_result.txt#R##11874 +38#Relativity#38.1#Sample Problem 1#Example38_1.sce#24/CH38/EX38.1/Example38_1.sce#S##11879 +38#Relativity#38.1#Sample Problem 1#Example38_1_result.txt#24/CH38/EX38.1/Example38_1_result.txt#R##11880 +38#Relativity#38.2#Sample Problem 2#Example38_2.sce#24/CH38/EX38.2/Example38_2.sce#S##11881 +38#Relativity#38.2#Sample Problem 2#Example38_2_result.txt#24/CH38/EX38.2/Example38_2_result.txt#R##11882 +38#Relativity#38.3#Sample Problem 3#Example38_3.sce#24/CH38/EX38.3/Example38_3.sce#S##11883 +38#Relativity#38.3#Sample Problem 3#Example38_3_result.txt#24/CH38/EX38.3/Example38_3_result.txt#R##11884 +38#Relativity#38.4#Sample Problem 4#Example38_4.sce#24/CH38/EX38.4/Example38_4.sce#S##11885 +38#Relativity#38.4#Sample Problem 4#Example38_4_result.txt#24/CH38/EX38.4/Example38_4_result.txt#R##11886 +38#Relativity#38.5#Sample Problem 5#Example38_5.sce#24/CH38/EX38.5/Example38_5.sce#S##11887 +38#Relativity#38.5#Sample Problem 5#Example38_5_result.txt#24/CH38/EX38.5/Example38_5_result.txt#R##11888 +38#Relativity#38.6#Sample Problem 6#Example38_6.sce#24/CH38/EX38.6/Example38_6.sce#S##11889 +38#Relativity#38.6#Sample Problem 6#Example38_6_result.txt#24/CH38/EX38.6/Example38_6_result.txt#R##11890 +38#Relativity#38.7#Sample Problem 7#Example38_7.sce#24/CH38/EX38.7/Example38_7.sce#S##11891 +38#Relativity#38.7#Sample Problem 7#Example38_7_result.txt#24/CH38/EX38.7/Example38_7_result.txt#R##11892 +39#Photons and Matter Waves#39.1#Sample Problem 1#Example39_1.sce#24/CH39/EX39.1/Example39_1.sce#S##11893 +39#Photons and Matter Waves#39.1#Sample Problem 1#Example39_1_result.txt#24/CH39/EX39.1/Example39_1_result.txt#R##11894 +39#Photons and Matter Waves#39.2#Sample Problem 2#Example39_2.sce#24/CH39/EX39.2/Example39_2.sce#S##11895 +39#Photons and Matter Waves#39.2#Sample Problem 2#Example39_2_result.txt#24/CH39/EX39.2/Example39_2_result.txt#R##11896 +39#Photons and Matter Waves#39.3#Sample Problem 3#Example39_3.sce#24/CH39/EX39.3/Example39_3.sce#S##11897 +39#Photons and Matter Waves#39.3#Sample Problem 3#Example39_3_result.txt#24/CH39/EX39.3/Example39_3_result.txt#R##11898 +39#Photons and Matter Waves#39.4#Sample Problem 4#degree_rad.sci#24/DEPENDENCIES/degree_rad.sci#D#degree_rad#272 +39#Photons and Matter Waves#39.4#Sample Problem 4#Example39_4.sce#24/CH39/EX39.4/Example39_4.sce#S##11899 +39#Photons and Matter Waves#39.4#Sample Problem 4#Example39_4_result.txt#24/CH39/EX39.4/Example39_4_result.txt#R##11900 +39#Photons and Matter Waves#39.5#Sample Problem 5#Example39_5.sce#24/CH39/EX39.5/Example39_5.sce#S##11901 +39#Photons and Matter Waves#39.5#Sample Problem 5#Example39_5_result.txt#24/CH39/EX39.5/Example39_5_result.txt#R##11902 +39#Photons and Matter Waves#39.6#Sample Problem 6#Example39_6.sce#24/CH39/EX39.6/Example39_6.sce#S##11903 +39#Photons and Matter Waves#39.6#Sample Problem 6#Example39_6_result.txt#24/CH39/EX39.6/Example39_6_result.txt#R##11904 +39#Photons and Matter Waves#39.7#Sample Problem 7#Example39_7.sce#24/CH39/EX39.7/Example39_7.sce#S##11905 +39#Photons and Matter Waves#39.7#Sample Problem 7#Example39_7_result.txt#24/CH39/EX39.7/Example39_7_result.txt#R##11906 +40#More About Matter waves#40.1#Sample Problem 1#quantum.sci#24/DEPENDENCIES/quantum.sci#D#Modern Physics#285 +40#More About Matter waves#40.1#Sample Problem 1#Example40_1.sce#24/CH40/EX40.1/Example40_1.sce#S##11907 +40#More About Matter waves#40.1#Sample Problem 1#Example40_1_result.txt#24/CH40/EX40.1/Example40_1_result.txt#R##11908 +40#More About Matter waves#40.3#Sample Problem 3#Example40_3.sce#24/CH40/EX40.3/Example40_3.sce#S##11909 +40#More About Matter waves#40.3#Sample Problem 3#Example40_3_result.txt#24/CH40/EX40.3/Example40_3_result.txt#R##11910 +40#More About Matter waves#40.4#Sample Problem 4#quantum.sci#24/DEPENDENCIES/quantum.sci#D#Modern Physics#285 +40#More About Matter waves#40.4#Sample Problem 4#Example40_4.sce#24/CH40/EX40.4/Example40_4.sce#S##11911 +40#More About Matter waves#40.4#Sample Problem 4#Example40_4_result.txt#24/CH40/EX40.4/Example40_4_result.txt#R##11912 +40#More About Matter waves#40.6#Sample Problem 6#quantum.sci#24/DEPENDENCIES/quantum.sci#D#Modern Physics#285 +40#More About Matter waves#40.6#Sample Problem 6#Example40_6.sce#24/CH40/EX40.6/Example40_6.sce#S##11913 +40#More About Matter waves#40.6#Sample Problem 6#Example40_6_result.txt#24/CH40/EX40.6/Example40_6_result.txt#R##11914 +40#More About Matter waves#40.8#Sample Problem 8#Example40_8.sce#24/CH40/EX40.8/Example40_8.sce#S##11917 +40#More About Matter waves#40.8#Sample Problem 8#Example40_8_result.txt#24/CH40/EX40.8/Example40_8_result.txt#R##11918 +41#All About Atoms#41.1#Sample Problem 1#Example41_1.sce#24/CH41/EX41.1/Example41_1.sce#S##13282 +41#All About Atoms#41.1#Sample Problem 1#Example41_1_result.txt#24/CH41/EX41.1/Example41_1_result.txt#R##13283 +41#All About Atoms#41.2#Sample Problem 2#Example41_2.sce#24/CH41/EX41.2/Example41_2.sce#S##13284 +41#All About Atoms#41.2#Sample Problem 2#Example41_2_result.txt#24/CH41/EX41.2/Example41_2_result.txt#R##13285 +41#All About Atoms#41.3#Sample Problem 3#Example41_3.sce#24/CH41/EX41.3/Example41_3.sce#S##13286 +41#All About Atoms#41.3#Sample Problem 3#Example41_3_result.txt#24/CH41/EX41.3/Example41_3_result.txt#R##13287 +41#All About Atoms#41.3#Sample Problem 3#Example41_3a.jpg#24/CH41/EX41.3/Example41_3a.jpg#R##13288 +41#All About Atoms#41.4#Sample Problem 4#Example41_4.sce#24/CH41/EX41.4/Example41_4.sce#S##13289 +41#All About Atoms#41.4#Sample Problem 4#Example41_4_result.txt#24/CH41/EX41.4/Example41_4_result.txt#R##13290 +41#All About Atoms#41.5#Sample Problem 5#Example41_5.sce#24/CH41/EX41.5/Example41_5.sce#S##13291 +41#All About Atoms#41.5#Sample Problem 5#Example41_5_result.txt#24/CH41/EX41.5/Example41_5_result.txt#R##13292 +41#All About Atoms#41.6#Sample Problem 6#Example41_6.sce#24/CH41/EX41.6/Example41_6.sce#S##13293 +41#All About Atoms#41.6#Sample Problem 6#Example41_6_result.txt#24/CH41/EX41.6/Example41_6_result.txt#R##13294 +42#Conduction of Electricity in Solids#42.1#Sample Problem 1#Example42_1.sce#24/CH42/EX42.1/Example42_1.sce#S##13295 +42#Conduction of Electricity in Solids#42.1#Sample Problem 1#Example42_1_result.txt#24/CH42/EX42.1/Example42_1_result.txt#R##13296 +42#Conduction of Electricity in Solids#42.2#Sample Problem 2#Example42_2.sce#24/CH42/EX42.2/Example42_2.sce#S##13297 +42#Conduction of Electricity in Solids#42.2#Sample Problem 2#Example42_2_result.txt#24/CH42/EX42.2/Example42_2_result.txt#R##13298 +42#Conduction of Electricity in Solids#42.3#Sample Problem 3#Example42_3.sce#24/CH42/EX42.3/Example42_3.sce#S##13299 +42#Conduction of Electricity in Solids#42.3#Sample Problem 3#Example42_3_result.txt#24/CH42/EX42.3/Example42_3_result.txt#R##13300 +42#Conduction of Electricity in Solids#42.4#Sample Problem 4#Example42_4.sce#24/CH42/EX42.4/Example42_4.sce#S##13301 +42#Conduction of Electricity in Solids#42.4#Sample Problem 4#Example42_4_result.txt#24/CH42/EX42.4/Example42_4_result.txt#R##13302 +42#Conduction of Electricity in Solids#42.5#Sample Problem 5#Example42_5.sce#24/CH42/EX42.5/Example42_5.sce#S##13303 +42#Conduction of Electricity in Solids#42.5#Sample Problem 5#Example42_5_result.txt#24/CH42/EX42.5/Example42_5_result.txt#R##13304 +42#Conduction of Electricity in Solids#42.6#Sample Problem 6#Example42_6.sce#24/CH42/EX42.6/Example42_6.sce#S##13305 +42#Conduction of Electricity in Solids#42.6#Sample Problem 6#Example42_6_result.txt#24/CH42/EX42.6/Example42_6_result.txt#R##13306 +42#Conduction of Electricity in Solids#42.7#Sample Problem 7#Example42_7.sce#24/CH42/EX42.7/Example42_7.sce#S##13307 +42#Conduction of Electricity in Solids#42.7#Sample Problem 7#Example42_7_result.txt#24/CH42/EX42.7/Example42_7_result.txt#R##13308 +43#Nuclear Physics#43.1#Sample Problem 1#Example43_1.sce#24/CH43/EX43.1/Example43_1.sce#S##13309 +43#Nuclear Physics#43.1#Sample Problem 1#Example43_1_result.txt#24/CH43/EX43.1/Example43_1_result.txt#R##13310 +43#Nuclear Physics#43.2#Sample Problem 2#Example43_2.sce#24/CH43/EX43.2/Example43_2.sce#S##13311 +43#Nuclear Physics#43.2#Sample Problem 2#Example43_2_result.txt#24/CH43/EX43.2/Example43_2_result.txt#R##13312 +43#Nuclear Physics#43.3#Sample Problem 3#Example43_3.sce#24/CH43/EX43.3/Example43_3.sce#S##13313 +43#Nuclear Physics#43.3#Sample Problem 3#Example43_3_result.txt#24/CH43/EX43.3/Example43_3_result.txt#R##13314 +43#Nuclear Physics#43.4#Sample Problem 4#Example43_4.sce#24/CH43/EX43.4/Example43_4.sce#S##13315 +43#Nuclear Physics#43.4#Sample Problem 4#Example43_4_result.txt#24/CH43/EX43.4/Example43_4_result.txt#R##13316 +43#Nuclear Physics#43.5#Sample Problem 5#Example43_5.sce#24/CH43/EX43.5/Example43_5.sce#S##13319 +43#Nuclear Physics#43.5#Sample Problem 5#Example43_5_result.txt#24/CH43/EX43.5/Example43_5_result.txt#R##13320 +43#Nuclear Physics#43.6#Sample Problem 6#Example43_6.sce#24/CH43/EX43.6/Example43_6.sce#S##13317 +43#Nuclear Physics#43.6#Sample Problem 6#Example43_6_result.txt#24/CH43/EX43.6/Example43_6_result.txt#R##13318 +43#Nuclear Physics#43.7#Sample Problem 7#Example43_7.sce#24/CH43/EX43.7/Example43_7.sce#S##13321 +43#Nuclear Physics#43.7#Sample Problem 7#Example43_7_result.txt#24/CH43/EX43.7/Example43_7_result.txt#R##13322 +43#Nuclear Physics#43.8#Sample Problem 8#Example43_8.sce#24/CH43/EX43.8/Example43_8.sce#S##13323 +43#Nuclear Physics#43.8#Sample Problem 8#Example43_8_result.txt#24/CH43/EX43.8/Example43_8_result.txt#R##13324 +43#Nuclear Physics#43.9#Sample Problem 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b/latex/latex_test.sh index 5d67cb502..ab5bfb64d 100755 --- a/latex/latex_test.sh +++ b/latex/latex_test.sh @@ -1,7 +1,7 @@ #!/bin/bash clear -Bk_details=$1 -Contrib_details=$2 +CBk_details=$1 +CContrib_details=$2 Data_all=$3 Dep_dat=$4 @@ -24,8 +24,8 @@ fi IFS_old="$IFS" -IFS=# read col1 col2 col3 col4 col5 col6 col7 col8 < $Contrib_details; -IFS=# read colB1 colB2 colB3 colB4 colB5 colB6 colB7 < $Bk_details; +IFS=# read col1 col2 col3 col4 col5 col6 col7 col8 < "$CContrib_details"; +IFS=# read colB1 colB2 colB3 colB4 colB5 colB6 colB7 < "$CBk_details"; col1=${col1/&/\\&}; col2=${col2/&/\\&}; col3=${col3/&/\\&}; @@ -54,12 +54,12 @@ echo \\maketitle >>$CURDIR/TEX echo >>$CURDIR/TEX echo \\chapter*{Book Description}>>$CURDIR/TEX echo \\begin{description}>>$CURDIR/TEX -echo \\item [Title:] ${colB1}>>$CURDIR/TEX -echo \\item [Author:] ${colB2}>>$CURDIR/TEX -echo \\item [Publisher:] ${colB4}>>$CURDIR/TEX -echo \\item [Edition:] ${colB5}>>$CURDIR/TEX -echo \\item [Year:] ${colB6}>>$CURDIR/TEX -echo \\item [ISBN:] ${colB3}>>$CURDIR/TEX +echo \\item [Title:] ${colB1}>>$CURDIR/TEX +echo \\item [Author:] ${colB2}>>$CURDIR/TEX +echo \\item [Publisher:] ${colB4}>>$CURDIR/TEX +echo \\item [Edition:] ${colB5}>>$CURDIR/TEX +echo \\item [Year:] ${colB6}>>$CURDIR/TEX +echo \\item [ISBN:] ${colB3}>>$CURDIR/TEX echo \\end{description}>>$CURDIR/TEX echo >> $CURDIR/TEX @@ -73,107 +73,195 @@ echo \\item[Eqn] Equation \(Particular equation of the above book\)>>$CURDIR/TE echo \\item[AP] Appendix to Example\(Scilab Code that is an Appednix to a particular Example of the above book\)>>$CURDIR/TEX echo \\end{description}>>$CURDIR/TEX echo "For example, Exa~3.51 means solved example 3.51 of this book. Sec~2.3 means a scilab code whose theory is explained in Section 2.3 of the book.">>$CURDIR/TEX -echo>>$CURDIR/TEX +echo >>$CURDIR/TEX + + +echo \\newpage >> $CURDIR/TEX +echo \\vspace*{3cm}>>$CURDIR/TEX echo \\tableofcontents >>$CURDIR/TEX echo \\listofcode >>$CURDIR/TEX - if grep -c ".jpg\|.JPEG\|.png\|.jpeg\|.JPG" $Data_all - then - echo \\listoffigures >>$CURDIR/TEX - fi -echo>> $CURDIR/TEX + +sort -t '.' -k 1,1n -k 2,2n -k 3,3n -k 4,4n $Data_all > database_sort1 +full_flag=0 +while IFS=# read col1 col2 col3 col4 col5 col6 col7 col8 col9; do + if [ $col7 = R ] + then + echo $col6 > $CURDIR/Code_Result_files + echo `file -b ../$col6` > $CURDIR/Code_Figure_files + + if grep -c "jpg\|JPEG\|png\|PNG|jpeg\|JPG" $CURDIR/Code_Figure_files && [ "$full_flag" -eq 0 ] + then + if grep -c ".jpg\|.JPEG\|.png\|.PNG\|.jpeg\|.JPG" $CURDIR/Code_Result_files + then + echo \\newpage >> $CURDIR/TEX + echo \\vspace*{3cm}>>$CURDIR/TEX + echo \\listoffigures >> $CURDIR/TEX + full_flag=1 + fi + fi + fi + if Code_Result_files + then + rm Code_Result_files + fi + if Code_Figure_files + then + rm Code_Figure_files + fi + +done < database_sort1 j=0; k=1; + #sort -t '#' -k 3,3 -k 1,1 -g $Data_all > database_sort sort -t '.' -k 1,1n -k 2,2n -k 3,3n -k 4,4n $Data_all > database_sort - while IFS=# read col1 col2 col3 col4 col5 col6 col7 col8 col9; do -col2=${col2/&/\\&}; -col3=${col3/&/\\&}; -col4=${col4/&/\\&}; -col8=${col8/&/\\&}; -chap_diff=$(($col1 - $j)) -if [ $chap_diff -eq 1 ]; then - echo \\chapter{$col2}>>$CURDIR/TEX - echo >>$CURDIR/TEX -fi + col2=${col2/&/\\&}; + col3=${col3/&/\\&}; + col4=${col4/&/\\&}; + col8=${col8/&/\\&}; + chap_diff=$(($col1 - $j)) + if [ $chap_diff -eq 1 ]; then + echo \\chapter{$col2}>>$CURDIR/TEX + echo >> $CURDIR/TEX + fi -if [ $chap_diff -gt 1 ]; then + if [ $chap_diff -gt 1 ]; then echo >>$CURDIR/TEX - echo \\setcounter{chapter}{$(($col1-1))}>>$CURDIR/TEX - echo \\chapter{$col2}>>$CURDIR/TEX - echo >>$CURDIR/TEX + echo \\setcounter{chapter}{$(($col1-1))}>>$CURDIR/TEX + echo \\chapter{$col2}>>$CURDIR/TEX + echo >>$CURDIR/TEX -fi + fi -if [ $col7 != D ] -then -echo \\vspace*{10mm}>>$CURDIR/TEX -fi + if [ $col7 != D ] + then + echo \\vspace*{10mm}>>$CURDIR/TEX + fi - -if [ $col7 = S ] -then - echo \\curlable{Exa~$col3} >> $CURDIR/TEX - echo \\begin{code} >> $CURDIR/TEX - echo \\tcaption{$col4}{$col4} >> $CURDIR/TEX - echo \\lstinputlisting{../$col6} >> $CURDIR/TEX - echo \\end{code} >> $CURDIR/TEX - echo >>$CURDIR/TEX -fi + if [ $col7 = S ] + then + echo \\curlable{Exa~$col3} >> $CURDIR/TEX + echo \\begin{code} >> $CURDIR/TEX + echo \\tcaption{$col4} >> $CURDIR/TEX + echo \\begin{verbatim} >> $CURDIR/TEX + echo $col4 >> $CURDIR/TEX # issue is here + echo \\end{verbatim} >> $CURDIR/TEX + echo \\lstinputlisting{../$col6} >> $CURDIR/TEX + echo \\end{code} >> $CURDIR/TEX + echo >>$CURDIR/TEX + fi + if [ $col7 = D ] + then -if [ $col7 = D ] -then -#echo check Appendix \\ref{AP:$col9} for dependency \$$col5\$ >> $CURDIR/TEX -echo check Appendix \\ref{AP:$col9} for dependency: {\\begin{alltt} \\hspace{2mm} $col5 \\end{alltt}} >> $CURDIR/TEX -echo >> $CURDIR/TEX -fi + #echo check Appendix \\ref{AP:$col9} for dependency \$$col5\$ >> $CURDIR/TEX + echo check Appendix \\ref{AP:$col9} for dependency: {\\begin{alltt} \\hspace{2mm} $col5 \\end{alltt}} >> $CURDIR/TEX + echo >> $CURDIR/TEX + fi -if [ $col7 = X ] -then -echo This code can be downloaded from the website wwww.scilab.in >> $CURDIR/TEX -fi + if [ $col7 = X ] + then + echo This code can be downloaded from the website wwww.scilab.in >> $CURDIR/TEX + fi -if [ $col7 = R ] -then -echo $col6 > $CURDIR/Figure_files - if grep -c ".jpg\|.JPEG\|.png\|.jpeg\|.JPG" $CURDIR/Figure_files - then - echo \\curlable{Fig~$col3} >> $CURDIR/TEX - echo \\begin{figure} >> $CURDIR/TEX - echo \\includegraphics[width=5in]{../$col6} >> $CURDIR/TEX - echo \\caption{$col4} >> $CURDIR/TEX - echo \\end{figure} >> $CURDIR/TEX - echo >> $CURDIR/TEX - fi + if [ $col7 = R ] + then + echo $col6 > $CURDIR/Result_files -fi + echo `file -b ../$col6` > $CURDIR/Image_files + if grep -c "jpg\|JPEG\|png\|PNG\|jpeg\|JPG" $CURDIR/Image_files + then + if grep -c ".jpg\|.JPEG\|.png\|.PNG\|.jpeg\|.JPG" $CURDIR/Result_files + then + echo \\curlable{Fig~$col3} >> $CURDIR/TEX + echo \\begin{figure} >> $CURDIR/TEX + echo \\includegraphics[width=5in]{../$col6} >> $CURDIR/TEX + echo \\caption{$col4} >> $CURDIR/TEX + echo \\end{figure} >> $CURDIR/TEX + echo >> $CURDIR/TEX + fi + fi + fi j=$col1 done < database_sort -rm Figure_files - +if Result_files +then + rm Result_files +fi +if Image_files +then + rm Image_files +fi if [ -s $Dep_dat ] then i=1; echo \\chapter*{Appendix} >>$CURDIR/TEX +echo >> $CURDIR/TEX while IFS=# read col1 col2 col3 col4; do col3=${col3/&/\\&}; -echo \\curlable{AP~$i} >> $CURDIR/TEX; -echo \\begin{code} >> $CURDIR/TEX; -echo \\label{AP:$col4} >> $CURDIR/TEX -echo \\tcaption {$col3}{$col3} >> $CURDIR/TEX -echo \\lstinputlisting{../$col2} >> $CURDIR/TEX -echo \\end{code} >> $CURDIR/TEX -echo >> $CURDIR/TEX -let "i+=1" -done < $Dep_dat +echo $col2 > $CURDIR/Dependency_files +echo `file -b ../$col2` > $CURDIR/Dependency_Image_files + if grep -c "jpg\|JPEG\|png\|PNG\|jpeg\|JPG" $CURDIR/Dependency_Image_files + then + if grep -c ".jpg\|.JPEG\|.png\|.PNG\|.jpeg\|.JPG" $CURDIR/Dependency_files + then + echo \\curlable{AP~$i} >> $CURDIR/TEX; + echo \\begin{figure} >> $CURDIR/TEX + echo \\includegraphics[width=5in]{../$col2} >> $CURDIR/TEX + echo \\tcaption {$col3}{$col3} >> $CURDIR/TEX + echo \\end{figure} >> $CURDIR/TEX + echo >> $CURDIR/TEX + fi + elif grep -c "tiff\|TIFF" $CURDIR/Dependency_Image_files + then + if [ ! -d $CURDIR/tmptif ] + then + mkdir -p $CURDIR/tmptif + fi + if grep -c ".tif\|.TIF" $CURDIR/Dependency_files + then + filename=$(basename "../$col2") + filename=${filename%.*} + echo `convert ../$col2 $CURDIR/tmptif/$filename.png` + echo \\curlable{AP~$i} >> $CURDIR/TEX; + echo \\begin{code} >> $CURDIR/TEX; + echo \\includegraphics[width=5in]{$CURDIR/tmptif/$filename.png} >> $CURDIR/TEX + echo \\tcaption {$col3}{$col3} >> $CURDIR/TEX + echo \\end{code} >> $CURDIR/TEX + echo >> $CURDIR/TEX + if $CURDIR/tmptif/$filename.png + then + rm -f $CURDIR/tmptif/$filename.png + fi + fi + else + echo \\curlable{AP~$i} >> $CURDIR/TEX; + echo \\begin{code} >> $CURDIR/TEX; + echo \\label{AP:$col4} >> $CURDIR/TEX + echo \\tcaption {$col3}{$col3} >> $CURDIR/TEX + echo \\lstinputlisting{../$col2} >> $CURDIR/TEX + echo \\end{code} >> $CURDIR/TEX + echo >> $CURDIR/TEX + fi + let "i+=1" + done < $Dep_dat +fi +if Dependency_files +then + rm Dependency_files fi +if Dependency_Image_files +then + rm Dependency_Image_files +fi + cat Initial_body TEX > TEX_final.tex echo \\end{document} >> $CURDIR/TEX_final.tex diff --git a/latex/log.txt b/latex/log.txt index 81d7d3834..edac11c57 100755 --- a/latex/log.txt +++ b/latex/log.txt @@ -1,85 +1,726 @@ -This is pdfTeXk, Version 3.141592-1.40.3 (Web2C 7.5.6) - %&-line 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undefined on input line 1626. + +(../24/CH14/EX14.8/Example14_8.sce [119]) [120] +Chapter 15. +(../24/CH15/EX15.1/Example15_1.sce) [121] (../24/CH15/EX15.2/Example15_2.sce) +(../24/CH15/EX15.3/Example15_3.sce) [122] (../24/CH15/EX15.4/Example15_4.sce) +(../24/CH15/EX15.5/Example15_5.sce [123]) (../24/CH15/EX15.6/Example15_6.sce) + +LaTeX Warning: Reference `AP:282' on page 124 undefined on input line 1707. + +(../24/CH15/EX15.7/Example15_7.sce [124]) + +LaTeX Warning: Reference `AP:282' on page 125 undefined on input line 1720. + +(../24/CH15/EX15.8/Example15_8.sce) [125] [126] +Chapter 16. +(../24/CH16/EX16.1/Example16_1.sce [127]) (../24/CH16/EX16.2/Example16_2.sce +[128]) (../24/CH16/EX16.3/Example16_3.sce) (../24/CH16/EX16.4/Example16_4.sce +[129]) (../24/CH16/EX16.5/Example16_5.sce) [130] +(../24/CH16/EX16.6/Example16_6.sce) +<../24/CH16/EX16.6/Example16_6_FBD.JPG, id=3060, 352.31625pt x 259.7203pt> +<use ../24/CH16/EX16.6/Example16_6_FBD.JPG> (../24/CH16/EX16.7/Example16_7.sce +[131] [132 <../24/CH16/EX16.6/Example16_6_FBD.JPG>]) [133] +Chapter 17. +(../24/CH17/EX17.1/Example17_1.sce [134]) + +LaTeX Warning: Reference `AP:283' on page 135 undefined on input line 1832. + +(../24/CH17/EX17.2/Example17_2.sce) [135] (../24/CH17/EX17.3/Example17_3.sce) +(../24/CH17/EX17.4/Example17_4.sce [136]) + +LaTeX Warning: Reference `AP:272' on page 137 undefined on input line 1867. + +(../24/CH17/EX17.5/Example17_5.sce) [137] (../24/CH17/EX17.6/Example17_6.sce) +(../24/CH17/EX17.7/Example17_7.sce [138]) [139] +Chapter 18. + +LaTeX Warning: Reference `AP:272' on page 140 undefined on input line 1904. + +(../24/CH18/EX18.1/Example18_1.sce) [140] (../24/CH18/EX18.2/Example18_2.sce) +(../24/CH18/EX18.3/Example18_3.sce [141]) (../24/CH18/EX18.4/Example18_4.sce) +(../24/CH18/EX18.5/Example18_5.sce [142]) (../24/CH18/EX18.6/Example18_6.sce) +(../24/CH18/EX18.8/Example18_8.sce [143]) [144] +Chapter 19. +(../24/CH19/EX19.1/Example19_1.sce) (../24/CH19/EX19.2/Example19_2.sce [145]) +(../24/CH19/EX19.3/Example19_3.sce [146]) (../24/CH19/EX19.4/Example19_4.sce) +[147] (../24/CH19/EX19.5/Example19_5.sce) [148] +(../24/CH19/EX19.6/Example19_6.sce) (../24/CH19/EX19.7/Example19_7.sce [149]) +[150] +Chapter 20. +(../24/CH20/EX20.1/Example20_1.sce) (../24/CH20/EX20.2/Example20_2.sce [151]) +(../24/CH20/EX20.3/Example20_3.sce) (../24/CH20/EX20.4/Example20_4.sce [152]) +(../24/CH20/EX20.5/Example20_5.sce [153]) (../24/CH20/EX20.6/Example20_6.sce) +[154] (../24/CH20/EX20.7/Example20_7.sce) [155] +(../24/CH20/EX20.9/Example20_9.sce) [156] +Chapter 21. +(../24/CH21/EX21.1/Example21_1.sce) (../24/CH21/EX21.2/Example21_2.sce [157]) +(../24/CH21/EX21.3/Example21_3.sce [158]) (../24/CH21/EX21.4/Example21_4.sce +[159]) (../24/CH21/EX21.5/Example21_5.sce) [160] +Chapter 22. + +LaTeX Warning: Reference `AP:272' on page 161 undefined on input line 2211. + + +LaTeX Warning: Reference `AP:284' on page 161 undefined on input line 2213. + +(../24/CH22/EX22.1/Example22_1.sce [161]) + +LaTeX Warning: Reference `AP:284' on page 162 undefined on input line 2226. + +(../24/CH22/EX22.2/Example22_2.sce [162]) + +LaTeX Warning: Reference `AP:284' on page 163 undefined on input line 2239. + +(../24/CH22/EX22.3/Example22_3.sce [163]) + +LaTeX Warning: Reference `AP:273' on page 164 undefined on input line 2252. + + +LaTeX Warning: Reference `AP:284' on page 164 undefined on input line 2254. + +(../24/CH22/EX22.4/Example22_4.sce) [164] [165] +Chapter 23. + +LaTeX Warning: Reference `AP:272' on page 166 undefined on input line 2269. + + +LaTeX Warning: Reference `AP:284' on page 166 undefined on input line 2271. + +(../24/CH23/EX23.2/Example23_2.sce [166]) + +LaTeX Warning: Reference `AP:272' on page 167 undefined on input line 2284. + + +LaTeX Warning: Reference `AP:284' on page 167 undefined on input line 2286. + +(../24/CH23/EX23.3/Example23_3.sce) [167] (../24/CH23/EX23.4/Example23_4.sce) + +LaTeX Warning: Reference `AP:272' on page 168 undefined on input line 2310. + +(../24/CH23/EX23.5/Example23_5.sce [168]) [169] +Chapter 24. + +LaTeX Warning: Reference `AP:272' on page 170 undefined on input line 2325. + +(../24/CH24/EX24.1/Example24_1.sce) [170] (../24/CH24/EX24.2/Example24_2.sce) + +LaTeX Warning: Reference `AP:284' on page 171 undefined on input line 2349. + +(../24/CH24/EX24.3/Example24_3.sce [171]) (../24/CH24/EX24.4/Example24_4.sce) + +LaTeX Warning: Reference `AP:284' on page 172 undefined on input line 2373. + +[172] (../24/CH24/EX24.5/Example24_5.sce) + +LaTeX Warning: Reference `AP:284' on page 173 undefined on input line 2386. + +(../24/CH24/EX24.6/Example24_6.sce [173]) [174] +Chapter 25. + +LaTeX Warning: Reference `AP:284' on page 175 undefined on input line 2401. + +(../24/CH25/EX25.1/Example25_1.sce) + +LaTeX Warning: Reference `AP:284' on page 175 undefined on input line 2414. + +[175] (../24/CH25/EX25.3/Example25_3.sce) + +LaTeX Warning: Reference `AP:284' on page 176 undefined on input line 2427. + +(../24/CH25/EX25.4/Example25_4.sce [176]) + +LaTeX Warning: Reference `AP:284' on page 177 undefined on input line 2440. + +(../24/CH25/EX25.6/Example25_6.sce) [177] +Chapter 26. + +LaTeX Warning: Reference `AP:284' on page 178 undefined on input line 2455. + +(../24/CH26/EX26.1/Example26_1.sce) + +LaTeX Warning: Reference `AP:284' on page 178 undefined on input line 2468. + +[178] (../24/CH26/EX26.2/Example26_2.sce) (../24/CH26/EX26.3/Example26_3.sce +[179]) + +LaTeX Warning: Reference `AP:284' on page 180 undefined on input line 2492. + +(../24/CH26/EX26.4/Example26_4.sce) [180] + +LaTeX Warning: Reference `AP:284' on page 181 undefined on input line 2505. + +(../24/CH26/EX26.5/Example26_5.sce) + +LaTeX Warning: Reference `AP:284' on page 181 undefined on input line 2518. + +(../24/CH26/EX26.6/Example26_6.sce [181] [182]) [183] +Chapter 27. +(../24/CH27/EX27.1/Example27_1.sce) (../24/CH27/EX27.2/Example27_2.sce [184]) +(../24/CH27/EX27.3/Example27_3.sce [185]) (../24/CH27/EX27.4/Example27_4.sce) +(../24/CH27/EX27.5/Example27_5.sce [186]) (../24/CH27/EX27.6/Example27_6.sce) +[187] +Chapter 28. +(../24/CH28/EX28.1/Example28_1.sce) [188] (../24/CH28/EX28.2/Example28_2.sce) +[189] (../24/CH28/EX28.3/Example28_3.sce) (../24/CH28/EX28.4/Example28_4.sce +[190]) (../24/CH28/EX28.5/Example28_5.sce) [191] [192] +Chapter 29. +(../24/CH29/EX29.1/Example29_1.sce) (../24/CH29/EX29.2/Example29_2.sce [193]) +(../24/CH29/EX29.3/Example29_3.sce) [194] + +LaTeX Warning: Reference `AP:272' on page 195 undefined on input line 2691. + +(../24/CH29/EX29.4/Example29_4.sce) (../24/CH29/EX29.5/Example29_5.sce [195]) +(../24/CH29/EX29.6/Example29_6.sce) [196] (../24/CH29/EX29.7/Example29_7.sce) +(../24/CH29/EX29.8/Example29_8.sce [197]) [198] +Chapter 30. + +LaTeX Warning: Reference `AP:272' on page 199 undefined on input line 2750. + +(../24/CH30/EX30.2/Example30_2.sce) [199] (../24/CH30/EX30.3/Example30_3.sce) +(../24/CH30/EX30.4/Example30_4.sce [200]) [201] +Chapter 31. +(../24/CH31/EX31.1/Example31_1.sce) (../24/CH31/EX31.2/Example31_2.sce [202]) +(../24/CH31/EX31.3/Example31_3.sce [203]) (../24/CH31/EX31.4/Example31_4.sce) +(../24/CH31/EX31.5/Example31_5.sce [204]) (../24/CH31/EX31.6/Example31_6.sce) +[205] (../24/CH31/EX31.7/Example31_7.sce) (../24/CH31/EX31.8/Example31_8.sce +[206]) (../24/CH31/EX31.9/Example31_9.sce) [207] [208] +Chapter 32. +(../24/CH32/EX32.1/Example32_1.sce) [209] (../24/CH32/EX32.2/Example32_2.sce) +(../24/CH32/EX32.3/Example32_3.sce [210]) [211] +Chapter 33. +(../24/CH33/EX33.1/Example33_1.sce) (../24/CH33/EX33.2/Example33_2.sce [212]) +(../24/CH33/EX33.3/Example33_3.sce [213]) (../24/CH33/EX33.4/Example33_4.sce) +[214] (../24/CH33/EX33.5/Example33_5.sce) (../24/CH33/EX33.6/Example33_6.sce +[215]) (../24/CH33/EX33.7/Example33_7.sce [216]) +(../24/CH33/EX33.8/Example33_8.sce) [217] (../24/CH33/EX33.9/Example33_9.sce) +[218] +Chapter 34. +(../24/CH34/EX34.1/Example34_1.sce) + +LaTeX Warning: Reference `AP:273' on page 219 undefined on input line 3035. + +[219] (../24/CH34/EX34.2/Example34_2.sce) + +LaTeX Warning: Reference `AP:272' on page 220 undefined on input line 3048. + +(../24/CH34/EX34.3/Example34_3.sce [220]) + +LaTeX Warning: Reference `AP:272' on page 221 undefined on input line 3061. + +(../24/CH34/EX34.4/Example34_4.sce [221]) + +LaTeX Warning: Reference `AP:272' on page 222 undefined on input line 3074. + +(../24/CH34/EX34.5/Example34_5.sce) [222] +Chapter 35. +(../24/CH35/EX35.1/Example35_1.sce) (../24/CH35/EX35.2/Example35_2.sce [223]) +(../24/CH35/EX35.3/Example35_3.sce [224]) (../24/CH35/EX35.4/Example35_4.sce) +[225] +Chapter 36. +(../24/CH36/EX36.1/Example36_1.sce) [226] (../24/CH36/EX36.2/Example36_2.sce) + +LaTeX Warning: Reference `AP:272' on page 227 undefined on input line 3157. + +(../24/CH36/EX36.3/Example36_3.sce [227]) (../24/CH36/EX36.4/Example36_4.sce) +(../24/CH36/EX36.5/Example36_5.sce [228]) (../24/CH36/EX36.6/Example36_6.sce) +[229] +Chapter 37. + +LaTeX Warning: Reference `AP:272' on page 230 undefined on input line 3205. + +(../24/CH37/EX37.1/Example37_1.sce) [230] (../24/CH37/EX37.2/Example37_2.sce) +(../24/CH37/EX37.3/Example37_3.sce [231]) (../24/CH37/EX37.4/Example37_4.sce) + +LaTeX Warning: Reference `AP:272' on page 232 undefined on input line 3251. + +[232] (../24/CH37/EX37.5/Example37_5.sce) [233] [234] +Chapter 38. +(../24/CH38/EX38.1/Example38_1.sce) (../24/CH38/EX38.2/Example38_2.sce [235]) +(../24/CH38/EX38.3/Example38_3.sce) (../24/CH38/EX38.4/Example38_4.sce [236]) +(../24/CH38/EX38.5/Example38_5.sce [237]) (../24/CH38/EX38.6/Example38_6.sce) +[238] (../24/CH38/EX38.7/Example38_7.sce) [239] +Chapter 39. +(../24/CH39/EX39.1/Example39_1.sce) (../24/CH39/EX39.2/Example39_2.sce [240]) +(../24/CH39/EX39.3/Example39_3.sce) + +LaTeX Warning: Reference `AP:272' on page 241 undefined on input line 3378. + +[241] (../24/CH39/EX39.4/Example39_4.sce) (../24/CH39/EX39.5/Example39_5.sce +[242]) (../24/CH39/EX39.6/Example39_6.sce) (../24/CH39/EX39.7/Example39_7.sce +[243]) [244] +Chapter 40. + +LaTeX Warning: Reference `AP:285' on page 245 undefined on input line 3426. + +(../24/CH40/EX40.1/Example40_1.sce [245]) (../24/CH40/EX40.3/Example40_3.sce +[246]) + +LaTeX Warning: Reference `AP:285' on page 247 undefined on input line 3450. + +(../24/CH40/EX40.4/Example40_4.sce) + +LaTeX Warning: Reference `AP:285' on page 247 undefined on input line 3463. + +[247] (../24/CH40/EX40.6/Example40_6.sce) (../24/CH40/EX40.8/Example40_8.sce +[248]) [249] +Chapter 41. +(../24/CH41/EX41.1/Example41_1.sce) (../24/CH41/EX41.2/Example41_2.sce [250]) +(../24/CH41/EX41.3/Example41_3.sce) +<../24/CH41/EX41.3/Example41_3a.jpg, id=6171, 371.88937pt x 345.54094pt> +<use ../24/CH41/EX41.3/Example41_3a.jpg> (../24/CH41/EX41.4/Example41_4.sce +[251] [252 <../24/CH41/EX41.3/Example41_3a.jpg>]) +(../24/CH41/EX41.5/Example41_5.sce) (../24/CH41/EX41.6/Example41_6.sce [253]) +[254] +Chapter 42. +(../24/CH42/EX42.1/Example42_1.sce) (../24/CH42/EX42.2/Example42_2.sce [255]) +(../24/CH42/EX42.3/Example42_3.sce) [256] (../24/CH42/EX42.4/Example42_4.sce) +(../24/CH42/EX42.5/Example42_5.sce [257]) (../24/CH42/EX42.6/Example42_6.sce) +[258] (../24/CH42/EX42.7/Example42_7.sce) [259] +Chapter 43. +(../24/CH43/EX43.1/Example43_1.sce) [260] (../24/CH43/EX43.2/Example43_2.sce) +(../24/CH43/EX43.3/Example43_3.sce) [261] (../24/CH43/EX43.4/Example43_4.sce) +(../24/CH43/EX43.5/Example43_5.sce) [262] (../24/CH43/EX43.6/Example43_6.sce) +[263] (../24/CH43/EX43.7/Example43_7.sce) (../24/CH43/EX43.8/Example43_8.sce) +[264] (../24/CH43/EX43.9/Example43_9.sce) (../24/CH43/EX43.10/Example43_10.sce +[265]) [266] +Chapter 44. +(../24/CH44/EX44.1/Example44_1.sce) (../24/CH44/EX44.2/Example44_2.sce [267] +[268]) (../24/CH44/EX44.3/Example44_3.sce) (../24/CH44/EX44.4/Example44_4.sce +[269]) (../24/CH44/EX44.5/Example44_5.sce) [270] +(../24/CH44/EX44.6/Example44_6.sce) [271] +Chapter 45. +(../24/CH45/EX45.1/Example45_1.sce [272]) (../24/CH45/EX45.2/Example45_2.sce) +(../24/CH45/EX45.3/Example45_3.sce [273]) (../24/CH45/EX45.6/Example45_6.sce) +[274] (../24/CH45/EX45.7/Example45_7.sce) [275] (../24/DEPENDENCIES/quantum.sci +) +! Missing $ inserted. +<inserted text> + $ +l.3890 \tcaption {degree_rad}{degree_ + rad} +! Extra }, or forgotten $. +l.3890 \tcaption {degree_rad}{degree_rad} + +! Missing $ inserted. +<inserted text> + $ +l.3891 ...sting{../24/DEPENDENCIES/degree_rad.sci} + +! Missing } inserted. +<inserted text> + } +l.3891 ...sting{../24/DEPENDENCIES/degree_rad.sci} + +! Missing \endgroup inserted. +<inserted text> + \endgroup +l.3891 ...sting{../24/DEPENDENCIES/degree_rad.sci} + +! Missing \endgroup inserted. +<inserted text> + \endgroup +l.3891 ...sting{../24/DEPENDENCIES/degree_rad.sci} + +[276] +! Undefined control sequence. +\lst@GetLineInterval ...r \lst@GLI \lst@linerange + \@nil +l.3891 ...sting{../24/DEPENDENCIES/degree_rad.sci} + +Runaway argument? +\@nil \lst@ifsensitive \else \let \lst@KeywordTest \lst@KEYWORDTEST \let \ETC. +! Paragraph ended before \lst@GLI was complete. +<to be read again> + \par +l.3893 + +(../24/DEPENDENCIES/Gravitation.sci) (../24/DEPENDENCIES/electrostatics.sci +! TeX capacity exceeded, sorry [grouping levels=255]. +\lst@OrgOutput ->{ + \lst@RestoreOrigCatcodes \lst@ifec \lst@RestoreOrigExtende... +l.3 // + electric consatnt ! ==> Fatal error occurred, no output PDF file produced! Transcript written on TEX_final.log. diff --git a/latex/pdf_creator.sh b/latex/pdf_creator.sh index 2e2cbe094..1276374f3 100755 --- a/latex/pdf_creator.sh +++ b/latex/pdf_creator.sh @@ -1,7 +1,8 @@ -$ cat changedir.sh +#$ cat changedir.sh #!/bin/bash +export PATH=$PATH:/usr/local/texlive/2015/bin/x86_64-linux - +#unalias rm if [ -f TEX_final.tex ] then rm TEX_final.* @@ -13,7 +14,7 @@ fi ./latex_test.sh $1 $2 $3 $4 pdflatex TEX_final.tex > log.txt pdflatex TEX_final.tex >> log1.txt -pdflatex TEX_final.tex >> log1.txt -pdflatex TEX_final.tex >> log1.txt - +#pdflatex TEX_final.tex >> log1.txt +#pdflatex TEX_final.tex >> log1.txt +mv -v TEX_final.pdf $5 >> log.txt rm log1.txt diff --git a/latex/texput.log b/latex/texput.log index b8c1e342e..7795d3a23 100755 --- a/latex/texput.log +++ b/latex/texput.log @@ -1,5 +1,6 @@ -This is pdfTeXk, Version 3.141592-1.40.3 (Web2C 7.5.6) (format=pdflatex 2014.2.5) 29 SEP 2014 05:24 +This is pdfTeX, Version 3.14159265-2.6-1.40.17 (TeX Live 2016) (preloaded format=pdflatex 2016.8.26) 19 SEP 2017 13:42 entering extended mode + restricted \write18 enabled. %&-line parsing enabled. **TEX_final.tex @@ -10,11 +11,11 @@ End of file on the terminal! Here is how much of TeX's memory you used: - 3 strings out of 256216 - 116 string characters out of 1917073 - 48804 words of memory out of 1500000 - 3390 multiletter control sequences out of 10000+200000 - 3640 words of font info for 14 fonts, out of 1200000 for 2000 - 645 hyphenation exceptions out of 8191 - 0i,0n,0p,1b,6s stack positions out of 5000i,500n,6000p,200000b,15000s + 3 strings out of 493013 + 104 string characters out of 6133328 + 53632 words of memory out of 5000000 + 3649 multiletter control sequences out of 15000+600000 + 3640 words of font info for 14 fonts, out of 8000000 for 9000 + 1141 hyphenation exceptions out of 8191 + 0i,0n,0p,1b,6s stack positions out of 5000i,500n,10000p,200000b,80000s ! ==> Fatal error occurred, no output PDF file produced! diff --git a/latex/tmp_1040_contributor.txt b/latex/tmp_1040_contributor.txt index e3cbac692..d9fd800b9 100644 --- a/latex/tmp_1040_contributor.txt +++ b/latex/tmp_1040_contributor.txt @@ -1 +1 @@ -Sneha R Iyer#B-Tech Chemical Engineering#Chemical Engineering#SASTRA University ,Thanjavur#NA# +Sneha R Iyer#B-Tech Chemical Engineering#Chemical Engineering#SASTRA University ,Thanjavur#NA#Spandana diff --git a/latex/tmp_1040_data.txt b/latex/tmp_1040_data.txt index e69de29bb..35d8f12cd 100644 --- a/latex/tmp_1040_data.txt +++ b/latex/tmp_1040_data.txt @@ -0,0 +1,78 @@ +10#Novel Reactors #10.2#Conversion as a function of No of Gauzes#Chapter10_Ex2_Output.txt#1040/CH10/EX10.2/Chapter10_Ex2_Output.txt#R##115413 +10#Novel Reactors #10.2#Conversion as a function of No of Gauzes#Ex10_2.sce#1040/CH10/EX10.2/Ex10_2.sce#S##116624 +10#Novel Reactors #10.1#Fraction unconverted naphthalene based on model II#Chapter10_Ex1_Output.txt#1040/CH10/EX10.1/Chapter10_Ex1_Output.txt#R##115411 +10#Novel Reactors #10.1#Fraction unconverted naphthalene based on model II#Ex10_1.sce#1040/CH10/EX10.1/Ex10_1.sce#S##116623 +9#Fluidized Bed Reactors#9.2#Model II Fraction unconverted naphthalene#Ex9_2.sce#1040/CH9/EX9.2/Ex9_2.sce#S##116622 +9#Fluidized Bed Reactors#9.2#Model II Fraction unconverted naphthalene#Chapter9_Ex2_Output.txt#1040/CH9/EX9.2/Chapter9_Ex2_Output.txt#R##115479 +9#Fluidized Bed Reactors#9.1#Model II Volumetric Mass Transfer Coefficient K#Chapter9_Ex1_Output.txt#1040/CH9/EX9.1/Chapter9_Ex1_Output.txt#R##115477 +9#Fluidized Bed Reactors#9.1#Model II Volumetric Mass Transfer Coefficient K#Ex9_1.sce#1040/CH9/EX9.1/Ex9_1.sce#S##116621 +8#Multiphase Reactors#8.3#Apparent rate constant and consistency#Chapter8_Ex3_Output.txt#1040/CH8/EX8.3/Chapter8_Ex3_Output.txt#R##115475 +8#Multiphase Reactors#8.3#Apparent rate constant and consistency#Ex8_3.sce#1040/CH8/EX8.3/Ex8_3.sce#S##116620 +8#Multiphase Reactors#8.2#External Mass Transfer resistance#Chapter8_Ex2_Output.txt#1040/CH8/EX8.2/Chapter8_Ex2_Output.txt#R##115473 +8#Multiphase Reactors#8.2#External Mass Transfer resistance#Ex8_2.sce#1040/CH8/EX8.2/Ex8_2.sce#S##116619 +8#Multiphase Reactors#8.1#Gas absorption coefficient and fraction of overall resistance#Chapter8_Ex1_Output.txt#1040/CH8/EX8.1/Chapter8_Ex1_Output.txt#R##115471 +8#Multiphase Reactors#8.1#Gas absorption coefficient and fraction of overall resistance#Ex8_1.sce#1040/CH8/EX8.1/Ex8_1.sce#S##116618 +7#Gas Liquid Reactions#7.7#Apparent value of kLa regime of operation and selectivity dependency on gas mixing#Ex7_7.sce#1040/CH7/EX7.7/Ex7_7.sce#S##116617 +7#Gas Liquid Reactions#7.7#Apparent value of kLa regime of operation and selectivity dependency on gas mixing#Chapter7_Ex7_Output.txt#1040/CH7/EX7.7/Chapter7_Ex7_Output.txt#R##115469 +7#Gas Liquid Reactions#7.6#Fraction of O2 Power of agitator kLa and average dissolved oxygen concentration#Ex7_6.sce#1040/CH7/EX7.6/Ex7_6.sce#S##116616 +7#Gas Liquid Reactions#7.6#Fraction of O2 Power of agitator kLa and average dissolved oxygen concentration#Chapter7_Ex6_Output.txt#1040/CH7/EX7.6/Chapter7_Ex6_Output.txt#R##115467 +7#Gas Liquid Reactions#7.5#Maximum rate of CO absorption and Dimensions of Bubble Column Reactor#Chapter7_Ex5_Output.txt#1040/CH7/EX7.5/Chapter7_Ex5_Output.txt#R##115465 +7#Gas Liquid Reactions#7.5#Maximum rate of CO absorption and Dimensions of Bubble Column Reactor#Ex7_5.sce#1040/CH7/EX7.5/Ex7_5.sce#S##116615 +7#Gas Liquid Reactions#7.4#Local selectivity due to mass transfer limitations#Chapter7_Ex4_Output.txt#1040/CH7/EX7.4/Chapter7_Ex4_Output.txt#R##115463 +7#Gas Liquid Reactions#7.4#Local selectivity due to mass transfer limitations#Ex7_4.sce#1040/CH7/EX7.4/Ex7_4.sce#S##116614 +7#Gas Liquid Reactions#7.3#Overall mass transfer coefficient and percent resistance#Chapter7_Ex3_Output.txt#1040/CH7/EX7.3/Chapter7_Ex3_Output.txt#R##115461 +7#Gas Liquid Reactions#7.3#Overall mass transfer coefficient and percent resistance#Ex7_3.sce#1040/CH7/EX7.3/Ex7_3.sce#S##116613 +7#Gas Liquid Reactions#7.2#The gradient for B in the liquid film#Chapter7_Ex2_Output.txt#1040/CH7/EX7.2/Chapter7_Ex2_Output.txt#R##115459 +7#Gas Liquid Reactions#7.2#The gradient for B in the liquid film#Ex7_2.sce#1040/CH7/EX7.2/Ex7_2.sce#S##116612 +7#Gas Liquid Reactions#7.1#Overall Reaction Rate Coefficient Percent Resistance Reaction Volume and Reactor Size#Chapter7_Ex1_Output.txt#1040/CH7/EX7.1/Chapter7_Ex1_Output.txt#R##115457 +7#Gas Liquid Reactions#7.1#Overall Reaction Rate Coefficient Percent Resistance Reaction Volume and Reactor Size#Ex7_1.sce#1040/CH7/EX7.1/Ex7_1.sce#S##116611 +6#Nonideal Flow#6.4#Conversion in packed bed for same superficial velocity#Ex6_4.sce#1040/CH6/EX6.4/Ex6_4.sce#S##116610 +6#Nonideal Flow#6.4#Conversion in packed bed for same superficial velocity#Chapter6_Ex4_Output.txt#1040/CH6/EX6.4/Chapter6_Ex4_Output.txt#R##115455 +6#Nonideal Flow#6.3#Effect of Axial dispersion and length on conversion#Ex6_3.sce#1040/CH6/EX6.3/Ex6_3.sce#S##116609 +6#Nonideal Flow#6.3#Effect of Axial dispersion and length on conversion#Chapter6_Ex3_Output.txt#1040/CH6/EX6.3/Chapter6_Ex3_Output.txt#R##115453 +6#Nonideal Flow#6.2#Effect of diffusion on conversion for laminar flow#Ex6_2.sce#1040/CH6/EX6.2/Ex6_2.sce#S##116608 +6#Nonideal Flow#6.2#Effect of diffusion on conversion for laminar flow#Chapter6_Ex2_Output.txt#1040/CH6/EX6.2/Chapter6_Ex2_Output.txt#R##115451 +6#Nonideal Flow#6.1#Power Consumption at 300 rpm speed of stirrer and blending time#Chapter6_Ex1_Output.txt#1040/CH6/EX6.1/Chapter6_Ex1_Output.txt#R##115449 +6#Nonideal Flow#6.1#Power Consumption at 300 rpm speed of stirrer and blending time#Ex6_1.sce#1040/CH6/EX6.1/Ex6_1.sce#S##116607 +5#Heat and Mass Transfer in Reactors #5.3#Overall heat transfer coefficients and radial average bed temperature for packed bed reactor#Ex5_3.sce#1040/CH5/EX5.3/Ex5_3.sce#S##116606 +5#Heat and Mass Transfer in Reactors #5.3#Overall heat transfer coefficients and radial average bed temperature for packed bed reactor#Chapter5_Ex3_Output.txt#1040/CH5/EX5.3/Chapter5_Ex3_Output.txt#R##115447 +5#Heat and Mass Transfer in Reactors #5.2#Maximum internal temperature difference#Ex5_2.sce#1040/CH5/EX5.2/Ex5_2.sce#S##116605 +5#Heat and Mass Transfer in Reactors #5.2#Maximum internal temperature difference#Chapter5_Ex2_Output.txt#1040/CH5/EX5.2/Chapter5_Ex2_Output.txt#R##115445 +5#Heat and Mass Transfer in Reactors #5.1#Temperature Profiles for tubular reactor#Ex5_1.sce#1040/CH5/EX5.1/Ex5_1.sce#S##116604 +5#Heat and Mass Transfer in Reactors #5.1#Temperature Profiles for tubular reactor#Chapter5_Ex1_Plot_1.pdf#1040/CH5/EX5.1/Chapter5_Ex1_Plot_1.pdf#R##115442 +5#Heat and Mass Transfer in Reactors #5.1#Temperature Profiles for tubular reactor#Chapter5_Ex1_Plot_2.pdf#1040/CH5/EX5.1/Chapter5_Ex1_Plot_2.pdf#R##115443 +4#Diffusion and Reaction in Porous Catalysts#4.5#The optimum pore size distribution for a spherical pellet#Ex4_5.sce#1040/CH4/EX4.5/Ex4_5.sce#S##116603 +4#Diffusion and Reaction in Porous Catalysts#4.5#The optimum pore size distribution for a spherical pellet#Chapter4_Ex5_Output.txt#1040/CH4/EX4.5/Chapter4_Ex5_Output.txt#R##115439 +4#Diffusion and Reaction in Porous Catalysts#4.4#Effectiveness factor for solid catalyzed reaction#Chapter4_Ex4_Output.txt#1040/CH4/EX4.4/Chapter4_Ex4_Output.txt#R##115437 +4#Diffusion and Reaction in Porous Catalysts#4.4#Effectiveness factor for solid catalyzed reaction#Ex4_4.sce#1040/CH4/EX4.4/Ex4_4.sce#S##116602 +4#Diffusion and Reaction in Porous Catalysts#4.3#Influence of Pore diffusion over rate#Chapter4_Ex3_Output.txt#1040/CH4/EX4.3/Chapter4_Ex3_Output.txt#R##115435 +4#Diffusion and Reaction in Porous Catalysts#4.3#Influence of Pore diffusion over rate#Ex4_3.sce#1040/CH4/EX4.3/Ex4_3.sce#S##116601 +4#Diffusion and Reaction in Porous Catalysts#4.2#Effective diffusivity of O2 in air#Chapter4_Ex2_Output.txt#1040/CH4/EX4.2/Chapter4_Ex2_Output.txt#R##115433 +4#Diffusion and Reaction in Porous Catalysts#4.2#Effective diffusivity of O2 in air#Ex4_2.sce#1040/CH4/EX4.2/Ex4_2.sce#S##116600 +4#Diffusion and Reaction in Porous Catalysts#4.1#Diffusivity of Chlorine and tortuosity in catalyst pellet#Chapter4_Ex1_Output.txt#1040/CH4/EX4.1/Chapter4_Ex1_Output.txt#R##115431 +4#Diffusion and Reaction in Porous Catalysts#4.1#Diffusivity of Chlorine and tortuosity in catalyst pellet#Ex4_1.sce#1040/CH4/EX4.1/Ex4_1.sce#S##116599 +3#Ideal Reactors#3.7#Equilibrium temperature as a function of conversion and optimum feed temperature#Ex3_7.sce#1040/CH3/EX3.7/Ex3_7.sce#S##116598 +3#Ideal Reactors#3.7#Equilibrium temperature as a function of conversion and optimum feed temperature#Chapter3_Ex7_Output.txt#1040/CH3/EX3.7/Chapter3_Ex7_Output.txt#R##115428 +3#Ideal Reactors#3.7#Equilibrium temperature as a function of conversion and optimum feed temperature#Chapter3_Ex7_Plot_1.pdf#1040/CH3/EX3.7/Chapter3_Ex7_Plot_1.pdf#R##115429 +3#Ideal Reactors#3.6#Optimum reaction temperature#Chapter3_Ex6_Output.txt#1040/CH3/EX3.6/Chapter3_Ex6_Output.txt#R##115426 +3#Ideal Reactors#3.6#Optimum reaction temperature#Ex3_6.sce#1040/CH3/EX3.6/Ex3_6.sce#S##116597 +3#Ideal Reactors#3.5#Rate Equation to fit Initial Rate data#Ex3_5.sce#1040/CH3/EX3.5/Ex3_5.sce#S##116596 +3#Ideal Reactors#3.5#Rate Equation to fit Initial Rate data#Chapter3_Ex5_Output.txt#1040/CH3/EX3.5/Chapter3_Ex5_Output.txt#R##115423 +3#Ideal Reactors#3.5#Rate Equation to fit Initial Rate data#Chapter3_Ex5_Plot_1.pdf#1040/CH3/EX3.5/Chapter3_Ex5_Plot_1.pdf#R##115424 +3#Ideal Reactors#3.4#Volume of reactor for Gas Phase isothermal reaction#Ex3_4.sce#1040/CH3/EX3.4/Ex3_4.sce#S##116595 +3#Ideal Reactors#3.4#Volume of reactor for Gas Phase isothermal reaction#Chapter3_Ex4_Output.txt#1040/CH3/EX3.4/Chapter3_Ex4_Output.txt#R##115421 +3#Ideal Reactors#3.3#Effect of temperature on yield#Chapter3_Ex3_Output.txt#1040/CH3/EX3.3/Chapter3_Ex3_Output.txt#R##115419 +3#Ideal Reactors#3.3#Effect of temperature on yield#Ex3_3.sce#1040/CH3/EX3.3/Ex3_3.sce#S##116594 +3#Ideal Reactors#3.2#Residence time and heat generation for four STR s in series#Chapter3_Ex2_Output.txt#1040/CH3/EX3.2/Chapter3_Ex2_Output.txt#R##115417 +3#Ideal Reactors#3.2#Residence time and heat generation for four STR s in series#Ex3_2.sce#1040/CH3/EX3.2/Ex3_2.sce#S##116593 +3#Ideal Reactors#3.1#Time to reach desired conversion for bimolecular batch reaction#Chapter3_Ex1_Output.txt#1040/CH3/EX3.1/Chapter3_Ex1_Output.txt#R##115415 +3#Ideal Reactors#3.1#Time to reach desired conversion for bimolecular batch reaction#Ex3_1.sce#1040/CH3/EX3.1/Ex3_1.sce#S##116592 +2#Kinetic Models for Heterogeneous Reactions#2.1#Effectiveness factor for solid catalyzed reaction#Chapter2_Ex1_Plot_1.pdf#1040/CH2/EX2.1/Chapter2_Ex1_Plot_1.pdf#R##115409 +2#Kinetic Models for Heterogeneous Reactions#2.1#Effectiveness factor for solid catalyzed reaction#Chapter2_Ex1_Output.txt#1040/CH2/EX2.1/Chapter2_Ex1_Output.txt#R##115408 +2#Kinetic Models for Heterogeneous Reactions#2.1#Effectiveness factor for solid catalyzed reaction#Ex2_1.sce#1040/CH2/EX2.1/Ex2_1.sce#S##116591 +1#Homogeneous Kinetics#1.5#Methods to determine km and vm#Chapter1_Ex5_Plot_1.pdf#1040/CH1/EX1.5/Chapter1_Ex5_Plot_1.pdf#R##115406 +1#Homogeneous Kinetics#1.5#Methods to determine km and vm#Chapter1_Ex5_Output.txt#1040/CH1/EX1.5/Chapter1_Ex5_Output.txt#R##115405 +1#Homogeneous Kinetics#1.5#Methods to determine km and vm#Ex1_5.sce#1040/CH1/EX1.5/Ex1_5.sce#S##116590 +1#Homogeneous Kinetics#1.4#Activation energy from packed bed data#Chapter1_Ex4_Plot.pdf#1040/CH1/EX1.4/Chapter1_Ex4_Plot.pdf#R##115403 +1#Homogeneous Kinetics#1.4#Activation energy from packed bed data#Chapter1_Ex4_Output.txt#1040/CH1/EX1.4/Chapter1_Ex4_Output.txt#R##115402 +1#Homogeneous Kinetics#1.4#Activation energy from packed bed data#Ex1_4.sce#1040/CH1/EX1.4/Ex1_4.sce#S##116589 diff --git a/latex/tmp_1085_data.txt b/latex/tmp_1085_data.txt index 527fe64ad..88f230629 100755 --- a/latex/tmp_1085_data.txt +++ b/latex/tmp_1085_data.txt @@ -1,6 +1,6 @@ -18#Composites#18.2#Calculate the elastic modulus when the stress is applied perpendicular to the direction of the fibre alignment#ex18_2.sce#1085/CH18/EX18.2/ex18_2.sce#S##67176 +18#Composites#18.2#Elastic modulus when the stress is applied perpendicular to the direction of the fibre alignment#ex18_2.sce#1085/CH18/EX18.2/ex18_2.sce#S##67176 18#Composites#18.1#Calculate the modulus of elasticity#ex18_1.sce#1085/CH18/EX18.1/ex18_1.sce#S##67175 -16#Superconductivity and Superconducting Materials#16.1#Calculate the energy gap in electron volts and Calculate the wavelength of a photon#ex16_1.sce#1085/CH16/EX16.1/ex16_1.sce#S##67174 +16#Superconductivity and Superconducting Materials#16.1#Energy gap in electron volts and Calculate the wavelength of a photon#ex16_1.sce#1085/CH16/EX16.1/ex16_1.sce#S##67174 15#Semiconductors#15.4#Obtain density relation in P type material#ex15_4.sce#1085/CH15/EX15.4/ex15_4.sce#S##67172 15#Semiconductors#15.3#Find the resistance of an intrinsic germanium rod#ex15_3.sce#1085/CH15/EX15.3/ex15_3.sce#S##67171 15#Semiconductors#15.2#Find the resistivity at room temperature#ex15_2.sce#1085/CH15/EX15.2/ex15_2.sce#S##67170 @@ -12,37 +12,37 @@ 14#Electrical and Magnetic Properties of Materials#14.5#Calculate the polarization#ex14_5.sce#1085/CH14/EX14.5/ex14_5.sce#S##67162 14#Electrical and Magnetic Properties of Materials#14.4#Calculate the relative dielectric constant of a barium titanate crystal#ex14_4.sce#1085/CH14/EX14.4/ex14_4.sce#S##67159 14#Electrical and Magnetic Properties of Materials#14.3#Find the resistivity due to impurity scattering per percent of Ni in the Cu lattice#ex14_3.sce#1085/CH14/EX14.3/ex14_3.sce#S##67158 -14#Electrical and Magnetic Properties of Materials#14.2#Find the resistivity of a copper alloy containing 1 atomic percent nickel and 3 atomic percent silver#ex14_2.sce#1085/CH14/EX14.2/ex14_2.sce#S##67157 +14#Electrical and Magnetic Properties of Materials#14.2#Resistivity of a copper alloy containing 1 atomic percent nickel and 3 atomic percent silver#ex14_2.sce#1085/CH14/EX14.2/ex14_2.sce#S##67157 14#Electrical and Magnetic Properties of Materials#14.1#Calculate the resistance of an aluminium wire#ex14_1.sce#1085/CH14/EX14.1/ex14_1.sce#S##67168 -13#Thermal and Optical Properties of Materials#13.1#Determine the maximum temperature to which the rod may be heated without exceeding a compressive stress of 172 MPa#ex13_1.sce#1085/CH13/EX13.1/ex13_1.sce#S##67150 -12#Oxidation and Corrosion#12.2#Calculate the quality of magnesium required per square meter of the hull surface for a design life of 10 years#ex12_2.sce#1085/CH12/EX12.2/ex12_2.sce#S##67154 +13#Thermal and Optical Properties of Materials#13.1#Maximum temperature to which the rod may be heated without exceeding a compressive stress#ex13_1.sce#1085/CH13/EX13.1/ex13_1.sce#S##67150 +12#Oxidation and Corrosion#12.2#Quality of magnesium required per square meter of the hull surface#ex12_2.sce#1085/CH12/EX12.2/ex12_2.sce#S##67154 12#Oxidation and Corrosion#12.1#Find the distance at which magnisium anode capable of giving 2MA#ex12_1.sce#1085/CH12/EX12.1/ex12_1.sce#S##67151 11#Deformation of Materials#11.4#Find the yield stress#ex11_4.sce#1085/CH11/EX11.4/ex11_4.sce#S##67147 11#Deformation of Materials#11.3#Find the yield stress#ex11_3.sce#1085/CH11/EX11.3/ex11_3.sce#S##67149 11#Deformation of Materials#11.1#Determine the value of critical resolved shear stress#ex11_1.sce#1085/CH11/EX11.1/ex11_1.sce#S##67148 10#Heat Treatment#10.1#Determine the grain diameter of an ASTM Number 8#ex10_1.sce#1085/CH10/EX10.1/ex10_1.sce#S##67146 9#Alloys Systems Phase Diagrams and Phase Transformations#9.3#Find the minimum number of components in the system#ex9_3.sce#1085/CH9/EX9.3/ex9_3.sce#S##67145 -9#Alloys Systems Phase Diagrams and Phase Transformations#9.2#Determine the degrees of freedom of a system of two components#ex9_2.sce#1085/CH9/EX9.2/ex9_2.sce#S##67141 +9#Alloys Systems Phase Diagrams and Phase Transformations#9.2#Degrees of freedom of a system of two components#ex9_2.sce#1085/CH9/EX9.2/ex9_2.sce#S##67141 9#Alloys Systems Phase Diagrams and Phase Transformations#9.1#Find the percentage of proeutectoid ferrite#ex9_1.sce#1085/CH9/EX9.1/ex9_1.sce#S##67144 8#Mechanical Properties of Materials and Mechanical Tests#8.5#Compute the strain hardening exponent#ex8_5.sce#1085/CH8/EX8.5/ex8_5.sce#S##67136 8#Mechanical Properties of Materials and Mechanical Tests#8.4#Find the resultant elongation#ex8_4.sce#1085/CH8/EX8.4/ex8_4.sce#S##67138 8#Mechanical Properties of Materials and Mechanical Tests#8.3#Determine the fracture strength#ex8_3.sce#1085/CH8/EX8.3/ex8_3.sce#S##67135 -8#Mechanical Properties of Materials and Mechanical Tests#8.2#Compute the true stress and strain with engineering stress and strain#ex8_2.sce#1085/CH8/EX8.2/ex8_2.sce#S##67134 +8#Mechanical Properties of Materials and Mechanical Tests#8.2# true stress and strain with engineering stress and strain#ex8_2.sce#1085/CH8/EX8.2/ex8_2.sce#S##67134 8#Mechanical Properties of Materials and Mechanical Tests#8.1#Determine the fracture strength#ex8_1.sce#1085/CH8/EX8.1/ex8_1.sce#S##67133 -7#Diffusion in Solids#7.4#Determine the approximate time that will produce same diffussion at 500 C#ex7_4.sce#1085/CH7/EX7.4/ex7_4.sce#S##67132 -7#Diffusion in Solids#7.3#find the constant of the equation and activation energy and determine the diffusion coefficient#ex7_3.sce#1085/CH7/EX7.3/ex7_3.sce#S##67129 -7#Diffusion in Solids#7.2#Calculate time required to get a boron content of 1023 atoms per m3 at a depth of 2 micro meter#ex7_2.sce#1085/CH7/EX7.2/ex7_2.sce#S##67130 +7#Diffusion in Solids#7.4#approximate time that will produce same diffussion at 500 C#ex7_4.sce#1085/CH7/EX7.4/ex7_4.sce#S##67132 +7#Diffusion in Solids#7.3#find the constant of the equation and activation energy #ex7_3.sce#1085/CH7/EX7.3/ex7_3.sce#S##67129 +7#Diffusion in Solids#7.2#time required#ex7_2.sce#1085/CH7/EX7.2/ex7_2.sce#S##67130 7#Diffusion in Solids#7.1#find the time required for carburization#ex7_1.sce#1085/CH7/EX7.1/ex7_1.sce#S##67131 -6#Photoelectric Effect#6.7#Calculate the wavelength of light which can just eject electron from tungsten and from barrium#ex6_7.sce#1085/CH6/EX6.7/ex6_7.sce#S##67127 +6#Photoelectric Effect#6.7#wavelength of light which can just eject electron from tungsten and from barrium#ex6_7.sce#1085/CH6/EX6.7/ex6_7.sce#S##67127 6#Photoelectric Effect#6.6#Calculate the photons emitted by radio receiver#ex6_6.sce#1085/CH6/EX6.6/ex6_6.sce#S##67126 6#Photoelectric Effect#6.5#Determine the region of electrons spectrum#ex6_5.sce#1085/CH6/EX6.5/ex6_5.sce#S##67125 6#Photoelectric Effect#6.4#Calculate the photons emitted by lamp per second#ex6_4.sce#1085/CH6/EX6.4/ex6_4.sce#S##67124 6#Photoelectric Effect#6.3#Calculate the threshold frequency and the work function of metal#ex6_3.sce#1085/CH6/EX6.3/ex6_3.sce#S##67121 6#Photoelectric Effect#6.2#Calculate the threshold frequency and the corresponding wavelength#ex6_2.sce#1085/CH6/EX6.2/ex6_2.sce#S##67120 -6#Photoelectric Effect#6.1#Find the kinetic energy of electrons ejected from the surface#ex6_1.sce#1085/CH6/EX6.1/ex6_1.sce#S##67122 +6#Photoelectric Effect#6.1#kinetic energy of electrons ejected from the surface#ex6_1.sce#1085/CH6/EX6.1/ex6_1.sce#S##67122 5#Electron Theory of Metals#5.9#Estimate the mean path of free electrons in pure copper#ex5_9.sce#1085/CH5/EX5.9/ex5_9.sce#S##67114 5#Electron Theory of Metals#5.8#Calculate the velocity of an electrons at fermi level#ex5_8.sce#1085/CH5/EX5.8/ex5_8.sce#S##67115 -5#Electron Theory of Metals#5.7#Calculate the maximum velocity of an electron in a metal and mobility of electrons#ex5_7.sce#1085/CH5/EX5.7/ex5_7.sce#S##67117 +5#Electron Theory of Metals#5.7#maximum velocity of an electron in a metal and mobility of electrons#ex5_7.sce#1085/CH5/EX5.7/ex5_7.sce#S##67117 5#Electron Theory of Metals#5.6#Find the number of free electrons and also calculate mobility of electrons#ex5_6.sce#1085/CH5/EX5.6/ex5_6.sce#S##67116 5#Electron Theory of Metals#5.5#Find the mobility of condution electron and drift velocity#ex5_5.sce#1085/CH5/EX5.5/ex5_5.sce#S##67113 5#Electron Theory of Metals#5.4#Find the mobility of condution electron#ex5_4.sce#1085/CH5/EX5.4/ex5_4.sce#S##67112 @@ -52,10 +52,10 @@ 5#Electron Theory of Metals#5.1#Evaluate the temperature#ex5_1.sce#1085/CH5/EX5.1/ex5_1.sce#S##67110 4#Bonds in solid#4.6#Estimate the fraction of hydrogen bonds that are broken when ice melts#ex4_6.sce#1085/CH4/EX4.6/ex4_6.sce#S##67104 4#Bonds in solid#4.5#How much net energy is spent in the process#ex4_5.sce#1085/CH4/EX4.5/ex4_5.sce#S##67109 -4#Bonds in solid#4.4#Calculate the force of attraction between ions#ex4_4.sce#1085/CH4/EX4.4/ex4_4.sce#S##67108 +4#Bonds in solid#4.4#force of attraction between ions#ex4_4.sce#1085/CH4/EX4.4/ex4_4.sce#S##67108 4#Bonds in solid#4.3#Find the radius of Cl ion#ex4_3.sce#1085/CH4/EX4.3/ex4_3.sce#S##67107 4#Bonds in solid#4.2#Find the repulsive exponent n#ex4_2.sce#1085/CH4/EX4.2/ex4_2.sce#S##67106 -4#Bonds in solid#4.1#Find A and B and the force needed to dissociate this molecule into atoms and the interatomic distance at which the dissociation occurs#ex4_1.sce#1085/CH4/EX4.1/ex4_1.sce#S##67105 +4#Bonds in solid#4.1#distance at which the dissociation occurs#ex4_1.sce#1085/CH4/EX4.1/ex4_1.sce#S##67105 3#Crystal Geometry Structure and Defects#3.31#Determine interatomic spacing#ex3_31.sce#1085/CH3/EX3.31/ex3_31.sce#S##67097 3#Crystal Geometry Structure and Defects#3.30#Obtain the interplanar spacing and miller indices of the reflection plane#ex3_30.sce#1085/CH3/EX3.30/ex3_30.sce#S##67103 3#Crystal Geometry Structure and Defects#3.29#Calculate the angle for 3rd order reflection#ex3_29.sce#1085/CH3/EX3.29/ex3_29.sce#S##67102 @@ -77,14 +77,14 @@ 3#Crystal Geometry Structure and Defects#3.12#Calculate the unit cell dimensions and atomic diameter#ex3_12.sce#1085/CH3/EX3.12/ex3_12.sce#S##67085 3#Crystal Geometry Structure and Defects#3.11#Determine the packing efficiency and density of sodium chloride#ex3_11.sce#1085/CH3/EX3.11/ex3_11.sce#S##67084 3#Crystal Geometry Structure and Defects#3.10#Find the angle Between normals to the planes#ex3_10.sce#1085/CH3/EX3.10/ex3_10.sce#S##67083 -2#Atomic structure and electronic configuration#2.9#Calculate the principal quantum number and wavelengths of radiation in both energies#ex2_9.sce#1085/CH2/EX2.9/ex2_9.sce#S##67079 -2#Atomic structure and electronic configuration#2.8#Calculate the velocity of an electron in hydrogen atom in bohr first orbit#ex2_8.sce#1085/CH2/EX2.8/ex2_8.sce#S##67078 -2#Atomic structure and electronic configuration#2.7#Calculate the values of kinetic energy potential energy and total energy of an electron#ex2_7.sce#1085/CH2/EX2.7/ex2_7.sce#S##67076 -2#Atomic structure and electronic configuration#2.6#Determine the orbital frequency of an electron in the first bohr orbit in a hydrogen atom#ex2_6.sce#1085/CH2/EX2.6/ex2_6.sce#S##67077 +2#Atomic structure and electronic configuration#2.9#principal quantum number and wavelengths of radiation in both energies#ex2_9.sce#1085/CH2/EX2.9/ex2_9.sce#S##67079 +2#Atomic structure and electronic configuration#2.8#velocity of an electron in hydrogen atom in bohr first orbit#ex2_8.sce#1085/CH2/EX2.8/ex2_8.sce#S##67078 +2#Atomic structure and electronic configuration#2.7#kinetic energy potential energy and total energy of an electron#ex2_7.sce#1085/CH2/EX2.7/ex2_7.sce#S##67076 +2#Atomic structure and electronic configuration#2.6#orbital frequency of an electron in the first bohr orbit in a hydrogen atom#ex2_6.sce#1085/CH2/EX2.6/ex2_6.sce#S##67077 2#Atomic structure and electronic configuration#2.5#Calculate the revolutions per second of an electron in the bohr orbit of hydrogen atom#ex2_5.sce#1085/CH2/EX2.5/ex2_5.sce#S##67075 2#Atomic structure and electronic configuration#2.4#Calculate the unit cell dimensions and atomic diameter#ex2_4.sce#1085/CH2/EX2.4/ex2_4.sce#S##67074 -2#Atomic structure and electronic configuration#2.3#Determine the radius of the second bohr orbit in a singly ionized helium atom#ex2_3.sce#1085/CH2/EX2.3/ex2_3.sce#S##67072 -2#Atomic structure and electronic configuration#2.2#Calculate the radius and frequency of an electron in the bohr first orbit in hydrogen atom#ex2_2.sce#1085/CH2/EX2.2/ex2_2.sce#S##67073 -2#Atomic structure and electronic configuration#2.15#find the percentage of Si in Copper silicide#ex2_15.sce#1085/CH2/EX2.15/ex2_15.sce#S##67081 -2#Atomic structure and electronic configuration#2.13#Assuming that the weight of one proton is equal to that of one neutron find the weight of copper atom and weight of one proton#ex2_13.sce#1085/CH2/EX2.13/ex2_13.sce#S##67080 -2#Atomic structure and electronic configuration#2.1#Calculate the distance of the closest approach alpha particles from the copper nucleus#ex2_1.sce#1085/CH2/EX2.1/ex2_1.sce#S##67071 +2#Atomic structure and electronic configuration#2.3#radius of the second bohr orbit in a singly ionized helium atom#ex2_3.sce#1085/CH2/EX2.3/ex2_3.sce#S##67072 +2#Atomic structure and electronic configuration#2.2#radius and frequency of an electron in the bohr first orbit in hydrogen atom#ex2_2.sce#1085/CH2/EX2.2/ex2_2.sce#S##67073 +2#Atomic structure and electronic configuration#2.15# percentage of Si in Copper silicide#ex2_15.sce#1085/CH2/EX2.15/ex2_15.sce#S##67081 +2#Atomic structure and electronic configuration#2.13#Weight of copper atom and weight of one proton#ex2_13.sce#1085/CH2/EX2.13/ex2_13.sce#S##67080 +2#Atomic structure and electronic configuration#2.1#Distance of the closest approach alpha particles from the copper nucleus#ex2_1.sce#1085/CH2/EX2.1/ex2_1.sce#S##67071 diff --git a/latex/tmp_1118_data.txt b/latex/tmp_1118_data.txt index e69de29bb..0f1b465f1 100755 --- a/latex/tmp_1118_data.txt +++ b/latex/tmp_1118_data.txt @@ -0,0 +1,160 @@ +26#Power factor improvement#26.9#To calculate the total load kVA and power factor#eg26_9.sce#1118/CH26/EX26.9/eg26_9.sce#S##68200 +26#Power factor improvement#26.8#To calculate power factor leading kvar and kva#eg26_8.sce#1118/CH26/EX26.8/eg26_8.sce#S##68199 +26#Power factor improvement#26.7#To calculate the leading kvar kva rating and power factor#eg26_7.sce#1118/CH26/EX26.7/eg26_7.sce#S##68198 +26#Power factor improvement#26.6#To calculate the capacitance per phase#eg26_6.sce#1118/CH26/EX26.6/eg26_6.sce#S##68197 +26#Power factor improvement#26.5#To calculate current to the motor at full load current through capacitor and capacitance#eg26_5.sce#1118/CH26/EX26.5/eg26_5.sce#S##68196 +26#Power factor improvement#26.4#To calculate the capacitance per phase#eg26_4.sce#1118/CH26/EX26.4/eg26_4.sce#S##68195 +26#Power factor improvement#26.3#to calculate the kVAr rating and capacitance per phase#eg26_3.sce#1118/CH26/EX26.3/eg26_3.sce#S##68194 +26#Power factor improvement#26.2#To calculate the capacitiance kVAr and the new supply of current#eg26_2.sce#1118/CH26/EX26.2/eg26_2.sce#S##68193 +26#Power factor improvement#26.13#To estimate the limiting cost per kvar#eg26_13.sce#1118/CH26/EX26.13/eg26_13.sce#S##68204 +26#Power factor improvement#26.12#To detremine the annual savings#eg26_12.sce#1118/CH26/EX26.12/eg26_12.sce#S##68203 +26#Power factor improvement#26.11#To detremine the most economical pf and the kva rating #eg26_11.sce#1118/CH26/EX26.11/eg26_11.sce#S##68202 +26#Power factor improvement#26.10#To calculate the annual saving#eg26_10.sce#1118/CH26/EX26.10/eg26_10.sce#S##68201 +26#Power factor improvement#26.1#To claculate the value of capicitance#eg26_1.sce#1118/CH26/EX26.1/eg26_1.sce#S##68192 +25#Tarrifs#25.9#To find the number of units for which the tariff is econimical#eg25_9.sce#1118/CH25/EX25.9/eg25_9.sce#S##68190 +25#Tarrifs#25.8#to calculate the annual bill#eg25_8.sce#1118/CH25/EX25.8/eg25_8.sce#S##68189 +25#Tarrifs#25.7#To determine which tariff is economical#eg25_7.sce#1118/CH25/EX25.7/eg25_7.sce#S##68188 +25#Tarrifs#25.6#To determine the total energy consummed and the total bill#eg25_6.sce#1118/CH25/EX25.6/eg25_6.sce#S##68187 +25#Tarrifs#25.5#To detremine the saving in energy cost#eg25_5.sce#1118/CH25/EX25.5/eg25_5.sce#S##68186 +25#Tarrifs#25.4#to determine the energy consumption per year and the yearly bill#eg25_4.sce#1118/CH25/EX25.4/eg25_4.sce#S##68185 +25#Tarrifs#25.3#To determine the cost of energy per kwh at the busbars#eg25_3.sce#1118/CH25/EX25.3/eg25_3.sce#S##68184 +25#Tarrifs#25.2#To calculate the annual bill#eg25_2.sce#1118/CH25/EX25.2/eg25_2.sce#S##68182 +25#Tarrifs#25.11#to find the generation cost per kwh#eg25_11.sce#1118/CH25/EX25.11/eg25_11.sce#S##68191 +25#Tarrifs#25.10#to find the energy consumption per year#25_10.sce#1118/CH25/EX25.10/25_10.sce#S##77786 +25#Tarrifs#25.1#To determine the overall cost per kwh#eg25_1.sce#1118/CH25/EX25.1/eg25_1.sce#S##73653 +24#System neutral grounding#24.2#To determine the inductance and kva rating#eg24_2.sce#1118/CH24/EX24.2/eg24_2.sce#S##67836 +24#System neutral grounding#24.1#to calculate reactance to neutralize the capacitance to earth#eg24_1.sce#1118/CH24/EX24.1/eg24_1.sce#S##67835 +22#Corona#22.2#to estimate the corona loss #eg22_2.sce#1118/CH22/EX22.2/eg22_2.sce#S##73654 +22#Corona#22.1#to determine the disruptive critical voltage visual critical voltages for local and general corona#eg22_1.sce#1118/CH22/EX22.1/eg22_1.sce#S##67838 +20#Travelling waves#20.8#To find the maximum voltage#eg20_8.sce#1118/CH20/EX20.8/eg20_8.sce#S##68179 +20#Travelling waves#20.7#To calculate the voltage across load#eg20_7.sce#1118/CH20/EX20.7/eg20_7.sce#S##68178 +20#Travelling waves#20.6#To calculate the current voltage waves and the resistance reflected from and transmitted beyond the junction #eg20_6.sce#1118/CH20/EX20.6/eg20_6.sce#S##68177 +20#Travelling waves#20.5#To find the surge voltage distribution#eg20_5.sce#1118/CH20/EX20.5/eg20_5.sce#S##68176 +20#Travelling waves#20.4#To determine from first principles the magnitudes of first and second pulses#eg20_4.sce#1118/CH20/EX20.4/eg20_4.sce#S##68175 +20#Travelling waves#20.3#to find the reflected voltage and current in the cable#eg20_3.sce#1118/CH20/EX20.3/eg20_3.sce#S##68174 +20#Travelling waves#20.2#To find the voltage distribution#eg20_2.sce#1118/CH20/EX20.2/eg20_2.sce#S##68205 +20#Travelling waves#20.1#to calculate the surge impedances and velocities of the line and cable #eg20_1.sce#1118/CH20/EX20.1/eg20_1.sce#S##68033 +19#Power system stability#19.9#To determine the critical clearing angle#eg19_9.sce#1118/CH19/EX19.9/eg19_9.sce#S##68030 +19#Power system stability#19.8#To detremine the stabilty of the system#eg19_8.sce#1118/CH19/EX19.8/eg19_8.sce#S##68029 +19#Power system stability#19.7#To estimate the sudden increase in generator output#eg19_7.sce#1118/CH19/EX19.7/eg19_7.sce#S##68028 +19#Power system stability#19.6#To calculte whether the generator will remain in synchronism#eg19_6.sce#1118/CH19/EX19.6/eg19_6.sce#S##68027 +19#Power system stability#19.5#To calculate equivalent h constant at a base of 100MVA#eg19_5.sce#1118/CH19/EX19.5/eg19_5.sce#S##68026 +19#Power system stability#19.4#To calculate the kinetic energy#eg19_4.sce#1118/CH19/EX19.4/eg19_4.sce#S##68025 +19#Power system stability#19.2#To determine teh steady state stability limit#eg19_3.sce#1118/CH19/EX19.2/eg19_3.sce#S##68024 +19#Power system stability#19.11#To plot the sqing curve#eg19_11.sce#1118/CH19/EX19.11/eg19_11.sce#S##68032 +19#Power system stability#19.10#To determine the critical clearing angle#eg19_10.sce#1118/CH19/EX19.10/eg19_10.sce#S##68031 +19#Power system stability#19.1#To find the steady state stability limit#eg19_1.sce#1118/CH19/EX19.1/eg19_1.sce#S##68023 +18#Unsymmetrical faults#18.3#To calculate voltage to neutral of the faulty phase#18_3.sce#1118/CH18/EX18.3/18_3.sce#S##67834 +18#Unsymmetrical faults#18.2#to find the sequence LLG and LL#eg18_2.sce#1118/CH18/EX18.2/eg18_2.sce#S##67833 +18#Unsymmetrical faults#18.1#To determine the fault current and the line to line voltages#eg18_1.sce#1118/CH18/EX18.1/eg18_1.sce#S##67832 +17#Symmetrical components#17.7#To determine the complex power represented by three phase voltages and three phase currents by symmetrical and unbalanced components#eg17_7.sce#1118/CH17/EX17.7/eg17_7.sce#S##67831 +17#Symmetrical components#17.3#To find the symmetrical components of the line current#eg17_3.sce#1118/CH17/EX17.3/eg17_3.sce#S##67830 +17#Symmetrical components#17.2#To detremine the symmetrical components of the 3 phase system#eg17_2.sce#1118/CH17/EX17.2/eg17_2.sce#S##67829 +17#Symmetrical components#17.1#To calculate the positive negative zero sequence component of currents and return neutral current#eg17_1.sce#1118/CH17/EX17.1/eg17_1.sce#S##67828 +16#Symmetrical faults#16.6#to determine short circuit MVA and fault current distribution#16_6.sce#1118/CH16/EX16.6/16_6.sce#S##77785 +16#Symmetrical faults#16.5#to find the reactor reactances#16_5.sce#1118/CH16/EX16.5/16_5.sce#S##77784 +16#Symmetrical faults#16.4#To find the reactor neccessary to prevent the switchgear#eg16_4.sce#1118/CH16/EX16.4/eg16_4.sce#S##67827 +16#Symmetrical faults#16.3#To calculte the reactance of the reactor to prevent the circuit breakers from overloading#eg16_3.sce#1118/CH16/EX16.3/eg16_3.sce#S##67826 +16#Symmetrical faults#16.2#to calculate the subtransient transient and synchronous short circuit currents#eg16_2.sce#1118/CH16/EX16.2/eg16_2.sce#S##68206 +16#Symmetrical faults#16.1#To find the high voltage terminals of a transformer#eg16_1.sce#1118/CH16/EX16.1/eg16_1.sce#S##67825 +15#Economic operations of power systems#15.8#determine the generation schedule and the load demand#eg15_8.sce#1118/CH15/EX15.8/eg15_8.sce#S##67824 +15#Economic operations of power systems#15.7#calculate the penalty factors for the two plants#eg15_7.sce#1118/CH15/EX15.7/eg15_7.sce#S##67823 +15#Economic operations of power systems#15.6#find the penalty factor and the additional cost per hour to increase the output of plant 1 by 1 MW#eg15_6.sce#1118/CH15/EX15.6/eg15_6.sce#S##67822 +15#Economic operations of power systems#15.5#find the penalty factor#eg15_5.sce#1118/CH15/EX15.5/eg15_5.sce#S##67821 +15#Economic operations of power systems#15.4#find the loss coefficients and the transmission loss#eg15_4.sce#1118/CH15/EX15.4/eg15_4.sce#S##67820 +15#Economic operations of power systems#15.3#determine the saving in fuel cost#eg15_3.sce#1118/CH15/EX15.3/eg15_3.sce#S##67819 +15#Economic operations of power systems#15.2#to find the load division between the two units#eg15_2.sce#1118/CH15/EX15.2/eg15_2.sce#S##67818 +15#Economic operations of power systems#15.1#to find the incremental cost of two units#eg15_1.sce#1118/CH15/EX15.1/eg15_1.sce#S##67817 +14#Load flow analysis#14.8#determine the voltages at buses#eg14_8.sce#1118/CH14/EX14.8/eg14_8.sce#S##67816 +14#Load flow analysis#14.7#determine modified Ybus#eg14_7.sce#1118/CH14/EX14.7/eg14_7.sce#S##67815 +14#Load flow analysis#14.6#determine Ybus#eg14_6.sce#1118/CH14/EX14.6/eg14_6.sce#S##67814 +14#Load flow analysis#14.5#determine modified Ybus#eg14_5.sce#1118/CH14/EX14.5/eg14_5.sce#S##67813 +14#Load flow analysis#14.4#determine Ybus#eg14_4.sce#1118/CH14/EX14.4/eg14_4.sce#S##67812 +14#Load flow analysis#14.3#determine Ybus#eg14_3.sce#1118/CH14/EX14.3/eg14_3.sce#S##67811 +14#Load flow analysis#14.2#determine modified Ybus#eg14_2.sce#1118/CH14/EX14.2/eg14_2.sce#S##67810 +14#Load flow analysis#14.1#determine Ybus#eg14_1.sce#1118/CH14/EX14.1/eg14_1.sce#S##67809 +13#Control of voltage and reactive power#13.4#To find the mva rating of synchronous phase modifier#eg13_4.sce#1118/CH13/EX13.4/eg13_4.sce#S##67808 +13#Control of voltage and reactive power#13.3#To calculate the sending voltage maximum power and additional reactive power #eg13_3.sce#1118/CH13/EX13.3/eg13_3.sce#S##67807 +13#Control of voltage and reactive power#13.2#To find the rating of the modifier and the power factor #eg13_2.sce#1118/CH13/EX13.2/eg13_2.sce#S##67806 +13#Control of voltage and reactive power#13.1#To calculate the maximum power phase differenec for maximum power transmitted and the rating of synchronous phase modifier#eg13_1.sce#1118/CH13/EX13.1/eg13_1.sce#S##67805 +11#General networks constants#11.5#To determine the equivalent T network #eg11_5.sce#1118/CH11/EX11.5/eg11_5.sce#S##67804 +11#General networks constants#11.4#To calculate the value of ABCD parameters and the characteristic impedance#eg11_4.sce#1118/CH11/EX11.4/eg11_4.sce#S##67802 +11#General networks constants#11.3#To calculate sending end voltage#eg11_3.sce#1118/CH11/EX11.3/eg11_3.sce#S##67801 +11#General networks constants#11.2#To find the volatge current and pf at the sending end#eg11_2.sce#1118/CH11/EX11.2/eg11_2.sce#S##67800 +10#Long transmission lines#10.2#To calculate the sending end voltage sending end current line charging current efficiency of transmission and voltage regulation#eg10_2.sce#1118/CH10/EX10.2/eg10_2.sce#S##67798 +10#Long transmission lines#10.1#To calculate the A B C D constants#eg10_1.sce#1118/CH10/EX10.1/eg10_1.sce#S##67799 +9#Short and medium lines#9.8#to calculate A B C D constants sending end voltage current power factor and efficiency#eg9_8.sce#1118/CH9/EX9.8/eg9_8.sce#S##67796 +9#Short and medium lines#9.7#calculate receiving end load#eg9_7.sce#1118/CH9/EX9.7/eg9_7.sce#S##67795 +9#Short and medium lines#9.6#determine voltage current power factor apparent power efficiency and regulation of line#eg9_6.sce#1118/CH9/EX9.6/eg9_6.sce#S##77787 +9#Short and medium lines#9.5#the voltage at the generator busbars#eg9_5.sce#1118/CH9/EX9.5/eg9_5.sce#S##67793 +9#Short and medium lines#9.4#determine the voltage and power factor#eg9_4.sce#1118/CH9/EX9.4/eg9_4.sce#S##67792 +9#Short and medium lines#9.3#calculate voltage and power factor#eg9_3.sce#1118/CH9/EX9.3/eg9_3.sce#S##67790 +9#Short and medium lines#9.2#calculate power factor voltage regulation and efficiency#eg9_2.sce#1118/CH9/EX9.2/eg9_2.sce#S##67791 +9#Short and medium lines#9.1#calculate the current voltage and power factor of the load#eg9_1.sce#1118/CH9/EX9.1/eg9_1.sce#S##67788 +8#per unit representation#8.9#To calculte the volatge at the terminals of the motor#eg8_9.sce#1118/CH8/EX8.9/eg8_9.sce#S##73651 +8#per unit representation#8.8#to calculate the per unit impedance of all units#eg8_8.sce#1118/CH8/EX8.8/eg8_8.sce#S##78247 +8#per unit representation#8.7#to determine the per phase generator voltage #eg8_7.sce#1118/CH8/EX8.7/eg8_7.sce#S##77783 +8#per unit representation#8.6#To calculte the through impedance#eg8_6.sce#1118/CH8/EX8.6/eg8_6.sce#S##67785 +8#per unit representation#8.5#To calculate the voltage drop in line per unit#eg8_5.sce#1118/CH8/EX8.5/eg8_5.sce#S##67784 +8#per unit representation#8.4#to calculate per unit impedances at 15 kva base#eg8_4.sce#1118/CH8/EX8.4/eg8_4.sce#S##77782 +8#per unit representation#8.3#determine the total reactance in per unit#eg8_3.sce#1118/CH8/EX8.3/eg8_3.sce#S##73655 +8#per unit representation#8.2#Three phase apparent power in pu#eg8_2.sce#1118/CH8/EX8.2/eg8_2.sce#S##67775 +8#per unit representation#8.10#To find the generator bus terminal voltage#eg8_10.sce#1118/CH8/EX8.10/eg8_10.sce#S##73652 +8#per unit representation#8.1#To calculate the per unit impedance and admittance#eg8_1.sce#1118/CH8/EX8.1/eg8_1.sce#S##67774 +7#Line Parameters#7.9#To calculate the charging current per km and the reactive voltamperes #eg7_9.sce#1118/CH7/EX7.9/eg7_9.sce#S##67764 +7#Line Parameters#7.8#To calculate the capacitance of each conductor to neutral per km and line to line capacitance and capacitance susceptance to neutral per km#eg7_8.sce#1118/CH7/EX7.8/eg7_8.sce#S##67763 +7#Line Parameters#7.7#determine the line inductance and the inductive reactance#eg7_7.sce#1118/CH7/EX7.7/eg7_7.sce#S##67760 +7#Line Parameters#7.6#To calculate the inductive reactance per phase per km of the system#eg7_6.sce#1118/CH7/EX7.6/eg7_6.sce#S##67759 +7#Line Parameters#7.5#To calculate the inductance of the line per km#eg7_5.sce#1118/CH7/EX7.5/eg7_5.sce#S##67758 +7#Line Parameters#7.4#To calculate the effective inductance of the line #eg7_4.sce#1118/CH7/EX7.4/eg7_4.sce#S##67757 +7#Line Parameters#7.3#To calculate the inductive reactance per phase per km of the line#eg7_3.sce#1118/CH7/EX7.3/eg7_3.sce#S##67756 +7#Line Parameters#7.2#To calculate inductance and inductive reactance per phase per km of the line#eg7_2.sce#1118/CH7/EX7.2/eg7_2.sce#S##67755 +7#Line Parameters#7.18#To calculate the loop inductance of the line#eg7_18.sce#1118/CH7/EX7.18/eg7_18.sce#S##67773 +7#Line Parameters#7.17#To calculate the inductance per unit length#eg7_17.sce#1118/CH7/EX7.17/eg7_17.sce#S##78240 +7#Line Parameters#7.16#to calculate the voltage induced in telephone conductor due to electrostatic effect#7_16.sce#1118/CH7/EX7.16/7_16.sce#S##73650 +7#Line Parameters#7.15#To calculate the voltage induced per km#eg7_15.sce#1118/CH7/EX7.15/eg7_15.sce#S##67771 +7#Line Parameters#7.14#To calculate the inductive recatance and the capacitive reactance per phase per km#eg7_14.sce#1118/CH7/EX7.14/eg7_14.sce#S##67770 +7#Line Parameters#7.13#To calculate the capacitance per km to neutral and the capacitive reactance to neutral per km to the line#eg7_13.sce#1118/CH7/EX7.13/eg7_13.sce#S##67769 +7#Line Parameters#7.12#To calculate the capicitance of the line#eg7_12.sce#1118/CH7/EX7.12/eg7_12.sce#S##67768 +7#Line Parameters#7.11#To calculate the capacitive reactance per phase per km of the line#eg7_11.sce#1118/CH7/EX7.11/eg7_11.sce#S##67767 +7#Line Parameters#7.10#to find the capacitance per km to neutral and the capacitive reactance per phase per km#eg7_10.sce#1118/CH7/EX7.10/eg7_10.sce#S##67765 +7#Line Parameters#7.1#To calculate the inductance of each inductor inductive reactance per km and loop inductance per km#eg7_1.sce#1118/CH7/EX7.1/eg7_1.sce#S##67754 +6#Sag and tension#6.5#to find the clearance between the conductor and the water at a point midpoint between the towers#eg6_5.sce#1118/CH6/EX6.5/eg6_5.sce#S##67753 +6#Sag and tension#6.4#to calculate the temperature at which sag will remain same under conditions of no ice and no wind#eg6_4.sce#1118/CH6/EX6.4/eg6_4.sce#S##67752 +6#Sag and tension#6.3#determine tension and sag#eg6_3.sce#1118/CH6/EX6.3/eg6_3.sce#S##67751 +6#Sag and tension#6.2#to calculate the deflected sag and the vertical component of sag#eg6_2.sce#1118/CH6/EX6.2/eg6_2.sce#S##67749 +6#Sag and tension#6.1#To calculate the sag#eg6_1.sce#1118/CH6/EX6.1/eg6_1.sce#S##67748 +5#Line insulators and supports#5.7#to calculate the voltage across each unit as a percentage of the total voltage#5_7.sce#1118/CH5/EX5.7/5_7.sce#S##68211 +5#Line insulators and supports#5.6#to find the voltage between the conductors and the string efficiency#5_6.sce#1118/CH5/EX5.6/5_6.sce#S##68219 +5#Line insulators and supports#5.3#to find the voltage distribution and the string efficiency#eg5_3.sce#1118/CH5/EX5.3/eg5_3.sce#S##68218 +5#Line insulators and supports#5.2#To calculate voltage across the lowest unt and the string efficiency#eg5_2.sce#1118/CH5/EX5.2/eg5_2.sce#S##68217 +5#Line insulators and supports#5.1#To calculate the voltage distribution across each unit and the string efficiency#eg5_1.sce#1118/CH5/EX5.1/eg5_1.sce#S##68216 +4#Power Cables#4.9#To calculate capacitance charging current ic reactive var dielectric loss and equivalent insulation resistance#eg4_9.sce#1118/CH4/EX4.9/eg4_9.sce#S##67651 +4#Power Cables#4.8#To calculate restitivity of the insulating material#eg4_8.sce#1118/CH4/EX4.8/eg4_8.sce#S##67650 +4#Power Cables#4.7#To calculate charging kvar#eg4_7.sce#1118/CH4/EX4.7/eg4_7.sce#S##67649 +4#Power Cables#4.6#capacitance between any pair of conductors and the charging current#eg4_6.sce#1118/CH4/EX4.6/eg4_6.sce#S##67648 +4#Power Cables#4.5#To calculate the diameter of the inter sheath and the voltage#eg4_5.sce#1118/CH4/EX4.5/eg4_5.sce#S##67647 +4#Power Cables#4.4#To calculate the minimum diameter of the lead sheath#eg4_4.sce#1118/CH4/EX4.4/eg4_4.sce#S##67646 +4#Power Cables#4.3#To calculate potential gradient at the surface of teh conductor#eg4_3.sce#1118/CH4/EX4.3/eg4_3.sce#S##67645 +4#Power Cables#4.2#To calculate the overall diameter and its most economical diameter of a single core cable#eg4_2.sce#1118/CH4/EX4.2/eg4_2.sce#S##73648 +4#Power Cables#4.1#To calculate the maximum stress on the insulation#eg4_1.sce#1118/CH4/EX4.1/eg4_1.sce#S##67643 +3#Conductors#3.6#To calculate the most economical current density#eg3_6.sce#1118/CH3/EX3.6/eg3_6.sce#S##67637 +3#Conductors#3.5#To determine the most economical size of copper conductor#eg3_5.sce#1118/CH3/EX3.5/eg3_5.sce#S##67636 +3#Conductors#3.4#To calculate rms value of curent for a 3 phase #eg3_4.sce#1118/CH3/EX3.4/eg3_4.sce#S##67635 +3#Conductors#3.3#to calculate the best current density of a three phase oh line#eg3_3.sce#1118/CH3/EX3.3/eg3_3.sce#S##68213 +3#Conductors#3.2#to calculate the most economical cross sectional area #eg3_2.sce#1118/CH3/EX3.2/eg3_2.sce#S##67620 +3#Conductors#3.1#To determine the most economical size#eg3_1.sce#1118/CH3/EX3.1/eg3_1.sce#S##71689 +2#Supply Systems #2.5#To compare the diameter and weight#eg2_5.sce#1118/CH2/EX2.5/eg2_5.sce#S##67642 +2#Supply Systems #2.4#To calculate the percentage of additional load#eg2_4.sce#1118/CH2/EX2.4/eg2_4.sce#S##67641 +2#Supply Systems #2.3#To calculate the volume of conductor#eg2_3.sce#1118/CH2/EX2.3/eg2_3.sce#S##67640 +2#Supply Systems #2.2#To compare the amount of conductor material required#eg2_2.sce#1118/CH2/EX2.2/eg2_2.sce#S##67639 +2#Supply Systems #2.1#To calculate the percentage saving in conductor material#eg2_1.sce#1118/CH2/EX2.1/eg2_1.sce#S##67638 +1#Load Characteristics#1.9#to calculate max demand on the station installed capacity energy supplied in a year#eg1_9.sce#1118/CH1/EX1.9/eg1_9.sce#S##67605 +1#Load Characteristics#1.8#to find the diversity factor of a power station#eg1_8.sce#1118/CH1/EX1.8/eg1_8.sce#S##73647 +1#Load Characteristics#1.7#to plot the chronological load duration load energy curve and then calculating the load factor and the utilization factor#eg1_7.sce#1118/CH1/EX1.7/eg1_7.sce#S##67597 +1#Load Characteristics#1.6#to calculate plant capacity factor load factor utilization factor reserve capacity#eg1_6.sce#1118/CH1/EX1.6/eg1_6.sce#S##67589 +1#Load Characteristics#1.5#to determine the load factor from the load duration curve#eg1_5.sce#1118/CH1/EX1.5/eg1_5.sce#S##67579 +1#Load Characteristics#1.4#to plot the load duration curve from the chronological load curve#eg1_4.sce#1118/CH1/EX1.4/eg1_4.sce#S##67578 +1#Load Characteristics#1.3#to find the maximum value and the consumption of energy in kWh#eg1_3.sce#1118/CH1/EX1.3/eg1_3.sce#S##68214 +1#Load Characteristics#1.2#to calculate the diversity factor avg load and laod factor of each consumer avg load and load factor of combined load#eg1_2.sce#1118/CH1/EX1.2/eg1_2.sce#S##67571 +1#Load Characteristics#1.1#to calculate the average load monthly energy consumption and load factor#eg1_1.sce#1118/CH1/EX1.1/eg1_1.sce#S##68215 diff --git a/latex/tmp_1187_data.txt b/latex/tmp_1187_data.txt index e69de29bb..03d79cf26 100755 --- a/latex/tmp_1187_data.txt +++ b/latex/tmp_1187_data.txt @@ -0,0 +1,64 @@ +13#Fluid Machines#13.7#7#7.sce#1187/CH13/EX13.7/7.sce#S##72373 +13#Fluid Machines#13.6#6#6.sce#1187/CH13/EX13.6/6.sce#S##72372 +13#Fluid Machines#13.5#5#5.sce#1187/CH13/EX13.5/5.sce#S##72371 +13#Fluid Machines#13.3#3#3.sce#1187/CH13/EX13.3/3.sce#S##72370 +13#Fluid Machines#13.2#2#2.sce#1187/CH13/EX13.2/2.sce#S##72369 +13#Fluid Machines#13.1#1#1.sce#1187/CH13/EX13.1/1.sce#S##72368 +12#Unsteady Flow#12.4#4#4.sce#1187/CH12/EX12.4/4.sce#S##72367 +12#Unsteady Flow#12.1#1#1.sce#1187/CH12/EX12.1/1.sce#S##72364 +11#Compressible Flow of Gases#11.7#7#7.sce#1187/CH11/EX11.7/7.sce#S##72363 +11#Compressible Flow of Gases#11.6#6#6.sce#1187/CH11/EX11.6/6.sce#S##72360 +11#Compressible Flow of Gases#11.5#5#5.sce#1187/CH11/EX11.5/5.sce#S##72359 +11#Compressible Flow of Gases#11.4#4#4.sce#1187/CH11/EX11.4/4.sce#S##72352 +11#Compressible Flow of Gases#11.3#3#3.sce#1187/CH11/EX11.3/3.sce#S##72351 +11#Compressible Flow of Gases#11.2#2#2.sce#1187/CH11/EX11.2/2.sce#S##72350 +11#Compressible Flow of Gases#11.1#1#1.sce#1187/CH11/EX11.1/1.sce#S##72349 +10#Flow with a Free Surface#10.7#7#7.sce#1187/CH10/EX10.7/7.sce#S##72348 +10#Flow with a Free Surface#10.6#6#6.sce#1187/CH10/EX10.6/6.sce#S##72347 +10#Flow with a Free Surface#10.5#5#5.sce#1187/CH10/EX10.5/5.sce#S##72346 +10#Flow with a Free Surface#10.4#4#4.sce#1187/CH10/EX10.4/4.sce#S##72345 +10#Flow with a Free Surface#10.3#3#3.sce#1187/CH10/EX10.3/3.sce#S##72344 +10#Flow with a Free Surface#10.2#2#2.sce#1187/CH10/EX10.2/2.sce#S##72343 +10#Flow with a Free Surface#10.1#1#1.sce#1187/CH10/EX10.1/1.sce#S##72342 +9#The Flow of an Inviscid Fluid#9.7#7#7.sce#1187/CH9/EX9.7/7.sce#S##72341 +9#The Flow of an Inviscid Fluid#9.5#5#5.sce#1187/CH9/EX9.5/5.sce#S##72340 +9#The Flow of an Inviscid Fluid#9.4#4#4.sce#1187/CH9/EX9.4/4.sce#S##72339 +9#The Flow of an Inviscid Fluid#9.3#3#3.sce#1187/CH9/EX9.3/3.sce#S##72338 +9#The Flow of an Inviscid Fluid#9.2#2#2.sce#1187/CH9/EX9.2/2.sce#S##72337 +8#Boundary Layers Wakes and Other Shear Layers#8.6#6#6.sce#1187/CH8/EX8.6/6.sce#S##72336 +8#Boundary Layers Wakes and Other Shear Layers#8.5#5#5.sce#1187/CH8/EX8.5/5.sce#S##72335 +8#Boundary Layers Wakes and Other Shear Layers#8.4#4#4.sce#1187/CH8/EX8.4/4.sce#S##72334 +8#Boundary Layers Wakes and Other Shear Layers#8.3#3#3.sce#1187/CH8/EX8.3/3.sce#S##72333 +8#Boundary Layers Wakes and Other Shear Layers#8.1#1#1.sce#1187/CH8/EX8.1/1.sce#S##72332 +7#Flow and Losses in Pipes and Fittings#7.6#6#6.sce#1187/CH7/EX7.6/6.sce#S##72331 +7#Flow and Losses in Pipes and Fittings#7.5#5#5.sce#1187/CH7/EX7.5/5.sce#S##72330 +7#Flow and Losses in Pipes and Fittings#7.4#4#4.sce#1187/CH7/EX7.4/4.sce#S##72329 +7#Flow and Losses in Pipes and Fittings#7.3#3#3.sce#1187/CH7/EX7.3/3.sce#S##72328 +7#Flow and Losses in Pipes and Fittings#7.2#2#2.sce#1187/CH7/EX7.2/2.sce#S##72327 +7#Flow and Losses in Pipes and Fittings#7.1#1#1.sce#1187/CH7/EX7.1/1.sce#S##72326 +6#Laminar Flow Between Solid Boundaries#6.7#7#7.sce#1187/CH6/EX6.7/7.sce#S##72325 +6#Laminar Flow Between Solid Boundaries#6.6#6#6.sce#1187/CH6/EX6.6/6.sce#S##72324 +6#Laminar Flow Between Solid Boundaries#6.5#5#5.sce#1187/CH6/EX6.5/5.sce#S##72323 +6#Laminar Flow Between Solid Boundaries#6.4#4#4.sce#1187/CH6/EX6.4/4.sce#S##72322 +6#Laminar Flow Between Solid Boundaries#6.3#3#3.sce#1187/CH6/EX6.3/3.sce#S##72321 +6#Laminar Flow Between Solid Boundaries#6.2#2#2.sce#1187/CH6/EX6.2/2.sce#S##72320 +6#Laminar Flow Between Solid Boundaries#6.1#1#1.sce#1187/CH6/EX6.1/1.sce#S##72319 +5#Physical Similarity ans Dimensional Analysis#5.4#4#4.sce#1187/CH5/EX5.4/4.sce#S##72318 +5#Physical Similarity ans Dimensional Analysis#5.3#3#3.sce#1187/CH5/EX5.3/3.sce#S##72317 +4#The Momentum Equation#4.3#3#3.sce#1187/CH4/EX4.3/3.sce#S##72316 +4#The Momentum Equation#4.2#2#2.sce#1187/CH4/EX4.2/2.sce#S##72315 +4#The Momentum Equation#4.1#1#1.sce#1187/CH4/EX4.1/1.sce#S##72314 +3#The Principles Governing Fluids in Motion#3.6#6#6.sce#1187/CH3/EX3.6/6.sce#S##72313 +3#The Principles Governing Fluids in Motion#3.5#5#5.sce#1187/CH3/EX3.5/5.sce#S##72311 +3#The Principles Governing Fluids in Motion#3.4#4#4.sce#1187/CH3/EX3.4/4.sce#S##72312 +3#The Principles Governing Fluids in Motion#3.3#3#3.sce#1187/CH3/EX3.3/3.sce#S##72310 +3#The Principles Governing Fluids in Motion#3.2#2#2.sce#1187/CH3/EX3.2/2.sce#S##72309 +2#Fluid Statics#2.6#6#6.sce#1187/CH2/EX2.6/6.sce#S##72308 +2#Fluid Statics#2.5#5#5.sce#1187/CH2/EX2.5/5.sce#S##72307 +2#Fluid Statics#2.4#4#4.sce#1187/CH2/EX2.4/4.sce#S##72306 +2#Fluid Statics#2.3#3#3.sce#1187/CH2/EX2.3/3.sce#S##72305 +2#Fluid Statics#2.2#2#2.sce#1187/CH2/EX2.2/2.sce#S##72304 +2#Fluid Statics#2.1#1#1.sce#1187/CH2/EX2.1/1.sce#S##72303 +1#Fundamental Concepts#1.3#3#3.sce#1187/CH1/EX1.3/3.sce#S##72302 +1#Fundamental Concepts#1.2#2#2.sce#1187/CH1/EX1.2/2.sce#S##72301 +1#Fundamental Concepts#1.1#1#1.sce#1187/CH1/EX1.1/1.sce#S##72300 diff --git a/latex/tmp_1299_contributor.txt b/latex/tmp_1299_contributor.txt index 80e036206..0494e415f 100755 --- a/latex/tmp_1299_contributor.txt +++ b/latex/tmp_1299_contributor.txt @@ -1 +1 @@ -Pooja Naik#B. E.#Instrumentation Engineering#Mumbai Uiversity/ Watumaull College of Electronics#Prof. Ashutosh Sharma#Chaitanya +Pooja Naik#B. E.#Instrumentation Engineering#Watumaull College of Electronics#Prof. Ashutosh Sharma#Chaitanya diff --git a/latex/tmp_1445_data.txt b/latex/tmp_1445_data.txt index e69de29bb..3fe9b7597 100755 --- a/latex/tmp_1445_data.txt +++ b/latex/tmp_1445_data.txt @@ -0,0 +1,232 @@ +11#Single Phase Induction Motor#11.2#Slip and resistance in forward and backward direction#Ex11_2.sce#1445/CH11/EX11.2/Ex11_2.sce#S##119815 +11#Single Phase Induction Motor#11.1#Shaft torque#Ex11_1.sce#1445/CH11/EX11.1/Ex11_1.sce#S##119814 +10#Three Phase Induction Machines#10.9#150 kW 6 pole star connected induction motor#Ex10_9.sce#1445/CH10/EX10.9/Ex10_9.sce#S##119823 +10#Three Phase Induction Machines#10.8#3 phase induction motor with synchronous speed 1200 rpm#Ex10_8.sce#1445/CH10/EX10.8/Ex10_8.sce#S##119824 +10#Three Phase Induction Machines#10.7#4 pole 3 phase induction motor#Ex10_7.sce#1445/CH10/EX10.7/Ex10_7.sce#S##119825 +10#Three Phase Induction Machines#10.6#Speed of 4 pole induction motor#Ex10_6.sce#1445/CH10/EX10.6/Ex10_6.sce#S##119826 +10#Three Phase Induction Machines#10.5#Speed of motor#Ex10_5.sce#1445/CH10/EX10.5/Ex10_5.sce#S##119827 +10#Three Phase Induction Machines#10.4#3 phase squirrel cage motor#Ex10_4.sce#1445/CH10/EX10.4/Ex10_4.sce#S##119828 +10#Three Phase Induction Machines#10.3#3 phase induction motor running at 1140 rpm#Ex10_3.sce#1445/CH10/EX10.3/Ex10_3.sce#S##119829 +10#Three Phase Induction Machines#10.2#6 pole wound rotor induction motor#Ex10_2.sce#1445/CH10/EX10.2/Ex10_2.sce#S##119830 +10#Three Phase Induction Machines#10.16#3 phase induction motor#Ex10_16.sce#1445/CH10/EX10.16/Ex10_16.sce#S##119816 +10#Three Phase Induction Machines#10.15#4 pole 3 phase SRIM#Ex10_15.sce#1445/CH10/EX10.15/Ex10_15.sce#S##119817 +10#Three Phase Induction Machines#10.14#10 kW 400 V delta connected induction motor#Ex10_14.sce#1445/CH10/EX10.14/Ex10_14.sce#S##119818 +10#Three Phase Induction Machines#10.13#3 phase 50 Hz induction motor#Ex10_13.sce#1445/CH10/EX10.13/Ex10_13.sce#S##119819 +10#Three Phase Induction Machines#10.12#3 phase 440 V distribution#Ex10_12.sce#1445/CH10/EX10.12/Ex10_12.sce#S##119820 +10#Three Phase Induction Machines#10.11#4 pole induction motor#Ex10_11.sce#1445/CH10/EX10.11/Ex10_11.sce#S##119821 +10#Three Phase Induction Machines#10.10#6 pole 60 Hz induction motor#Ex10_10.sce#1445/CH10/EX10.10/Ex10_10.sce#S##119822 +8#Direct Current Machines#8.9#Torque developed in the motor#Ex8_9.sce#1445/CH8/EX8.9/Ex8_9.sce#S##119888 +8#Direct Current Machines#8.8#250 V DC shunt machine#Ex8_8.sce#1445/CH8/EX8.8/Ex8_8.sce#S##119889 +8#Direct Current Machines#8.7#New operating speed#Ex8_7.sce#1445/CH8/EX8.7/Ex8_7.sce#S##119890 +8#Direct Current Machines#8.6#20 HP 230 V 1150 rpm shunt motor#Ex8_6.sce#1445/CH8/EX8.6/Ex8_6.sce#S##119891 +8#Direct Current Machines#8.5#BHP of prime mover#Ex8_5.sce#1445/CH8/EX8.5/Ex8_5.sce#S##119892 +8#Direct Current Machines#8.4#Armature resistance and load current at maximum efficiency#Ex8_4.sce#1445/CH8/EX8.4/Ex8_4.sce#S##119893 +8#Direct Current Machines#8.38#Speed of motor when flux per pole is increased by 10 percent#Ex8_38.sce#1445/CH8/EX8.38/Ex8_38.sce#S##119860 +8#Direct Current Machines#8.37#Hysteresis and eddy current losses#Ex8_37.sce#1445/CH8/EX8.37/Ex8_37.sce#S##119861 +8#Direct Current Machines#8.36#Constant losses and full load efficiency#Ex8_36.sce#1445/CH8/EX8.36/Ex8_36.sce#S##119862 +8#Direct Current Machines#8.35#Armature current and induced emf#Ex8_35.sce#1445/CH8/EX8.35/Ex8_35.sce#S##119863 +8#Direct Current Machines#8.34#Total emf and armature current#Ex8_34.sce#1445/CH8/EX8.34/Ex8_34.sce#S##119864 +8#Direct Current Machines#8.33#Resistance to be added to obtain rated torque at starting and at 1000 rpm#Ex8_33.sce#1445/CH8/EX8.33/Ex8_33.sce#S##119865 +8#Direct Current Machines#8.32#250 V series motor with 20 A current and 1000 rpm#Ex8_32.sce#1445/CH8/EX8.32/Ex8_32.sce#S##119866 +8#Direct Current Machines#8.31#Value of speed when flux is increased by 20 percent#Ex8_31.sce#1445/CH8/EX8.31/Ex8_31.sce#S##119867 +8#Direct Current Machines#8.30#Value of starting torque#Ex8_30.sce#1445/CH8/EX8.30/Ex8_30.sce#S##119868 +8#Direct Current Machines#8.3#Armature induced emf and developed torque and efficiency#Ex8_3.sce#1445/CH8/EX8.3/Ex8_3.sce#S##119894 +8#Direct Current Machines#8.29#Speed of motor when connected in series with 5 ohm resistance#Ex8_29.sce#1445/CH8/EX8.29/Ex8_29.sce#S##119869 +8#Direct Current Machines#8.28#Voltage between far end of feeder and bus bar#Ex8_28.sce#1445/CH8/EX8.28/Ex8_28.sce#S##119870 +8#Direct Current Machines#8.27#Counter emf of motor and power developed in armature#Ex8_27.sce#1445/CH8/EX8.27/Ex8_27.sce#S##119871 +8#Direct Current Machines#8.25#24 slot 2 pole DC machine#Ex8_25.sce#1445/CH8/EX8.25/Ex8_25.sce#S##119872 +8#Direct Current Machines#8.24#New speed of motor on inserting a 250 ohm resistance in the field circuit#Ex8_24.sce#1445/CH8/EX8.24/Ex8_24.sce#S##119874 +8#Direct Current Machines#8.23#Value of inserted resistance in field circuit for increasing the speed#Ex8_23.sce#1445/CH8/EX8.23/Ex8_23.sce#S##119875 +8#Direct Current Machines#8.22#Shunt wound motor running at 600 rpm from a 230 V supply#Ex8_22.sce#1445/CH8/EX8.22/Ex8_22.sce#S##119876 +8#Direct Current Machines#8.21#10 kW 6 pole DC generator#Ex8_21.sce#1445/CH8/EX8.21/Ex8_21.sce#S##119877 +8#Direct Current Machines#8.20#Reduction of main flux to raise the speed by 50 percent#Ex8_20.sce#1445/CH8/EX8.20/Ex8_20.sce#S##119873 +8#Direct Current Machines#8.2#Ratio of speed#Ex8_2.sce#1445/CH8/EX8.2/Ex8_2.sce#S##119895 +8#Direct Current Machines#8.19#New speed of motor on inserting a 250 ohm resistance#Ex8_19.sce#1445/CH8/EX8.19/Ex8_19.sce#S##119878 +8#Direct Current Machines#8.18#Value of inserted resistance #Ex8_18.sce#1445/CH8/EX8.18/Ex8_18.sce#S##119879 +8#Direct Current Machines#8.17#200 V DC shunt motor#Ex8_17.sce#1445/CH8/EX8.17/Ex8_17.sce#S##119880 +8#Direct Current Machines#8.16#250 V 4 pole shunt motor#Ex8_16.sce#1445/CH8/EX8.16/Ex8_16.sce#S##119881 +8#Direct Current Machines#8.15#Full load speed#Ex8_15.sce#1445/CH8/EX8.15/Ex8_15.sce#S##119882 +8#Direct Current Machines#8.14#Armature resistance and load current at maximum efficiency#Ex8_14.sce#1445/CH8/EX8.14/Ex8_14.sce#S##119883 +8#Direct Current Machines#8.13#Current in each conductor and emf generated#Ex8_13.sce#1445/CH8/EX8.13/Ex8_13.sce#S##119884 +8#Direct Current Machines#8.12#Terminal voltage of the machine #Ex8_12.sce#1445/CH8/EX8.12/Ex8_12.sce#S##119885 +8#Direct Current Machines#8.11#Total emf generated in the armature#Ex8_11.sce#1445/CH8/EX8.11/Ex8_11.sce#S##119886 +8#Direct Current Machines#8.10#6 pole DC machine with 400 conductors#Ex8_10.sce#1445/CH8/EX8.10/Ex8_10.sce#S##119887 +8#Direct Current Machines#8.1#Generated emf#Ex8_1.sce#1445/CH8/EX8.1/Ex8_1.sce#S##119896 +7#Single Phase Transformer#7.9#Core loss current of distribution transformer#Ex7_9.sce#1445/CH7/EX7.9/Ex7_9.sce#S##120041 +7#Single Phase Transformer#7.8#Efficiency of transformer#Ex7_8.sce#1445/CH7/EX7.8/Ex7_8.sce#S##120042 +7#Single Phase Transformer#7.6#Primary current and power factor#Ex7_6.sce#1445/CH7/EX7.6/Ex7_6.sce#S##120043 +7#Single Phase Transformer#7.5#Transformer with 350 primary and 1050 secondary turns#Ex7_5.sce#1445/CH7/EX7.5/Ex7_5.sce#S##120044 +7#Single Phase Transformer#7.41#Star connected auto transformer#Ex7_41.sce#1445/CH7/EX7.41/Ex7_41.sce#S##120029 +7#Single Phase Transformer#7.40#To draw the phasor diagram#Ex7_40.sce#1445/CH7/EX7.40/Ex7_40.sce#S##120030 +7#Single Phase Transformer#7.4#10 kVA transformer#Ex7_4.sce#1445/CH7/EX7.4/Ex7_4.sce#S##120045 +7#Single Phase Transformer#7.39#Percentage of hysteresis and copperloss#Ex7_39.sce#1445/CH7/EX7.39/Ex7_39.sce#S##120009 +7#Single Phase Transformer#7.38#Total no load loss #Ex7_38.sce#1445/CH7/EX7.38/Ex7_38.sce#S##120010 +7#Single Phase Transformer#7.37#To calculate regulation at full load#Ex7_37.sce#1445/CH7/EX7.37/Ex7_37.sce#S##120012 +7#Single Phase Transformer#7.36#Value of load for maximum efficiency#Ex7_36.sce#1445/CH7/EX7.36/Ex7_36.sce#S##120013 +7#Single Phase Transformer#7.35#No load and short circuit results of transformer#Ex7_35.sce#1445/CH7/EX7.35/Ex7_35.sce#S##120014 +7#Single Phase Transformer#7.34#50 kVA transformer of 5 is to 1 ratio of turns#Ex7_34.sce#1445/CH7/EX7.34/Ex7_34.sce#S##120015 +7#Single Phase Transformer#7.33#No load and short circuit results of transformer#Ex7_33.sce#1445/CH7/EX7.33/Ex7_33.sce#S##120016 +7#Single Phase Transformer#7.32#To calculate total copper loss#Ex7_32.sce#1445/CH7/EX7.32/Ex7_32.sce#S##120017 +7#Single Phase Transformer#7.31#To calculate the value of maximum flux density in the core and the emf#Ex7_31.sce#1445/CH7/EX7.31/Ex7_31.sce#S##120018 +7#Single Phase Transformer#7.30#Secondary terminal voltage at full load#Ex7_30.sce#1445/CH7/EX7.30/Ex7_30.sce#S##120019 +7#Single Phase Transformer#7.3#To find the voltage regulation#Ex7_3.sce#1445/CH7/EX7.3/Ex7_3.sce#S##120008 +7#Single Phase Transformer#7.29#200 kVA 4000 1000 V transformer#Ex7_29.sce#1445/CH7/EX7.29/Ex7_29.sce#S##120020 +7#Single Phase Transformer#7.28#Open and short circuit test#Ex7_28.sce#1445/CH7/EX7.28/Ex7_28.sce#S##120021 +7#Single Phase Transformer#7.27#Open and short circuit test#Ex7_27.sce#1445/CH7/EX7.27/Ex7_27.sce#S##120022 +7#Single Phase Transformer#7.26#Open circuit and short circuit test #Ex7_26.sce#1445/CH7/EX7.26/Ex7_26.sce#S##120023 +7#Single Phase Transformer#7.25#15 kVA 2200 110 V transformer#Ex7_25.sce#1445/CH7/EX7.25/Ex7_25.sce#S##120024 +7#Single Phase Transformer#7.24#To calculate secondary terminal voltage#Ex7_24.sce#1445/CH7/EX7.24/Ex7_24.sce#S##120025 +7#Single Phase Transformer#7.23#33 kVA 2200 220 V 50 Hz transformer#Ex7_23.sce#1445/CH7/EX7.23/Ex7_23.sce#S##120026 +7#Single Phase Transformer#7.22#Total equivalent resistance referred to primary and secondary#Ex7_22.sce#1445/CH7/EX7.22/Ex7_22.sce#S##120027 +7#Single Phase Transformer#7.21#To determine the regulation while supplying full load #Ex7_21.sce#1445/CH7/EX7.21/Ex7_21.sce#S##120028 +7#Single Phase Transformer#7.20#4kVA 200 400 V transformer#Ex7_20.sce#1445/CH7/EX7.20/Ex7_20.sce#S##120031 +7#Single Phase Transformer#7.2#To calculate the primary current#Ex7_2.sce#1445/CH7/EX7.2/Ex7_2.sce#S##120046 +7#Single Phase Transformer#7.19#Open circuit and short circuit test#Ex7_19.sce#1445/CH7/EX7.19/Ex7_19.sce#S##120032 +7#Single Phase Transformer#7.18#To calculate all day efficiency#Ex7_18.sce#1445/CH7/EX7.18/Ex7_18.sce#S##120033 +7#Single Phase Transformer#7.17#200 kVA transformer with 1000 W iron loss and 2000 W copper loss at full load#Ex7_17.sce#1445/CH7/EX7.17/Ex7_17.sce#S##120034 +7#Single Phase Transformer#7.16#Maximum value of percent regulation#Ex7_16.sce#1445/CH7/EX7.16/Ex7_16.sce#S##120035 +7#Single Phase Transformer#7.15#To calculate percent regulation at full load#Ex7_15.sce#1445/CH7/EX7.15/Ex7_15.sce#S##120036 +7#Single Phase Transformer#7.14#To calculate total resistance and reactance referred to primary#Ex7_14.sce#1445/CH7/EX7.14/Ex7_14.sce#S##120037 +7#Single Phase Transformer#7.13#Current taken by primary#Ex7_13.sce#1445/CH7/EX7.13/Ex7_13.sce#S##120038 +7#Single Phase Transformer#7.12#Magnetising component of no load current#Ex7_12.sce#1445/CH7/EX7.12/Ex7_12.sce#S##120011 +7#Single Phase Transformer#7.11#To calculate primary and full load currents#Ex7_11.sce#1445/CH7/EX7.11/Ex7_11.sce#S##120039 +7#Single Phase Transformer#7.10#Number of turns on HT and LT sides#Ex7_10.sce#1445/CH7/EX7.10/Ex7_10.sce#S##120040 +7#Single Phase Transformer#7.1#To calculate magnetizing component of no load current#Ex7_1.sce#1445/CH7/EX7.1/Ex7_1.sce#S##120047 +6#Magnetic Circuits#6.5#Ring made of composite material#Ex6_5.sce#1445/CH6/EX6.5/Ex6_5.sce#S##119831 +6#Magnetic Circuits#6.4#Iron ring made of round iron rod#Ex6_4.sce#1445/CH6/EX6.4/Ex6_4.sce#S##119832 +6#Magnetic Circuits#6.3#Magnetic circuit with cast steel core#Ex6_3.sce#1445/CH6/EX6.3/Ex6_3.sce#S##119833 +6#Magnetic Circuits#6.2#Steel ring of 25 cm mean diameter#Ex6_2.sce#1445/CH6/EX6.2/Ex6_2.sce#S##119834 +6#Magnetic Circuits#6.1#Magnetic circuit having two air gaps#Ex6_1.sce#1445/CH6/EX6.1/Ex6_1.sce#S##119835 +4#Measuring Instruments#4.9#Percentage error of meter#Ex4_9.sce#1445/CH4/EX4.9/Ex4_9.sce#S##119839 +4#Measuring Instruments#4.8#Resistance required to read current and voltage#Ex4_8.sce#1445/CH4/EX4.8/Ex4_8.sce#S##119840 +4#Measuring Instruments#4.7#Percentage error of energy meter#Ex4_7.sce#1445/CH4/EX4.7/Ex4_7.sce#S##119841 +4#Measuring Instruments#4.6#Series resistance to measure 500 V on full scale#Ex4_6.sce#1445/CH4/EX4.6/Ex4_6.sce#S##119842 +4#Measuring Instruments#4.5#Number of revolutions made by energy meter and percentage error#Ex4_5.sce#1445/CH4/EX4.5/Ex4_5.sce#S##119843 +4#Measuring Instruments#4.4#Resistance required to read current and voltage#Ex4_4.sce#1445/CH4/EX4.4/Ex4_4.sce#S##119844 +4#Measuring Instruments#4.3#Resistance of wire#Ex4_3.sce#1445/CH4/EX4.3/Ex4_3.sce#S##119846 +4#Measuring Instruments#4.2#Current through galvanometer#Ex4_2.sce#1445/CH4/EX4.2/Ex4_2.sce#S##119845 +4#Measuring Instruments#4.12#Total current carried by two ammeters#Ex4_12.sce#1445/CH4/EX4.12/Ex4_12.sce#S##119836 +4#Measuring Instruments#4.11#Readings of two voltmeters with different internal resistances#Ex4_11.sce#1445/CH4/EX4.11/Ex4_11.sce#S##119837 +4#Measuring Instruments#4.10#Readings of two voltmeters#Ex4_10.sce#1445/CH4/EX4.10/Ex4_10.sce#S##119838 +4#Measuring Instruments#4.1#Deflecting torque exerted on a coil#Ex4_1.sce#1445/CH4/EX4.1/Ex4_1.sce#S##119847 +3#Three Phase AC Circuits#3.9#400 V 50 Hz three phase supply#Ex3_9.sce#1445/CH3/EX3.9/Ex3_9.sce#S##119850 +3#Three Phase AC Circuits#3.8#Balanced delta connection#Ex3_8.sce#1445/CH3/EX3.8/Ex3_8.sce#S##119851 +3#Three Phase AC Circuits#3.7#Three phase star connected system#Ex3_7.sce#1445/CH3/EX3.7/Ex3_7.sce#S##119852 +3#Three Phase AC Circuits#3.6#3300 V synchronous alternator#Ex3_6.sce#1445/CH3/EX3.6/Ex3_6.sce#S##119853 +3#Three Phase AC Circuits#3.5#Power measurement by 2 wattmeter method#Ex3_5.sce#1445/CH3/EX3.5/Ex3_5.sce#S##119854 +3#Three Phase AC Circuits#3.4#Line and phase current when phase sequence is positive#Ex3_4.sce#1445/CH3/EX3.4/Ex3_4.sce#S##119855 +3#Three Phase AC Circuits#3.3#Three similar coils each of 30 ohms#Ex3_3.sce#1445/CH3/EX3.3/Ex3_3.sce#S##120090 +3#Three Phase AC Circuits#3.2#Resistance and reactance values of each impedance#Ex3_2.sce#1445/CH3/EX3.2/Ex3_2.sce#S##119858 +3#Three Phase AC Circuits#3.12#Three identical impedances each having a resistance R#Ex3_12.sce#1445/CH3/EX3.12/Ex3_12.sce#S##119848 +3#Three Phase AC Circuits#3.11#Balanced load of 20kVA#Ex3_11.sce#1445/CH3/EX3.11/Ex3_11.sce#S##119849 +3#Three Phase AC Circuits#3.1#Identical impedances each consisting of 15 ohm in series#Ex3_1.sce#1445/CH3/EX3.1/Ex3_1.sce#S##119859 +2#Steady State Analysis of Single Phase AC Circuit#2.9#120 V 100 W lamp#Ex2_9.sce#1445/CH2/EX2.9/Ex2_9.sce#S##120000 +2#Steady State Analysis of Single Phase AC Circuit#2.8#Two element series circuit#Ex2_8.sce#1445/CH2/EX2.8/Ex2_8.sce#S##120001 +2#Steady State Analysis of Single Phase AC Circuit#2.7#Apparent power of 300 kVA#Ex2_7.sce#1445/CH2/EX2.7/Ex2_7.sce#S##120002 +2#Steady State Analysis of Single Phase AC Circuit#2.6#Single phase motor#Ex2_6.sce#1445/CH2/EX2.6/Ex2_6.sce#S##120003 +2#Steady State Analysis of Single Phase AC Circuit#2.54#Q factor at resonance#Ex2_54.sce#1445/CH2/EX2.54/Ex2_54.sce#S##119957 +2#Steady State Analysis of Single Phase AC Circuit#2.53#Total impedance and power taken#Ex2_53.sce#1445/CH2/EX2.53/Ex2_53.sce#S##119958 +2#Steady State Analysis of Single Phase AC Circuit#2.52#Total impedance and current in each branch#Ex2_52.sce#1445/CH2/EX2.52/Ex2_52.sce#S##119959 +2#Steady State Analysis of Single Phase AC Circuit#2.51#Admittance and impedance of the circuit#Ex2_51.sce#1445/CH2/EX2.51/Ex2_51.sce#S##119960 +2#Steady State Analysis of Single Phase AC Circuit#2.50#Current in each branch when total current is 20 A#Ex2_50.sce#1445/CH2/EX2.50/Ex2_50.sce#S##119961 +2#Steady State Analysis of Single Phase AC Circuit#2.5#Fluorescent lamp#Ex2_5.sce#1445/CH2/EX2.5/Ex2_5.sce#S##120004 +2#Steady State Analysis of Single Phase AC Circuit#2.49#kVA and kW in each branch circuit and in the main circuit#Ex2_49.sce#1445/CH2/EX2.49/Ex2_49.sce#S##119962 +2#Steady State Analysis of Single Phase AC Circuit#2.48#Power factor of the combination#Ex2_48.sce#1445/CH2/EX2.48/Ex2_48.sce#S##119963 +2#Steady State Analysis of Single Phase AC Circuit#2.47#RL series circuit#Ex2_47.sce#1445/CH2/EX2.47/Ex2_47.sce#S##119989 +2#Steady State Analysis of Single Phase AC Circuit#2.46#To find power consumed and reactive power#Ex2_46.sce#1445/CH2/EX2.46/Ex2_46.sce#S##119990 +2#Steady State Analysis of Single Phase AC Circuit#2.45#Quality factor and bandwidth#Ex2_45.sce#1445/CH2/EX2.45/Ex2_45.sce#S##119991 +2#Steady State Analysis of Single Phase AC Circuit#2.44#To find power consumed by the circuit#Ex2_44.sce#1445/CH2/EX2.44/Ex2_44.sce#S##119988 +2#Steady State Analysis of Single Phase AC Circuit#2.43#Resultant current wave made up of two components#Ex2_43.sce#1445/CH2/EX2.43/Ex2_43.sce#S##119964 +2#Steady State Analysis of Single Phase AC Circuit#2.42#Three sinusoidaly alternating currents#Ex2_42.sce#1445/CH2/EX2.42/Ex2_42.sce#S##119965 +2#Steady State Analysis of Single Phase AC Circuit#2.41#100 V 60 W lamp#Ex2_41.sce#1445/CH2/EX2.41/Ex2_41.sce#S##119966 +2#Steady State Analysis of Single Phase AC Circuit#2.40#Power factor and average power delivered to the circuit#Ex2_40.sce#1445/CH2/EX2.40/Ex2_40.sce#S##119967 +2#Steady State Analysis of Single Phase AC Circuit#2.4#Vav and Vrms#Ex2_4.sce#1445/CH2/EX2.4/Ex2_4.sce#S##120005 +2#Steady State Analysis of Single Phase AC Circuit#2.39#To draw the complete vector diagram#Ex2_39.sce#1445/CH2/EX2.39/Ex2_39.sce#S##119968 +2#Steady State Analysis of Single Phase AC Circuit#2.38#To solve example 27 by j method#Ex2_38.sce#1445/CH2/EX2.38/Ex2_38.sce#S##119969 +2#Steady State Analysis of Single Phase AC Circuit#2.37#Current taken by each branch#Ex2_37.sce#1445/CH2/EX2.37/Ex2_37.sce#S##119970 +2#Steady State Analysis of Single Phase AC Circuit#2.36#Total current taken from supply#Ex2_36.sce#1445/CH2/EX2.36/Ex2_36.sce#S##119971 +2#Steady State Analysis of Single Phase AC Circuit#2.35#Total impedance and total current #Ex2_35.sce#1445/CH2/EX2.35/Ex2_35.sce#S##119972 +2#Steady State Analysis of Single Phase AC Circuit#2.34#To draw the vector diagram#Ex2_34.sce#1445/CH2/EX2.34/Ex2_34.sce#S##119973 +2#Steady State Analysis of Single Phase AC Circuit#2.33#Three coils of resistances#Ex2_33.sce#1445/CH2/EX2.33/Ex2_33.sce#S##119974 +2#Steady State Analysis of Single Phase AC Circuit#2.32#Average value effective value and form factor#Ex2_32.sce#1445/CH2/EX2.32/Ex2_32.sce#S##119975 +2#Steady State Analysis of Single Phase AC Circuit#2.31#Significance of RMS and average values of wave#Ex2_31.sce#1445/CH2/EX2.31/Ex2_31.sce#S##119976 +2#Steady State Analysis of Single Phase AC Circuit#2.30#An alternating current with RMS value of 20 A#Ex2_30.sce#1445/CH2/EX2.30/Ex2_30.sce#S##119977 +2#Steady State Analysis of Single Phase AC Circuit#2.3#Average and rms value#Ex2_3.sce#1445/CH2/EX2.3/Ex2_3.sce#S##120006 +2#Steady State Analysis of Single Phase AC Circuit#2.29#An alternating current of frequency of 60 Hertz#Ex2_29.sce#1445/CH2/EX2.29/Ex2_29.sce#S##119978 +2#Steady State Analysis of Single Phase AC Circuit#2.28#Total impedance current drawn from the supply#Ex2_28.sce#1445/CH2/EX2.28/Ex2_28.sce#S##119979 +2#Steady State Analysis of Single Phase AC Circuit#2.27#Impedance resistance reactance and power factor of the circuit#Ex2_27.sce#1445/CH2/EX2.27/Ex2_27.sce#S##119980 +2#Steady State Analysis of Single Phase AC Circuit#2.26#Sinusoidal alternating current of frequency 25 Hz#Ex2_26.sce#1445/CH2/EX2.26/Ex2_26.sce#S##119981 +2#Steady State Analysis of Single Phase AC Circuit#2.25#50 Hz sinusoidal voltage wave shape#Ex2_25.sce#1445/CH2/EX2.25/Ex2_25.sce#S##129568 +2#Steady State Analysis of Single Phase AC Circuit#2.24#RMS value average value and form factor#Ex2_24.sce#1445/CH2/EX2.24/Ex2_24.sce#S##119983 +2#Steady State Analysis of Single Phase AC Circuit#2.23#An alternating current of frequency of 50 Hertz#Ex2_23.sce#1445/CH2/EX2.23/Ex2_23.sce#S##129567 +2#Steady State Analysis of Single Phase AC Circuit#2.22#Series RLC circuit#Ex2_22.sce#1445/CH2/EX2.22/Ex2_22.sce#S##119984 +2#Steady State Analysis of Single Phase AC Circuit#2.20#Resonant frequency and band width#Ex2_20.sce#1445/CH2/EX2.20/Ex2_20.sce#S##119986 +2#Steady State Analysis of Single Phase AC Circuit#2.19#Admittance in each parallel branch#Ex2_19.sce#1445/CH2/EX2.19/Ex2_19.sce#S##119987 +2#Steady State Analysis of Single Phase AC Circuit#2.18#Non inductive resistance of 10 ohm#Ex2_18.sce#1445/CH2/EX2.18/Ex2_18.sce#S##119992 +2#Steady State Analysis of Single Phase AC Circuit#2.17#AC voltage applied to series RC circuit#Ex2_17.sce#1445/CH2/EX2.17/Ex2_17.sce#S##119993 +2#Steady State Analysis of Single Phase AC Circuit#2.16#Two coils of 5 ohm and 10 ohm connected in parellel#Ex2_16.sce#1445/CH2/EX2.16/Ex2_16.sce#S##119994 +2#Steady State Analysis of Single Phase AC Circuit#2.15#Choke coil takes current of 2 Amperes#Ex2_15.sce#1445/CH2/EX2.15/Ex2_15.sce#S##119995 +2#Steady State Analysis of Single Phase AC Circuit#2.14#To find frequency and current elements#Ex2_14.sce#1445/CH2/EX2.14/Ex2_14.sce#S##119996 +2#Steady State Analysis of Single Phase AC Circuit#2.13#Current in load in rectangular form#Ex2_13.sce#1445/CH2/EX2.13/Ex2_13.sce#S##119997 +2#Steady State Analysis of Single Phase AC Circuit#2.11#To calculate parameters of coil and power factor#Ex2_11.sce#1445/CH2/EX2.11/Ex2_11.sce#S##119998 +2#Steady State Analysis of Single Phase AC Circuit#2.10#Current and power drawn#Ex2_10.sce#1445/CH2/EX2.10/Ex2_10.sce#S##119999 +2#Steady State Analysis of Single Phase AC Circuit#2.1#Form factor of sine wave#Ex2_1.sce#1445/CH2/EX2.1/Ex2_1.sce#S##120007 +1#DC Circuit Analysis and Network Theorems#1.9#Equivalent resistance#Ex1_9.sce#1445/CH1/EX1.9/Ex1_9.sce#S##119949 +1#DC Circuit Analysis and Network Theorems#1.8#Source transformation and mesh analysis#Ex1_8.sce#1445/CH1/EX1.8/Ex1_8.sce#S##119947 +1#DC Circuit Analysis and Network Theorems#1.7#Source transformation#Ex1_7.sce#1445/CH1/EX1.7/Ex1_7.sce#S##119950 +1#DC Circuit Analysis and Network Theorems#1.6#Finding value of current by mesh analysis#Ex1_6.sce#1445/CH1/EX1.6/Ex1_6.sce#S##119951 +1#DC Circuit Analysis and Network Theorems#1.59#Mesh anlysis#Ex1_59.sce#1445/CH1/EX1.59/Ex1_59.sce#S##119897 +1#DC Circuit Analysis and Network Theorems#1.58#Thevenin or Norton theorem#Ex1_58.sce#1445/CH1/EX1.58/Ex1_58.sce#S##119898 +1#DC Circuit Analysis and Network Theorems#1.57#Superposition theorem to find I#Ex1_57.sce#1445/CH1/EX1.57/Ex1_57.sce#S##119899 +1#DC Circuit Analysis and Network Theorems#1.56#Delta values#Ex1_56.sce#1445/CH1/EX1.56/Ex1_56.sce#S##119900 +1#DC Circuit Analysis and Network Theorems#1.55#Nodal analysis#Ex1_55.sce#1445/CH1/EX1.55/Ex1_55.sce#S##119901 +1#DC Circuit Analysis and Network Theorems#1.54#Thevenin theorem#Ex1_54.sce#1445/CH1/EX1.54/Ex1_54.sce#S##119902 +1#DC Circuit Analysis and Network Theorems#1.53#Thevenin equivalent circuit#Ex1_53.sce#1445/CH1/EX1.53/Ex1_53.sce#S##119903 +1#DC Circuit Analysis and Network Theorems#1.52#Thevenin theorem and Norton theorem#Ex1_52.sce#1445/CH1/EX1.52/Ex1_52.sce#S##119904 +1#DC Circuit Analysis and Network Theorems#1.51#Currents in all branches#Ex1_51.sce#1445/CH1/EX1.51/Ex1_51.sce#S##119905 +1#DC Circuit Analysis and Network Theorems#1.50#Currents i1 and i2#Ex1_50.sce#1445/CH1/EX1.50/Ex1_50.sce#S##119906 +1#DC Circuit Analysis and Network Theorems#1.5#Rac and Rbd#Ex1_5.sce#1445/CH1/EX1.5/Ex1_5.sce#S##119952 +1#DC Circuit Analysis and Network Theorems#1.49#Values of R1 and R2#Ex1_49.sce#1445/CH1/EX1.49/Ex1_49.sce#S##119907 +1#DC Circuit Analysis and Network Theorems#1.48#Cells B1 and b2#Ex1_48.sce#1445/CH1/EX1.48/Ex1_48.sce#S##119908 +1#DC Circuit Analysis and Network Theorems#1.47#Copper wire and platinum silver wire#Ex1_47.sce#1445/CH1/EX1.47/Ex1_47.sce#S##119909 +1#DC Circuit Analysis and Network Theorems#1.46#Resistance of metal filament lamp#Ex1_46.sce#1445/CH1/EX1.46/Ex1_46.sce#S##119910 +1#DC Circuit Analysis and Network Theorems#1.45#value of resistance#Ex1_45.sce#1445/CH1/EX1.45/Ex1_45.sce#S##119911 +1#DC Circuit Analysis and Network Theorems#1.44#Determination of voltage#Ex1_44.sce#1445/CH1/EX1.44/Ex1_44.sce#S##119912 +1#DC Circuit Analysis and Network Theorems#1.43#Superposition theorem#Ex1_43.sce#1445/CH1/EX1.43/Ex1_43.sce#S##119913 +1#DC Circuit Analysis and Network Theorems#1.42#Thevenin and Nodal analysis#Ex1_42.sce#1445/CH1/EX1.42/Ex1_42.sce#S##119914 +1#DC Circuit Analysis and Network Theorems#1.41#Current when resistance is connected across AB#Ex1_41.sce#1445/CH1/EX1.41/Ex1_41.sce#S##119915 +1#DC Circuit Analysis and Network Theorems#1.40#Currents in different branches#Ex1_40.sce#1445/CH1/EX1.40/Ex1_40.sce#S##119916 +1#DC Circuit Analysis and Network Theorems#1.4#Values of Rab Rcd and Rde#Ex1_4.sce#1445/CH1/EX1.4/Ex1_4.sce#S##129566 +1#DC Circuit Analysis and Network Theorems#1.39#Delta to star transformation to find I#Ex1_39.sce#1445/CH1/EX1.39/Ex1_39.sce#S##119917 +1#DC Circuit Analysis and Network Theorems#1.38#Thevenin and Norton equivalent#Ex1_38.sce#1445/CH1/EX1.38/Ex1_38.sce#S##119918 +1#DC Circuit Analysis and Network Theorems#1.37#To calculate Vab by Thevenin and Norton theorm#Ex1_37.sce#1445/CH1/EX1.37/Ex1_37.sce#S##119919 +1#DC Circuit Analysis and Network Theorems#1.36#To find I through 1 ohm R by Norton theorem#Ex1_36.sce#1445/CH1/EX1.36/Ex1_36.sce#S##119920 +1#DC Circuit Analysis and Network Theorems#1.35#To find I through 1 ohm by Thevenin theorem#Ex1_35.sce#1445/CH1/EX1.35/Ex1_35.sce#S##119921 +1#DC Circuit Analysis and Network Theorems#1.34#To find I through 1 ohm R by Superposition theorem#Ex1_34.sce#1445/CH1/EX1.34/Ex1_34.sce#S##119922 +1#DC Circuit Analysis and Network Theorems#1.33#To find I through 1 ohm R by nodal analysis#Ex1_33.sce#1445/CH1/EX1.33/Ex1_33.sce#S##119923 +1#DC Circuit Analysis and Network Theorems#1.32#To find I through 1 ohm by mesh analysis#Ex1_32.sce#1445/CH1/EX1.32/Ex1_32.sce#S##119924 +1#DC Circuit Analysis and Network Theorems#1.31#Delta to star transformation#Ex1_31.sce#1445/CH1/EX1.31/Ex1_31.sce#S##119925 +1#DC Circuit Analysis and Network Theorems#1.30#Source transformation and mesh and nodal methods#Ex1_30.sce#1445/CH1/EX1.30/Ex1_30.sce#S##119926 +1#DC Circuit Analysis and Network Theorems#1.3#Resistance between A and B#Ex1_3.sce#1445/CH1/EX1.3/Ex1_3.sce#S##129565 +1#DC Circuit Analysis and Network Theorems#1.29#To find I using Superposition theorem#Ex1_29.sce#1445/CH1/EX1.29/Ex1_29.sce#S##119927 +1#DC Circuit Analysis and Network Theorems#1.28#To find I using Norton theorem#Ex1_28.sce#1445/CH1/EX1.28/Ex1_28.sce#S##119928 +1#DC Circuit Analysis and Network Theorems#1.27#To find I using Thevenin theorem#Ex1_27.sce#1445/CH1/EX1.27/Ex1_27.sce#S##119929 +1#DC Circuit Analysis and Network Theorems#1.26#To find I using nodal analysis#Ex1_26.sce#1445/CH1/EX1.26/Ex1_26.sce#S##119930 +1#DC Circuit Analysis and Network Theorems#1.25#To find I using mesh analysis#Ex1_25.sce#1445/CH1/EX1.25/Ex1_25.sce#S##119931 +1#DC Circuit Analysis and Network Theorems#1.24#To find I using Superposition theorem#Ex1_24.sce#1445/CH1/EX1.24/Ex1_24.sce#S##119932 +1#DC Circuit Analysis and Network Theorems#1.23#To find I using nodal analysis#Ex1_23.sce#1445/CH1/EX1.23/Ex1_23.sce#S##119933 +1#DC Circuit Analysis and Network Theorems#1.22#To find I using mesh analysis#Ex1_22.sce#1445/CH1/EX1.22/Ex1_22.sce#S##119934 +1#DC Circuit Analysis and Network Theorems#1.21#To find I using Thevenin theorem#Ex1_21.sce#1445/CH1/EX1.21/Ex1_21.sce#S##119935 +1#DC Circuit Analysis and Network Theorems#1.20#To find I using Norton theorem#Ex1_20.sce#1445/CH1/EX1.20/Ex1_20.sce#S##119936 +1#DC Circuit Analysis and Network Theorems#1.2#Resistance between A and B#Ex1_2.sce#1445/CH1/EX1.2/Ex1_2.sce#S##119955 +1#DC Circuit Analysis and Network Theorems#1.19#To find Vx by Norton theorem#Ex1_19.sce#1445/CH1/EX1.19/Ex1_19.sce#S##119937 +1#DC Circuit Analysis and Network Theorems#1.18#To find Vx by Thevenin theorem#Ex1_18.sce#1445/CH1/EX1.18/Ex1_18.sce#S##119938 +1#DC Circuit Analysis and Network Theorems#1.17#To find Vx by Superposition theorem#Ex1_17.sce#1445/CH1/EX1.17/Ex1_17.sce#S##119939 +1#DC Circuit Analysis and Network Theorems#1.16#To find Vx by nodal analysis#Ex1_16.sce#1445/CH1/EX1.16/Ex1_16.sce#S##119941 +1#DC Circuit Analysis and Network Theorems#1.15#To find Vx by mesh analysis#Ex1_15.sce#1445/CH1/EX1.15/Ex1_15.sce#S##119942 +1#DC Circuit Analysis and Network Theorems#1.14#Current through R3 using Norton theorem#Ex1_14.sce#1445/CH1/EX1.14/Ex1_14.sce#S##119943 +1#DC Circuit Analysis and Network Theorems#1.13#Current through R3 using Thevenin theorem#Ex1_13.sce#1445/CH1/EX1.13/Ex1_13.sce#S##119944 +1#DC Circuit Analysis and Network Theorems#1.12#Current through R3 using superposition theorem#Ex1_12.sce#1445/CH1/EX1.12/Ex1_12.sce#S##119945 +1#DC Circuit Analysis and Network Theorems#1.11#Current through R3 using mesh analysis#Ex1_11.sce#1445/CH1/EX1.11/Ex1_11.sce#S##119946 +1#DC Circuit Analysis and Network Theorems#1.10#Current through R3 using nodal analysis#Ex1_10.sce#1445/CH1/EX1.10/Ex1_10.sce#S##119948 +1#DC Circuit Analysis and Network Theorems#1.1#Independent loop equations#Ex1_1.sce#1445/CH1/EX1.1/Ex1_1.sce#S##119956 diff --git a/latex/tmp_1466_data.txt b/latex/tmp_1466_data.txt index e69de29bb..593d6b052 100755 --- a/latex/tmp_1466_data.txt +++ b/latex/tmp_1466_data.txt @@ -0,0 +1,144 @@ +24#flow of gases through ducts and turbine pipes#24.7#chapter 24 example 7#24_7.sce#1466/CH24/EX24.7/24_7.sce#S##79407 +24#flow of gases through ducts and turbine pipes#24.6#chapter 24 example 6#24_6.sce#1466/CH24/EX24.6/24_6.sce#S##89644 +24#flow of gases through ducts and turbine pipes#24.5#chapter 24 example 5#24_5.sce#1466/CH24/EX24.5/24_5.sce#S##67367 +24#flow of gases through ducts and turbine pipes#24.4#chapter 24 example 4#24_4.sce#1466/CH24/EX24.4/24_4.sce#S##79405 +24#flow of gases through ducts and turbine pipes#24.3#chapter 24 example 3#24_3.sce#1466/CH24/EX24.3/24_3.sce#S##67370 +24#flow of gases through ducts and turbine pipes#24.2#chapter 24 example 2#24_2.sce#1466/CH24/EX24.2/24_2.sce#S##79404 +24#flow of gases through ducts and turbine pipes#24.1#chapter 24 example 1#24_1.sce#1466/CH24/EX24.1/24_1.sce#S##89645 +23#centrifugal pumps#23.3#chapter 23 example 3#23_3.sce#1466/CH23/EX23.3/23_3.sce#S##79403 +23#centrifugal pumps#23.2#example 2#23_2.sce#1466/CH23/EX23.2/23_2.sce#S##89643 +23#centrifugal pumps#23.1#example 1#23_1.sce#1466/CH23/EX23.1/23_1.sce#S##79401 +22#water turbines#22.9#chapter 22 example 9#22_9.sce#1466/CH22/EX22.9/22_9.sce#S##67385 +22#water turbines#22.8#chapter 22 example 8#22_8.sce#1466/CH22/EX22.8/22_8.sce#S##67384 +22#water turbines#22.6#chapter 22 example 6#22_6.sce#1466/CH22/EX22.6/22_6.sce#S##67383 +22#water turbines#22.5#chapter 22 example 5#22_5.sce#1466/CH22/EX22.5/22_5.sce#S##79398 +22#water turbines#22.4#chapter 22 example 4#22_4.sce#1466/CH22/EX22.4/22_4.sce#S##79399 +22#water turbines#22.3#chapter 22 example 3#22_3.sce#1466/CH22/EX22.3/22_3.sce#S##67381 +22#water turbines#22.2#chapter 22 example 2#22_2.sce#1466/CH22/EX22.2/22_2.sce#S##69215 +22#water turbines#22.10#chapter 22 example 10#22_10.sce#1466/CH22/EX22.10/22_10.sce#S##67386 +22#water turbines#22.1#chapter 22 example 1#22_1.sce#1466/CH22/EX22.1/22_1.sce#S##79400 +21#Reciprocating pumps#21.5#chapter 21 example 5#21_5.sce#1466/CH21/EX21.5/21_5.sce#S##89642 +21#Reciprocating pumps#21.4#chapter 21 example 4#21_4.sce#1466/CH21/EX21.4/21_4.sce#S##79397 +21#Reciprocating pumps#21.3#chapter 21 example 3#21_3.sce#1466/CH21/EX21.3/21_3.sce#S##67389 +21#Reciprocating pumps#21.2#chapter 21 example 2#21_2.sce#1466/CH21/EX21.2/21_2.sce#S##67388 +21#Reciprocating pumps#21.1#chapter 21 example 1#21_1.sce#1466/CH21/EX21.1/21_1.sce#S##89641 +20#hydraulic machines metres and valves#20.6#chapter 20 example 6#20_6.sce#1466/CH20/EX20.6/20_6.sce#S##67395 +20#hydraulic machines metres and valves#20.5#ex 5#20_5.sce#1466/CH20/EX20.5/20_5.sce#S##89640 +20#hydraulic machines metres and valves#20.4#chapter 20 example 4#20_4.sce#1466/CH20/EX20.4/20_4.sce#S##89639 +20#hydraulic machines metres and valves#20.3#chapter 20 example 3#20_3.sce#1466/CH20/EX20.3/20_3.sce#S##67393 +20#hydraulic machines metres and valves#20.2#chapter 20 example 2#20_2.sce#1466/CH20/EX20.2/20_2.sce#S##67392 +20#hydraulic machines metres and valves#20.1#chapter 20 example 1#20_1.sce#1466/CH20/EX20.1/20_1.sce#S##67391 +19#flow of gases through tapering pipes#19.2#chapter 19 example 2#19_2.sce#1466/CH19/EX19.2/19_2.sce#S##79394 +19#flow of gases through tapering pipes#19.1#chapter 19 example 1#19_1.sce#1466/CH19/EX19.1/19_1.sce#S##79393 +18#flow of gases through pipes#18.4#chapter 18 example 4#18_4.sce#1466/CH18/EX18.4/18_4.sce#S##67398 +18#flow of gases through pipes#18.3#chapter 18 example 3#18_3.sce#1466/CH18/EX18.3/18_3.sce#S##79392 +18#flow of gases through pipes#18.2#chapter 18 example 2#18_2.sce#1466/CH18/EX18.2/18_2.sce#S##67400 +18#flow of gases through pipes#18.1#chapter 18 example 1#18_1.sce#1466/CH18/EX18.1/18_1.sce#S##67399 +16#The Boundary Layer#16.1#chapter 16 example 1#16_1.sce#1466/CH16/EX16.1/16_1.sce#S##67402 +15#The Aerofoil And its Application#15.5#chapter 15 example 5#15_5.sce#1466/CH15/EX15.5/15_5.sce#S##79391 +15#The Aerofoil And its Application#15.4#chapter 15 example 4#15_4.sce#1466/CH15/EX15.4/15_4.sce#S##79390 +15#The Aerofoil And its Application#15.3#chapter 15 example 3#15_3.sce#1466/CH15/EX15.3/15_3.sce#S##67406 +15#The Aerofoil And its Application#15.2#chapter 15 example 2#15_2.sce#1466/CH15/EX15.2/15_2.sce#S##79389 +15#The Aerofoil And its Application#15.1#chapter 15 example 1#15_1.sce#1466/CH15/EX15.1/15_1.sce#S##67404 +14#flow of gases#14.7#chapter 14 example 7#14_7.sce#1466/CH14/EX14.7/14_7.sce#S##67414 +14#flow of gases#14.6#chapter 14 example 6#14_6.sce#1466/CH14/EX14.6/14_6.sce#S##48797 +14#flow of gases#14.5#chapter 14 example 5#14_5.sce#1466/CH14/EX14.5/14_5.sce#S##67410 +14#flow of gases#14.4#chapter 14 example 4#14_4.sce#1466/CH14/EX14.4/14_4.sce#S##67411 +14#flow of gases#14.3#chapter 14 example 3#14_3.sce#1466/CH14/EX14.3/14_3.sce#S##67412 +14#flow of gases#14.2#chapter 14 example 2#14_2.sce#1466/CH14/EX14.2/14_2.sce#S##79388 +14#flow of gases#14.1#chapter 14 example 1#14_1.sce#1466/CH14/EX14.1/14_1.sce#S##79387 +13#compressible fluids#13.5#chapter 13 example 5#13_5.sce#1466/CH13/EX13.5/13_5.sce#S##89638 +13#compressible fluids#13.4#chapter 13 example 4#13_4.sce#1466/CH13/EX13.4/13_4.sce#S##67417 +13#compressible fluids#13.3#chapter 13 example 3#13_3.sce#1466/CH13/EX13.3/13_3.sce#S##67416 +13#compressible fluids#13.2#chapter 13 example 2#13_2.sce#1466/CH13/EX13.2/13_2.sce#S##67415 +13#compressible fluids#13.1#example 1#13_1.sce#1466/CH13/EX13.1/13_1.sce#S##79385 +12#Dynamical similarity and model testing#12.2#chapter 12 example 2#12_2.sce#1466/CH12/EX12.2/12_2.sce#S##67419 +12#Dynamical similarity and model testing#12.1#chapter 12 example 1#12_1.sce#1466/CH12/EX12.1/12_1.sce#S##67420 +11#Dimensional Analysis#11.3#chapter 11 example 3#11_3.sce#1466/CH11/EX11.3/11_3.sce#S##67422 +11#Dimensional Analysis#11.2#chapter 11 example 2#11_2.sce#1466/CH11/EX11.2/11_2.sce#S##67423 +11#Dimensional Analysis#11.1#chapter 11 example 1#11_1.sce#1466/CH11/EX11.1/11_1.sce#S##67421 +10#flow through open channels#10.8#chapter 10 example 8#10_8.sce#1466/CH10/EX10.8/10_8.sce#S##67424 +10#flow through open channels#10.7#chapter 10 example 7#10_7.sce#1466/CH10/EX10.7/10_7.sce#S##67429 +10#flow through open channels#10.6#chapter 10 example 6#10_6.sce#1466/CH10/EX10.6/10_6.sce#S##67428 +10#flow through open channels#10.5#chapter 10 example 5#10_5.sce#1466/CH10/EX10.5/10_5.sce#S##89636 +10#flow through open channels#10.4#chapter 10 example 4#10_4.sce#1466/CH10/EX10.4/10_4.sce#S##67427 +10#flow through open channels#10.3#chapter 10 example 3#10_3.sce#1466/CH10/EX10.3/10_3.sce#S##67426 +10#flow through open channels#10.2#example 2#10_2.sce#1466/CH10/EX10.2/10_2.sce#S##89637 +10#flow through open channels#10.1#chapter 10 example 1#10_1.sce#1466/CH10/EX10.1/10_1.sce#S##67425 +9#Turbulent flow of fluids#9.2#chapter 9 example 2#9_2.sce#1466/CH9/EX9.2/9_2.sce#S##67430 +9#Turbulent flow of fluids#9.1#chapter 9 example 1#9_1.sce#1466/CH9/EX9.1/9_1.sce#S##67778 +8#Viscous flow of fluids#8.8#chapter 8 example 8#8_8.sce#1466/CH8/EX8.8/8_8.sce#S##67456 +8#Viscous flow of fluids#8.7#chapter 8 example 7#8_7.sce#1466/CH8/EX8.7/8_7.sce#S##67455 +8#Viscous flow of fluids#8.6#chapter 8 example 6#8_6.sce#1466/CH8/EX8.6/8_6.sce#S##67454 +8#Viscous flow of fluids#8.5#chapter 8 example 5#8_5.sce#1466/CH8/EX8.5/8_5.sce#S##67453 +8#Viscous flow of fluids#8.4#chapter 8 example 4#8_4.sce#1466/CH8/EX8.4/8_4.sce#S##67452 +8#Viscous flow of fluids#8.3#chapter 8 example 3#8_3.sce#1466/CH8/EX8.3/8_3.sce#S##67451 +8#Viscous flow of fluids#8.2#chapter 8 example 2#8_2.sce#1466/CH8/EX8.2/8_2.sce#S##67450 +8#Viscous flow of fluids#8.1#chapter 8 example 1#8_1.sce#1466/CH8/EX8.1/8_1.sce#S##89635 +7#Friction and Flow through pipes#7.9#chapter 7 example 9#7_9.sce#1466/CH7/EX7.9/7_9.sce#S##67468 +7#Friction and Flow through pipes#7.8#example 8#7_8.sce#1466/CH7/EX7.8/7_8.sce#S##67762 +7#Friction and Flow through pipes#7.7#chapter 7 example 7#7_7.sce#1466/CH7/EX7.7/7_7.sce#S##67467 +7#Friction and Flow through pipes#7.6#chapter 7 example 6#7_6.sce#1466/CH7/EX7.6/7_6.sce#S##67466 +7#Friction and Flow through pipes#7.5#chapter 7 example 5#7_5.sce#1466/CH7/EX7.5/7_5.sce#S##67465 +7#Friction and Flow through pipes#7.4#chapter 7 example 4#7_4.sce#1466/CH7/EX7.4/7_4.sce#S##67464 +7#Friction and Flow through pipes#7.3#example 3#7_3.sce#1466/CH7/EX7.3/7_3.sce#S##67761 +7#Friction and Flow through pipes#7.2#chapter 7 example 2#7_2.sce#1466/CH7/EX7.2/7_2.sce#S##67463 +7#Friction and Flow through pipes#7.14#chapter 7 example 14#7_14.sce#1466/CH7/EX7.14/7_14.sce#S##67473 +7#Friction and Flow through pipes#7.13#chapter 7 example 13#7_13.sce#1466/CH7/EX7.13/7_13.sce#S##67472 +7#Friction and Flow through pipes#7.12#chapter 7 example 12#7_12.sce#1466/CH7/EX7.12/7_12.sce#S##67471 +7#Friction and Flow through pipes#7.11#chapter 7 example 11#7_11.sce#1466/CH7/EX7.11/7_11.sce#S##89634 +7#Friction and Flow through pipes#7.10#chapter 7 example 10#7_10.sce#1466/CH7/EX7.10/7_10.sce#S##79382 +7#Friction and Flow through pipes#7.1#chapter 7 example 1#7_1.sce#1466/CH7/EX7.1/7_1.sce#S##67462 +6#Impact of jets#6.5#chapter 6 example 5#6_5.sce#1466/CH6/EX6.5/6_5.sce#S##67362 +6#Impact of jets#6.4#chapter 6 example 4#6_4.sce#1466/CH6/EX6.4/6_4.sce#S##67361 +6#Impact of jets#6.3#chapter 6 example 3#6_3.sce#1466/CH6/EX6.3/6_3.sce#S##79381 +6#Impact of jets#6.2#chapter 6 example 2#6_2.sce#1466/CH6/EX6.2/6_2.sce#S##67359 +6#Impact of jets#6.1#chapter 6 example 1#6_1.sce#1466/CH6/EX6.1/6_1.sce#S##67358 +5#Notches And Weirs#5.9#chapter 5 example 9#5_9.sce#1466/CH5/EX5.9/5_9.sce#S##67357 +5#Notches And Weirs#5.8#chapter 5 example 8#5_8.sce#1466/CH5/EX5.8/5_8.sce#S##67356 +5#Notches And Weirs#5.7#chapter 5 example 7#5_7.sce#1466/CH5/EX5.7/5_7.sce#S##67355 +5#Notches And Weirs#5.6#chapter 5 example 6#5_6.sce#1466/CH5/EX5.6/5_6.sce#S##67354 +5#Notches And Weirs#5.5#example 5#5_5.sce#1466/CH5/EX5.5/5_5.sce#S##67353 +5#Notches And Weirs#5.3#example 3#5_3.sce#1466/CH5/EX5.3/5_3.sce#S##67352 +5#Notches And Weirs#5.2#example 2#5_2.sce#1466/CH5/EX5.2/5_2.sce#S##67351 +5#Notches And Weirs#5.1#chapter 5 example 1#5_1.sce#1466/CH5/EX5.1/5_1.sce#S##67350 +4#Orifices and Mouthpieces#4.9#chapter 4 example 9#4_9.sce#1466/CH4/EX4.9/4_9.sce#S##67346 +4#Orifices and Mouthpieces#4.8#chapter 4 example 8#4_8.sce#1466/CH4/EX4.8/4_8.sce#S##67345 +4#Orifices and Mouthpieces#4.7#example 7#4_7.sce#1466/CH4/EX4.7/4_7.sce#S##67349 +4#Orifices and Mouthpieces#4.6#chapter 4 example 6#4_6.sce#1466/CH4/EX4.6/4_6.sce#S##67344 +4#Orifices and Mouthpieces#4.5#chapter 4 example 5#4_5.sce#1466/CH4/EX4.5/4_5.sce#S##67343 +4#Orifices and Mouthpieces#4.4#chapter 4 example 4#4_4.sce#1466/CH4/EX4.4/4_4.sce#S##67342 +4#Orifices and Mouthpieces#4.3#chapter 4 example 3#4_3.SCE#1466/CH4/EX4.3/4_3.SCE#S##67341 +4#Orifices and Mouthpieces#4.2#chapter 4 example 2#4_2.sce#1466/CH4/EX4.2/4_2.sce#S##67340 +4#Orifices and Mouthpieces#4.12#example 12#4_12.sce#1466/CH4/EX4.12/4_12.sce#S##91178 +4#Orifices and Mouthpieces#4.11#chapter 4 example 11#4_11.sce#1466/CH4/EX4.11/4_11.sce#S##67348 +4#Orifices and Mouthpieces#4.10#chapter 4 example 10#4_10.sce#1466/CH4/EX4.10/4_10.sce#S##79380 +4#Orifices and Mouthpieces#4.1#chapter 4 example 1#4_1.sce#1466/CH4/EX4.1/4_1.sce#S##67339 +3#The Flow Of a Fluid#3.9#chapter 3 example 9#3_9.sce#1466/CH3/EX3.9/3_9.sce#S##67335 +3#The Flow Of a Fluid#3.8#chapter 3 example 8#3_8.sce#1466/CH3/EX3.8/3_8.sce#S##67334 +3#The Flow Of a Fluid#3.7#chapter 3 example 7#3_7.sce#1466/CH3/EX3.7/3_7.sce#S##67333 +3#The Flow Of a Fluid#3.6#chapter 3 example 6#3_6.sce#1466/CH3/EX3.6/3_6.sce#S##67332 +3#The Flow Of a Fluid#3.5#chapter 3 example 5#3_5.sce#1466/CH3/EX3.5/3_5.sce#S##67331 +3#The Flow Of a Fluid#3.4#chapter 3 example 4#3_4.sce#1466/CH3/EX3.4/3_4.sce#S##67330 +3#The Flow Of a Fluid#3.3#chapter 3 example 3#3_3.sce#1466/CH3/EX3.3/3_3.sce#S##67329 +3#The Flow Of a Fluid#3.2#chapter 3 example 2#3_2.sce#1466/CH3/EX3.2/3_2.sce#S##67328 +3#The Flow Of a Fluid#3.13#chapter 3 example 13#3_13.sce#1466/CH3/EX3.13/3_13.sce#S##67338 +3#The Flow Of a Fluid#3.11#chapter 3 example 11#3_11.sce#1466/CH3/EX3.11/3_11.sce#S##67337 +3#The Flow Of a Fluid#3.10#chapter 3 example 10#3_10.sce#1466/CH3/EX3.10/3_10.sce#S##67336 +3#The Flow Of a Fluid#3.1#chapter 3 example 1#3_1.sce#1466/CH3/EX3.1/3_1.sce#S##67327 +2#The Buancyoy of a fluid#2.6#chapter 2 example 6#2_6.sce#1466/CH2/EX2.6/2_6.sce#S##48720 +2#The Buancyoy of a fluid#2.5#example 5#2_5.sce#1466/CH2/EX2.5/2_5.sce#S##89633 +2#The Buancyoy of a fluid#2.4#chapter 2 example 4#2_4.sce#1466/CH2/EX2.4/2_4.sce#S##89632 +2#The Buancyoy of a fluid#2.3#chapter 2 example 3#2_3.sce#1466/CH2/EX2.3/2_3.sce#S##89631 +2#The Buancyoy of a fluid#2.2#chapter 2 example 2#2_2.sce#1466/CH2/EX2.2/2_2.sce#S##48717 +2#The Buancyoy of a fluid#2.1#chapter 2 example 1#2_1.sce#1466/CH2/EX2.1/2_1.sce#S##48716 +1#static pressure of a fluid#1.9#chapter 1 example 9#1_9.sce#1466/CH1/EX1.9/1_9.sce#S##89630 +1#static pressure of a fluid#1.8#chapter 1 example 8#1_8.sce#1466/CH1/EX1.8/1_8.sce#S##48713 +1#static pressure of a fluid#1.7#chapter 1 example 7#1_7.sce#1466/CH1/EX1.7/1_7.sce#S##48712 +1#static pressure of a fluid#1.6#chapter 1 example 6#1_6.sce#1466/CH1/EX1.6/1_6.sce#S##48711 +1#static pressure of a fluid#1.5#chapter 1 example 5#1_5.sce#1466/CH1/EX1.5/1_5.sce#S##89629 +1#static pressure of a fluid#1.4#chapter 1 example 4#1_4.sce#1466/CH1/EX1.4/1_4.sce#S##48709 +1#static pressure of a fluid#1.3#chapter 1 example 3#1_3.sce#1466/CH1/EX1.3/1_3.sce#S##89628 +1#static pressure of a fluid#1.2#chapter 1 example 2#1_2.sce#1466/CH1/EX1.2/1_2.sce#S##48707 +1#static pressure of a fluid#1.11#chapter 1 example 11#1_11.sce#1466/CH1/EX1.11/1_11.sce#S##48715 +1#static pressure of a fluid#1.1#chapter 1 example 1#1_1.sce#1466/CH1/EX1.1/1_1.sce#S##48706 diff --git a/latex/tmp_1514_data.txt b/latex/tmp_1514_data.txt index e69de29bb..8ba26af58 100755 --- a/latex/tmp_1514_data.txt +++ b/latex/tmp_1514_data.txt @@ -0,0 +1,140 @@ +21#Electron tubes#21.3#DC load line for CC amplifier#21_3.sce#1514/CH21/EX21.3/21_3.sce#S##88237 +21#Electron tubes#21.2#Impedance and gain for vaccum triode circuit#21_2.sce#1514/CH21/EX21.2/21_2.sce#S##64840 +21#Electron tubes#21.1#Transconductance and constant current characteristics#21_1.sce#1514/CH21/EX21.1/21_1.sce#S##88240 +20#Miscellaneous devices#20.5#Gain for tunnel diode circuit#20_5.sce#1514/CH20/EX20.5/20_5.sce#S##64841 +20#Miscellaneous devices#20.4#Piecewise linear characteristics#20_4.sce#1514/CH20/EX20.4/20_4.sce#S##88186 +20#Miscellaneous devices#20.3#Value of resistor in thermistor circuit#20_3.sce#1514/CH20/EX20.3/20_3.sce#S##88185 +20#Miscellaneous devices#20.2#Resonance frequency #20_2.sce#1514/CH20/EX20.2/20_2.sce#S##64843 +20#Miscellaneous devices#20.1#Capacitance tuning ratio#20_1.sce#1514/CH20/EX20.1/20_1.sce#S##88183 +19#Optoelectronic devices#19.7#Design LED and transistor circuit#19_7.sce#1514/CH19/EX19.7/19_7.sce#S##88195 +19#Optoelectronic devices#19.6#Output voltage of phototransistor circuit#19_6.sce#1514/CH19/EX19.6/19_6.sce#S##88193 +19#Optoelectronic devices#19.5#Total cells for satellite#19_5.sce#1514/CH19/EX19.5/19_5.sce#S##64934 +19#Optoelectronic devices#19.4#Dc load line for photodiode#19_4.sce#1514/CH19/EX19.4/19_4.sce#S##88192 +19#Optoelectronic devices#19.3#Design photoconductive cell circuit#19_3.sce#1514/CH19/EX19.3/19_3.sce#S##88190 +19#Optoelectronic devices#19.2#Series resistance and dark current#19_2.sce#1514/CH19/EX19.2/19_2.sce#S##88189 +19#Optoelectronic devices#19.1#Light intensity #19_1.sce#1514/CH19/EX19.1/19_1.sce#S##88187 +18#Thyristors and unijunction transistors#18.8#DC Analysis UJT circuit#18_8.sce#1514/CH18/EX18.8/18_8.sce#S##88202 +18#Thyristors and unijunction transistors#18.7#Emitter resistance for UJT circuit#18_7.sce#1514/CH18/EX18.7/18_7.sce#S##64928 +18#Thyristors and unijunction transistors#18.6#Frequency of oscillation for UJT circuit#18_6.sce#1514/CH18/EX18.6/18_6.sce#S##88200 +18#Thyristors and unijunction transistors#18.5#Emitter voltages for UJT circuit#18_5.sce#1514/CH18/EX18.5/18_5.sce#S##64926 +18#Thyristors and unijunction transistors#18.4#Analyze UJT circuit#18_4.sce#1514/CH18/EX18.4/18_4.sce#S##88199 +18#Thyristors and unijunction transistors#18.3#Design resistor for 4 layer diode circuit#18_3.sce#1514/CH18/EX18.3/18_3.sce#S##88198 +18#Thyristors and unijunction transistors#18.2#Design SCR circuit#18_2.sce#1514/CH18/EX18.2/18_2.sce#S##88197 +18#Thyristors and unijunction transistors#18.1#Analyze SCR circuit#18_1.sce#1514/CH18/EX18.1/18_1.sce#S##88196 +17#Large signal amplifiers#17.7#Analyze MOSFET power amplifier circuit#17_7.sce#1514/CH17/EX17.7/17_7.sce#S##65451 +17#Large signal amplifiers#17.6#Supply and output voltages for amplifier circuit#17_6.sce#1514/CH17/EX17.6/17_6.sce#S##88209 +17#Large signal amplifiers#17.5#Design capacitors of amplifier circuit#17_5.sce#1514/CH17/EX17.5/17_5.sce#S##88208 +17#Large signal amplifiers#17.4#Design capacitor coupled amplifier#17_4.sce#1514/CH17/EX17.4/17_4.sce#S##88207 +17#Large signal amplifiers#17.3#Transformer output for class B#17_3.sce#1514/CH17/EX17.3/17_3.sce#S##88206 +17#Large signal amplifiers#17.2#Maximum Efficieny of Transformer#17_2.sce#1514/CH17/EX17.2/17_2.sce#S##88203 +17#Large signal amplifiers#17.1#Dc ac load line for CE circuit#17_1.sce#1514/CH17/EX17.1/17_1.sce#S##64909 +16#Power supplies Breakdown diodes and Voltage regulators#16.9#Design opamp voltage regulator#16_9.sce#1514/CH16/EX16.9/16_9.sce#S##88219 +16#Power supplies Breakdown diodes and Voltage regulators#16.8#Design voltage regulator#16_8.sce#1514/CH16/EX16.8/16_8.sce#S##88218 +16#Power supplies Breakdown diodes and Voltage regulators#16.7#LR and RR for rectifier and filter circuit#16_7.sce#1514/CH16/EX16.7/16_7.sce#S##64987 +16#Power supplies Breakdown diodes and Voltage regulators#16.6#LR and RR for regulator circuit#16_6.sce#1514/CH16/EX16.6/16_6.sce#S##64942 +16#Power supplies Breakdown diodes and Voltage regulators#16.5#Design Zener diode voltage reference#16_5.sce#1514/CH16/EX16.5/16_5.sce#S##88215 +16#Power supplies Breakdown diodes and Voltage regulators#16.4#Diode specification and Capacitor for Zener circuit#16_4.sce#1514/CH16/EX16.4/16_4.sce#S##88214 +16#Power supplies Breakdown diodes and Voltage regulators#16.3#Resevoir Capacitor for bridge rectifier#16_3.sce#1514/CH16/EX16.3/16_3.sce#S##88213 +16#Power supplies Breakdown diodes and Voltage regulators#16.2#Diode specification for half wave rectifier#16_2.sce#1514/CH16/EX16.2/16_2.sce#S##88212 +16#Power supplies Breakdown diodes and Voltage regulators#16.11#Design voltage regulator using LM217 IC#16_11.sce#1514/CH16/EX16.11/16_11.sce#S##88221 +16#Power supplies Breakdown diodes and Voltage regulators#16.10#Design voltage regulator circuit#16_10.sce#1514/CH16/EX16.10/16_10.sce#S##88220 +16#Power supplies Breakdown diodes and Voltage regulators#16.1#Reservoir Capacitor for half wave rectifier#16_1.sce#1514/CH16/EX16.1/16_1.sce#S##88210 +15#sinusoidal Oscillators#15.4#Design phase shift oscillator#15_4.sce#1514/CH15/EX15.4/15_4.sce#S##88137 +15#sinusoidal Oscillators#15.3#Design Wein Bridge oscillator#15_3.sce#1514/CH15/EX15.3/15_3.sce#S##88136 +15#sinusoidal Oscillators#15.2#Design colpitts oscillator#15_2.sce#1514/CH15/EX15.2/15_2.sce#S##88134 +15#sinusoidal Oscillators#15.1#Resistor and capacitor values for phase shift oscillator#15_1.sce#1514/CH15/EX15.1/15_1.sce#S##88133 +14#Operational amplifier frequency response and compensation#14.5#Upper cutoff frequency of inverting amplifier#14_5.sce#1514/CH14/EX14.5/14_5.sce#S##88131 +14#Operational amplifier frequency response and compensation#14.4#Design voltage follower#14_4.sce#1514/CH14/EX14.4/14_4.sce#S##88135 +14#Operational amplifier frequency response and compensation#14.3#Design inverting amplifier with a gain of 50#14_3.sce#1514/CH14/EX14.3/14_3.sce#S##88130 +14#Operational amplifier frequency response and compensation#14.2#Design non inverting amplifier#14_2.sce#1514/CH14/EX14.2/14_2.sce#S##88129 +14#Operational amplifier frequency response and compensation#14.1#Design inverting amplifier#14_1.sce#1514/CH14/EX14.1/14_1.sce#S##88128 +13#IC operational amplifiers and Opamp apllications#13.6# Design Schmitt trigger#13_6.sce#1514/CH13/EX13.6/13_6.sce#S##88127 +13#IC operational amplifiers and Opamp apllications#13.5#Design inverting amplifier#13_5.sce#1514/CH13/EX13.5/13_5.sce#S##88132 +13#IC operational amplifiers and Opamp apllications#13.4#Design non inverting amplifier#13_4.sce#1514/CH13/EX13.4/13_4.sce#S##88125 +13#IC operational amplifiers and Opamp apllications#13.3#Design voltage follower#13_3.sce#1514/CH13/EX13.3/13_3.sce#S##88124 +13#IC operational amplifiers and Opamp apllications#13.2#Impedance and gain for differential amplifier circuit#13_2.sce#1514/CH13/EX13.2/13_2.sce#S##88123 +13#IC operational amplifiers and Opamp apllications#13.1#Output voltage of differential amplifier#13_1.sce#1514/CH13/EX13.1/13_1.sce#S##88122 +12#Amplifiers with negative feedback#12.3#Single stage CE amplifier using current feedback#12_3.sce#1514/CH12/EX12.3/12_3.sce#S##88121 +12#Amplifiers with negative feedback#12.2#Analyze negative feedback amplifier#12_2.sce#1514/CH12/EX12.2/12_2.sce#S##88120 +12#Amplifiers with negative feedback#12.1#Modification of 2 stage amplifier to voltage series feedback#12_1.sce#1514/CH12/EX12.1/12_1.sce#S##88119 +11#Small Signal Amplifiers#11.9#Resistance values for 2 stage amplifier#11_9.sce#1514/CH11/EX11.9/11_9.sce#S##88113 +11#Small Signal Amplifiers#11.8#Capacitors for 2 stage amplifier#11_8.sce#1514/CH11/EX11.8/11_8.sce#S##88112 +11#Small Signal Amplifiers#11.7#Suitable Resistors for 2 stage amplifier#11_7.sce#1514/CH11/EX11.7/11_7.sce#S##88111 +11#Small Signal Amplifiers#11.6#Analyze 2 stage amplifier#11_6.sce#1514/CH11/EX11.6/11_6.sce#S##88110 +11#Small Signal Amplifiers#11.5#Design 2 stage amplifier#11_5.sce#1514/CH11/EX11.5/11_5.sce#S##88109 +11#Small Signal Amplifiers#11.4#Capacitors for CS amplifier#11_4.sce#1514/CH11/EX11.4/11_4.sce#S##88108 +11#Small Signal Amplifiers#11.3#Resistors for CS amplifier#11_3.sce#1514/CH11/EX11.3/11_3.sce#S##88107 +11#Small Signal Amplifiers#11.2#Capacitors for CE amplifier#11_2.sce#1514/CH11/EX11.2/11_2.sce#S##88106 +11#Small Signal Amplifiers#11.14#Capacitors for BIFET amplifier#11_14.sce#1514/CH11/EX11.14/11_14.sce#S##88118 +11#Small Signal Amplifiers#11.13#Resistors for BIFET amplifier#11_13.sce#1514/CH11/EX11.13/11_13.sce#S##88117 +11#Small Signal Amplifiers#11.12#Design DC feedback amplifier#11_12.sce#1514/CH11/EX11.12/11_12.sce#S##88116 +11#Small Signal Amplifiers#11.11#AC analysis of 2 stage amplifier#11_11.sce#1514/CH11/EX11.11/11_11.sce#S##88115 +11#Small Signal Amplifiers#11.10#Capacitor values for 2 stage amplifier#11_10.sce#1514/CH11/EX11.10/11_10.sce#S##88114 +11#Small Signal Amplifiers#11.1#Resistors for CE amplifier#11_1.sce#1514/CH11/EX11.1/11_1.sce#S##88105 +10#Basic FET Circuits#10.7#Impedance, Output voltage(vo) and gain for Common gate JFET#10_7.sce#1514/CH10/EX10.7/10_7.sce#S##88104 +10#Basic FET Circuits#10.6#Impedances, vo and gain for Common gate JFET#10_6.sce#1514/CH10/EX10.6/10_6.sce#S##88103 +10#Basic FET Circuits#10.5#Impedance and gain for Common drain JFET#10_5.sce#1514/CH10/EX10.5/10_5.sce#S##88102 +10#Basic FET Circuits#10.4#Input and output Impedances and gain for Common drain JFET#10_4.sce#1514/CH10/EX10.4/10_4.sce#S##64836 +10#Basic FET Circuits#10.3#Impedance and gain for Common source JFET#10_3.sce#1514/CH10/EX10.3/10_3.sce#S##88101 +10#Basic FET Circuits#10.2#Voltage gain for Common source JFET#10_2.sce#1514/CH10/EX10.2/10_2.sce#S##88049 +10#Basic FET Circuits#10.1#Input and output Impedances and voltage gain for Common source JFET#10_1.sce#1514/CH10/EX10.1/10_1.sce#S##88100 +9#FET Biasing#9.9#Finding Rd input voltage Rg#9_9.sce#1514/CH9/EX9.9/9_9.sce#S##88076 +9#FET Biasing#9.8#Analyze potential divider circuit FET#9_8.sce#1514/CH9/EX9.8/9_8.sce#S##88222 +9#FET Biasing#9.7#Design potential divider circuit FET#9_7.sce#1514/CH9/EX9.7/9_7.sce#S##88047 +9#FET Biasing#9.6#Analyze self bias circuit FET#9_6.sce#1514/CH9/EX9.6/9_6.sce#S##88046 +9#FET Biasing#9.5#Design self bias circuit FET#9_5.sce#1514/CH9/EX9.5/9_5.sce#S##88075 +9#FET Biasing#9.4#Analyze fixed bias circuit FET#9_4.sce#1514/CH9/EX9.4/9_4.sce#S##88074 +9#FET Biasing#9.3#Design fixed bias circuit FET#9_3.sce#1514/CH9/EX9.3/9_3.sce#S##64826 +9#FET Biasing#9.2#Finding levels of Id and Vds#9_2.sce#1514/CH9/EX9.2/9_2.sce#S##88073 +9#FET Biasing#9.1#Dc load line for FET#9_1.sce#1514/CH9/EX9.1/9_1.sce#S##64824 +8#Field Effect Transistors#8.4#Finding gm#8_4.sce#1514/CH8/EX8.4/8_4.sce#S##64823 +8#Field Effect Transistors#8.3#Find Transconductance(gm)#8_3.sce#1514/CH8/EX8.3/8_3.sce#S##88071 +8#Field Effect Transistors#8.2#Min and max Transfer characteristics for FET#8_2.sce#1514/CH8/EX8.2/8_2.sce#S##64821 +8#Field Effect Transistors#8.1#FET Transfer characteristics #ch8_1.sce#1514/CH8/EX8.1/ch8_1.sce#S##88072 +7#Transistor Specification and performance#7.8#Output noise#ch7_8.sce#1514/CH7/EX7.8/ch7_8.sce#S##64819 +7#Transistor Specification and performance#7.7#Input capacitor#ch7_7.sce#1514/CH7/EX7.7/ch7_7.sce#S##64818 +7#Transistor Specification and performance#7.6#Upper 3dB point#ch7_6.sce#1514/CH7/EX7.6/ch7_6.sce#S##64817 +7#Transistor Specification and performance#7.5#Output power variation#ch7_5.sce#1514/CH7/EX7.5/ch7_5.sce#S##88070 +7#Transistor Specification and performance#7.4#Change in Output power with variation in signal frequencies#ch7_4.sce#1514/CH7/EX7.4/ch7_4.sce#S##88069 +7#Transistor Specification and performance#7.3#Selecting heat sink#ch7_3.sce#1514/CH7/EX7.3/ch7_3.sce#S##64813 +7#Transistor Specification and performance#7.2#Maximum power Dissipation#ch7_2.sce#1514/CH7/EX7.2/ch7_2.sce#S##64812 +7#Transistor Specification and performance#7.1#Finding collector current#ch7_1.sce#1514/CH7/EX7.1/ch7_1.sce#S##64811 +5#Basic Transistor circuits#5.7#Input impedance,output impedance and voltage gain of CE amplifier#5_7.sce#1514/CH5/EX5.7/5_7.sce#S##88064 +5#Basic Transistor circuits#5.6#Circuit Impedances and Gain for common base circuit#5_6.sce#1514/CH5/EX5.6/5_6.sce#S##88063 +5#Basic Transistor circuits#5.5#Effect on input impedance#5_5.sce#1514/CH5/EX5.5/5_5.sce#S##88057 +5#Basic Transistor circuits#5.4#Circuit Impedances and Gain for common emitter circuit#5_4.sce#1514/CH5/EX5.4/5_4.sce#S##88058 +5#Basic Transistor circuits#5.3#AC analysis of common-emitter circuit#5_3.sce#1514/CH5/EX5.3/5_3.sce#S##88056 +5#Basic Transistor circuits#5.2#Effect on performance of common emitter circuit#5_2.sce#1514/CH5/EX5.2/5_2.sce#S##88062 +5#Basic Transistor circuits#5.1#Impedances and Gain for common emitter circuit#5_1.sce#1514/CH5/EX5.1/5_1.sce#S##88060 +4#Transistor Biasing#4.9#Design emitter current Bias circuit using 2N3904#4_9.sce#1514/CH4/EX4.9/4_9.sce#S##88066 +4#Transistor Biasing#4.8#Analyse emitter current Bias circuit#4_8.sce#1514/CH4/EX4.8/4_8.sce#S##88050 +4#Transistor Biasing#4.7#Analysing common-emitter current Bias circuit#4_7.sce#1514/CH4/EX4.7/4_7.sce#S##88067 +4#Transistor Biasing#4.6#Analyzing collector to base Bias circuit#4_6.sce#1514/CH4/EX4.6/4_6.sce#S##64758 +4#Transistor Biasing#4.5#Design collector to base Bias circuit#4_5.sce#1514/CH4/EX4.5/4_5.sce#S##88224 +4#Transistor Biasing#4.4#Analyzing fixed bias circuit#4_4.sce#1514/CH4/EX4.4/4_4.sce#S##64751 +4#Transistor Biasing#4.3#Designing fixed bias circuit#4_3.sce#1514/CH4/EX4.3/4_3.sce#S##88223 +4#Transistor Biasing#4.2#Maximum undistorted output#4_2.sce#1514/CH4/EX4.2/4_2.sce#S##88044 +4#Transistor Biasing#4.15#Finding Base and collector resistor#4_15.sce#1514/CH4/EX4.15/4_15.sce#S##88052 +4#Transistor Biasing#4.14#Finding Base resistor#4_14.sce#1514/CH4/EX4.14/4_14.sce#S##88051 +4#Transistor Biasing#4.13#Finding Vce in cutoff and saturation#4_13.sce#1514/CH4/EX4.13/4_13.sce#S##88053 +4#Transistor Biasing#4.12#Dc and ac load line#4_12.sce#1514/CH4/EX4.12/4_12.sce#S##88045 +4#Transistor Biasing#4.11#Finding Stability factor#4_11.sce#1514/CH4/EX4.11/4_11.sce#S##88228 +4#Transistor Biasing#4.10#Design Common emitter current bias circuit#4_10.sce#1514/CH4/EX4.10/4_10.sce#S##88065 +4#Transistor Biasing#4.1#Dc load line #4_1.sce#1514/CH4/EX4.1/4_1.sce#S##88043 +3#Bipolar Junction Transistors#3.8#Finding h-parameters and Common base gain#3_8.sce#1514/CH3/EX3.8/3_8.sce#S##64739 +3#Bipolar Junction Transistors#3.7#Finding h-parameters#3_7.sce#1514/CH3/EX3.7/3_7.sce#S##88068 +3#Bipolar Junction Transistors#3.6#Finding h-parameters for CE configuration#3_6.sce#1514/CH3/EX3.6/3_6.sce#S##64738 +3#Bipolar Junction Transistors#3.5#Finding Beta of Transistor#3_5.sce#1514/CH3/EX3.5/3_5.sce#S##64735 +3#Bipolar Junction Transistors#3.4#Finding Emitter and collector current#3_4.sce#1514/CH3/EX3.4/3_4.sce#S##64734 +3#Bipolar Junction Transistors#3.3#Current Gain Characteristics#3_3.sce#1514/CH3/EX3.3/3_3.sce#S##64733 +3#Bipolar Junction Transistors#3.2#Finding Emitter and base current#3_2.sce#1514/CH3/EX3.2/3_2.sce#S##88227 +3#Bipolar Junction Transistors#3.1#Finding collector and emitter current of transistor#3_1.sce#1514/CH3/EX3.1/3_1.sce#S##64209 +2#Semiconductor diodes#2.9#Diode forward current and reverse voltage#ch2_2_9.sce#1514/CH2/EX2.9/ch2_2_9.sce#S##88229 +2#Semiconductor diodes#2.8#Maximum forward current #ch2_2_8.sce#1514/CH2/EX2.8/ch2_2_8.sce#S##64172 +2#Semiconductor diodes#2.7#Maximum operating frequency#ch2_2_7.sce#1514/CH2/EX2.7/ch2_2_7.sce#S##64171 +2#Semiconductor diodes#2.6#Half wave rectification #ch2_2_6.sce#1514/CH2/EX2.6/ch2_2_6.sce#S##64170 +2#Semiconductor diodes#2.5#forward voltage drop#ch2_2_5.sce#1514/CH2/EX2.5/ch2_2_5.sce#S##64169 +2#Semiconductor diodes#2.4#diode Forward Current#ch2_2_4.sce#1514/CH2/EX2.4/ch2_2_4.sce#S##64168 +2#Semiconductor diodes#2.3#Finding new source value#ch2_2_3.sce#1514/CH2/EX2.3/ch2_2_3.sce#S##64167 +2#Semiconductor diodes#2.2#Finding Load resistance#ch2_2_2.sce#1514/CH2/EX2.2/ch2_2_2.sce#S##64166 +2#Semiconductor diodes#2.1#dc load line characteristics#ch2_2_1.sce#1514/CH2/EX2.1/ch2_2_1.sce#S##88042 diff --git a/latex/tmp_1583_contributor.txt b/latex/tmp_1583_contributor.txt index 578fce660..32a9c7c98 100755 --- a/latex/tmp_1583_contributor.txt +++ b/latex/tmp_1583_contributor.txt @@ -1 +1 @@ -Pratik Chandrakant Chogale#Bachelor of engineering#Electronics Engineering#Mumbai university#Mr. Atul Atalkar#Mukul Kulkarni +Pratik Chandrakant Chogale#Bachelor of engineering#Electronics Engineering#Mumbai University#Mr. Atul Atalkar#Mukul Kulkarni diff --git a/latex/tmp_1691_data.txt b/latex/tmp_1691_data.txt index 54db3e124..220da9916 100755 --- a/latex/tmp_1691_data.txt +++ b/latex/tmp_1691_data.txt @@ -51,7 +51,7 @@ 3#Multivibrators and Blocking Oscillators#3.1#stable state currents and voltages#exp3_1.sce#1691/CH3/EX3.1/exp3_1.sce#S##60847 3#Multivibrators and Blocking Oscillators#3.1#stable state currents and voltages#exp3_1_d3_4_a.xcos#1691/CH3/EX3.1/exp3_1_d3_4_a.xcos#X##60848 3#Multivibrators and Blocking Oscillators#3.1#stable state currents and voltages#exp3_1_d3_4_b.xcos#1691/CH3/EX3.1/exp3_1_d3_4_b.xcos#X##60849 -2#Oscillators#2.9#frequency of oscillations#exmp2_9.sce#1691/CH2/EX2.9/exmp2_9.sce#S##60817 +2#Oscillators#2.9#Frequency of oscillations of a Hartley oscillator#exmp2_9.sce#1691/CH2/EX2.9/exmp2_9.sce#S##60817 2#Oscillators#2.8#range over which capacitor is varied#exmp2_8.sce#1691/CH2/EX2.8/exmp2_8.sce#S##60816 2#Oscillators#2.7#min and max R2#exmp2_7.sce#1691/CH2/EX2.7/exmp2_7.sce#S##60815 2#Oscillators#2.6#frequency of oscillator#exmp2_6.sce#1691/CH2/EX2.6/exmp2_6.sce#S##60814 @@ -83,7 +83,7 @@ 2#Oscillators#2.14#range of tuning capacitor#exmp2_14.sce#1691/CH2/EX2.14/exmp2_14.sce#S##60822 2#Oscillators#2.13#value of inductor#exmp2_13.sce#1691/CH2/EX2.13/exmp2_13.sce#S##60821 2#Oscillators#2.12#value of C#exmp2_12.sce#1691/CH2/EX2.12/exmp2_12.sce#S##60820 -2#Oscillators#2.11#frequency of oscillations#exmp2_11.sce#1691/CH2/EX2.11/exmp2_11.sce#S##60819 +2#Oscillators#2.11#Frequency of oscillations of a transistorised Colpitts oscillator#exmp2_11.sce#1691/CH2/EX2.11/exmp2_11.sce#S##60819 2#Oscillators#2.10#range of C#exmp2_10.sce#1691/CH2/EX2.10/exmp2_10.sce#S##60818 2#Oscillators#2.1#verify barkhausen criterion#exmp2_1.sce#1691/CH2/EX2.1/exmp2_1.sce#S##60809 1#Feedback Amplifiers#1.9#voltage gain and input and output impedance#Example1_9.sce#1691/CH1/EX1.9/Example1_9.sce#S##60783 @@ -117,6 +117,6 @@ 1#Feedback Amplifiers#1.14#Av and beta of amplifier#Example1_14.sce#1691/CH1/EX1.14/Example1_14.sce#S##60788 1#Feedback Amplifiers#1.13#feedback ratio and input voltage#Example1_13.sce#1691/CH1/EX1.13/Example1_13.sce#S##60787 1#Feedback Amplifiers#1.12#single stage RC coupled amplifier#Example1_12.sce#1691/CH1/EX1.12/Example1_12.sce#S##60786 -1#Feedback Amplifiers#1.11#gain with feedback#Example1_11.sce#1691/CH1/EX1.11/Example1_11.sce#S##60785 +1#Feedback Amplifiers#1.11#gain of the amplifier with feedback#Example1_11.sce#1691/CH1/EX1.11/Example1_11.sce#S##60785 1#Feedback Amplifiers#1.10#amplifier without feedback#Example1_10.sce#1691/CH1/EX1.10/Example1_10.sce#S##60784 1#Feedback Amplifiers#1.1#transistor in the feedback amplifier#Example1_1.sce#1691/CH1/EX1.1/Example1_1.sce#S##60775 diff --git a/latex/tmp_1757_contributor.txt b/latex/tmp_1757_contributor.txt index 740fac4fc..00f631688 100755 --- a/latex/tmp_1757_contributor.txt +++ b/latex/tmp_1757_contributor.txt @@ -1 +1 @@ -Khan Mohammed Ahmed Abdul Hameed#B.E (EXTC)#Electronics Engineering#Mumbai#S. Chaya Ravindra#Bhavani Jalkrish +Khan Mohammed Ahmed Abdul Hameed#B.E (EXTC)#Electronics Engineering#Mumbai University#S. Chaya Ravindra#Bhavani Jalkrish diff --git a/latex/tmp_1760_contributor.txt b/latex/tmp_1760_contributor.txt index 301f066a6..362b77473 100755 --- a/latex/tmp_1760_contributor.txt +++ b/latex/tmp_1760_contributor.txt @@ -1 +1 @@ -Khan Salman Aafak#B.E (EXTC)#Electronics Engineering#Mumbai#Chaya S Ravindra#K. V. P. Pradeep +Khan Salman Aafak#B.E (EXTC)#Electronics Engineering#Mumbai University#Chaya S Ravindra#K. V. P. Pradeep diff --git a/latex/tmp_1775_contributor.txt b/latex/tmp_1775_contributor.txt index 5e182da3e..c040add78 100755 --- a/latex/tmp_1775_contributor.txt +++ b/latex/tmp_1775_contributor.txt @@ -1 +1 @@ -Karnati Saiaman#B. TECH#Mechanical Engineering#SASTRA UNIVERSITY#K. Ramakrishna Reddy#Lavitha Pereira and Mukul R. Kulkarni +Karnati Saiaman#B. TECH#Mechanical Engineering#Sastra University#K. Ramakrishna Reddy#Lavitha Pereira and Mukul R. Kulkarni diff --git a/latex/tmp_1835_contributor.txt b/latex/tmp_1835_contributor.txt index 7b8f94723..6507939fd 100755 --- a/latex/tmp_1835_contributor.txt +++ b/latex/tmp_1835_contributor.txt @@ -1 +1 @@ -Guntumadugu Chanikya#B. Tech#Others#Sastra university#Dr.anjan Kumar Dash#Chaitanya +Guntumadugu Chanikya#B. Tech#Others#Sastra University#Dr.anjan Kumar Dash#Chaitanya diff --git a/latex/tmp_1853_contributor.txt b/latex/tmp_1853_contributor.txt index af837f49d..847aa3321 100755 --- a/latex/tmp_1853_contributor.txt +++ b/latex/tmp_1853_contributor.txt @@ -1 +1 @@ -Qureshi Mehtab Alam Niyaz Ahmed#B.E (EXTC)#Electronics Engineering#Mumbai#S. Chaya Ravindra#Banda Nawaz +Qureshi Mehtab Alam Niyaz Ahmed#B.E (EXTC)#Electronics Engineering#Mumbai University#S. Chaya Ravindra#Banda Nawaz diff --git a/latex/tmp_1862_data.txt b/latex/tmp_1862_data.txt index e69de29bb..564dc0538 100755 --- a/latex/tmp_1862_data.txt +++ b/latex/tmp_1862_data.txt @@ -0,0 +1,169 @@ +24#ENTROPY AND THE SECOND LAW OF THERMODYNAMICS#24.9#C24P9#C24P9.sce#1862/CH24/EX24.9/C24P9.sce#S##84318 +24#ENTROPY AND THE SECOND LAW OF THERMODYNAMICS#24.8#C24P8#C24P8.sce#1862/CH24/EX24.8/C24P8.sce#S##84317 +24#ENTROPY AND THE SECOND LAW OF THERMODYNAMICS#24.7#C24P7#C24P7.sce#1862/CH24/EX24.7/C24P7.sce#S##84316 +24#ENTROPY AND THE SECOND LAW OF THERMODYNAMICS#24.6#C24P6#C24P6.sce#1862/CH24/EX24.6/C24P6.sce#S##84315 +24#ENTROPY AND THE SECOND LAW OF THERMODYNAMICS#24.5#C24P5#C24P5.sce#1862/CH24/EX24.5/C24P5.sce#S##84314 +24#ENTROPY AND THE SECOND LAW OF THERMODYNAMICS#24.4#C24P4#C24P4.sce#1862/CH24/EX24.4/C24P4.sce#S##84313 +24#ENTROPY AND THE SECOND LAW OF THERMODYNAMICS#24.3#C24P3#C24P3.sce#1862/CH24/EX24.3/C24P3.sce#S##84312 +24#ENTROPY AND THE SECOND LAW OF 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LAWS#3.6#C3P6#C3P6.sce#1862/CH3/EX3.6/C3P6.sce#S##83677 +3#FORCE AND NEWTONS LAWS#3.5#C3P5#C3P5.sce#1862/CH3/EX3.5/C3P5.sce#S##83676 +3#FORCE AND NEWTONS LAWS#3.4#C3P4#C3P4.sce#1862/CH3/EX3.4/C3P4.sce#S##83675 +3#FORCE AND NEWTONS LAWS#3.3#C3P3#C3P3.sce#1862/CH3/EX3.3/C3P3.sce#S##83674 +3#FORCE AND NEWTONS LAWS#3.2#C3P2#C3P2.sce#1862/CH3/EX3.2/C3P2.sce#S##83673 +3#FORCE AND NEWTONS LAWS#3.1#C3P1#C3P1.sce#1862/CH3/EX3.1/C3P1.sce#S##83672 +2#MOTION IN ONE DIMENSION#2.9#C2P9#C2P9.sce#1862/CH2/EX2.9/C2P9.sce#S##83669 +2#MOTION IN ONE DIMENSION#2.8#C2P8#C2P8.sce#1862/CH2/EX2.8/C2P8.sce#S##83668 +2#MOTION IN ONE DIMENSION#2.7#C2P7#C2P7.sce#1862/CH2/EX2.7/C2P7.sce#S##83667 +2#MOTION IN ONE DIMENSION#2.6#C2P6#C2P6.sce#1862/CH2/EX2.6/C2P6.sce#S##83666 +2#MOTION IN ONE DIMENSION#2.5#C2P5#C2P5.sce#1862/CH2/EX2.5/C2P5.sce#S##83665 +2#MOTION IN ONE DIMENSION#2.4#C2P4#C2P4.sce#1862/CH2/EX2.4/C2P4.sce#S##83664 +2#MOTION IN ONE DIMENSION#2.3#C2P3#C2P3.sce#1862/CH2/EX2.3/C2P3.sce#S##83663 +2#MOTION IN ONE DIMENSION#2.2#C2P2#C2P2.sce#1862/CH2/EX2.2/C2P2.sce#S##83662 +2#MOTION IN ONE DIMENSION#2.11#C2P11#C2P11.sce#1862/CH2/EX2.11/C2P11.sce#S##83671 +2#MOTION IN ONE DIMENSION#2.10#C2P10#C2P10.sce#1862/CH2/EX2.10/C2P10.sce#S##83670 +2#MOTION IN ONE DIMENSION#2.1#C2P1#C2P1.sce#1862/CH2/EX2.1/C2P1.sce#S##83661 +1#MEASUREMENT#1.5#C1P5#C1P5.sce#1862/CH1/EX1.5/C1P5.sce#S##83354 +1#MEASUREMENT#1.3#C1P3#C1P3.sce#1862/CH1/EX1.3/C1P3.sce#S##83353 +1#MEASUREMENT#1.2#C1P2#C1P2.sce#1862/CH1/EX1.2/C1P2.sce#S##83352 +1#MEASUREMENT#1.1#C1P1#C1P1.sce#1862/CH1/EX1.1/C1P1.sce#S##83351 diff --git a/latex/tmp_1898_contributor.txt b/latex/tmp_1898_contributor.txt index c861ef21a..0377859cf 100755 --- a/latex/tmp_1898_contributor.txt +++ b/latex/tmp_1898_contributor.txt @@ -1 +1 @@ -Deepika S Namboothiri#Bachelor of Engineering#Mechanical Engineering#CUMMINS COLLEGE OF ENGINEERING#Dr. Gautam S. Chandekar#Chaitanya Potti +Deepika S Namboothiri#Bachelor of Engineering#Mechanical Engineering#Cummins College of Engineering#Dr. Gautam S. Chandekar#Chaitanya Potti diff --git a/latex/tmp_1910_data.txt b/latex/tmp_1910_data.txt index e69de29bb..af32f0a62 100755 --- a/latex/tmp_1910_data.txt +++ b/latex/tmp_1910_data.txt @@ -0,0 +1,93 @@ +12#Principles of mass transfer#12.3#Measurement of binary diffusion coefficient#chapter123.sce#1910/CH12/EX12.3/chapter123.sce#S##73766 +12#Principles of mass transfer#12.2#Wet bulb thermometer#Chapter122.sce#1910/CH12/EX12.2/Chapter122.sce#S##73767 +12#Principles of mass transfer#12.1#Pipeline that transports helium gas#Chapter121.sce#1910/CH12/EX12.1/Chapter121.sce#S##73768 +11#Radiation heat transfer#11.8#Two concentric spheres are separated in air space#Chapter118.sce#1910/CH11/EX11.8/Chapter118.sce#S##73764 +11#Radiation heat transfer#11.7#Two parallel infinite planes#Chapter117.sce#1910/CH11/EX11.7/Chapter117.sce#S##73765 +11#Radiation heat transfer#11.6#Two blackbody rectangles #Chapter116.sce#1910/CH11/EX11.6/Chapter116.sce#S##73757 +11#Radiation heat transfer#11.5#Determine the view factor of the cylindrical surface#Chapter115.sce#1910/CH11/EX11.5/Chapter115.sce#S##73758 +11#Radiation heat transfer#11.4#Determine the view factor F14 for the composite surface#Chapter114.sce#1910/CH11/EX11.4/Chapter114.sce#S##73759 +11#Radiation heat transfer#11.3#To determine the view factors F13 and F31#Chapter113.sce#1910/CH11/EX11.3/Chapter113.sce#S##73760 +11#Radiation heat transfer#11.10#Configuration of a furnace as an equilateral triangle#Chapter1110.sce#1910/CH11/EX11.10/Chapter1110.sce#S##73762 +10#Principles of heat exchangers#10.8#A double pipe heat exchanger#Chapter108.sce#1910/CH10/EX10.8/Chapter108.sce#S##73752 +10#Principles of heat exchangers#10.7#Water enters a cross flow heat exchangers#Chapter107.sce#1910/CH10/EX10.7/Chapter107.sce#S##73753 +10#Principles of heat exchangers#10.6#Water enters a counter flow double pipe heat exchangers#Chapter106.sce#1910/CH10/EX10.6/Chapter106.sce#S##73754 +10#Principles of heat exchangers#10.5#Water is heated in a counter flow double pipe heat exchanger#Chapter105.sce#1910/CH10/EX10.5/Chapter105.sce#S##73755 +10#Principles of heat exchangers#10.3#Cross flow heat exchangers with both fluids unmixed#Chapter103.sce#1910/CH10/EX10.3/Chapter103.sce#S##73749 +10#Principles of heat exchangers#10.2#Hot oil flows through a counterflow heat exchanger#Chapter102.sce#1910/CH10/EX10.2/Chapter102.sce#S##73750 +10#Principles of heat exchangers#10.1#Food processing plant#Chapter101.sce#1910/CH10/EX10.1/Chapter101.sce#S##73751 +9#Heat transfer in condensation and boiling#9.8#Boiling charactersticts of a special coating#Chapter98.sce#1910/CH9/EX9.8/Chapter98.sce#S##73744 +9#Heat transfer in condensation and boiling#9.7#A heated nickel plate#Chapter97.sce#1910/CH9/EX9.7/Chapter97.sce#S##73745 +9#Heat transfer in condensation and boiling#9.6#Nickel wire is submerged horizontally #Chapter96.sce#1910/CH9/EX9.6/Chapter96.sce#S##73746 +9#Heat transfer in condensation and boiling#9.5#Nickel wire is submerged horizontally in water#Chapter95.sce#1910/CH9/EX9.5/Chapter95.sce#S##73747 +9#Heat transfer in condensation and boiling#9.4#Saturated freon 12#Chapter94.sce#1910/CH9/EX9.4/Chapter94.sce#S##73740 +9#Heat transfer in condensation and boiling#9.3#A vertical plate in the presence of saturated steam#Chapter93.sce#1910/CH9/EX9.3/Chapter93.sce#S##73741 +9#Heat transfer in condensation and boiling#9.2#Steam is being condensed#Chapter92.sce#1910/CH9/EX9.2/Chapter92.sce#S##73742 +9#Heat transfer in condensation and boiling#9.1#A vertical cooling fin#Chapter91.sce#1910/CH9/EX9.1/Chapter91.sce#S##73743 +8#Principles of free convection#8.8#Electric immersion heater#Chapter88.sce#1910/CH8/EX8.8/Chapter88.sce#S##73736 +8#Principles of free convection#8.7#Long horizontal pressurized hot water pipe#Chapter87.sce#1910/CH8/EX8.7/Chapter87.sce#S##73737 +8#Principles of free convection#8.6#Long vertical wire in atmosphere#Chapter86.sce#1910/CH8/EX8.6/Chapter86.sce#S##73738 +8#Principles of free convection#8.5#Square plate in a room#Chapter85.sce#1910/CH8/EX8.5/Chapter85.sce#S##73739 +8#Principles of free convection#8.4#Square plate suspended vertically#Chapter84.sce#1910/CH8/EX8.4/Chapter84.sce#S##73732 +8#Principles of free convection#8.3#Maximum velocity in the boundary layer#Chapter83.sce#1910/CH8/EX8.3/Chapter83.sce#S##73733 +8#Principles of free convection#8.2#Thin plates to be cooled#Chapter82.sce#1910/CH8/EX8.2/Chapter82.sce#S##73734 +8#Principles of free convection#8.1#Water is heated by a vertical plate#Chapter81.sce#1910/CH8/EX8.1/Chapter81.sce#S##73735 +7#Principles of forced convection#7.9#Air at one atmospheric pressure#Chapter79.sce#1910/CH7/EX7.9/Chapter79.sce#S##73728 +7#Principles of forced convection#7.8#Hydrodynamic and thermal entry length#Chapter78.sce#1910/CH7/EX7.8/Chapter78.sce#S##73729 +7#Principles of forced convection#7.7#Fine wire is placed in air stream#Chapter77.sce#1910/CH7/EX7.7/Chapter77.sce#S##73730 +7#Principles of forced convection#7.6#Top surface of wing absorbs solar radiation#Chapter76.sce#1910/CH7/EX7.6/Chapter76.sce#S##73731 +7#Principles of forced convection#7.5#A flat plate is maintained at a uniform surface temprature#CHapter75.sce#1910/CH7/EX7.5/CHapter75.sce#S##73721 +7#Principles of forced convection#7.4#Castor oil flows over a heated plate#Chapter74.sce#1910/CH7/EX7.4/Chapter74.sce#S##73725 +7#Principles of forced convection#7.3#Air flows over a flat plate whose temprature is constant#Chapter73.sce#1910/CH7/EX7.3/Chapter73.sce#S##73724 +7#Principles of forced convection#7.2#Atmospheric air flows over a flat plate#Chapter72.sce#1910/CH7/EX7.2/Chapter72.sce#S##73723 +7#Principles of forced convection#7.11#Liquid sulphur dioxide#Chapter711.sce#1910/CH7/EX7.11/Chapter711.sce#S##73726 +7#Principles of forced convection#7.10#The tube heated length#Chapter710.sce#1910/CH7/EX7.10/Chapter710.sce#S##73727 +7#Principles of forced convection#7.1#Engine oil flows over a flat plate#Chapter71.sce#1910/CH7/EX7.1/Chapter71.sce#S##73722 +6#Incompressible viscous flow A brief review#6.7#A flat plate is kept parallel to a uniform stream#Chapter67.sce#1910/CH6/EX6.7/Chapter67.sce#S##73719 +6#Incompressible viscous flow A brief review#6.3#Oil is discharged under a pressure#Chapter63.sce#1910/CH6/EX6.3/Chapter63.sce#S##73713 +6#Incompressible viscous flow A brief review#6.10#Wind bows over a flat plate#Chapter610.sce#1910/CH6/EX6.10/Chapter610.sce#S##73716 +6#Incompressible viscous flow A brief review#6.1#Oil flows between two fixed plates#Chapter61.sce#1910/CH6/EX6.1/Chapter61.sce#S##73715 +5#Convection#5.8#Electric current passes through a long horizontal wire#Chapter58.sce#1910/CH5/EX5.8/Chapter58.sce#S##73709 +5#Convection#5.7#Heat loss from a vertical wall#Chapter57.sce#1910/CH5/EX5.7/Chapter57.sce#S##73708 +5#Convection#5.6#Air enters a tube#Chapter56.sce#1910/CH5/EX5.6/Chapter56.sce#S##73707 +5#Convection#5.4#Circuit board to cool the electronic elements#Chapter54.sce#1910/CH5/EX5.4/Chapter54.sce#S##73705 +5#Convection#5.3#Flat plate with a free stream velocity#Chapter53.sce#1910/CH5/EX5.3/Chapter53.sce#S##73704 +4#Unsteady conduction#4.9#A large aluminium bar#Chapter49.sce#1910/CH4/EX4.9/Chapter49.sce#S##73696 +4#Unsteady conduction#4.8#A steel sphere#Chapter48.sce#1910/CH4/EX4.8/Chapter48.sce#S##73692 +4#Unsteady conduction#4.7#A large cylinder#Chapter47.sce#1910/CH4/EX4.7/Chapter47.sce#S##73693 +4#Unsteady conduction#4.6#A large aluminium plate#Chapter46.sce#1910/CH4/EX4.6/Chapter46.sce#S##73694 +4#Unsteady conduction#4.5#Masonry brick wall#Chapter45.sce#1910/CH4/EX4.5/Chapter45.sce#S##73695 +4#Unsteady conduction#4.4#Some hot milk#Chapter44.sce#1910/CH4/EX4.4/Chapter44.sce#S##81790 +4#Unsteady conduction#4.3#Maximum edge dimension#Chapter43.sce#1910/CH4/EX4.3/Chapter43.sce#S##73690 +4#Unsteady conduction#4.2#The temprature of a gas stream#Chapter42.sce#1910/CH4/EX4.2/Chapter42.sce#S##73691 +4#Unsteady conduction#4.14#Fully implicit scheme#Chapter414.sce#1910/CH4/EX4.14/Chapter414.sce#S##73699 +4#Unsteady conduction#4.13#A large iron plate#Chapter413.sce#1910/CH4/EX4.13/Chapter413.sce#S##73700 +4#Unsteady conduction#4.12#A large block of nickel steel#Chapter412.sce#1910/CH4/EX4.12/Chapter412.sce#S##73701 +4#Unsteady conduction#4.11#A large slab of wrought iron#Chapter411.sce#1910/CH4/EX4.11/Chapter411.sce#S##73697 +4#Unsteady conduction#4.10#An iron beam#Chapter410.sce#1910/CH4/EX4.10/Chapter410.sce#S##73698 +4#Unsteady conduction#4.1#An apple subject to a cold enviroment#Chapter41.sce#1910/CH4/EX4.1/Chapter41.sce#S##73688 +3#Multi dimensional steady state heat conduction#3.6#The cross section of a square chimney#Chapter36.sce#1910/CH3/EX3.6/Chapter36.sce#S##73685 +3#Multi dimensional steady state heat conduction#3.5#An aluminium rod#Chapter35.sce#1910/CH3/EX3.5/Chapter35.sce#S##73686 +3#Multi dimensional steady state heat conduction#3.3#Three sides of a square plate#Chapter33.sce#1910/CH3/EX3.3/Chapter33.sce#S##73682 +3#Multi dimensional steady state heat conduction#3.2#A thin square plate#Chapter32.sce#1910/CH3/EX3.2/Chapter32.sce#S##81789 +3#Multi dimensional steady state heat conduction#3.1#Temprature at the centre of the plate#Chapter31.sce#1910/CH3/EX3.1/Chapter31.sce#S##73684 +2#One dimensional steady state heat conduction#2.9#A thin walled copper tube#Chapter29.sce#1910/CH2/EX2.9/Chapter29.sce#S##73675 +2#One dimensional steady state heat conduction#2.6#Thick plate with uniform heat generation#Chapter26.sce#1910/CH2/EX2.6/Chapter26.sce#S##73670 +2#One dimensional steady state heat conduction#2.4#In a manufacturing process#Chapter24.sce#1910/CH2/EX2.4/Chapter24.sce#S##73672 +2#One dimensional steady state heat conduction#2.2#A laboratory furnace wall#Chapter22.sce#1910/CH2/EX2.2/Chapter22.sce#S##73668 +2#One dimensional steady state heat conduction#2.15#The entire stack is made of aluminium#Chapter215.sce#1910/CH2/EX2.15/Chapter215.sce#S##73677 +2#One dimensional steady state heat conduction#2.14#Slender rods of the same diameter#Chapter214.sce#1910/CH2/EX2.14/Chapter214.sce#S##73678 +2#One dimensional steady state heat conduction#2.13#A very long copper rod is exposed to enviroment#Chapter213.sce#1910/CH2/EX2.13/Chapter213.sce#S##73679 +2#One dimensional steady state heat conduction#2.12#A spherical tank is used to store iced water#Chapter212.sce#1910/CH2/EX2.12/Chapter212.sce#S##73680 +2#One dimensional steady state heat conduction#2.11#An electrical resistance wire#Chapter211.sce#1910/CH2/EX2.11/Chapter211.sce#S##73681 +2#One dimensional steady state heat conduction#2.10#A copper pipe carries liquid oxygen#Chapter210.sce#1910/CH2/EX2.10/Chapter210.sce#S##73674 +2#One dimensional steady state heat conduction#2.1#A plane wall of refrigerated wall#Chapter21.sce#1910/CH2/EX2.1/Chapter21.sce#S##81788 +1#Fundamental concepts#1.9#Concrete wall is exposed to air#Chapter19.sce#1910/CH1/EX1.9/Chapter19.sce#S##73665 +1#Fundamental concepts#1.8#Asphalt pavements on hot summer#Chapter18.sce#1910/CH1/EX1.8/Chapter18.sce#S##73666 +1#Fundamental concepts#1.7#After sunset radiant energy#Chapter17.sce#1910/CH1/EX1.7/Chapter17.sce#S##73662 +1#Fundamental concepts#1.6#Thin hot vertical plate#Chapter16.sce#1910/CH1/EX1.6/Chapter16.sce#S##73661 +1#Fundamental concepts#1.5#Forced air flows over a convective heat exchanger#Chapter15.sce#1910/CH1/EX1.5/Chapter15.sce#S##73660 +1#Fundamental concepts#1.4#Average forced convective heat transfer coefficient#Chapter14.sce#1910/CH1/EX1.4/Chapter14.sce#S##73659 +1#Fundamental concepts#1.2#Thickness required of a masonry wall#Chapter12.sce#1910/CH1/EX1.2/Chapter12.sce#S##73657 +1#Fundamental concepts#1.11#A horizontal steel pipe#Chapter111.sce#1910/CH1/EX1.11/Chapter111.sce#S##73663 +1#Fundamental concepts#1.10#A flat panel on spacecraft#Chapter110.sce#1910/CH1/EX1.10/Chapter110.sce#S##73664 +1#Fundamental concepts#1.1#Thick homogeneous slab#Chapter11.sce#1910/CH1/EX1.1/Chapter11.sce#S##73656 diff --git a/latex/tmp_1943_contributor.txt b/latex/tmp_1943_contributor.txt index b1b63f3b8..d163cafa8 100755 --- a/latex/tmp_1943_contributor.txt +++ b/latex/tmp_1943_contributor.txt @@ -1 +1 @@ -Nittala Venkata Krishna#B.Tech#Mechanical Engineering#SASTRA UNIVERSITY#Peddavarapu Sreehari#Sunil Singla +Nittala Venkata Krishna#B.Tech#Mechanical Engineering#Sastra University#Peddavarapu Sreehari#Sunil Singla diff --git a/latex/tmp_1952_data.txt b/latex/tmp_1952_data.txt index e69de29bb..0109d27e6 100755 --- a/latex/tmp_1952_data.txt +++ b/latex/tmp_1952_data.txt @@ -0,0 +1,135 @@ +13#Additional solved short answers#13.3.14#find capacitance and electric flux density#Ex3_14.sce#1952/CH13/EX13.3.14/Ex3_14.sce#S##83851 +13#Additional solved short answers#13.3.13#calculate energy loss per hour and intensity of magnetization and flux density#Ex3_13.sce#1952/CH13/EX13.3.13/Ex3_13.sce#S##83850 +13#Additional solved short answers#13.3.12#calculate the resistivity#Ex3_12.sce#1952/CH13/EX13.3.12/Ex3_12.sce#S##83848 +13#Additional solved short answers#13.3.11#calculate mean free time#Ex3_11.sce#1952/CH13/EX13.3.11/Ex3_11.sce#S##83847 +13#Additional solved short answers#13.2.7#calculate wavelength of scattered radiation#Ex2_7.sce#1952/CH13/EX13.2.7/Ex2_7.sce#S##83845 +13#Additional solved short answers#13.2.13#calculate Na and acceptance angle#Ex2_13.sce#1952/CH13/EX13.2.13/Ex2_13.sce#S##83846 +13#Additional solved short answers#13.2.1#calculate the frequency#Ex2_1.sce#1952/CH13/EX13.2.1/Ex2_1.sce#S##83843 +13#Additional solved short answers#13.1.6#calculate critical angle#Ex6.sce#1952/CH13/EX13.1.6/Ex6.sce#S##83839 +13#Additional solved short answers#13.1.2#find fundamental frequency#Ex2.sce#1952/CH13/EX13.1.2/Ex2.sce#S##83838 +13#Additional solved short answers#13.1.15#calculate number of unit cells #Ex15.sce#1952/CH13/EX13.1.15/Ex15.sce#S##83844 +13#Additional solved short answers#13.1.14#calculate energy of scattered photon#Ex14.sce#1952/CH13/EX13.1.14/Ex14.sce#S##83842 +13#Additional solved short answers#13.1.12#find the wavelength#Ex12.sce#1952/CH13/EX13.1.12/Ex12.sce#S##83841 +13#Additional solved short answers#13.1.10#calculate interplanar spacing#Ex10.sce#1952/CH13/EX13.1.10/Ex10.sce#S##83840 +12#Additional solved examples#12.9#calculate pulse broadening per unit length#Ex9.sce#1952/CH12/EX12.9/Ex9.sce#S##83812 +12#Additional solved examples#12.8#calculate pulse broadening per unit length#Ex8.sce#1952/CH12/EX12.8/Ex8.sce#S##83811 +12#Additional solved examples#12.7#find NA and critical angle and alpha m#Ex7.sce#1952/CH12/EX12.7/Ex7.sce#S##83810 +12#Additional solved examples#12.6#find NA and critical angle and alpha m#Ex6.sce#1952/CH12/EX12.6/Ex6.sce#S##83809 +12#Additional solved examples#12.5#calculate number of photons emitted per minute#Ex5.sce#1952/CH12/EX12.5/Ex5.sce#S##83808 +12#Additional solved examples#12.4#calculate number of photons emitted per minute#Ex4.sce#1952/CH12/EX12.4/Ex4.sce#S##83807 +12#Additional solved examples#12.33#calculate isotopic mass#Ex33.sce#1952/CH12/EX12.33/Ex33.sce#S##83837 +12#Additional solved examples#12.32#calculate isotopic mass#Ex32.sce#1952/CH12/EX12.32/Ex32.sce#S##83836 +12#Additional solved examples#12.31#calculate critical current#Ex31.sce#1952/CH12/EX12.31/Ex31.sce#S##83835 +12#Additional solved examples#12.30#determine critical current#Ex30.sce#1952/CH12/EX12.30/Ex30.sce#S##83834 +12#Additional solved examples#12.3#calculate ratio of stimulated emission to spontaneous emission#Ex3.sce#1952/CH12/EX12.3/Ex3.sce#S##83806 +12#Additional solved examples#12.29#calculate susceptibility#Ex29.sce#1952/CH12/EX12.29/Ex29.sce#S##83833 +12#Additional solved examples#12.28#calculate permeability#Ex28.sce#1952/CH12/EX12.28/Ex28.sce#S##83832 +12#Additional solved examples#12.27#determine magnetic moment#Ex27.sce#1952/CH12/EX12.27/Ex27.sce#S##83831 +12#Additional solved examples#12.26#determine magnitude and direction of magnetic moment#Ex26.sce#1952/CH12/EX12.26/Ex26.sce#S##83830 +12#Additional solved examples#12.25#determine magnitude and direction of magnetic moment#Ex25.sce#1952/CH12/EX12.25/Ex25.sce#S##83829 +12#Additional solved examples#12.24#calculate Hall voltage and Hall coefficient#Ex24.sce#1952/CH12/EX12.24/Ex24.sce#S##83828 +12#Additional solved examples#12.23#find magnitude of Hall voltage#Ex23.sce#1952/CH12/EX12.23/Ex23.sce#S##83827 +12#Additional solved examples#12.22#calculate how is Ef located relative to Ei#Ex22.pdf#1952/CH12/EX12.22/Ex22.pdf#R##84430 +12#Additional solved examples#12.22#calculate how is Ef located relative to Ei#Ex22.sce#1952/CH12/EX12.22/Ex22.sce#S##84429 +12#Additional solved examples#12.22#calculate how is Ef located relative to Ei#Ex22.png#1952/CH12/EX12.22/Ex22.png#R##84431 +12#Additional solved examples#12.21#evaluate value of F E#Ex21.sce#1952/CH12/EX12.21/Ex21.sce#S##83826 +12#Additional solved examples#12.20#calculate relaxation time and average drift velocity and velocity of electron and mean free path#Ex20.sce#1952/CH12/EX12.20/Ex20.sce#S##83825 +12#Additional solved examples#12.2#determine relative population#Ex2.sce#1952/CH12/EX12.2/Ex2.sce#S##83805 +12#Additional solved examples#12.19#calculate Fermi energy#Ex19.sce#1952/CH12/EX12.19/Ex19.sce#S##83824 +12#Additional solved examples#12.18#find volume of unit cell#Ex18.sce#1952/CH12/EX12.18/Ex18.sce#S##83823 +12#Additional solved examples#12.17#find size of unit cell#Ex17.sce#1952/CH12/EX12.17/Ex17.sce#S##83822 +12#Additional solved examples#12.16#find miller indices#Ex16.sce#1952/CH12/EX12.16/Ex16.sce#S##83821 +12#Additional solved examples#12.15#find miller indices#Ex15.sce#1952/CH12/EX12.15/Ex15.sce#S##83820 +12#Additional solved examples#12.14# find change in wavelength#Ex14.sce#1952/CH12/EX12.14/Ex14.sce#S##83818 +12#Additional solved examples#12.13#calculate de Broglie wavelength#Ex13.sce#1952/CH12/EX12.13/Ex13.sce#S##83817 +12#Additional solved examples#12.12#calculate number of photons emitted per second#Ex12.sce#1952/CH12/EX12.12/Ex12.sce#S##83816 +12#Additional solved examples#12.11#calculate energy and momentum of photon#Ex11.sce#1952/CH12/EX12.11/Ex11.sce#S##83814 +12#Additional solved examples#12.10#calculate minimum and maximum number of total internal reflections per metre#Ex10.sce#1952/CH12/EX12.10/Ex10.sce#S##83813 +12#Additional solved examples#12.1#calculate relative population #Ex1.sce#1952/CH12/EX12.1/Ex1.sce#S##83804 +10#Dielectric materials#10.2#calculate electronic polarizability#Ex10_2.sce#1952/CH10/EX10.2/Ex10_2.sce#S##83769 +10#Dielectric materials#10.1#calculate electronic polarizability#Ex10_1.sce#1952/CH10/EX10.1/Ex10_1.sce#S##83768 +9#Superconducting materials#9.2#calculate isotopic mass#ex9_2.sce#1952/CH9/EX9.2/ex9_2.sce#S##83771 +9#Superconducting materials#9.1#calculate critical magnetic field intensity#Ex9_1.sce#1952/CH9/EX9.1/Ex9_1.sce#S##83770 +8#Magnetic materials#8.5#calculate magnetic moment#Ex8_5.sce#1952/CH8/EX8.5/Ex8_5.sce#S##83776 +8#Magnetic materials#8.4#calculate permeability#Ex8_4.sce#1952/CH8/EX8.4/Ex8_4.sce#S##83775 +8#Magnetic materials#8.3#calculate magnetic susceptibility#Ex8_3.sce#1952/CH8/EX8.3/Ex8_3.sce#S##83774 +8#Magnetic materials#8.2#Determine magnetic moment#Ex8_2.sce#1952/CH8/EX8.2/Ex8_2.sce#S##83773 +8#Magnetic materials#8.1#Determine magnitude and direction of magnetic moment#Ex8_1.sce#1952/CH8/EX8.1/Ex8_1.sce#S##83772 +7#Semiconducting materials#7.9#calculate conductivity of sample#Ex7_9.sce#1952/CH7/EX7.9/Ex7_9.sce#S##84149 +7#Semiconducting materials#7.8#compute forbidden energy gap#Ex7_8.sce#1952/CH7/EX7.8/Ex7_8.sce#S##84148 +7#Semiconducting materials#7.7#find resistance of pure and doped Si crystal#Ex7_7.sce#1952/CH7/EX7.7/Ex7_7.sce#S##84147 +7#Semiconducting materials#7.6#calculate Fermi energy with respect to Fermi energy#Ex7_6.sce#1952/CH7/EX7.6/Ex7_6.sce#S##84146 +7#Semiconducting materials#7.5#calculate intrinsic carrier concentration and intrinsic conductivity and relativity#Ex7_5.sce#1952/CH7/EX7.5/Ex7_5.sce#S##84145 +7#Semiconducting materials#7.4#calculate resistivity and Hall coefficient and Hall voltage#Ex7_4.sce#1952/CH7/EX7.4/Ex7_4.sce#S##84141 +7#Semiconducting materials#7.3#calculate resistivity of sample#Ex7_3.sce#1952/CH7/EX7.3/Ex7_3.sce#S##84140 +7#Semiconducting materials#7.22#find Hall potential difference#Ex7_22.sce#1952/CH7/EX7.22/Ex7_22.sce#S##84162 +7#Semiconducting materials#7.21#find Hall coefficient and electron mobility#Ex7_21.sce#1952/CH7/EX7.21/Ex7_21.sce#S##84161 +7#Semiconducting materials#7.20#find electrical conductivity before and after addition of B atoms#Ex7_20.sce#1952/CH7/EX7.20/Ex7_20.sce#S##84160 +7#Semiconducting materials#7.2#calculate equilibrium hole concentration and how is Ef located relative to Ei#Ex7_2.pdf#1952/CH7/EX7.2/Ex7_2.pdf#R##84427 +7#Semiconducting materials#7.2#calculate equilibrium hole concentration and how is Ef located relative to Ei#Ex7_2.sce#1952/CH7/EX7.2/Ex7_2.sce#S##84426 +7#Semiconducting materials#7.2#calculate equilibrium hole concentration and how is Ef located relative to Ei#Ex7_2.png#1952/CH7/EX7.2/Ex7_2.png#R##84428 +7#Semiconducting materials#7.19#find intrinsic resistivity#Ex7_19.sce#1952/CH7/EX7.19/Ex7_19.sce#S##84163 +7#Semiconducting materials#7.18#calculate electrical conductivity#Ex7_18.sce#1952/CH7/EX7.18/Ex7_18.sce#S##84158 +7#Semiconducting materials#7.17#determine the position of Fermi level#Ex7_17.sce#1952/CH7/EX7.17/Ex7_17.sce#S##84157 +7#Semiconducting materials#7.16#find resistance of intrinsic Ge#Ex7_16.sce#1952/CH7/EX7.16/Ex7_16.sce#S##84156 +7#Semiconducting materials#7.15#calculate magnitude of Hall voltage#Ex7_15.sce#1952/CH7/EX7.15/Ex7_15.sce#S##84155 +7#Semiconducting materials#7.14#calculate charge carrier density and electron mobility#Ex7_14.sce#1952/CH7/EX7.14/Ex7_14.sce#S##84154 +7#Semiconducting materials#7.13#calculate concentration of conduction electrons in Cu#Ex7_13.sce#1952/CH7/EX7.13/Ex7_13.sce#S##84153 +7#Semiconducting materials#7.12#calculate drift mobility of electron#Ex7_12.sce#1952/CH7/EX7.12/Ex7_12.sce#S##84152 +7#Semiconducting materials#7.11#calculate concentration in conduction band#Ex7_11.sce#1952/CH7/EX7.11/Ex7_11.sce#S##84151 +7#Semiconducting materials#7.10#find the new position of Fermi level#Ex7_10.sce#1952/CH7/EX7.10/Ex7_10.sce#S##84150 +7#Semiconducting materials#7.1#Evaluate approximate donor binding energy#Ex7_1.sce#1952/CH7/EX7.1/Ex7_1.sce#S##84139 +6#Conducting materials#6.9#find F E#Ex6_9.sce#1952/CH6/EX6.9/Ex6_9.sce#S##83884 +6#Conducting materials#6.8#calculate Lorentz number#Ex6_8.sce#1952/CH6/EX6.8/Ex6_8.sce#S##83883 +6#Conducting materials#6.7#calculate thermal conductivity#Ex6_7.sce#1952/CH6/EX6.7/Ex6_7.sce#S##83882 +6#Conducting materials#6.6#calculate relaxation time and mobility and average drift velocity and mean free path#Ex6_6.sce#1952/CH6/EX6.6/Ex6_6.sce#S##83881 +6#Conducting materials#6.5#calculate electrical conductivity#Ex6_5.sce#1952/CH6/EX6.5/Ex6_5.sce#S##83880 +6#Conducting materials#6.4#calculate Lorentz number#Ex6_4.sce#1952/CH6/EX6.4/Ex6_4.sce#S##83879 +6#Conducting materials#6.3#calculate conductivity and relaxation time#Ex6_3.sce#1952/CH6/EX6.3/Ex6_3.sce#S##83878 +6#Conducting materials#6.2#calculate Fermi energy#Ex6_2.sce#1952/CH6/EX6.2/Ex6_2.sce#S##83877 +6#Conducting materials#6.16#calculate Fermi velocity#Ex6_16.sce#1952/CH6/EX6.16/Ex6_16.sce#S##83891 +6#Conducting materials#6.15#calculate Fermi energy and Fermi temperature#Ex6_15.sce#1952/CH6/EX6.15/Ex6_15.sce#S##83890 +6#Conducting materials#6.14#calculate drift velocity#Ex6_14.sce#1952/CH6/EX6.14/Ex6_14.sce#S##83889 +6#Conducting materials#6.13#calculate drift velocity and mobility and relaxation time #Ex6_13.sce#1952/CH6/EX6.13/Ex6_13.sce#S##83888 +6#Conducting materials#6.12#find relaxation time#Ex6_12.sce#1952/CH6/EX6.12/Ex6_12.sce#S##83887 +6#Conducting materials#6.11#calculate electrical and thermal conductivities#Ex6_11.sce#1952/CH6/EX6.11/Ex6_11.sce#S##83886 +6#Conducting materials#6.10#calculate electrical conductivity#Ex6_10.sce#1952/CH6/EX6.10/Ex6_10.sce#S##83885 +6#Conducting materials#6.1#calculate Fermi energy#Ex6_1.sce#1952/CH6/EX6.1/Ex6_1.sce#S##83876 +5#Crystal physics#5.7#find volume of unit cell#Ex5_7.sce#1952/CH5/EX5.7/Ex5_7.sce#S##83875 +5#Crystal physics#5.6#determine spacing between planes#Ex5_6.sce#1952/CH5/EX5.6/Ex5_6.sce#S##83874 +5#Crystal physics#5.5#determine size of unit cell#Ex5_5.sce#1952/CH5/EX5.5/Ex5_5.sce#S##83873 +5#Crystal physics#5.4#calculate spacing of planes#Ex5_4.sce#1952/CH5/EX5.4/Ex5_4.sce#S##83872 +5#Crystal physics#5.3#calculate surface density of atoms#Ex5_3.sce#1952/CH5/EX5.3/Ex5_3.sce#S##83871 +5#Crystal physics#5.2#calculate density of Si#Ex5_2.sce#1952/CH5/EX5.2/Ex5_2.sce#S##83870 +5#Crystal physics#5.1#determine miller indices#Ex5_1.sce#1952/CH5/EX5.1/Ex5_1.sce#S##83869 +4#Quantum physics#4.9#find change in wavelength#Ex4_9.sce#1952/CH4/EX4.9/Ex4_9.sce#S##83868 +4#Quantum physics#4.8#calculate energy required to excite electron from ground state to 6th excited state#Ex4_8.sce#1952/CH4/EX4.8/Ex4_8.sce#S##83867 +4#Quantum physics#4.7#calculate minimum energy#Ex4_7.sce#1952/CH4/EX4.7/Ex4_7.sce#S##83866 +4#Quantum physics#4.6#find energy of particle#Ex4_6.sce#1952/CH4/EX4.6/Ex4_6.sce#S##83865 +4#Quantum physics#4.5#calculate de Broglie wavelength#Ex4_5.sce#1952/CH4/EX4.5/Ex4_5.sce#S##83864 +4#Quantum physics#4.4#find the wavelength#Ex4_4.sce#1952/CH4/EX4.4/Ex4_4.sce#S##83863 +4#Quantum physics#4.3#determine number of photons emitted per second#Ex4_3.sce#1952/CH4/EX4.3/Ex4_3.sce#S##83862 +4#Quantum physics#4.2#calculate number of photons emitted per second#Ex4_2.sce#1952/CH4/EX4.2/Ex4_2.sce#S##83861 +4#Quantum physics#4.1#calculate energy and momentum of photon#Ex4_1.sce#1952/CH4/EX4.1/Ex4_1.sce#S##83860 +3#Fibre optics and its applications#3.3#To calculate minimum and maximum number of total internal reflections per metre#Ex3_3.sce#1952/CH3/EX3.3/Ex3_3.sce#S##89040 +3#Fibre optics and its applications#3.2#calculate pulse broadening per unit length#Ex3_2.sce#1952/CH3/EX3.2/Ex3_2.sce#S##83766 +3#Fibre optics and its applications#3.1#To find NAand phi m and critical angle#Ex3_1.sce#1952/CH3/EX3.1/Ex3_1.sce#S##83765 +2#Lasers#2.3#calculate number of photons emitted per minute#Ex2_3.sce#1952/CH2/EX2.3/Ex2_3.sce#S##83764 +2#Lasers#2.2#To calculate ratio of stimulated emission to spontaneous emission#Ex2_2.sce#1952/CH2/EX2.2/Ex2_2.sce#S##83763 +2#Lasers#2.1#To calculate relative population#Ex2_1.sce#1952/CH2/EX2.1/Ex2_1.sce#S##83762 +1#ultrasonics#1.9#To find depth of sea#Ex1_9.sce#1952/CH1/EX1.9/Ex1_9.sce#S##83754 +1#ultrasonics#1.8#To calculate the frequency#Ex1_8.sce#1952/CH1/EX1.8/Ex1_8.sce#S##83753 +1#ultrasonics#1.7#To calculate the natural frequency#Ex1_7.sce#1952/CH1/EX1.7/Ex1_7.sce#S##83752 +1#ultrasonics#1.6#To calculate the natural frequency#Ex1_6.sce#1952/CH1/EX1.6/Ex1_6.sce#S##83751 +1#ultrasonics#1.5#To calculate the natural frequency#Ex1_5.sce#1952/CH1/EX1.5/Ex1_5.sce#S##83750 +1#ultrasonics#1.4#compute the velocity of waves#Ex1_4.sce#1952/CH1/EX1.4/Ex1_4.sce#S##83749 +1#ultrasonics#1.3#To calculate the natural frequency#Ex1_3.sce#1952/CH1/EX1.3/Ex1_3.sce#S##83748 +1#ultrasonics#1.2# To calculate the natural frequency#Ex1_2.sce#1952/CH1/EX1.2/Ex1_2.sce#S##83747 +1#ultrasonics#1.16#To evaluate natural frequency#Ex1_16.sce#1952/CH1/EX1.16/Ex1_16.sce#S##83761 +1#ultrasonics#1.15#To find frequency of waves#Ex1_15.sce#1952/CH1/EX1.15/Ex1_15.sce#S##83760 +1#ultrasonics#1.14#To find depth of submarine#Ex1_14.sce#1952/CH1/EX1.14/Ex1_14.sce#S##83759 +1#ultrasonics#1.13#To find reverberation time#Ex1_13.sce#1952/CH1/EX1.13/Ex1_13.sce#S##83758 +1#ultrasonics#1.12#To find area of interior surface#Ex1_12.sce#1952/CH1/EX1.12/Ex1_12.sce#S##83757 +1#ultrasonics#1.11#To calculate reverberation time#Ex1_11.sce#1952/CH1/EX1.11/Ex1_11.sce#S##83756 +1#ultrasonics#1.10#To find depth of sea#Ex1_10.sce#1952/CH1/EX1.10/Ex1_10.sce#S##83755 +1#ultrasonics#1.1#To find depth of submerged submarine#Ex1_1.sce#1952/CH1/EX1.1/Ex1_1.sce#S##83746 diff --git a/latex/tmp_1955_contributor.txt b/latex/tmp_1955_contributor.txt index 203d3b3ea..ba411cf9b 100755 --- a/latex/tmp_1955_contributor.txt +++ b/latex/tmp_1955_contributor.txt @@ -1 +1 @@ -Athota Raja#B.TECH#Mechanical Engineering#SASTRA UNIVERSITY#Prof. M. Maheswaran#K. V. P. Pradeep +Athota Raja#B.TECH#Mechanical Engineering#Sastra University#Prof. M. Maheswaran#K. V. P. Pradeep diff --git a/latex/tmp_1964_contributor.txt b/latex/tmp_1964_contributor.txt index 83a925542..a66371318 100755 --- a/latex/tmp_1964_contributor.txt +++ b/latex/tmp_1964_contributor.txt @@ -1 +1 @@ -Kodukula Srikanth#B.TECH#Electronics Engineering#SASTRA UNIVERSITY#N. Raju#K. V. P. Pradeep +Kodukula Srikanth#B.TECH#Electronics Engineering#Sastra University#N. Raju#K. V. P. Pradeep diff --git a/latex/tmp_1976_data.txt b/latex/tmp_1976_data.txt index e69de29bb..82659e05a 100755 --- a/latex/tmp_1976_data.txt +++ b/latex/tmp_1976_data.txt @@ -0,0 +1,85 @@ +8#Electrolytic Process#8.5#To determine the weights of Nickel and Silver Deposited#Ex8_5.sce#1976/CH8/EX8.5/Ex8_5.sce#S##113029 +8#Electrolytic Process#8.4#To Calculate the Energy usedd in producing chemical action developed in an electrolytic cell#Ex8_4.sce#1976/CH8/EX8.4/Ex8_4.sce#S##113028 +8#Electrolytic Process#8.3#To Determine the Annual output of copper#Ex8_3.sce#1976/CH8/EX8.3/Ex8_3.sce#S##113027 +8#Electrolytic Process#8.2#To detemine the Electrochemical Equivalent of Silver#Ex8_2.sce#1976/CH8/EX8.2/Ex8_2.sce#S##113026 +8#Electrolytic Process#8.1#To determine the quantity of current#Ex8_1.sce#1976/CH8/EX8.1/Ex8_1.sce#S##113025 +7#Electric Traction#7.9#To deduce the speed current characteristic of the motor#Ex7_9.sce#1976/CH7/EX7.9/Ex7_9.sce#S##113015 +7#Electric Traction#7.8#To determine the weight of the locomotive#Ex7_8.sce#1976/CH7/EX7.8/Ex7_8.sce#S##113014 +7#Electric Traction#7.7#To determine the specific energy consumption#Ex7_7.sce#1976/CH7/EX7.7/Ex7_7.sce#S##113013 +7#Electric Traction#7.6#To determine the Specific Energy Output Runs for Both the Cases#Ex7_6.sce#1976/CH7/EX7.6/Ex7_6.sce#S##113012 +7#Electric Traction#7.5#To determine the Factors affeting the mechanics of the Train#Ex7_5.sce#1976/CH7/EX7.5/Ex7_5.sce#S##113011 +7#Electric Traction#7.4#To determine the time taken by the train to attain a particular speed#Ex7_4.sce#1976/CH7/EX7.4/Ex7_4.sce#S##113010 +7#Electric Traction#7.3#To determine the acceleration required to run the service#Ex7_3.sce#1976/CH7/EX7.3/Ex7_3.sce#S##113009 +7#Electric Traction#7.2#To determine the duration of acceleration and others#Ex7_2.sce#1976/CH7/EX7.2/Ex7_2.sce#S##113008 +7#Electric Traction#7.19#To determine the value of resistance to be connected in the motor circuit#Ex7_19.sce#1976/CH7/EX7.19/Ex7_19.sce#S##113024 +7#Electric Traction#7.18#To determine the power fed into the supply system#Ex7_18.sce#1976/CH7/EX7.18/Ex7_18.sce#S##113023 +7#Electric Traction#7.17#To detemine the characteristics for tapping of 30 percent of the turns#Ex7_17.sce#1976/CH7/EX7.17/Ex7_17.sce#S##113022 +7#Electric Traction#7.16#To Determine the Resistance of the Various Steps in a Series Motor#Ex7_16.sce#1976/CH7/EX7.16/Ex7_16.sce#S##113021 +7#Electric Traction#7.15#To determine the characteristics gear ratio and wheels are replaced#Ex7_15.sce#1976/CH7/EX7.15/Ex7_15.sce#S##113020 +7#Electric Traction#7.14#To determine the speed of motors when connected in series#Ex7_14.sce#1976/CH7/EX7.14/Ex7_14.sce#S##113019 +7#Electric Traction#7.13#To determine the traction control of 2 motors rated at 1500V#Ex7_13.sce#1976/CH7/EX7.13/Ex7_13.sce#S##113018 +7#Electric Traction#7.12#To Determine the tractive effort shared by the two locomotives#Ex7_12.sce#1976/CH7/EX7.12/Ex7_12.sce#S##113017 +7#Electric Traction#7.11#To determine the horse power delivered by the locomotive#Ex7_11.sce#1976/CH7/EX7.11/Ex7_11.sce#S##113016 +7#Electric Traction#7.10#To determine the speed torque curve for the series motor#Ex7_10.sce#1976/CH7/EX7.10/Ex7_10.sce#S##113005 +7#Electric Traction#7.10#To determine the speed torque curve for the series motor#Ex7_10.jpg#1976/CH7/EX7.10/Ex7_10.jpg#R##113006 +7#Electric Traction#7.1#To determine the Acceleration and Coasting Period#Ex7_1.sce#1976/CH7/EX7.1/Ex7_1.sce#S##113007 +6#Illumination Engineering#6.9#To determine the number of lamps required#Ex6_9.sce#1976/CH6/EX6.9/Ex6_9.sce#S##113002 +6#Illumination Engineering#6.8#To estimate the number rating and disposition of the lamps#Ex6_8.sce#1976/CH6/EX6.8/Ex6_8.sce#S##112999 +6#Illumination Engineering#6.7#To determine the illumination over a disc#Ex6_7.sce#1976/CH6/EX6.7/Ex6_7.sce#S##112998 +6#Illumination Engineering#6.6#To determine illumination at a point when a mirror is used#Ex6_6.sce#1976/CH6/EX6.6/Ex6_6.sce#S##112997 +6#Illumination Engineering#6.4#To determine average illumination and illumination at various points on the area#Ex6_4.sce#1976/CH6/EX6.4/Ex6_4.sce#S##112996 +6#Illumination Engineering#6.3#To calculate Spherical Candle Power and intensity of illumination#Ex6_3.sce#1976/CH6/EX6.3/Ex6_3.sce#S##112995 +6#Illumination Engineering#6.2#To determine the total radiation sent vertically downward from a lamp of 1500 cp#Ex6_2.sce#1976/CH6/EX6.2/Ex6_2.sce#S##113001 +6#Illumination Engineering#6.11#Determine the output voltage#Ex6_11.sce#1976/CH6/EX6.11/Ex6_11.sce#S##113004 +6#Illumination Engineering#6.10#To determine the illumination on the ground#Ex6_10.sce#1976/CH6/EX6.10/Ex6_10.sce#S##113003 +6#Illumination Engineering#6.1#To determine the value of resistance to be connected in the motor circuit#Ex6_1.sce#1976/CH6/EX6.1/Ex6_1.sce#S##112994 +5#Electric Heating And Welding#5.8#To estimate the voltage and Current during heating#Ex5_8.sce#1976/CH5/EX5.8/Ex5_8.sce#S##112993 +5#Electric Heating And Welding#5.7#To determine the Voltage Required and Current Drawn#Ex5_7.sce#1976/CH5/EX5.7/Ex5_7.sce#S##112992 +5#Electric Heating And Welding#5.6#To Detemine power absorbed and the power factor#Ex5_6.sce#1976/CH5/EX5.6/Ex5_6.sce#S##112991 +5#Electric Heating And Welding#5.5#To Determine the equivalent resistance of the charge and current#Ex5_5.sce#1976/CH5/EX5.5/Ex5_5.sce#S##112990 +5#Electric Heating And Welding#5.4#To determine the effciency of a high frequency induction furnance#Ex5_4.sce#1976/CH5/EX5.4/Ex5_4.sce#S##112988 +5#Electric Heating And Welding#5.3#To Determine the average KW input to the furnace#Ex5_3.sce#1976/CH5/EX5.3/Ex5_3.sce#S##112989 +5#Electric Heating And Welding#5.2#To determine the various temperature by changing the connection of the resistance elements#Ex5_2.sce#1976/CH5/EX5.2/Ex5_2.sce#S##112987 +5#Electric Heating And Welding#5.1#To determine the size and length of the wire#Ex5_1.sce#1976/CH5/EX5.1/Ex5_1.sce#S##112986 +4#Electric Drives and Industrial Applications#4.9#To Determine the time taken to start the motor#Ex4_9.sce#1976/CH4/EX4.9/Ex4_9.sce#S##113051 +4#Electric Drives and Industrial Applications#4.8#To Determine the value of resistor connected in series to run the fan at a particular speed#Ex4_8.sce#1976/CH4/EX4.8/Ex4_8.sce#S##113050 +4#Electric Drives and Industrial Applications#4.7#To Detemine Minimum Starting Current drawn from the supply#Ex4_7.sce#1976/CH4/EX4.7/Ex4_7.sce#S##113049 +4#Electric Drives and Industrial Applications#4.6#To Determine the starting torque and starting current for various starters#Ex4_6.sce#1976/CH4/EX4.6/Ex4_6.sce#S##113048 +4#Electric Drives and Industrial Applications#4.5#To Determine the Maximum Torque as ratio of nominal value of voltage#Ex4_5.sce#1976/CH4/EX4.5/Ex4_5.sce#S##113047 +4#Electric Drives and Industrial Applications#4.4#To Determine the slip at maximum torque and at full load#Ex4_4.sce#1976/CH4/EX4.4/Ex4_4.sce#S##113046 +4#Electric Drives and Industrial Applications#4.3#To determine the speed for which the torque is maximum#Ex4_3.sce#1976/CH4/EX4.3/Ex4_3.sce#S##113045 +4#Electric Drives and Industrial Applications#4.2#To Determine the resistance to be inserted for various cases#Ex4_2.sce#1976/CH4/EX4.2/Ex4_2.sce#S##113044 +4#Electric Drives and Industrial Applications#4.19#To determine the range of speed control and duty cycle#Ex4_19.sce#1976/CH4/EX4.19/Ex4_19.sce#S##113061 +4#Electric Drives and Industrial Applications#4.18#To determine the pulse width for a particular average value of back EMF#Ex4_18.sce#1976/CH4/EX4.18/Ex4_18.sce#S##113060 +4#Electric Drives and Industrial Applications#4.17#To Determine the motor current and torque for a particular firing angle#Ex4_17.sce#1976/CH4/EX4.17/Ex4_17.sce#S##113059 +4#Electric Drives and Industrial Applications#4.16#To determine the speed and torque of a single phase full converter#Ex4_16.sce#1976/CH4/EX4.16/Ex4_16.sce#S##113058 +4#Electric Drives and Industrial Applications#4.15#To determine the Moment of intertia of the flywheel#Ex4_15.sce#1976/CH4/EX4.15/Ex4_15.sce#S##113057 +4#Electric Drives and Industrial Applications#4.14#To Determine the Moment of intertia for a slip of 8 percent#Ex4_14.sce#1976/CH4/EX4.14/Ex4_14.sce#S##113056 +4#Electric Drives and Industrial Applications#4.13#To estimate the final temperature of the machine and its time constant#Ex4_13.sce#1976/CH4/EX4.13/Ex4_13.sce#S##113055 +4#Electric Drives and Industrial Applications#4.12#To Determine the Continous Rating of the Motor for Suitable Conditions#Ex4_12.sce#1976/CH4/EX4.12/Ex4_12.sce#S##113054 +4#Electric Drives and Industrial Applications#4.11#To Determine the 30 mins rating of motor#Ex4_11.sce#1976/CH4/EX4.11/Ex4_11.sce#S##113053 +4#Electric Drives and Industrial Applications#4.10#To time taken and the number of revolutions made before the motor is stopped#Ex4_10.sce#1976/CH4/EX4.10/Ex4_10.sce#S##113052 +4#Electric Drives and Industrial Applications#4.1#To Determine Motor Parameters of Series Motor rated at 220V#Ex4_1.sce#1976/CH4/EX4.1/Ex4_1.sce#S##113043 +3#Distribution#3.9#To Determine the location and magnitude of minimum voltage#Ex3_9.sce#1976/CH3/EX3.9/Ex3_9.sce#S##113037 +3#Distribution#3.8#To determine the cross section of the conductor for a minimum consumer voltage#Ex3_8.sce#1976/CH3/EX3.8/Ex3_8.sce#S##113036 +3#Distribution#3.7#To determine the cross section of the conductor for a minimum consumer voltage#Ex3_7.sce#1976/CH3/EX3.7/Ex3_7.sce#S##113035 +3#Distribution#3.6#To obtain the voltages at the far end of the positive and negative wires#3_6.sce#1976/CH3/EX3.6/3_6.sce#S##74565 +3#Distribution#3.5#To Calculate Voltage between middle wire and outer at each load point#Ex3_5.sce#1976/CH3/EX3.5/Ex3_5.sce#S##113034 +3#Distribution#3.4#To determine the most economical cross section for a 3 Phase line 8 km long#Ex3_4.sce#1976/CH3/EX3.4/Ex3_4.sce#S##113033 +3#Distribution#3.3#To determine the Most Economical Cross Sectional Area to supply a 3 Phase Load#Ex3_3.sce#1976/CH3/EX3.3/Ex3_3.sce#S##113032 +3#Distribution#3.2#To determine the most economical cross sectional area#Ex3_2.sce#1976/CH3/EX3.2/Ex3_2.sce#S##113031 +3#Distribution#3.14#To determine the best location of the substation for a given set of loads#Ex3_14.sce#1976/CH3/EX3.14/Ex3_14.sce#S##113042 +3#Distribution#3.13#To determine line currents and neutral currents#Ex3_13.sce#1976/CH3/EX3.13/Ex3_13.sce#S##113041 +3#Distribution#3.12#To Determine the Voltage at the far end#Ex3_12.sce#1976/CH3/EX3.12/Ex3_12.sce#S##113040 +3#Distribution#3.11#To Compare the volume of copper required#Ex3_11.sce#1976/CH3/EX3.11/Ex3_11.sce#S##113039 +3#Distribution#3.10#To determine the currents supplied to the ring main from A and B#Ex3_10.sce#1976/CH3/EX3.10/Ex3_10.sce#S##113038 +3#Distribution#3.1#To Determine the most economical current density#Ex3_1.sce#1976/CH3/EX3.1/Ex3_1.sce#S##113030 +2#Economics Of Generation#2.9#To determine the most economic power factor#Ex2_9.sce#1976/CH2/EX2.9/Ex2_9.sce#S##112985 +2#Economics Of Generation#2.8#To Obatin a two part tariff for the consumers#Ex2_8.sce#1976/CH2/EX2.8/Ex2_8.sce#S##112984 +2#Economics Of Generation#2.7#To determine the amount saved to replace the equipment#Ex2_7.sce#1976/CH2/EX2.7/Ex2_7.sce#S##112983 +2#Economics Of Generation#2.6#To determine the Overall cost per kWhr#Ex2_6.sce#1976/CH2/EX2.6/Ex2_6.sce#S##112982 +2#Economics Of Generation#2.5#To determine the Plant use factore of each unit#Ex2_5.sce#1976/CH2/EX2.5/Ex2_5.sce#S##112981 +2#Economics Of Generation#2.4#To determine the Load factor and suitable units for 24 hr operation of the plant#Ex2_4.sce#1976/CH2/EX2.4/Ex2_4.sce#S##112980 +2#Economics Of Generation#2.3#To Determine the Yearly Cost of the substation#Ex2_3.sce#1976/CH2/EX2.3/Ex2_3.sce#S##112979 +2#Economics Of Generation#2.2#To determine the Demand and supply parameter of four consumers#Ex2_2.sce#1976/CH2/EX2.2/Ex2_2.sce#S##112978 +2#Economics Of Generation#2.1#To Determine the Demand and Supply Parameters for 15 bulbs#Ex2_1.sce#1976/CH2/EX2.1/Ex2_1.sce#S##112977 diff --git a/latex/tmp_1979_contributor.txt b/latex/tmp_1979_contributor.txt index 81f3d5ca9..c73057615 100755 --- a/latex/tmp_1979_contributor.txt +++ b/latex/tmp_1979_contributor.txt @@ -1 +1 @@ -Chandawar Saichander#ECE#Electronics Engineering#SASTRA UNIVERSITY #N. Raju#K. V. P. Pradeep +Chandawar Saichander#ECE#Electronics Engineering#Sastra University#N. Raju#K. V. P. Pradeep diff --git a/latex/tmp_1985_contributor.txt b/latex/tmp_1985_contributor.txt index d0f33c8f1..058b14bef 100755 --- a/latex/tmp_1985_contributor.txt +++ b/latex/tmp_1985_contributor.txt @@ -1 +1 @@ -Vinay V#B.Tech#Mechanical Engineering#SASTRA UNIVERSITY#Peddavarapu Sreehari#K. V. P. Pradeep +Vinay V#B.Tech#Mechanical Engineering#Sastra University#Peddavarapu Sreehari#K. V. P. Pradeep diff --git a/latex/tmp_1991_contributor.txt b/latex/tmp_1991_contributor.txt index e437b20b1..3a6b00334 100755 --- a/latex/tmp_1991_contributor.txt +++ b/latex/tmp_1991_contributor.txt @@ -1 +1 @@ -Thamma Janaki#B.Tech#Computer Engineering#SASTRA University# K. Indhu#Mukul Kulkarni and Lavitha Pereira +Thamma Janaki#B.Tech#Computer Engineering#Sastra University# K. Indhu#Mukul Kulkarni and Lavitha Pereira diff --git a/latex/tmp_1997_contributor.txt b/latex/tmp_1997_contributor.txt index de914b643..f9fdc39b3 100755 --- a/latex/tmp_1997_contributor.txt +++ b/latex/tmp_1997_contributor.txt @@ -1 +1 @@ -Garnapudi Vamsikrishna#B.Tech#Computer Engineering#SASTRA UNIVERSITY#N. Raju#Lavitha Pereira +Garnapudi Vamsikrishna#B.Tech#Computer Engineering#Sastra University#N. Raju#Lavitha Pereira diff --git a/latex/tmp_2063_contributor.txt b/latex/tmp_2063_contributor.txt index d9a325456..1625a20f7 100755 --- a/latex/tmp_2063_contributor.txt +++ b/latex/tmp_2063_contributor.txt @@ -1 +1 @@ -Harish Ch#M.TECH (INTEGRATED)#Mechanical Engineering#SASTRA UNIVERSITY#A. P. Mohan Raj#K. V. P. Pradeep +Harish Ch#M.TECH (INTEGRATED)#Mechanical Engineering#Sastra University#A. P. Mohan Raj#K. V. P. Pradeep diff --git a/latex/tmp_2075_data.txt b/latex/tmp_2075_data.txt index ac093fec2..8a4ab1802 100755 --- a/latex/tmp_2075_data.txt +++ b/latex/tmp_2075_data.txt @@ -53,7 +53,6 @@ 4#Linear power amplifier integrated circuits#4.15#15#pe4_15.sce#2075/CH4/EX4.15/pe4_15.sce#S##78300 4#Linear power amplifier integrated circuits#4.14#14#pe4_14.sce#2075/CH4/EX4.14/pe4_14.sce#S##78299 4#Linear power amplifier integrated circuits#4.13#13#pe4_13.sce#2075/CH4/EX4.13/pe4_13.sce#S##78298 -4#Linear power amplifier integrated circuits#4.12#12#pe4_12.sce#2075/CH4/EX4.12/pe4_12.sce#S##78296 4#Linear power amplifier integrated circuits#4.11#11#pe4_11.sce#2075/CH4/EX4.11/pe4_11.sce#S##78295 4#Linear power amplifier integrated circuits#4.10#10#pe4_10.sce#2075/CH4/EX4.10/pe4_10.sce#S##78294 4#Linear power amplifier integrated circuits#4.1#1#pe4_1.sce#2075/CH4/EX4.1/pe4_1.sce#S##78285 diff --git a/latex/tmp_2084_book.txt b/latex/tmp_2084_book.txt index 8f9c98f4a..135beec7b 100755 --- a/latex/tmp_2084_book.txt +++ b/latex/tmp_2084_book.txt @@ -1 +1 @@ -Concepts Of Physics (Volume - 1)#H. C. Verma#9788177091878#Bharati Bhavan,india#2#2011 +Concepts of Physics (Volume - 1)#H. C. Verma#9788177091878#Bharati Bhavan,india#2#2011 diff --git a/latex/tmp_2090_contributor.txt b/latex/tmp_2090_contributor.txt index 6691b9147..6bb012f3c 100755 --- a/latex/tmp_2090_contributor.txt +++ b/latex/tmp_2090_contributor.txt @@ -1 +1 @@ -Mohammad Mohiddin#B.Tech#Civil Engineering#SASTRA UNIVERSITY#A. P. Mohan Raj# +Mohammad Mohiddin#B.Tech#Civil Engineering#Sastra University#A. P. Mohan Raj# diff --git a/latex/tmp_2096_data.txt b/latex/tmp_2096_data.txt index e69de29bb..55cf62c6f 100755 --- a/latex/tmp_2096_data.txt +++ b/latex/tmp_2096_data.txt @@ -0,0 +1,171 @@ +13#Additional or supplement topics#13.4#capacitance and equivalent series#ex_13_4.sce#2096/CH13/EX13.4/ex_13_4.sce#S##70547 +13#Additional or supplement topics#13.3#effective impedence#ex_13_3.sce#2096/CH13/EX13.3/ex_13_3.sce#S##75124 +13#Additional or supplement topics#13.2#resistance and inductance#ex_13_2.sce#2096/CH13/EX13.2/ex_13_2.sce#S##70545 +13#Additional or supplement topics#13.1#resistance and inductance#ex_13_1.sce#2096/CH13/EX13.1/ex_13_1.sce#S##70544 +12#measurement of non electrical quantities#12.8#speed of sub marine#ex_12_8.sce#2096/CH12/EX12.8/ex_12_8.sce#S##75122 +12#measurement of non electrical quantities#12.7#flow rate#ex_12_7.sce#2096/CH12/EX12.7/ex_12_7.sce#S##70542 +12#measurement of non electrical quantities#12.6#differecne in pressure head#ex_12_6.sce#2096/CH12/EX12.6/ex_12_6.sce#S##75123 +12#measurement of non electrical quantities#12.5#rate of flow#ex_12_5.sce#2096/CH12/EX12.5/ex_12_5.sce#S##70540 +12#measurement of non electrical quantities#12.4#water flow rate#ex_12_4.sce#2096/CH12/EX12.4/ex_12_4.sce#S##70539 +12#measurement of non electrical quantities#12.1.b#percentage change#ex_12_1_b.sce#2096/CH12/EX12.1.b/ex_12_1_b.sce#S##70538 +8#signal conditioning#8.2#total gain and resultant gain#EX_8_2.sce#2096/CH8/EX8.2/EX_8_2.sce#S##70537 +8#signal conditioning#8.1#total voltage gain#EX_8_1.sce#2096/CH8/EX8.1/EX_8_1.sce#S##70536 +7#sensors and transducers#7.9#force#ex_7_9.sce#2096/CH7/EX7.9/ex_7_9.sce#S##70523 +7#sensors and transducers#7.8#voltage output and charge sensivity#ex_7_8.sce#2096/CH7/EX7.8/ex_7_8.sce#S##75118 +7#sensors and transducers#7.7.c#original capacitance and change in capacitance#ex_7_7_c.sce#2096/CH7/EX7.7.c/ex_7_7_c.sce#S##70521 +7#sensors and transducers#7.7.b#change in capacitance#ex_7_7_b.sce#2096/CH7/EX7.7.b/ex_7_7_b.sce#S##70520 +7#sensors and transducers#7.7.a#capacitance#ex_7_7_a.sce#2096/CH7/EX7.7.a/ex_7_7_a.sce#S##70519 +7#sensors and transducers#7.6#sensivity and resolution#ex_7_6.sce#2096/CH7/EX7.6/ex_7_6.sce#S##70517 +7#sensors and transducers#7.5#linearity#ex_7_5.sce#2096/CH7/EX7.5/ex_7_5.sce#S##70516 +7#sensors and transducers#7.4#inductance#ex_7_4.sce#2096/CH7/EX7.4/ex_7_4.sce#S##75117 +7#sensors and transducers#7.3#resistance#ex_7_3.sce#2096/CH7/EX7.3/ex_7_3.sce#S##75116 +7#sensors and transducers#7.22#sensivity#ex_7_22.sce#2096/CH7/EX7.22/ex_7_22.sce#S##70535 +7#sensors and transducers#7.21#principa strains principal stresses maximum shrea stress and princiole planes#ex_7_21.sce#2096/CH7/EX7.21/ex_7_21.sce#S##75121 +7#sensors and transducers#7.2#displacement and resolution#ex_7_2.sce#2096/CH7/EX7.2/ex_7_2.sce#S##70513 +7#sensors and transducers#7.19#modulus of elesticity and poissons ratio#ex_7_19.sce#2096/CH7/EX7.19/ex_7_19.sce#S##70533 +7#sensors and transducers#7.18#longitudinal and hoop stresses#ex_7_18.sce#2096/CH7/EX7.18/ex_7_18.sce#S##70532 +7#sensors and transducers#7.17#axial strain#ex_7_17.sce#2096/CH7/EX7.17/ex_7_17.sce#S##70531 +7#sensors and transducers#7.16#strain#ex_7_16.sce#2096/CH7/EX7.16/ex_7_16.sce#S##70530 +7#sensors and transducers#7.15#change in length and amount of force#ex_7_15.sce#2096/CH7/EX7.15/ex_7_15.sce#S##70529 +7#sensors and transducers#7.14#change in resistance#ex_7_14.sce#2096/CH7/EX7.14/ex_7_14.sce#S##70528 +7#sensors and transducers#7.13#poissons ratio#ex_7_13.sce#2096/CH7/EX7.13/ex_7_13.sce#S##70527 +7#sensors and transducers#7.12#voltage#ex_7_12.sce#2096/CH7/EX7.12/ex_7_12.sce#S##75120 +7#sensors and transducers#7.11#hall angle#ex_7_11.sce#2096/CH7/EX7.11/ex_7_11.sce#S##70525 +7#sensors and transducers#7.10#strain charge and capacitance#ex_7_10.sce#2096/CH7/EX7.10/ex_7_10.sce#S##75119 +6#instrument transformers#6.9#ratio error and phase angle#EX_6_9.sce#2096/CH6/EX6.9/EX_6_9.sce#S##70331 +6#instrument transformers#6.8#current nd phase angle error#EX_6_8.sce#2096/CH6/EX6.8/EX_6_8.sce#S##70330 +6#instrument transformers#6.7#actual ratio and phase angle error#EX_6_7.sce#2096/CH6/EX6.7/EX_6_7.sce#S##75115 +6#instrument transformers#6.6#actual ratio and phase angle#EX_6_6.sce#2096/CH6/EX6.6/EX_6_6.sce#S##70328 +6#instrument transformers#6.5#primary winding current actual transformation ration and number of turns#EX_6_5.sce#2096/CH6/EX6.5/EX_6_5.sce#S##70327 +6#instrument transformers#6.4#ratio error and phase angle error#EX_6_4.sce#2096/CH6/EX6.4/EX_6_4.sce#S##70326 +6#instrument transformers#6.3#flux and ratio error#EX_6_3.sce#2096/CH6/EX6.3/EX_6_3.sce#S##70325 +6#instrument transformers#6.2#ratio error and phase angle#EX_6_2.sce#2096/CH6/EX6.2/EX_6_2.sce#S##70324 +6#instrument transformers#6.11# ratio and phase angle error#EX_6_11.sce#2096/CH6/EX6.11/EX_6_11.sce#S##70333 +6#instrument transformers#6.10#phase angle error and burden in VA#EX_6_10.sce#2096/CH6/EX6.10/EX_6_10.sce#S##75114 +6#instrument transformers#6.1#actual transformation ratio phase angle and maximum flux density#EX_6_1.sce#2096/CH6/EX6.1/EX_6_1.sce#S##70323 +5#Digital Instruments#5.3#resolution#ex_5_3.sce#2096/CH5/EX5.3/ex_5_3.sce#S##70322 +5#Digital Instruments#5.2#possible error#ex_5_2.sce#2096/CH5/EX5.2/ex_5_2.sce#S##70321 +5#Digital Instruments#5.1#frequency of the system#ex_5_1.sce#2096/CH5/EX5.1/ex_5_1.sce#S##70320 +2#electronic instruments#2.9#voltage#ex_2_9.sce#2096/CH2/EX2.9/ex_2_9.sce#S##75092 +2#electronic instruments#2.8#density of the magnetic field#ex_2_8.sce#2096/CH2/EX2.8/ex_2_8.sce#S##70292 +2#electronic instruments#2.7#beam speed#ex_2_7.sce#2096/CH2/EX2.7/ex_2_7.sce#S##75091 +2#electronic instruments#2.6#deflection sensivity#ex_2_6.sce#2096/CH2/EX2.6/ex_2_6.sce#S##75089 +2#electronic instruments#2.5#deflection voltage#ex_2_5.sce#2096/CH2/EX2.5/ex_2_5.sce#S##75090 +2#electronic instruments#2.4#input voltage#ex_2_4.sce#2096/CH2/EX2.4/ex_2_4.sce#S##75088 +2#electronic instruments#2.35#self capacitance and inductance#EX_2_35.sce#2096/CH2/EX2.35/EX_2_35.sce#S##70319 +2#electronic instruments#2.34#Q factor and effective resistance#ex_2_34.sce#2096/CH2/EX2.34/ex_2_34.sce#S##70318 +2#electronic instruments#2.33#inductance and resistance#ex_2_33.sce#2096/CH2/EX2.33/ex_2_33.sce#S##70317 +2#electronic instruments#2.32#inductance and capacitance#ex_2_32.sce#2096/CH2/EX2.32/ex_2_32.sce#S##75105 +2#electronic instruments#2.31#resistance and inductance#ex_2_31.sce#2096/CH2/EX2.31/ex_2_31.sce#S##75103 +2#electronic instruments#2.30#self capacitance#ex_2_30.sce#2096/CH2/EX2.30/ex_2_30.sce#S##70314 +2#electronic instruments#2.3#error#ex_2_3.sce#2096/CH2/EX2.3/ex_2_3.sce#S##70287 +2#electronic instruments#2.29#percentage error#ex_2_29.sce#2096/CH2/EX2.29/ex_2_29.sce#S##70313 +2#electronic instruments#2.28#resistive and reactive components of unknow impedence#ex_2_28.sce#2096/CH2/EX2.28/ex_2_28.sce#S##70312 +2#electronic instruments#2.27#distributed capacitance#ex_2_27.sce#2096/CH2/EX2.27/ex_2_27.sce#S##70311 +2#electronic instruments#2.26#distributed capacitance#ex_2_26.sce#2096/CH2/EX2.26/ex_2_26.sce#S##70310 +2#electronic instruments#2.25#capacitance power factor and relative permittivity#EX_2_25.sce#2096/CH2/EX2.25/EX_2_25.sce#S##70309 +2#electronic instruments#2.24#resistance and inductance#EX_2_24.sce#2096/CH2/EX2.24/EX_2_24.sce#S##75102 +2#electronic instruments#2.23#constant of Zx#EX_2_23.sce#2096/CH2/EX2.23/EX_2_23.sce#S##75100 +2#electronic instruments#2.22#constants of arm CD#EX_2_22.sce#2096/CH2/EX2.22/EX_2_22.sce#S##75099 +2#electronic instruments#2.21#resistance and capacitance#EX_2_21.sce#2096/CH2/EX2.21/EX_2_21.sce#S##70305 +2#electronic instruments#2.20#equivalent parralel resistance and capacitance#EX_2_20.sce#2096/CH2/EX2.20/EX_2_20.sce#S##70304 +2#electronic instruments#2.2#error#ex_2_2.sce#2096/CH2/EX2.2/ex_2_2.sce#S##70286 +2#electronic instruments#2.19#resistance capacitance and dissioation factor#EX_2_19.sce#2096/CH2/EX2.19/EX_2_19.sce#S##70303 +2#electronic instruments#2.18#series euivalent of unknown inductance and resistance#EX_2_18.sce#2096/CH2/EX2.18/EX_2_18.sce#S##75098 +2#electronic instruments#2.17#series euivalent of unknown impedence#EX_2_17.sce#2096/CH2/EX2.17/EX_2_17.sce#S##70301 +2#electronic instruments#2.16#resistance and capacitance#EX_2_16.sce#2096/CH2/EX2.16/EX_2_16.sce#S##75097 +2#electronic instruments#2.15#constants of arm CD#EX_2_15.sce#2096/CH2/EX2.15/EX_2_15.sce#S##75096 +2#electronic instruments#2.14#constants of unknown arm#EX_2_14.sce#2096/CH2/EX2.14/EX_2_14.sce#S##70298 +2#electronic instruments#2.13#resistance#ex_2_13.sce#2096/CH2/EX2.13/ex_2_13.sce#S##70297 +2#electronic instruments#2.12#resistance#ex_2_12.sce#2096/CH2/EX2.12/ex_2_12.sce#S##75095 +2#electronic instruments#2.11#phase angles#ex_2_11.sce#2096/CH2/EX2.11/ex_2_11.sce#S##75093 +2#electronic instruments#2.10#peak to peak value amplitude and rms value of signal#ex_2_10.sce#2096/CH2/EX2.10/ex_2_10.sce#S##70294 +2#electronic instruments#2.1#ammeter current#ex_2_1.sce#2096/CH2/EX2.1/ex_2_1.sce#S##75087 +1#concepts of measurements and electromechanical instruments#1.9.b#deflection factor#ex_1_9_b.sce#2096/CH1/EX1.9.b/ex_1_9_b.sce#S##70106 +1#concepts of measurements and electromechanical instruments#1.9.a#sensivity#ex_1_9_a.sce#2096/CH1/EX1.9.a/ex_1_9_a.sce#S##70105 +1#concepts of measurements and electromechanical instruments#1.8#sensivity#ex_1_8.sce#2096/CH1/EX1.8/ex_1_8.sce#S##70104 +1#concepts of measurements and electromechanical instruments#1.75#kWh registered by the meter and percentage error#ex_1_75.sce#2096/CH1/EX1.75/ex_1_75.sce#S##70218 +1#concepts of measurements and electromechanical instruments#1.74#power#ex_1_74.sce#2096/CH1/EX1.74/ex_1_74.sce#S##70216 +1#concepts of measurements and electromechanical instruments#1.73#percentage error#ex_1_73.sce#2096/CH1/EX1.73/ex_1_73.sce#S##78955 +1#concepts of measurements and electromechanical instruments#1.72#percentage error#ex_1_72.sce#2096/CH1/EX1.72/ex_1_72.sce#S##75071 +1#concepts of measurements and electromechanical instruments#1.71#reading#ex_1_71.sce#2096/CH1/EX1.71/ex_1_71.sce#S##70211 +1#concepts of measurements and electromechanical instruments#1.70#true power power factor and line current#ex_1_70.sce#2096/CH1/EX1.70/ex_1_70.sce#S##70209 +1#concepts of measurements and electromechanical instruments#1.7#maximum static error#ex_1_7.sce#2096/CH1/EX1.7/ex_1_7.sce#S##75054 +1#concepts of measurements and electromechanical instruments#1.69#power factor#ex_1_69.sce#2096/CH1/EX1.69/ex_1_69.sce#S##70207 +1#concepts of measurements and electromechanical instruments#1.68#readings#ex_1_68.sce#2096/CH1/EX1.68/ex_1_68.sce#S##70205 +1#concepts of measurements and electromechanical instruments#1.67#percentage error#ex_1_67.sce#2096/CH1/EX1.67/ex_1_67.sce#S##70203 +1#concepts of measurements and electromechanical instruments#1.66#error#ex_1_66.sce#2096/CH1/EX1.66/ex_1_66.sce#S##75070 +1#concepts of measurements and electromechanical instruments#1.65#turning moment#ex_1_65.sce#2096/CH1/EX1.65/ex_1_65.sce#S##70199 +1#concepts of measurements and electromechanical instruments#1.64#current and voltage#ex_1_64.sce#2096/CH1/EX1.64/ex_1_64.sce#S##70197 +1#concepts of measurements and electromechanical instruments#1.63#voltmeater and ammeter reading#ex_1_63.sce#2096/CH1/EX1.63/ex_1_63.sce#S##70196 +1#concepts of measurements and electromechanical instruments#1.62#limiting error and standard deviation#ex_1_62.sce#2096/CH1/EX1.62/ex_1_62.sce#S##70193 +1#concepts of measurements and electromechanical instruments#1.61#constants and relationship#ex_1_61.sce#2096/CH1/EX1.61/ex_1_61.sce#S##70192 +1#concepts of measurements and electromechanical instruments#1.60#linear relation and standard deviation#ex_1_60.sce#2096/CH1/EX1.60/ex_1_60.sce#S##70189 +1#concepts of measurements and electromechanical instruments#1.6#maximum possible error and root square accuracy#ex_1_6.sce#2096/CH1/EX1.6/ex_1_6.sce#S##70102 +1#concepts of measurements and electromechanical instruments#1.59#rejected reading#ex_1_59.sce#2096/CH1/EX1.59/ex_1_59.sce#S##70187 +1#concepts of measurements and electromechanical instruments#1.58#precision index and false alarms#ex_1_58.sce#2096/CH1/EX1.58/ex_1_58.sce#S##70185 +1#concepts of measurements and electromechanical instruments#1.57#prescribed range#ex_1_57.sce#2096/CH1/EX1.57/ex_1_57.sce#S##70183 +1#concepts of measurements and electromechanical instruments#1.56#probability of error and number of readings#ex_1_56.sce#2096/CH1/EX1.56/ex_1_56.sce#S##78954 +1#concepts of measurements and electromechanical instruments#1.55#number of readings#ex_1_55.sce#2096/CH1/EX1.55/ex_1_55.sce#S##70179 +1#concepts of measurements and electromechanical instruments#1.54#readings#ex_1_54.sce#2096/CH1/EX1.54/ex_1_54.sce#S##70177 +1#concepts of measurements and electromechanical instruments#1.53#standard deviation and probability of error#ex_1_53.sce#2096/CH1/EX1.53/ex_1_53.sce#S##70175 +1#concepts of measurements and electromechanical instruments#1.52#arithematic mean average deviation standard deviation variance and probable error#ex_1_52.sce#2096/CH1/EX1.52/ex_1_52.sce#S##75069 +1#concepts of measurements and electromechanical instruments#1.51#mean standard deviation probable error of one reading and mean#ex_1_51.sce#2096/CH1/EX1.51/ex_1_51.sce#S##75067 +1#concepts of measurements and electromechanical instruments#1.50.d#variance#ex_1_50_d.sce#2096/CH1/EX1.50.d/ex_1_50_d.sce#S##70167 +1#concepts of measurements and electromechanical instruments#1.50.c#standard deviation#ex_1_50_c.sce#2096/CH1/EX1.50.c/ex_1_50_c.sce#S##70166 +1#concepts of measurements and electromechanical instruments#1.50.b#average deviation#ex_1_50_b.sce#2096/CH1/EX1.50.b/ex_1_50_b.sce#S##70164 +1#concepts of measurements and electromechanical instruments#1.50.a#arithemetic mean #ex_1_50_a.sce#2096/CH1/EX1.50.a/ex_1_50_a.sce#S##70157 +1#concepts of measurements and electromechanical instruments#1.5.b#possible error#ex_1_5_b.sce#2096/CH1/EX1.5.b/ex_1_5_b.sce#S##70101 +1#concepts of measurements and electromechanical instruments#1.5.a#percentage error#ex_1_5_a.sce#2096/CH1/EX1.5.a/ex_1_5_a.sce#S##70100 +1#concepts of measurements and electromechanical instruments#1.49#arithemetic mean average deviation standard deviation and variance#ex_1_49.sce#2096/CH1/EX1.49/ex_1_49.sce#S##70155 +1#concepts of measurements and electromechanical instruments#1.48.b#true power#ex_1_48_b.sce#2096/CH1/EX1.48.b/ex_1_48_b.sce#S##70153 +1#concepts of measurements and electromechanical instruments#1.47#magnitude of power and magnitude of limiting error#ex_1_47.sce#2096/CH1/EX1.47/ex_1_47.sce#S##70151 +1#concepts of measurements and electromechanical instruments#1.46#error#ex_1_46.sce#2096/CH1/EX1.46/ex_1_46.sce#S##70148 +1#concepts of measurements and electromechanical instruments#1.45#magnitude and limiting error of resistance#ex_1_45.sce#2096/CH1/EX1.45/ex_1_45.sce#S##70146 +1#concepts of measurements and electromechanical instruments#1.44#limiting error#ex_1_44.sce#2096/CH1/EX1.44/ex_1_44.sce#S##70145 +1#concepts of measurements and electromechanical instruments#1.43#limiting value and percent limiting error#ex_1_43.sce#2096/CH1/EX1.43/ex_1_43.sce#S##75065 +1#concepts of measurements and electromechanical instruments#1.42#limiting error#ex_1_42.sce#2096/CH1/EX1.42/ex_1_42.sce#S##70142 +1#concepts of measurements and electromechanical instruments#1.41#range of readings#ex_1_41.sce#2096/CH1/EX1.41/ex_1_41.sce#S##70141 +1#concepts of measurements and electromechanical instruments#1.40#expression output amplitude output frequency and phase lag#ex_1_40.sce#2096/CH1/EX1.40/ex_1_40.sce#S##70140 +1#concepts of measurements and electromechanical instruments#1.4.c#relative static error#ex_1_4_c.sce#2096/CH1/EX1.4.c/ex_1_4_c.sce#S##75053 +1#concepts of measurements and electromechanical instruments#1.4.b#static corrections#ex_1_4_b.sce#2096/CH1/EX1.4.b/ex_1_4_b.sce#S##75052 +1#concepts of measurements and electromechanical instruments#1.4.a#static errors#ex_1_4_a.sce#2096/CH1/EX1.4.a/ex_1_4_a.sce#S##70097 +1#concepts of measurements and electromechanical instruments#1.39#frequency range#ex_1_39.sce#2096/CH1/EX1.39/ex_1_39.sce#S##70139 +1#concepts of measurements and electromechanical instruments#1.38#determine the error#ex_1_38.sce#2096/CH1/EX1.38/ex_1_38.sce#S##70138 +1#concepts of measurements and electromechanical instruments#1.37#effective damping ratio and undamped natural frequency#ex_1_37.sce#2096/CH1/EX1.37/ex_1_37.sce#S##75063 +1#concepts of measurements and electromechanical instruments#1.36#natural frequency damping ratio damped natural frequency and time constant#ex_1_36.sce#2096/CH1/EX1.36/ex_1_36.sce#S##70136 +1#concepts of measurements and electromechanical instruments#1.35.a#damping ratio damped natural frequency static sensivity anf time constant#ex_1_35.sce#2096/CH1/EX1.35.a/ex_1_35.sce#S##70135 +1#concepts of measurements and electromechanical instruments#1.34.b#percentage reduction in mass#ex_1_34_b.sce#2096/CH1/EX1.34.b/ex_1_34_b.sce#S##70134 +1#concepts of measurements and electromechanical instruments#1.32#expression of output#ex_1_32.sce#2096/CH1/EX1.32/ex_1_32.sce#S##78956 +1#concepts of measurements and electromechanical instruments#1.31#output#ex_1_31.sce#2096/CH1/EX1.31/ex_1_31.sce#S##70133 +1#concepts of measurements and electromechanical instruments#1.30.b#time lag#ex_1_30_b.sce#2096/CH1/EX1.30.b/ex_1_30_b.sce#S##70132 +1#concepts of measurements and electromechanical instruments#1.30.a#maximum value of temperature #ex_1_30_a.sce#2096/CH1/EX1.30.a/ex_1_30_a.sce#S##70131 +1#concepts of measurements and electromechanical instruments#1.3.b#express the error as the function of true value and full scale deflection#ex_1_3_b.sce#2096/CH1/EX1.3.b/ex_1_3_b.sce#S##75050 +1#concepts of measurements and electromechanical instruments#1.3.a#absolute error and corrections#ex_1_3_a.sce#2096/CH1/EX1.3.a/ex_1_3_a.sce#S##75049 +1#concepts of measurements and electromechanical instruments#1.29#expression #ex_1_29.sce#2096/CH1/EX1.29/ex_1_29.sce#S##70130 +1#concepts of measurements and electromechanical instruments#1.28.b#phase shift and time lag#ex_1_28_b.sce#2096/CH1/EX1.28.b/ex_1_28_b.sce#S##70129 +1#concepts of measurements and electromechanical instruments#1.28.a#maximum and minimum values indicated by thermometer#ex_1_28_a.sce#2096/CH1/EX1.28.a/ex_1_28_a.sce#S##70128 +1#concepts of measurements and electromechanical instruments#1.27#time constant and time lag#ex_1_27.sce#2096/CH1/EX1.27/ex_1_27.sce#S##70127 +1#concepts of measurements and electromechanical instruments#1.26.b#time#ex_1_26_b.sce#2096/CH1/EX1.26.b/ex_1_26_b.sce#S##70126 +1#concepts of measurements and electromechanical instruments#1.26.a#variation in the indicated temperature#ex_1_26_a.sce#2096/CH1/EX1.26.a/ex_1_26_a.sce#S##70125 +1#concepts of measurements and electromechanical instruments#1.25.b#time lag#ex_1_25_b.sce#2096/CH1/EX1.25.b/ex_1_25_b.sce#S##70124 +1#concepts of measurements and electromechanical instruments#1.25.a#ratio of output to input#ex_1_25_a.sce#2096/CH1/EX1.25.a/ex_1_25_a.sce#S##70123 +1#concepts of measurements and electromechanical instruments#1.24#time altitude#ex_1_24.sce#2096/CH1/EX1.24/ex_1_24.sce#S##70122 +1#concepts of measurements and electromechanical instruments#1.23#time constant#ex_1_23.sce#2096/CH1/EX1.23/ex_1_23.sce#S##70121 +1#concepts of measurements and electromechanical instruments#1.22.b#indicated temperature#ex_1_22_b.sce#2096/CH1/EX1.22.b/ex_1_22_b.sce#S##75061 +1#concepts of measurements and electromechanical instruments#1.22.a#time constant#ex_1_22_a.sce#2096/CH1/EX1.22.a/ex_1_22_a.sce#S##70119 +1#concepts of measurements and electromechanical instruments#1.21#time domain equation and its value#ex_1_21.sce#2096/CH1/EX1.21/ex_1_21.sce#S##70118 +1#concepts of measurements and electromechanical instruments#1.20#time taken by the transducer#ex_1_20.sce#2096/CH1/EX1.20/ex_1_20.sce#S##70117 +1#concepts of measurements and electromechanical instruments#1.2#temperature#ex_1_2.sce#2096/CH1/EX1.2/ex_1_2.sce#S##75047 +1#concepts of measurements and electromechanical instruments#1.19#temperature indicated #ex_1_19.sce#2096/CH1/EX1.19/ex_1_19.sce#S##70116 +1#concepts of measurements and electromechanical instruments#1.18.b#thermometer reading#ex_1_18_b.sce#2096/CH1/EX1.18.b/ex_1_18_b.sce#S##75058 +1#concepts of measurements and electromechanical instruments#1.18.a#thermometer reading#ex_1_18_a.sce#2096/CH1/EX1.18.a/ex_1_18_a.sce#S##75057 +1#concepts of measurements and electromechanical instruments#1.15.b.ii#voltmeter and milliameter readings#ex_1_15_b_ii.sce#2096/CH1/EX1.15.b.ii/ex_1_15_b_ii.sce#S##70113 +1#concepts of measurements and electromechanical instruments#1.15.b.i#voltmeter and milliameter readings#ex_1_15_b_i.sce#2096/CH1/EX1.15.b.i/ex_1_15_b_i.sce#S##70112 +1#concepts of measurements and electromechanical instruments#1.14#temperature change#ex_1_14.sce#2096/CH1/EX1.14/ex_1_14.sce#S##75055 +1#concepts of measurements and electromechanical instruments#1.13#resolution#ex_1_13.sce#2096/CH1/EX1.13/ex_1_13.sce#S##70110 +1#concepts of measurements and electromechanical instruments#1.12#resolution#ex_1_12.sce#2096/CH1/EX1.12/ex_1_12.sce#S##70109 +1#concepts of measurements and electromechanical instruments#1.11#smallest change which can measured by transducer#ex_1_11.sce#2096/CH1/EX1.11/ex_1_11.sce#S##70108 +1#concepts of measurements and electromechanical instruments#1.10#deflection#ex_1_10.sce#2096/CH1/EX1.10/ex_1_10.sce#S##70107 +1#concepts of measurements and electromechanical instruments#1.1.b#static correction for the voltmeter#ex_1_1_b.sce#2096/CH1/EX1.1.b/ex_1_1_b.sce#S##75046 +1#concepts of measurements and electromechanical instruments#1.1.a#static error#ex_1_1_a.sce#2096/CH1/EX1.1.a/ex_1_1_a.sce#S##75044 diff --git a/latex/tmp_2120_contributor.txt b/latex/tmp_2120_contributor.txt index cb5ee0b80..cc2683310 100755 --- a/latex/tmp_2120_contributor.txt +++ b/latex/tmp_2120_contributor.txt @@ -1 +1 @@ -Preeti Rani#B.Tech#Mechanical Engineering#UTU#Mr. Naresh Kumar#Lavitha Pereira & Mukul Kulkarni +Preeti Rani#B.Tech#Mechanical Engineering#Uttrakhand Technical Univeristy#Mr. Naresh Kumar#Lavitha Pereira & Mukul Kulkarni diff --git a/latex/tmp_2126_contributor.txt b/latex/tmp_2126_contributor.txt index c2547a2f5..aa139a266 100755 --- a/latex/tmp_2126_contributor.txt +++ b/latex/tmp_2126_contributor.txt @@ -1 +1 @@ -Bathini Maheswara Reddy#B.Tech#Mechanical Engineering#SASTRA UNIVERSITY#Prof. D. Venkatesan #Chaitanya +Bathini Maheswara Reddy#B.Tech#Mechanical Engineering#Sastra University#Prof. D. Venkatesan #Chaitanya diff --git a/latex/tmp_2135_contributor.txt b/latex/tmp_2135_contributor.txt index 5167a5d45..c5bb85dc7 100755 --- a/latex/tmp_2135_contributor.txt +++ b/latex/tmp_2135_contributor.txt @@ -1 +1 @@ -Keshav Pandey#B.Tech#Mechanical Engineering#UKTU#Mr. Naresh Kumar#Lavitha Pereira and Mukul Kulkarni +Keshav Pandey#B.Tech#Mechanical Engineering#Uttrakhand Technical Univeristy#Mr. Naresh Kumar#Lavitha Pereira and Mukul Kulkarni diff --git a/latex/tmp_2138_contributor.txt b/latex/tmp_2138_contributor.txt index 330881401..e28ffd390 100755 --- a/latex/tmp_2138_contributor.txt +++ b/latex/tmp_2138_contributor.txt @@ -1 +1 @@ -Nishtha Rani#B.Tech#Electrical Engineering#UKTU#Vinesh Saini#Lavitha Pereira and Mukul Kulkarni +Nishtha Rani#B.Tech#Electrical Engineering#Uttrakhand Technical Univeristy#Vinesh Saini#Lavitha Pereira and Mukul Kulkarni diff --git a/latex/tmp_2144_contributor.txt b/latex/tmp_2144_contributor.txt index 43156d821..9fb615f0f 100755 --- a/latex/tmp_2144_contributor.txt +++ b/latex/tmp_2144_contributor.txt @@ -1 +1 @@ -Anshika Verma#B.Tech#Mechanical Engineering#UTU#Mr. Naresh Kumar#Mukul Kulkarni and Lavitha Pereira +Anshika Verma#B.Tech#Mechanical Engineering#Uttrakhand Technical Univeristy#Mr. Naresh Kumar#Mukul Kulkarni and Lavitha Pereira diff --git a/latex/tmp_2144_data.txt b/latex/tmp_2144_data.txt index e69de29bb..57a7c91da 100755 --- a/latex/tmp_2144_data.txt +++ b/latex/tmp_2144_data.txt @@ -0,0 +1,138 @@ +8#Fuels and Combustion#8.9#Minimum quantity of air#ex8_9.sce#2144/CH8/EX8.9/ex8_9.sce#S##74318 +8#Fuels and Combustion#8.8#Mass of air#ex8_8.sce#2144/CH8/EX8.8/ex8_8.sce#S##74317 +8#Fuels and Combustion#8.7#Theoretical mass of air#ex8_7.sce#2144/CH8/EX8.7/ex8_7.sce#S##74316 +8#Fuels and Combustion#8.6#Theoretical mass of air#ex8_6.sce#2144/CH8/EX8.6/ex8_6.sce#S##74315 +8#Fuels and Combustion#8.5#Calorific value#ex8_5.sce#2144/CH8/EX8.5/ex8_5.sce#S##74314 +8#Fuels and Combustion#8.4#HCV and LCV#ex8_4.sce#2144/CH8/EX8.4/ex8_4.sce#S##74313 +8#Fuels and Combustion#8.3#Calorific value of a sample of coal#ex8_3.sce#2144/CH8/EX8.3/ex8_3.sce#S##74312 +8#Fuels and Combustion#8.20#Air fuel ratio by different methods#ex8_20.sce#2144/CH8/EX8.20/ex8_20.sce#S##74329 +8#Fuels and Combustion#8.2#HCV and LCV#ex8_2.sce#2144/CH8/EX8.2/ex8_2.sce#S##74311 +8#Fuels and Combustion#8.19#Air fuel ratio by volume#ex8_19.sce#2144/CH8/EX8.19/ex8_19.sce#S##79375 +8#Fuels and Combustion#8.18#Percentage composition by volume and mass#ex8_18.sce#2144/CH8/EX8.18/ex8_18.sce#S##74327 +8#Fuels and Combustion#8.17#Volume of air supplied#ex8_17.sce#2144/CH8/EX8.17/ex8_17.sce#S##74326 +8#Fuels and Combustion#8.16#Volume of air required#ex8_16.sce#2144/CH8/EX8.16/ex8_16.sce#S##74325 +8#Fuels and Combustion#8.15#Minimum quantity of air#ex8_15.sce#2144/CH8/EX8.15/ex8_15.sce#S##74324 +8#Fuels and Combustion#8.14#Gravimetric analysis of the fuel#ex8_14.sce#2144/CH8/EX8.14/ex8_14.sce#S##74323 +8#Fuels and Combustion#8.13#Quantity of air passing to the furnace#ex8_13.sce#2144/CH8/EX8.13/ex8_13.sce#S##74322 +8#Fuels and Combustion#8.12#Percentage analysis of dry exhaust gases by volume#ex8_12.sce#2144/CH8/EX8.12/ex8_12.sce#S##74321 +8#Fuels and Combustion#8.11#Maximum quantity of heat#ex8_11.sce#2144/CH8/EX8.11/ex8_11.sce#S##74320 +8#Fuels and Combustion#8.10#Percentage analysis of dry flue gas#ex8_10.sce#2144/CH8/EX8.10/ex8_10.sce#S##74319 +8#Fuels and Combustion#8.1#Higher calorific value#ex8_1.sce#2144/CH8/EX8.1/ex8_1.sce#S##74310 +7#Flow Process#7.6#Rate of heat transfer#ex7_6.sce#2144/CH7/EX7.6/ex7_6.sce#S##79374 +7#Flow Process#7.5#Mass flow rate#ex7_5.sce#2144/CH7/EX7.5/ex7_5.sce#S##74308 +7#Flow Process#7.4#Exit velocity and total exit area#ex7_4.sce#2144/CH7/EX7.4/ex7_4.sce#S##74307 +7#Flow Process#7.3#Velocity of steam#ex7_3.sce#2144/CH7/EX7.3/ex7_3.sce#S##74306 +7#Flow Process#7.2#Power output of the turbine#ex7_2.sce#2144/CH7/EX7.2/ex7_2.sce#S##74305 +7#Flow Process#7.1#Work tranfer#ex7_1.sce#2144/CH7/EX7.1/ex7_1.sce#S##74304 +6#Properties of Steam and Steam Cycle#6.9#The enthalpy#ex6_9.sce#2144/CH6/EX6.9/ex6_9.sce#S##74278 +6#Properties of Steam and Steam Cycle#6.8#Heat units#ex6_8.sce#2144/CH6/EX6.8/ex6_8.sce#S##74277 +6#Properties of Steam and Steam Cycle#6.7#Internal energy#ex6_7.sce#2144/CH6/EX6.7/ex6_7.sce#S##74276 +6#Properties of Steam and Steam Cycle#6.6#Specific volume of steam#ex6_6.sce#2144/CH6/EX6.6/ex6_6.sce#S##74275 +6#Properties of Steam and Steam Cycle#6.5#Heat required#ex6_5.sce#2144/CH6/EX6.5/ex6_5.sce#S##74274 +6#Properties of Steam and Steam Cycle#6.4#Heat necessary to raise the temperature#ex6_4.sce#2144/CH6/EX6.4/ex6_4.sce#S##74273 +6#Properties of Steam and Steam Cycle#6.34#Efficiency of cycle#ex6_34.sce#2144/CH6/EX6.34/ex6_34.sce#S##74303 +6#Properties of Steam and Steam Cycle#6.33#Rankine efficiency#ex6_33.sce#2144/CH6/EX6.33/ex6_33.sce#S##74302 +6#Properties of Steam and Steam Cycle#6.32#Rankine efficiency#ex6_32.sce#2144/CH6/EX6.32/ex6_32.sce#S##74301 +6#Properties of Steam and Steam Cycle#6.31#Increase in entropy#ex6_31.sce#2144/CH6/EX6.31/ex6_31.sce#S##74300 +6#Properties of Steam and Steam Cycle#6.30#Final temperature of steam#ex6_30.sce#2144/CH6/EX6.30/ex6_30.sce#S##74299 +6#Properties of Steam and Steam Cycle#6.3#Dryness fraction of steam#ex6_3.sce#2144/CH6/EX6.3/ex6_3.sce#S##74272 +6#Properties of Steam and Steam Cycle#6.29#Final dryness fraction#ex6_29.sce#2144/CH6/EX6.29/ex6_29.sce#S##74298 +6#Properties of Steam and Steam Cycle#6.28#Amount of heat put into or extracted from the steam#ex6_28.sce#2144/CH6/EX6.28/ex6_28.sce#S##74297 +6#Properties of Steam and Steam Cycle#6.27#Mass of steam present#ex6_27.sce#2144/CH6/EX6.27/ex6_27.sce#S##74296 +6#Properties of Steam and Steam Cycle#6.26#Total energy and internal energy#ex6_26.sce#2144/CH6/EX6.26/ex6_26.sce#S##74295 +6#Properties of Steam and Steam Cycle#6.25#Mass of steam in vessel#ex6_25.sce#2144/CH6/EX6.25/ex6_25.sce#S##79373 +6#Properties of Steam and Steam Cycle#6.24#Pressure and condition of steam#ex6_24.sce#2144/CH6/EX6.24/ex6_24.sce#S##74293 +6#Properties of Steam and Steam Cycle#6.23#Heat received by steam#ex6_23.sce#2144/CH6/EX6.23/ex6_23.sce#S##74292 +6#Properties of Steam and Steam Cycle#6.22#Quantity of water sprayed#ex6_22.sce#2144/CH6/EX6.22/ex6_22.sce#S##74291 +6#Properties of Steam and Steam Cycle#6.21#Temperature of feed water leaving the heating#ex6_21.sce#2144/CH6/EX6.21/ex6_21.sce#S##74290 +6#Properties of Steam and Steam Cycle#6.20#Condition of steam#ex6_20.sce#2144/CH6/EX6.20/ex6_20.sce#S##74289 +6#Properties of Steam and Steam Cycle#6.2#External work done#ex6_2.sce#2144/CH6/EX6.2/ex6_2.sce#S##74271 +6#Properties of Steam and Steam Cycle#6.19#Dryness fraction of steam#ex6_19.sce#2144/CH6/EX6.19/ex6_19.sce#S##74288 +6#Properties of Steam and Steam Cycle#6.18#Velocity of steam#ex6_18.sce#2144/CH6/EX6.18/ex6_18.sce#S##79372 +6#Properties of Steam and Steam Cycle#6.17#Final condition of steam#ex6_17.sce#2144/CH6/EX6.17/ex6_17.sce#S##79371 +6#Properties of Steam and Steam Cycle#6.16#Quantity of circulating water required#ex6_16.sce#2144/CH6/EX6.16/ex6_16.sce#S##74285 +6#Properties of Steam and Steam Cycle#6.15#Dryness fraction in the steam main#ex6_15.sce#2144/CH6/EX6.15/ex6_15.sce#S##74284 +6#Properties of Steam and Steam Cycle#6.14#Minimum dryness fraction of steam#ex6_14.sce#2144/CH6/EX6.14/ex6_14.sce#S##74283 +6#Properties of Steam and Steam Cycle#6.13#Dryness fraction of steam#ex6_13.sce#2144/CH6/EX6.13/ex6_13.sce#S##74282 +6#Properties of Steam and Steam Cycle#6.12#Dryness fraction of steam#ex6_12.sce#2144/CH6/EX6.12/ex6_12.sce#S##74281 +6#Properties of Steam and Steam Cycle#6.11#Value of specific entropy#ex6_11.sce#2144/CH6/EX6.11/ex6_11.sce#S##74280 +6#Properties of Steam and Steam Cycle#6.10#Entropy of 1 kg of steam#ex6_10.sce#2144/CH6/EX6.10/ex6_10.sce#S##74279 +6#Properties of Steam and Steam Cycle#6.1#Work done#ex6_1.sce#2144/CH6/EX6.1/ex6_1.sce#S##79370 +5#Air standard Cycles#5.9#Temperature at the end of compression stroke#ex5_9.sce#2144/CH5/EX5.9/ex5_9.sce#S##74265 +5#Air standard Cycles#5.8#Efficiency of engine#ex5_8.sce#2144/CH5/EX5.8/ex5_8.sce#S##74264 +5#Air standard Cycles#5.7#Efficiency of dual combustion engine#ex5_7.sce#2144/CH5/EX5.7/ex5_7.sce#S##74263 +5#Air standard Cycles#5.4#Consumption of gas#ex5_4.sce#2144/CH5/EX5.4/ex5_4.sce#S##74262 +5#Air standard Cycles#5.3#Pressure and temperature#ex5_3.sce#2144/CH5/EX5.3/ex5_3.sce#S##79368 +5#Air standard Cycles#5.2#Efficiency of a four stroke cycle gas engine#ex5_2.sce#2144/CH5/EX5.2/ex5_2.sce#S##79367 +5#Air standard Cycles#5.15#The efficiency of cycle #ex5_15.sce#2144/CH5/EX5.15/ex5_15.sce#S##80127 +5#Air standard Cycles#5.14#Power developed per kg of air supplied per second#ex5_14.sce#2144/CH5/EX5.14/ex5_14.sce#S##74269 +5#Air standard Cycles#5.13#Ideal efficiency#ex5_13.sce#2144/CH5/EX5.13/ex5_13.sce#S##74268 +5#Air standard Cycles#5.12#Mean effective pressure of the cycle#ex5_12.sce#2144/CH5/EX5.12/ex5_12.sce#S##74267 +5#Air standard Cycles#5.11#Ratio of expansion#ex5_11.sce#2144/CH5/EX5.11/ex5_11.sce#S##79369 +5#Air standard Cycles#5.1#Efficiency of heat engine#ex5_1.sce#2144/CH5/EX5.1/ex5_1.sce#S##74258 +4#Availability#4.2#The increase in unavailable energy #exa_4_2.sce#2144/CH4/EX4.2/exa_4_2.sce#S##80126 +4#Availability#4.1#Entropy production accompanying the heat transfer#exa_4_1.sce#2144/CH4/EX4.1/exa_4_1.sce#S##74256 +3#Thermodynamic Processes#3.9#Final pressure temperature and internal energy#ex3_9.sce#2144/CH3/EX3.9/ex3_9.sce#S##74233 +3#Thermodynamic Processes#3.8#Pressure temperature and internal energy#ex3_8.sce#2144/CH3/EX3.8/ex3_8.sce#S##74232 +3#Thermodynamic Processes#3.7#Value of Cp and Cv#ex3_7.sce#2144/CH3/EX3.7/ex3_7.sce#S##74230 +3#Thermodynamic Processes#3.6#Final pressure and temperature#ex3_6.sce#2144/CH3/EX3.6/ex3_6.sce#S##74231 +3#Thermodynamic Processes#3.5#Final pressure#ex3_5.sce#2144/CH3/EX3.5/ex3_5.sce#S##74228 +3#Thermodynamic Processes#3.4#Heat transferred from the gas#ex3_4.sce#2144/CH3/EX3.4/ex3_4.sce#S##79363 +3#Thermodynamic Processes#3.30#Initial value of entropy#ex3_30.sce#2144/CH3/EX3.30/ex3_30.sce#S##74254 +3#Thermodynamic Processes#3.3#Heat added#ex3_3.sce#2144/CH3/EX3.3/ex3_3.sce#S##74226 +3#Thermodynamic Processes#3.29#Work transfer#ex3_29.sce#2144/CH3/EX3.29/ex3_29.sce#S##74253 +3#Thermodynamic Processes#3.28#temperature of gas in the cylinder #ex3_28.sce#2144/CH3/EX3.28/ex3_28.sce#S##79376 +3#Thermodynamic Processes#3.27#The change in internal energy and in enthalpy#ex3_27.sce#2144/CH3/EX3.27/ex3_27.sce#S##74252 +3#Thermodynamic Processes#3.26#Mass of oxygen used#ex3_26.sce#2144/CH3/EX3.26/ex3_26.sce#S##74250 +3#Thermodynamic Processes#3.25#Change in internal energy #ex3_25.sce#2144/CH3/EX3.25/ex3_25.sce#S##80125 +3#Thermodynamic Processes#3.24#Internal energy change#ex3_24.sce#2144/CH3/EX3.24/ex3_24.sce#S##79366 +3#Thermodynamic Processes#3.23#Total work done during the whole process#ex3_23.sce#2144/CH3/EX3.23/ex3_23.sce#S##74248 +3#Thermodynamic Processes#3.22#Temperature of the gas#ex3_22.sce#2144/CH3/EX3.22/ex3_22.sce#S##74246 +3#Thermodynamic Processes#3.21#Difference between work done by air#ex3_21.sce#2144/CH3/EX3.21/ex3_21.sce#S##74245 +3#Thermodynamic Processes#3.20#Composition of the mixture by mass#ex3_20.sce#2144/CH3/EX3.20/ex3_20.sce#S##74244 +3#Thermodynamic Processes#3.2#Initial temperature of air#ex3_2.sce#2144/CH3/EX3.2/ex3_2.sce#S##74225 +3#Thermodynamic Processes#3.19#Temperature molecular mass and specific volume#ex3_19.sce#2144/CH3/EX3.19/ex3_19.sce#S##74243 +3#Thermodynamic Processes#3.18#Total enthalpy#ex3_18.sce#2144/CH3/EX3.18/ex3_18.sce#S##74242 +3#Thermodynamic Processes#3.17#Change of entropy#ex3_17.sce#2144/CH3/EX3.17/ex3_17.sce#S##79365 +3#Thermodynamic Processes#3.16#Entropy#ex3_16.sce#2144/CH3/EX3.16/ex3_16.sce#S##74240 +3#Thermodynamic Processes#3.15#Change of entropy#ex3_15.sce#2144/CH3/EX3.15/ex3_15.sce#S##79364 +3#Thermodynamic Processes#3.14#Gain of entropy#ex3_14.sce#2144/CH3/EX3.14/ex3_14.sce#S##74238 +3#Thermodynamic Processes#3.13#Change in entropy of air#ex3_13.sce#2144/CH3/EX3.13/ex3_13.sce#S##74237 +3#Thermodynamic Processes#3.12#The value of index#ex3_12.sce#2144/CH3/EX3.12/ex3_12.sce#S##74236 +3#Thermodynamic Processes#3.11#Final volume temperature and work done#ex3_11.sce#2144/CH3/EX3.11/ex3_11.sce#S##74235 +3#Thermodynamic Processes#3.10#Pressure and temperature at the end of compression#ex3_10.sce#2144/CH3/EX3.10/ex3_10.sce#S##74234 +3#Thermodynamic Processes#3.1#New pressure and temperature#ex3_1.sce#2144/CH3/EX3.1/ex3_1.sce#S##74224 +2#Gas Laws Ideal and Real Gases#2.9#Temperature at the end compression#exa_2_9.sce#2144/CH2/EX2.9/exa_2_9.sce#S##74208 +2#Gas Laws Ideal and Real Gases#2.8#Molecular volume of the gas#exa_2_8.sce#2144/CH2/EX2.8/exa_2_8.sce#S##74207 +2#Gas Laws Ideal and Real Gases#2.7#Pressure at the end of compression stroke#exa_2_7.sce#2144/CH2/EX2.7/exa_2_7.sce#S##74206 +2#Gas Laws Ideal and Real Gases#2.6#Pressure of the gas#exa_2_6.sce#2144/CH2/EX2.6/exa_2_6.sce#S##74205 +2#Gas Laws Ideal and Real Gases#2.5#Final volume#exa_2_5.sce#2144/CH2/EX2.5/exa_2_5.sce#S##74204 +2#Gas Laws Ideal and Real Gases#2.4#Volume occupied#exa_2_4.sce#2144/CH2/EX2.4/exa_2_4.sce#S##74203 +2#Gas Laws Ideal and Real Gases#2.3#Temperature at the end of compression stroke#exa_2_3.sce#2144/CH2/EX2.3/exa_2_3.sce#S##74202 +2#Gas Laws Ideal and Real Gases#2.24#Apparent molecular mass#exa_2_24.sce#2144/CH2/EX2.24/exa_2_24.sce#S##74223 +2#Gas Laws Ideal and Real Gases#2.23#Internal energy of the gas#exa_2_23.sce#2144/CH2/EX2.23/exa_2_23.sce#S##79362 +2#Gas Laws Ideal and Real Gases#2.22#Average gas density#exa_2_22.sce#2144/CH2/EX2.22/exa_2_22.sce#S##74221 +2#Gas Laws Ideal and Real Gases#2.21#Temperature rise#exa_2_21.sce#2144/CH2/EX2.21/exa_2_21.sce#S##74220 +2#Gas Laws Ideal and Real Gases#2.20#Value of Cv gamma and R#exa_2_20.sce#2144/CH2/EX2.20/exa_2_20.sce#S##74219 +2#Gas Laws Ideal and Real Gases#2.2#New guage pressure#exa_2_2.sce#2144/CH2/EX2.2/exa_2_2.sce#S##74201 +2#Gas Laws Ideal and Real Gases#2.19#Amount of heat extracted from the gas#exa_2_19.sce#2144/CH2/EX2.19/exa_2_19.sce#S##74218 +2#Gas Laws Ideal and Real Gases#2.18#Heat transfered to the gas#exa_2_18.sce#2144/CH2/EX2.18/exa_2_18.sce#S##74217 +2#Gas Laws Ideal and Real Gases#2.17#Fourth work transfer#exa_2_17.sce#2144/CH2/EX2.17/exa_2_17.sce#S##74216 +2#Gas Laws Ideal and Real Gases#2.16#Specific enthalpy of steam#exa_2_16.sce#2144/CH2/EX2.16/exa_2_16.sce#S##74215 +2#Gas Laws Ideal and Real Gases#2.15#Mass of the fluid in the system#exa_2_15.sce#2144/CH2/EX2.15/exa_2_15.sce#S##74214 +2#Gas Laws Ideal and Real Gases#2.14#Change in internal energy#exa_2_14.sce#2144/CH2/EX2.14/exa_2_14.sce#S##74213 +2#Gas Laws Ideal and Real Gases#2.13#Change in internal energy#exa_2_13.sce#2144/CH2/EX2.13/exa_2_13.sce#S##79361 +2#Gas Laws Ideal and Real Gases#2.12#Tyre guage reading#exa_2_12.sce#2144/CH2/EX2.12/exa_2_12.sce#S##74211 +2#Gas Laws Ideal and Real Gases#2.11#New temperature of the gas#exa_2_11.sce#2144/CH2/EX2.11/exa_2_11.sce#S##74210 +2#Gas Laws Ideal and Real Gases#2.10#Mass density and volume of the gas#exa_2_10.sce#2144/CH2/EX2.10/exa_2_10.sce#S##74209 +2#Gas Laws Ideal and Real Gases#2.1#Pressure of air#exa_2_1.sce#2144/CH2/EX2.1/exa_2_1.sce#S##74200 +1#Introduction#1.9#Heat supplied to vessel and water#ex1_9.sce#2144/CH1/EX1.9/ex1_9.sce#S##74198 +1#Introduction#1.8#Quantity of heat supplied to water#ex1_8.sce#2144/CH1/EX1.8/ex1_8.sce#S##74197 +1#Introduction#1.7#Temperature in degree C#ex1_7.sce#2144/CH1/EX1.7/ex1_7.sce#S##79360 +1#Introduction#1.6#Temperature on absolute scale#ex1_6.sce#2144/CH1/EX1.6/ex1_6.sce#S##74195 +1#Introduction#1.5#Absolute pressure#ex1_5.sce#2144/CH1/EX1.5/ex1_5.sce#S##74194 +1#Introduction#1.4#Guage pressure#ex1_4.sce#2144/CH1/EX1.4/ex1_4.sce#S##74193 +1#Introduction#1.3#Absolute pressure#ex1_3.sce#2144/CH1/EX1.3/ex1_3.sce#S##74192 +1#Introduction#1.2#Absolute pressure#ex1_2.sce#2144/CH1/EX1.2/ex1_2.sce#S##74191 +1#Introduction#1.10#Quantity of heat supplied per kg of coal#ex1_10.sce#2144/CH1/EX1.10/ex1_10.sce#S##74199 +1#Introduction#1.1#Absolute pressure#ex1_1.sce#2144/CH1/EX1.1/ex1_1.sce#S##74190 diff --git a/latex/tmp_2168_contributor.txt b/latex/tmp_2168_contributor.txt index 77ad4ec47..f7515a977 100755 --- a/latex/tmp_2168_contributor.txt +++ b/latex/tmp_2168_contributor.txt @@ -1 +1 @@ -Nagireddy Anveshreddy#B tech#Mechanical Engineering#SASTRA University#Dr. M. Venkatesan#Chaitanya Potti +Nagireddy Anveshreddy#B tech#Mechanical Engineering#Sastra University#Dr. M. Venkatesan#Chaitanya Potti diff --git a/latex/tmp_2183_contributor.txt b/latex/tmp_2183_contributor.txt index 24f823110..e36f0f18d 100755 --- a/latex/tmp_2183_contributor.txt +++ b/latex/tmp_2183_contributor.txt @@ -1 +1 @@ -Vidur Sirohi#B.TECH#Electronics Engineering#UTTARAKHAND TECHNICAL UNIVERSITY DEHRADUN#Rizwan Khan#Prof. Chaya S +Vidur Sirohi#B.TECH#Electronics Engineering#Uttarakhand Technical University#Rizwan Khan#Prof. Chaya S diff --git a/latex/tmp_2195_book.txt b/latex/tmp_2195_book.txt index 18c41bf78..08cb6a855 100755 --- a/latex/tmp_2195_book.txt +++ b/latex/tmp_2195_book.txt @@ -1 +1 @@ - Elelectronics Instrumentation and Measurements#U. S. Shah#978-81-8492-334-6#Tech-max Publication, Pune#2#2011 + Electronics Instrumentation and Measurements#U. S. Shah#978-81-8492-334-6#Tech-max Publication, Pune#2#2011 diff --git a/latex/tmp_2195_contributor.txt b/latex/tmp_2195_contributor.txt index 291276398..763c40f1f 100755 --- a/latex/tmp_2195_contributor.txt +++ b/latex/tmp_2195_contributor.txt @@ -1 +1 @@ -Vivek Maindola#B.TECH#Electronics Engineering#UTTARAKHAND TECHNICAL UNIVERSITY DEHRADUN#Arshad Khan#Lavitha Pereira +Vivek Maindola#B.TECH#Electronics Engineering#Uttrakhand Technical University#Arshad Khan#Lavitha Pereira diff --git a/latex/tmp_2195_data.txt b/latex/tmp_2195_data.txt index e69de29bb..4d9a4dcbb 100755 --- a/latex/tmp_2195_data.txt +++ b/latex/tmp_2195_data.txt @@ -0,0 +1,126 @@ +12#Recorders#12.5.1#chart speed#ex_12_5_1.sce#2195/CH12/EX12.5.1/ex_12_5_1.sce#S##73646 +11#Instrument Callibration#11.3.2#error#ex_11_3_2.sce#2195/CH11/EX11.3.2/ex_11_3_2.sce#S##80319 +11#Instrument Callibration#11.3.1#error#ex_11_3_1.sce#2195/CH11/EX11.3.1/ex_11_3_1.sce#S##73644 +10#special oscilloscopes#10.13.1#sampling rate#ex_10_13_1.sce#2195/CH10/EX10.13.1/ex_10_13_1.sce#S##73643 +10#special oscilloscopes#10.11.1#sampling rate#ex_10_11_1.sce#2195/CH10/EX10.11.1/ex_10_11_1.sce#S##73642 +9#Cathode Ray Oscilloscope#9.17.9#rise time#ex_9_17_9.sce#2195/CH9/EX9.17.9/ex_9_17_9.sce#S##73641 +9#Cathode Ray Oscilloscope#9.17.8#minimum time division sensivity#ex_9_17_8.sce#2195/CH9/EX9.17.8/ex_9_17_8.sce#S##73640 +9#Cathode Ray Oscilloscope#9.17.7#input impedence#ex_9_17_7.sce#2195/CH9/EX9.17.7/ex_9_17_7.sce#S##73639 +9#Cathode Ray Oscilloscope#9.17.6#capacitance#ex_9_17_6.sce#2195/CH9/EX9.17.6/ex_9_17_6.sce#S##73638 +9#Cathode Ray Oscilloscope#9.17.5#rise time#ex_9_17_5.sce#2195/CH9/EX9.17.5/ex_9_17_5.sce#S##73637 +9#Cathode Ray Oscilloscope#9.17.4#rise time#ex_9_17_4.sce#2195/CH9/EX9.17.4/ex_9_17_4.sce#S##73636 +9#Cathode Ray Oscilloscope#9.17.3#Rise Time#ex_9_17_3.sce#2195/CH9/EX9.17.3/ex_9_17_3.sce#S##73590 +9#Cathode Ray Oscilloscope#9.17.2#Rise Time#ex_9_17_2.sce#2195/CH9/EX9.17.2/ex_9_17_2.sce#S##73589 +9#Cathode Ray Oscilloscope#9.17.1#Bandwidth#ex_9_17_1.sce#2195/CH9/EX9.17.1/ex_9_17_1.sce#S##73588 +9#Cathode Ray Oscilloscope#9.14.4#Frequency#ex_9_14_4.sce#2195/CH9/EX9.14.4/ex_9_14_4.sce#S##73587 +9#Cathode Ray Oscilloscope#9.14.3#Period and Frequency#ex_9_14_3.sce#2195/CH9/EX9.14.3/ex_9_14_3.sce#S##73586 +9#Cathode Ray Oscilloscope#9.14.2#Time Interval#ex_9_14_2.sce#2195/CH9/EX9.14.2/ex_9_14_2.sce#S##73585 +9#Cathode Ray Oscilloscope#9.14.1#Peak to Peak Amplitude and rms Value#ex_9_14_1.sce#2195/CH9/EX9.14.1/ex_9_14_1.sce#S##73583 +8#Inductance and Capacitance Measurements#8.7.5#Resistance and Inductance#ex_8_7_5.sce#2195/CH8/EX8.7.5/ex_8_7_5.sce#S##73576 +8#Inductance and Capacitance Measurements#8.6.9#Capacitance and Inductance#ex_8_6_9.sce#2195/CH8/EX8.6.9/ex_8_6_9.sce#S##80318 +8#Inductance and Capacitance Measurements#8.6.8#Resistance and Capacitance#ex_8_6_8.sce#2195/CH8/EX8.6.8/ex_8_6_8.sce#S##80317 +8#Inductance and Capacitance Measurements#8.6.7#Resistance and Relative Permittivity#ex_8_6_7.sce#2195/CH8/EX8.6.7/ex_8_6_7.sce#S##73556 +8#Inductance and Capacitance Measurements#8.6.6#Capacitance Resistance and Dissipation Factor#ex_8_6_6.sce#2195/CH8/EX8.6.6/ex_8_6_6.sce#S##73552 +8#Inductance and Capacitance Measurements#8.6.5#Resistance and Inductance#ex_8_6_5.sce#2195/CH8/EX8.6.5/ex_8_6_5.sce#S##73547 +8#Inductance and Capacitance Measurements#8.6.4#Inductance and Resistance#ex_8_6_4.sce#2195/CH8/EX8.6.4/ex_8_6_4.sce#S##73543 +8#Inductance and Capacitance Measurements#8.6.3#Resistance and Capacitance#ex_8_6_3.sce#2195/CH8/EX8.6.3/ex_8_6_3.sce#S##80316 +8#Inductance and Capacitance Measurements#8.6.2#Capacitance and Dissipation Factor#ex_8_6_2.sce#2195/CH8/EX8.6.2/ex_8_6_2.sce#S##73535 +8#Inductance and Capacitance Measurements#8.6.13#Capacitance#ex_8_6_13.sce#2195/CH8/EX8.6.13/ex_8_6_13.sce#S##73572 +8#Inductance and Capacitance Measurements#8.6.12#Capacitance#ex_8_6_12.sce#2195/CH8/EX8.6.12/ex_8_6_12.sce#S##73569 +8#Inductance and Capacitance Measurements#8.6.11#Capacitance#ex_8_6_11.sce#2195/CH8/EX8.6.11/ex_8_6_11.sce#S##73566 +8#Inductance and Capacitance Measurements#8.6.10#Error#ex_8_6_10.sce#2195/CH8/EX8.6.10/ex_8_6_10.sce#S##73563 +8#Inductance and Capacitance Measurements#8.6.1#Resistance and Capacitance#ex_8_6_1.sce#2195/CH8/EX8.6.1/ex_8_6_1.sce#S##73528 +8#Inductance and Capacitance Measurements#8.5.2#Capacitance and Inductance#ex_8_5_2.sce#2195/CH8/EX8.5.2/ex_8_5_2.sce#S##73527 +8#Inductance and Capacitance Measurements#8.5.1#Error#ex_8_5_1.sce#2195/CH8/EX8.5.1/ex_8_5_1.sce#S##73523 +7#Low High and Precise Resistance Measurement#7.5.9#Resistance#ex_7_5_9.sce#2195/CH7/EX7.5.9/ex_7_5_9.sce#S##73513 +7#Low High and Precise Resistance Measurement#7.5.8#Resistance and Limiting Error#ex_7_5_8.sce#2195/CH7/EX7.5.8/ex_7_5_8.sce#S##77819 +7#Low High and Precise Resistance Measurement#7.5.7#Deflection#ex_7_5_7.sce#2195/CH7/EX7.5.7/ex_7_5_7.sce#S##73507 +7#Low High and Precise Resistance Measurement#7.5.6#Resistance#ex_7_5_6.sce#2195/CH7/EX7.5.6/ex_7_5_6.sce#S##73505 +7#Low High and Precise Resistance Measurement#7.5.5#voltage#ex_7_5_5.sce#2195/CH7/EX7.5.5/ex_7_5_5.sce#S##73504 +7#Low High and Precise Resistance Measurement#7.5.4#Current#ex_7_5_4.sce#2195/CH7/EX7.5.4/ex_7_5_4.sce#S##73503 +7#Low High and Precise Resistance Measurement#7.5.3#Deflection#ex_7_5_3.sce#2195/CH7/EX7.5.3/ex_7_5_3.sce#S##73502 +7#Low High and Precise Resistance Measurement#7.5.2#Current#ex_7_5_2.sce#2195/CH7/EX7.5.2/ex_7_5_2.sce#S##73501 +7#Low High and Precise Resistance Measurement#7.5.12#Ammeter and Voltmeter#ex_7_5_12.sce#2195/CH7/EX7.5.12/ex_7_5_12.sce#S##73519 +7#Low High and Precise Resistance Measurement#7.5.11#Resistance#ex_7_5_11.sce#2195/CH7/EX7.5.11/ex_7_5_11.sce#S##73518 +7#Low High and Precise Resistance Measurement#7.5.10#Resistance#ex_7_5_10.sce#2195/CH7/EX7.5.10/ex_7_5_10.sce#S##80315 +7#Low High and Precise Resistance Measurement#7.5.1#Resistance#ex_7_5_1.sce#2195/CH7/EX7.5.1/ex_7_5_1.sce#S##73500 +6#Digital Frequency Meter#6.17.3#Accuracy#ex_6_17_3.sce#2195/CH6/EX6.17.3/ex_6_17_3.sce#S##73498 +6#Digital Frequency Meter#6.17.2#Error#ex_6_17_2.sce#2195/CH6/EX6.17.2/ex_6_17_2.sce#S##73497 +6#Digital Frequency Meter#6.17.1#Gate Time#ex_6_17_1.sce#2195/CH6/EX6.17.1/ex_6_17_1.sce#S##73496 +5#Digital Voltmeters#5.10.4#Time Interval#ex_5_10_4.sce#2195/CH5/EX5.10.4/ex_5_10_4.sce#S##80314 +5#Digital Voltmeters#5.10.3#Resolution#ex_5_10_3.sce#2195/CH5/EX5.10.3/ex_5_10_3.sce#S##73494 +5#Digital Voltmeters#5.10.2#Resolution#ex_5_10_2.sce#2195/CH5/EX5.10.2/ex_5_10_2.sce#S##73493 +5#Digital Voltmeters#5.10.1#Resolution#ex_5_10_1.sce#2195/CH5/EX5.10.1/ex_5_10_1.sce#S##73492 +4#Analog Electronic Volt Ohm Milliammeter#4.26.3#Shunt Resistance and Current#ex_4_26_3.sce#2195/CH4/EX4.26.3/ex_4_26_3.sce#S##80313 +4#Analog Electronic Volt Ohm Milliammeter#4.2.1#Peak Amplitude#ex_4_2_1.sce#2195/CH4/EX4.2.1/ex_4_2_1.sce#S##73482 +4#Analog Electronic Volt Ohm Milliammeter#4.19.5#Resistance#ex_4_19_5.sce#2195/CH4/EX4.19.5/ex_4_19_5.sce#S##73490 +4#Analog Electronic Volt Ohm Milliammeter#4.19.4#Current#ex_4_19_4.sce#2195/CH4/EX4.19.4/ex_4_19_4.sce#S##73489 +4#Analog Electronic Volt Ohm Milliammeter#4.19.3#Resistance#ex_4_19_3.sce#2195/CH4/EX4.19.3/ex_4_19_3.sce#S##80312 +4#Analog Electronic Volt Ohm Milliammeter#4.19.2#Current#ex_4_19_2.sce#2195/CH4/EX4.19.2/ex_4_19_2.sce#S##73487 +4#Analog Electronic Volt Ohm Milliammeter#4.19.1#Current#ex_4_19_1.sce#2195/CH4/EX4.19.1/ex_4_19_1.sce#S##73486 +4#Analog Electronic Volt Ohm Milliammeter#4.14.2.b#Error#ex_4_14_2_b.sce#2195/CH4/EX4.14.2.b/ex_4_14_2_b.sce#S##73485 +4#Analog Electronic Volt Ohm Milliammeter#4.14.2.a#Form Factor of The Voltage#ex_4_14_2_a.sce#2195/CH4/EX4.14.2.a/ex_4_14_2_a.sce#S##73484 +4#Analog Electronic Volt Ohm Milliammeter#4.14.1#form factor and error#ex_4_14_1.sce#2195/CH4/EX4.14.1/ex_4_14_1.sce#S##77817 +4#Analog Electronic Volt Ohm Milliammeter#4.12.1#Resistance#ex_4_12_1.sce#2195/CH4/EX4.12.1/ex_4_12_1.sce#S##80311 +3#Electromechanical Instruments#3.9.2#Current#ex_3_9_2.sce#2195/CH3/EX3.9.2/ex_3_9_2.sce#S##73469 +3#Electromechanical Instruments#3.9.1#Multiplier#ex_3_9_1.sce#2195/CH3/EX3.9.1/ex_3_9_1.sce#S##73468 +3#Electromechanical Instruments#3.6.1#Resistance#ex_3_6_1.sce#2195/CH3/EX3.6.1/ex_3_6_1.sce#S##73467 +3#Electromechanical Instruments#3.5.1#Shunt Resistance#ex_3_5_1.sce#2195/CH3/EX3.5.1/ex_3_5_1.sce#S##73466 +3#Electromechanical Instruments#3.4.2#Multiplying power and Shunt Resistot#ex_3_4_2.sce#2195/CH3/EX3.4.2/ex_3_4_2.sce#S##73465 +3#Electromechanical Instruments#3.4.1#Shunt Resistor#ex_3_4_1.sce#2195/CH3/EX3.4.1/ex_3_4_1.sce#S##73464 +3#Electromechanical Instruments#3.2.4#Diameter#ex_3_2_4.sce#2195/CH3/EX3.2.4/ex_3_2_4.sce#S##73463 +3#Electromechanical Instruments#3.2.3#Resistance#ex_3_2_3.sce#2195/CH3/EX3.2.3/ex_3_2_3.sce#S##73462 +3#Electromechanical Instruments#3.2.2#Number of Turns#ex_3_2_2.sce#2195/CH3/EX3.2.2/ex_3_2_2.sce#S##73461 +3#Electromechanical Instruments#3.2.1#Torque#ex_3_2_1.sce#2195/CH3/EX3.2.1/ex_3_2_1.sce#S##73460 +3#Electromechanical Instruments#3.15.5#Shunt Resistance#ex_3_15_5.sce#2195/CH3/EX3.15.5/ex_3_15_5.sce#S##73480 +3#Electromechanical Instruments#3.15.4#Shunt Resistance#ex_3_15_4.sce#2195/CH3/EX3.15.4/ex_3_15_4.sce#S##73479 +3#Electromechanical Instruments#3.15.3#Shunt Resistance#ex_3_15_3.sce#2195/CH3/EX3.15.3/ex_3_15_3.sce#S##73478 +3#Electromechanical Instruments#3.15.2#Shunt Resistance#ex_3_15_2.sce#2195/CH3/EX3.15.2/ex_3_15_2.sce#S##73477 +3#Electromechanical Instruments#3.15.1.d#Error#ex_3_15_1_d.sce#2195/CH3/EX3.15.1.d/ex_3_15_1_d.sce#S##80307 +3#Electromechanical Instruments#3.15.1.c#Voltage#ex_3_15_1_c.sce#2195/CH3/EX3.15.1.c/ex_3_15_1_c.sce#S##80309 +3#Electromechanical Instruments#3.15.1.b#Voltage#ex_3_15_1_b.sce#2195/CH3/EX3.15.1.b/ex_3_15_1_b.sce#S##80308 +3#Electromechanical Instruments#3.15.1.a#Voltage#ex_3_15_1_a.sce#2195/CH3/EX3.15.1.a/ex_3_15_1_a.sce#S##80310 +3#Electromechanical Instruments#3.11.2#Accurate Value of Voltage#ex_3_11_2.sce#2195/CH3/EX3.11.2/ex_3_11_2.sce#S##77813 +3#Electromechanical Instruments#3.11.1#Multiplier#ex_3_11_1.sce#2195/CH3/EX3.11.1/ex_3_11_1.sce#S##73471 +3#Electromechanical Instruments#3.10.1#Multiplier#ex_3_10_1.sce#2195/CH3/EX3.10.1/ex_3_10_1.sce#S##73470 +2#Measurement Errors#2.8.5#Limiting Error#ex_2_8_5.sce#2195/CH2/EX2.8.5/ex_2_8_5.sce#S##73459 +2#Measurement Errors#2.8.4.c#Loading Effect#ex_2_8_4_c.sce#2195/CH2/EX2.8.4.c/ex_2_8_4_c.sce#S##80306 +2#Measurement Errors#2.8.4.b#Actual Resistance#ex_2_8_4_b.sce#2195/CH2/EX2.8.4.b/ex_2_8_4_b.sce#S##80305 +2#Measurement Errors#2.8.4.a#Apparent Resistance#ex_2_8_4_a.sce#2195/CH2/EX2.8.4.a/ex_2_8_4_a.sce#S##80304 +2#Measurement Errors#2.8.3#Mean Value and Standard deviation#ex_2_8_3.sce#2195/CH2/EX2.8.3/ex_2_8_3.sce#S##77811 +2#Measurement Errors#2.8.2#Arithmetic Mean and Standard Deviation#ex_2_8_2.sce#2195/CH2/EX2.8.2/ex_2_8_2.sce#S##73454 +2#Measurement Errors#2.8.1#Arithmetic mean and variance#ex_2_8_1.sce#2195/CH2/EX2.8.1/ex_2_8_1.sce#S##77810 +2#Measurement Errors#2.7.4.d#Probable Error#ex_2_7_4_d.sce#2195/CH2/EX2.7.4.d/ex_2_7_4_d.sce#S##73452 +2#Measurement Errors#2.7.4.c#Standard Deviation#ex_2_7_4_c.sce#2195/CH2/EX2.7.4.c/ex_2_7_4_c.sce#S##73451 +2#Measurement Errors#2.7.4.b#Average Deviation#ex_2_7_4_b.sce#2195/CH2/EX2.7.4.b/ex_2_7_4_b.sce#S##73450 +2#Measurement Errors#2.7.4.a#Arithmetic Mean#ex_2_7_4_a.sce#2195/CH2/EX2.7.4.a/ex_2_7_4_a.sce#S##73449 +2#Measurement Errors#2.7.3.d#Probable Error#ex_2_7_3_d.sce#2195/CH2/EX2.7.3.d/ex_2_7_3_d.sce#S##73448 +2#Measurement Errors#2.7.3.c#Standard Deviation#ex_2_7_3_c.sce#2195/CH2/EX2.7.3.c/ex_2_7_3_c.sce#S##73447 +2#Measurement Errors#2.7.3.b#Average Deviation#ex_2_7_3_b.sce#2195/CH2/EX2.7.3.b/ex_2_7_3_b.sce#S##73446 +2#Measurement Errors#2.7.3.a#Arithmetic Mean#ex_2_7_3_a.sce#2195/CH2/EX2.7.3.a/ex_2_7_3_a.sce#S##73445 +2#Measurement Errors#2.7.2.d#Probable Error#ex_2_7_2_d.sce#2195/CH2/EX2.7.2.d/ex_2_7_2_d.sce#S##73443 +2#Measurement Errors#2.7.2.c#Standard Deviation#ex_2_7_2_c.sce#2195/CH2/EX2.7.2.c/ex_2_7_2_c.sce#S##73442 +2#Measurement Errors#2.7.2.b#Deviation#ex_2_7_2_b.sce#2195/CH2/EX2.7.2.b/ex_2_7_2_b.sce#S##73441 +2#Measurement Errors#2.7.2.a#Arithmetic Mean#ex_2_7_2_a.sce#2195/CH2/EX2.7.2.a/ex_2_7_2_a.sce#S##73440 +2#Measurement Errors#2.7.1.d#Standard Deviation#ex_2_7_1_d.sce#2195/CH2/EX2.7.1.d/ex_2_7_1_d.sce#S##73439 +2#Measurement Errors#2.7.1.c#Algebric Sum of Deviation#ex_2_7_1_c.sce#2195/CH2/EX2.7.1.c/ex_2_7_1_c.sce#S##73438 +2#Measurement Errors#2.7.1.b#Deviation#ex_2_7_1_b.sce#2195/CH2/EX2.7.1.b/ex_2_7_1_b.sce#S##73437 +2#Measurement Errors#2.7.1.a#Arithmetic mean#ex_2_7_1_a.sce#2195/CH2/EX2.7.1.a/ex_2_7_1_a.sce#S##73436 +2#Measurement Errors#2.6.8#Limiting Error#ex_2_6_8.sce#2195/CH2/EX2.6.8/ex_2_6_8.sce#S##73435 +2#Measurement Errors#2.6.7#Limiting Error#ex_2_6_7.sce#2195/CH2/EX2.6.7/ex_2_6_7.sce#S##73434 +2#Measurement Errors#2.6.6#Error#ex_2_6_6.sce#2195/CH2/EX2.6.6/ex_2_6_6.sce#S##73433 +2#Measurement Errors#2.6.5#Magnitude and Limiting Error#ex_2_6_5.sce#2195/CH2/EX2.6.5/ex_2_6_5.sce#S##80303 +2#Measurement Errors#2.6.4#Limiting Error#ex_2_6_4.sce#2195/CH2/EX2.6.4/ex_2_6_4.sce#S##73431 +2#Measurement Errors#2.6.3#Limiting Error#ex_2_6_3.sce#2195/CH2/EX2.6.3/ex_2_6_3.sce#S##73430 +2#Measurement Errors#2.6.2#Limiting Error and Relative Error#ex_2_6_2.sce#2195/CH2/EX2.6.2/ex_2_6_2.sce#S##77809 +2#Measurement Errors#2.6.1#Relative Error#ex_2_6_1.sce#2195/CH2/EX2.6.1/ex_2_6_1.sce#S##73428 +2#Measurement Errors#2.3.6#Resolution#ex_2_3_6.sce#2195/CH2/EX2.3.6/ex_2_3_6.sce#S##73427 +2#Measurement Errors#2.3.5#Resolution#ex_2_3_5.sce#2195/CH2/EX2.3.5/ex_2_3_5.sce#S##73426 +2#Measurement Errors#2.3.4#Sesitivity and Deflection Factor#ex_2_3_4.sce#2195/CH2/EX2.3.4/ex_2_3_4.sce#S##80302 +2#Measurement Errors#2.3.3#Maximum Error#ex_2_3_3.sce#2195/CH2/EX2.3.3/ex_2_3_3.sce#S##73424 +2#Measurement Errors#2.3.2.e#Percentage error of full scale reading#ex_2_3_2_e.sce#2195/CH2/EX2.3.2.e/ex_2_3_2_e.sce#S##73423 +2#Measurement Errors#2.3.2.d#Percentage Accuracy#ex_2_3_2_d.sce#2195/CH2/EX2.3.2.d/ex_2_3_2_d.sce#S##73422 +2#Measurement Errors#2.3.2.c#Relative Accuracy#ex_2_3_2_c.sce#2195/CH2/EX2.3.2.c/ex_2_3_2_c.sce#S##73421 +2#Measurement Errors#2.3.2.b#Percentage Error#ex_2_3_2_b.sce#2195/CH2/EX2.3.2.b/ex_2_3_2_b.sce#S##73420 +2#Measurement Errors#2.3.2.a#Absolute Error#ex_2_3_2_a.sce#2195/CH2/EX2.3.2.a/ex_2_3_2_a.sce#S##73419 +2#Measurement Errors#2.3.1#Precision of the 5th measurement#ex_2_3_1.sce#2195/CH2/EX2.3.1/ex_2_3_1.sce#S##73418 diff --git a/latex/tmp_2198_data.txt b/latex/tmp_2198_data.txt index e69de29bb..29b7ee0c0 100755 --- a/latex/tmp_2198_data.txt +++ b/latex/tmp_2198_data.txt @@ -0,0 +1,86 @@ +5#Metal Semiconductor Field Effect Transistors#5.6.1#Determine the current#Ex5_6_1.sce#2198/CH5/EX5.6.1/Ex5_6_1.sce#S##78812 +2#Junctions and Interfaces#2.9.9#Voltage across diode#Ex2_9_9.sce#2198/CH2/EX2.9.9/Ex2_9_9.sce#S##74056 +2#Junctions and Interfaces#2.9.8#Voltage across diode#Ex2_9_8.sce#2198/CH2/EX2.9.8/Ex2_9_8.sce#S##74055 +2#Junctions and Interfaces#2.9.7#Calculate Vin#Ex2_9_7.sce#2198/CH2/EX2.9.7/Ex2_9_7.sce#S##74054 +2#Junctions and Interfaces#2.9.6#Calculate the source current#Ex2_9_6.sce#2198/CH2/EX2.9.6/Ex2_9_6.sce#S##74053 +2#Junctions and Interfaces#2.9.5#Voltage across the diode#Ex2_9_5.sce#2198/CH2/EX2.9.5/Ex2_9_5.sce#S##74052 +2#Junctions and Interfaces#2.9.4#Value of Io and Eta#Ex2_9_4.sce#2198/CH2/EX2.9.4/Ex2_9_4.sce#S##78811 +2#Junctions and Interfaces#2.9.3#Determine forward current#Ex2_9_3.sce#2198/CH2/EX2.9.3/Ex2_9_3.sce#S##74050 +2#Junctions and Interfaces#2.9.2#Reverse saturation current#Ex2_9_2.sce#2198/CH2/EX2.9.2/Ex2_9_2.sce#S##74049 +2#Junctions and Interfaces#2.9.1#Reverse saturation current#Ex2_9_1.sce#2198/CH2/EX2.9.1/Ex2_9_1.sce#S##74048 +2#Junctions and Interfaces#2.7.4#Ratio of Current#Ex2_7_4.sce#2198/CH2/EX2.7.4/Ex2_7_4.sce#S##74047 +2#Junctions and Interfaces#2.7.3#Ratioo of Current#Ex2_7_3.sce#2198/CH2/EX2.7.3/Ex2_7_3.sce#S##74046 +2#Junctions and Interfaces#2.7.2#Alternating and total voltage#Ex2_7_2.sce#2198/CH2/EX2.7.2/Ex2_7_2.sce#S##78210 +2#Junctions and Interfaces#2.7.1#Diode voltage and current#Ex2_7_1.sce#2198/CH2/EX2.7.1/Ex2_7_1.sce#S##78209 +2#Junctions and Interfaces#2.6.4#Height of Potential barrier#Ex2_6_4.sce#2198/CH2/EX2.6.4/Ex2_6_4.sce#S##78948 +2#Junctions and Interfaces#2.6.3#Height of Potential Barrier#Ex2_6_3.sce#2198/CH2/EX2.6.3/Ex2_6_3.sce#S##78947 +2#Junctions and Interfaces#2.6.2#Contact Potential#Ex2_6_2.sce#2198/CH2/EX2.6.2/Ex2_6_2.sce#S##74043 +2#Junctions and Interfaces#2.6.1#Junction Potential#Ex2_6_1.sce#2198/CH2/EX2.6.1/Ex2_6_1.sce#S##74042 +2#Junctions and Interfaces#2.12.8#Current in the circuit#Ex2_12_8.sce#2198/CH2/EX2.12.8/Ex2_12_8.sce#S##78773 +2#Junctions and Interfaces#2.12.7#Find diode current#Ex2_12_7.sce#2198/CH2/EX2.12.7/Ex2_12_7.sce#S##78772 +2#Junctions and Interfaces#2.12.6#Reverse voltage and current ratio#Ex2_12_6.sce#2198/CH2/EX2.12.6/Ex2_12_6.sce#S##74067 +2#Junctions and Interfaces#2.12.5#Calculate Diameter#Ex2_12_5.sce#2198/CH2/EX2.12.5/Ex2_12_5.sce#S##78946 +2#Junctions and Interfaces#2.12.4#Barrier Capacitance of Ge#Ex2_12_4.sce#2198/CH2/EX2.12.4/Ex2_12_4.sce#S##78945 +2#Junctions and Interfaces#2.12.3#Space charge capacitance#Ex2_12_3.sce#2198/CH2/EX2.12.3/Ex2_12_3.sce#S##78944 +2#Junctions and Interfaces#2.12.2#Transition Capacitance#Ex2_12_2.sce#2198/CH2/EX2.12.2/Ex2_12_2.sce#S##78943 +2#Junctions and Interfaces#2.12.1#New value of depletion region width#Ex2_12_1.sce#2198/CH2/EX2.12.1/Ex2_12_1.sce#S##78767 +2#Junctions and Interfaces#2.11.4#Parameters for diode#Ex2_11_4.sce#2198/CH2/EX2.11.4/Ex2_11_4.sce#S##74061 +2#Junctions and Interfaces#2.11.3#Percent change in diode current#Ex2_11_3.sce#2198/CH2/EX2.11.3/Ex2_11_3.sce#S##74060 +2#Junctions and Interfaces#2.11.2#Current multiplication factor#Ex2_11_2.sce#2198/CH2/EX2.11.2/Ex2_11_2.sce#S##74059 +2#Junctions and Interfaces#2.11.1#Reverse saturation current#Ex2_11_1.sce#2198/CH2/EX2.11.1/Ex2_11_1.sce#S##74058 +2#Junctions and Interfaces#2.10.2#Temperature of junction#Ex2_10_2.sce#2198/CH2/EX2.10.2/Ex2_10_2.sce#S##78766 +1#Review of Fundamentals of Semiconductor#1.9.2#Electron Moility#Ex1_9_2.sce#2198/CH1/EX1.9.2/Ex1_9_2.sce#S##73988 +1#Review of Fundamentals of Semiconductor#1.9.1#Concentration and drift velocity#Ex1_9_1.sce#2198/CH1/EX1.9.1/Ex1_9_1.sce#S##78950 +1#Review of Fundamentals of Semiconductor#1.5.1#Value of forbidden gap#Ex1_5_1.sce#2198/CH1/EX1.5.1/Ex1_5_1.sce#S##78762 +1#Review of Fundamentals of Semiconductor#1.40.9#Electron and hole concentration#Ex1_40_9.sce#2198/CH1/EX1.40.9/Ex1_40_9.sce#S##74025 +1#Review of Fundamentals of Semiconductor#1.40.8#Resistivity of intrinsic Ge#Ex1_40_8.sce#2198/CH1/EX1.40.8/Ex1_40_8.sce#S##78952 +1#Review of Fundamentals of Semiconductor#1.40.7#Electron transit time and photo conductor gain#Ex1_40_7.sce#2198/CH1/EX1.40.7/Ex1_40_7.sce#S##74023 +1#Review of Fundamentals of Semiconductor#1.40.6#Concentration of holes and electrons#Ex1_40_6.sce#2198/CH1/EX1.40.6/Ex1_40_6.sce#S##78951 +1#Review of Fundamentals of Semiconductor#1.40.5#Diffusion length and diffusion current density#Ex1_40_5.sce#2198/CH1/EX1.40.5/Ex1_40_5.sce#S##74021 +1#Review of Fundamentals of Semiconductor#1.40.4#Find diffusion coefficients#Ex1_40_4.sce#2198/CH1/EX1.40.4/Ex1_40_4.sce#S##74020 +1#Review of Fundamentals of Semiconductor#1.40.3#Fermi level Ef#Ex1_40_3.sce#2198/CH1/EX1.40.3/Ex1_40_3.sce#S##74019 +1#Review of Fundamentals of Semiconductor#1.40.25#Hole Current#Ex1_40_25.sce#2198/CH1/EX1.40.25/Ex1_40_25.sce#S##78807 +1#Review of Fundamentals of Semiconductor#1.40.24#Hole current and charge stored#Ex1_40_24.sce#2198/CH1/EX1.40.24/Ex1_40_24.sce#S##78806 +1#Review of Fundamentals of Semiconductor#1.40.23#Rate of thermal energy and photons#Ex1_40_23.sce#2198/CH1/EX1.40.23/Ex1_40_23.sce#S##78805 +1#Review of Fundamentals of Semiconductor#1.40.22#Band gap of the material#Ex1_40_22.sce#2198/CH1/EX1.40.22/Ex1_40_22.sce#S##74038 +1#Review of Fundamentals of Semiconductor#1.40.21#Collector current density#Ex1_40_21.sce#2198/CH1/EX1.40.21/Ex1_40_21.sce#S##78804 +1#Review of Fundamentals of Semiconductor#1.40.20#Majority Carrier Density#Ex1_40_20.sce#2198/CH1/EX1.40.20/Ex1_40_20.sce#S##74036 +1#Review of Fundamentals of Semiconductor#1.40.19#Depletion width on p side#Ex1_40_19.sce#2198/CH1/EX1.40.19/Ex1_40_19.sce#S##74035 +1#Review of Fundamentals of Semiconductor#1.40.18#Resistance of the bar#Ex1_40_18.sce#2198/CH1/EX1.40.18/Ex1_40_18.sce#S##78803 +1#Review of Fundamentals of Semiconductor#1.40.17#Current density in the Si#Ex1_40_17.sce#2198/CH1/EX1.40.17/Ex1_40_17.sce#S##78802 +1#Review of Fundamentals of Semiconductor#1.40.16#Energy Band gap#Ex1_40_16.sce#2198/CH1/EX1.40.16/Ex1_40_16.sce#S##74032 +1#Review of Fundamentals of Semiconductor#1.40.15#Hole and electron diffusion current#Ex1_40_15.sce#2198/CH1/EX1.40.15/Ex1_40_15.sce#S##78949 +1#Review of Fundamentals of Semiconductor#1.40.14#Mobility of minority charge carrier#Ex1_40_14.sce#2198/CH1/EX1.40.14/Ex1_40_14.sce#S##74030 +1#Review of Fundamentals of Semiconductor#1.40.13#Generation rate due to irradiation#Ex1_40_13.sce#2198/CH1/EX1.40.13/Ex1_40_13.sce#S##74029 +1#Review of Fundamentals of Semiconductor#1.40.12#Carrier Concentration#Ex1_40_12.sce#2198/CH1/EX1.40.12/Ex1_40_12.sce#S##74028 +1#Review of Fundamentals of Semiconductor#1.40.11#Equillibrium electron and hole density#Ex1_40_11.sce#2198/CH1/EX1.40.11/Ex1_40_11.sce#S##74027 +1#Review of Fundamentals of Semiconductor#1.40.10#Ratio of donor atom to Si atom#Ex1_40_10.sce#2198/CH1/EX1.40.10/Ex1_40_10.sce#S##78800 +1#Review of Fundamentals of Semiconductor#1.40.1#Hole concentration at equillibrium#Ex1_40_1.sce#2198/CH1/EX1.40.1/Ex1_40_1.sce#S##74018 +1#Review of Fundamentals of Semiconductor#1.16.8#Find conductivity of Ge#Ex1_16_8.sce#2198/CH1/EX1.16.8/Ex1_16_8.sce#S##78799 +1#Review of Fundamentals of Semiconductor#1.16.7#Total Current Density#Ex1_16_7.sce#2198/CH1/EX1.16.7/Ex1_16_7.sce#S##78798 +1#Review of Fundamentals of Semiconductor#1.16.6#Find Concentration gradient#Ex1_16_6.sce#2198/CH1/EX1.16.6/Ex1_16_6.sce#S##78797 +1#Review of Fundamentals of Semiconductor#1.16.5#Find out current#Ex1_16_5.sce#2198/CH1/EX1.16.5/Ex1_16_5.sce#S##78795 +1#Review of Fundamentals of Semiconductor#1.16.4#Concentration and current#Ex1_16_4.sce#2198/CH1/EX1.16.4/Ex1_16_4.sce#S##78794 +1#Review of Fundamentals of Semiconductor#1.16.3#Minority Carrier Density#Ex1_16_3.sce#2198/CH1/EX1.16.3/Ex1_16_3.sce#S##74012 +1#Review of Fundamentals of Semiconductor#1.16.2#Resistivity of intrinsic Ge#Ex1_16_2.sce#2198/CH1/EX1.16.2/Ex1_16_2.sce#S##78793 +1#Review of Fundamentals of Semiconductor#1.16.1#Concentration and drift velocity#Ex1_16_1.sce#2198/CH1/EX1.16.1/Ex1_16_1.sce#S##78792 +1#Review of Fundamentals of Semiconductor#1.15.2#Mobility of holes#Ex1_15_2.sce#2198/CH1/EX1.15.2/Ex1_15_2.sce#S##74009 +1#Review of Fundamentals of Semiconductor#1.15.1#Hall Voltage#Ex1_15_1.sce#2198/CH1/EX1.15.1/Ex1_15_1.sce#S##78791 +1#Review of Fundamentals of Semiconductor#1.13.4#Electron Mobility#Ex1_13_4.sce#2198/CH1/EX1.13.4/Ex1_13_4.sce#S##74007 +1#Review of Fundamentals of Semiconductor#1.13.3#Total Current density#Ex1_13_3.sce#2198/CH1/EX1.13.3/Ex1_13_3.sce#S##78790 +1#Review of Fundamentals of Semiconductor#1.13.2#Applied electric field#Ex1_13_2.sce#2198/CH1/EX1.13.2/Ex1_13_2.sce#S##78789 +1#Review of Fundamentals of Semiconductor#1.13.1#Total Current Density#Ex1_13_1.sce#2198/CH1/EX1.13.1/Ex1_13_1.sce#S##78788 +1#Review of Fundamentals of Semiconductor#1.12.2#Free electrons#Ex1_12_2.sce#2198/CH1/EX1.12.2/Ex1_12_2.sce#S##74003 +1#Review of Fundamentals of Semiconductor#1.12.1#Thermal equillibrium concentrations#Ex1_12_1.sce#2198/CH1/EX1.12.1/Ex1_12_1.sce#S##74002 +1#Review of Fundamentals of Semiconductor#1.11.9#Ratio of donor atom to Si atom#Ex1_11_9.sce#2198/CH1/EX1.11.9/Ex1_11_9.sce#S##78785 +1#Review of Fundamentals of Semiconductor#1.11.8#Resistivity of intrinsic Si#Ex1_11_8.sce#2198/CH1/EX1.11.8/Ex1_11_8.sce#S##78784 +1#Review of Fundamentals of Semiconductor#1.11.7#Resistivity of intrinsic Si#Ex1_11_7.sce#2198/CH1/EX1.11.7/Ex1_11_7.sce#S##78783 +1#Review of Fundamentals of Semiconductor#1.11.6#Length of the bar#Ex1_11_6.sce#2198/CH1/EX1.11.6/Ex1_11_6.sce#S##78782 +1#Review of Fundamentals of Semiconductor#1.11.5#Majority Carrier density#Ex1_11_5.sce#2198/CH1/EX1.11.5/Ex1_11_5.sce#S##78781 +1#Review of Fundamentals of Semiconductor#1.11.4#Intrinsic Concentration#Ex1_11_4.sce#2198/CH1/EX1.11.4/Ex1_11_4.sce#S##78780 +1#Review of Fundamentals of Semiconductor#1.11.3#Current Mobility Velocity Conductivity#Ex1_11_3.sce#2198/CH1/EX1.11.3/Ex1_11_3.sce#S##78779 +1#Review of Fundamentals of Semiconductor#1.11.2#Intrinsic Carrier Concentration#Ex1_11_2.sce#2198/CH1/EX1.11.2/Ex1_11_2.sce#S##78778 +1#Review of Fundamentals of Semiconductor#1.11.11#Concentration and Cnductivity#Ex1_11_11.sce#2198/CH1/EX1.11.11/Ex1_11_11.sce#S##78787 +1#Review of Fundamentals of Semiconductor#1.11.10#Resistivity of Ge#Ex1_11_10.sce#2198/CH1/EX1.11.10/Ex1_11_10.sce#S##78786 +1#Review of Fundamentals of Semiconductor#1.11.1#Conductivity and Resistivity#Ex1_11_1.sce#2198/CH1/EX1.11.1/Ex1_11_1.sce#S##78777 +1#Review of Fundamentals of Semiconductor#1.10.1#Concentration and drift velocity#Ex1_10_1.sce#2198/CH1/EX1.10.1/Ex1_10_1.sce#S##78953 diff --git a/latex/tmp_2207_contributor.txt b/latex/tmp_2207_contributor.txt index 12f54fc98..9fc14253d 100755 --- a/latex/tmp_2207_contributor.txt +++ b/latex/tmp_2207_contributor.txt @@ -1 +1 @@ -Lalit Kumar Saini#B.TECH#Electronics Engineering#UTTARAKHAND TECHNICAL UNIVERSITY DEHRADUN#Arshad Khan#KVP Pradeep +Lalit Kumar Saini#B.TECH#Electronics Engineering#Uttrakhand Technical Univeristy#Arshad Khan#KVP Pradeep diff --git a/latex/tmp_2213_contributor.txt b/latex/tmp_2213_contributor.txt index 564118dca..9ea36a53e 100755 --- a/latex/tmp_2213_contributor.txt +++ b/latex/tmp_2213_contributor.txt @@ -1 +1 @@ -Nitin Kumar#B.TECH#Electronics Engineering#UTTARAKHAND TECHNICAL UNIVERSITY DEHRADUN#Arshad Khan#K. V. P. Pradeep +Nitin Kumar#B.TECH#Electronics Engineering#Uttrakhand Technical Univeristy#Arshad Khan#K. V. P. Pradeep diff --git a/latex/tmp_2216_contributor.txt b/latex/tmp_2216_contributor.txt index 3d66aae43..89372d119 100755 --- a/latex/tmp_2216_contributor.txt +++ b/latex/tmp_2216_contributor.txt @@ -1 +1 @@ -Shubham Arya#B.TECH#Electronics Engineering#UTTARAKHAND TECHNICAL UNIVERSITY DEHRADUN#Rizwan#KVP Pradeep +Shubham Arya#B.TECH#Electronics Engineering#Uttrakhand Technical Univeristy#Rizwan#KVP Pradeep diff --git a/latex/tmp_2219_book.txt b/latex/tmp_2219_book.txt index 0c4e7ad8e..b818aacf5 100755 --- a/latex/tmp_2219_book.txt +++ b/latex/tmp_2219_book.txt @@ -1 +1 @@ -Microwaves and Radar Principles and Applications# A. K. Maini#81-7409-129-7#Khanna Publishers, New Delhi#3#2004 +Microwaves and Radar Principles and Applications#A. K. Maini#81-7409-129-7#Khanna Publishers, New Delhi#3#2004 diff --git a/latex/tmp_2219_contributor.txt b/latex/tmp_2219_contributor.txt index 0dff5df0d..cb0e740c5 100755 --- a/latex/tmp_2219_contributor.txt +++ b/latex/tmp_2219_contributor.txt @@ -1 +1 @@ -Pasupulati Guruarun#B.Tech#Electrical Engineering#SASTRA UNIVERSITY#Prof. K. Narasimhan #Chaitanya Potti +Pasupulati Guruarun#B.Tech#Electrical Engineering#Sastra University#Prof. K. Narasimhan #Chaitanya Potti diff --git a/latex/tmp_2223_contributor.txt b/latex/tmp_2223_contributor.txt index 20de75132..aa035a7c1 100755 --- a/latex/tmp_2223_contributor.txt +++ b/latex/tmp_2223_contributor.txt @@ -1 +1 @@ -Ankur Garg#M.TECH.#Mechanical Engineering#NATIONAL INSTITUTE OF TECHNOLOGY, TIRUCHIRAPPALLI#Dr. M. Udayakumar#Bhavani Jalkrish +Ankur Garg#M.TECH.#Mechanical Engineering#National Institute of Technology, Tiruchirappalli#Dr. M. Udayakumar#Bhavani Jalkrish diff --git a/latex/tmp_226_data.txt b/latex/tmp_226_data.txt index b8bfcca2a..cc08b4326 100755 --- a/latex/tmp_226_data.txt +++ b/latex/tmp_226_data.txt @@ -66,12 +66,12 @@ 16#Signal generators#16.8#calculate t1 t2 and pulse frequency#example8_sce.sce#226/CH16/EX16.8/example8_sce.sce#S##13371 16#Signal generators#16.7#square wave generator#example7_sce.sce#226/CH16/EX16.7/example7_sce.sce#S##13370 16#Signal generators#16.6#amplitude stabilization circuit#example6_sce.sce#226/CH16/EX16.6/example6_sce.sce#S##13369 -16#Signal generators#16.5#phase shift oscillator#example5_sce.sce#226/CH16/EX16.5/example5_sce.sce#S##13368 +16#Signal generators#16.5#design a phase shift oscillator#example5_sce.sce#226/CH16/EX16.5/example5_sce.sce#S##13368 16#Signal generators#16.4#wein bridge oscillator#example4_sce.sce#226/CH16/EX16.4/example4_sce.sce#S##13367 16#Signal generators#16.3#hartley oscillator#example3_sce.sce#226/CH16/EX16.3/example3_sce.sce#S##13366 16#Signal generators#16.2#colpitts oscillator#example2_sce.sce#226/CH16/EX16.2/example2_sce.sce#S##13365 16#Signal generators#16.12#pierce oscillator and peak power dissipated#example12_sce.sce#226/CH16/EX16.12/example12_sce.sce#S##13374 -16#Signal generators#16.11#wein bridge oscillator#example11_sce.sce#226/CH16/EX16.11/example11_sce.sce#S##13373 +16#Signal generators#16.11#design a wein bridge oscillator#example11_sce.sce#226/CH16/EX16.11/example11_sce.sce#S##13373 16#Signal generators#16.10#triangular wave generator#example10_sce.sce#226/CH16/EX16.10/example10_sce.sce#S##13372 16#Signal generators#16.1#phase shift oscillator#example1_sce.sce#226/CH16/EX16.1/example1_sce.sce#S##13364 15#Operational amplifier frequency Response and compensation#15.8#load capacitance#example8_sce.sce#226/CH15/EX15.8/example8_sce.sce#S##13363 @@ -80,22 +80,22 @@ 15#Operational amplifier frequency Response and compensation#15.5#cutoff frequencies using gain bandwidth#example5_sce.sce#226/CH15/EX15.5/example5_sce.sce#S##13360 15#Operational amplifier frequency Response and compensation#15.3#miller effect capacitor#example3_sce.sce#226/CH15/EX15.3/example3_sce.sce#S##13358 15#Operational amplifier frequency Response and compensation#15.2#determine suitable component#example2_sce.sce#226/CH15/EX15.2/example2_sce.sce#S##13357 -14#Ic operational Amplifier and basic Op amp circuits#14.9#design three input summing amplifier#example9_sce.sce#226/CH14/EX14.9/example9_sce.sce#S##13242 -14#Ic operational Amplifier and basic Op amp circuits#14.8#direct coupled inverting amplifier#example8_sce.sce#226/CH14/EX14.8/example8_sce.sce#S##13241 -14#Ic operational Amplifier and basic Op amp circuits#14.7#voltage gain and lower cutoff frequency#example7_sce.sce#226/CH14/EX14.7/example7_sce.sce#S##13240 -14#Ic operational Amplifier and basic Op amp circuits#14.6#typical input and output impedances for non inverting#example6_sce.sce#226/CH14/EX14.6/example6_sce.sce#S##13239 -14#Ic operational Amplifier and basic Op amp circuits#14.5#direct coupled non inverting amplifier#example5_sce.sce#226/CH14/EX14.5/example5_sce.sce#S##13238 -14#Ic operational Amplifier and basic Op amp circuits#14.4#capacitor coupled voltage follower usin 741 op amp#example4_sce.sce#226/CH14/EX14.4/example4_sce.sce#S##13237 -14#Ic operational Amplifier and basic Op amp circuits#14.3#typical difference between input and out voltage and Zin and Zout#example3_sce.sce#226/CH14/EX14.3/example3_sce.sce#S##13236 -14#Ic operational Amplifier and basic Op amp circuits#14.2#suitable resistor for BIFET op amp is used#example2_sce.sce#226/CH14/EX14.2/example2_sce.sce#S##13235 -14#Ic operational Amplifier and basic Op amp circuits#14.14#upper and lower trigger for non inverting schmitt trigger#example14_sce.sce#226/CH14/EX14.14/example14_sce.sce#S##13247 -14#Ic operational Amplifier and basic Op amp circuits#14.13#calculate resistor for schmitt trigger circuit#example13_sce.sce#226/CH14/EX14.13/example13_sce.sce#S##13246 -14#Ic operational Amplifier and basic Op amp circuits#14.12#typical output voltage swingand calculate rise time#example12_sce.sce#226/CH14/EX14.12/example12_sce.sce#S##13245 -14#Ic operational Amplifier and basic Op amp circuits#14.11#overall voltage gain for instrumentation amplifier#example11_sce.sce#226/CH14/EX14.11/example11_sce.sce#S##13244 -14#Ic operational Amplifier and basic Op amp circuits#14.10#suitable resistor for 741 op amp#example10_sce.sce#226/CH14/EX14.10/example10_sce.sce#S##13243 -14#Ic operational Amplifier and basic Op amp circuits#14.1#calculate maximum resistance#example1_sce.sce#226/CH14/EX14.1/example1_sce.sce#S##13234 +14#IC operational Amplifier and basic Op amp circuits#14.9#design three input summing amplifier#example9_sce.sce#226/CH14/EX14.9/example9_sce.sce#S##13242 +14#IC operational Amplifier and basic Op amp circuits#14.8#direct coupled inverting amplifier#example8_sce.sce#226/CH14/EX14.8/example8_sce.sce#S##13241 +14#IC operational Amplifier and basic Op amp circuits#14.7#voltage gain and lower cutoff frequency#example7_sce.sce#226/CH14/EX14.7/example7_sce.sce#S##13240 +14#IC operational Amplifier and basic Op amp circuits#14.6#typical input and output impedances for non inverting#example6_sce.sce#226/CH14/EX14.6/example6_sce.sce#S##13239 +14#IC operational Amplifier and basic Op amp circuits#14.5#direct coupled non inverting amplifier#example5_sce.sce#226/CH14/EX14.5/example5_sce.sce#S##13238 +14#IC operational Amplifier and basic Op amp circuits#14.4#capacitor coupled voltage follower usin 741 op amp#example4_sce.sce#226/CH14/EX14.4/example4_sce.sce#S##13237 +14#IC operational Amplifier and basic Op amp circuits#14.3#typical difference between input and out voltage and Zin and Zout#example3_sce.sce#226/CH14/EX14.3/example3_sce.sce#S##13236 +14#IC operational Amplifier and basic Op amp circuits#14.2#suitable resistor for BIFET op amp is used#example2_sce.sce#226/CH14/EX14.2/example2_sce.sce#S##13235 +14#IC operational Amplifier and basic Op amp circuits#14.14#upper and lower trigger for non inverting schmitt trigger#example14_sce.sce#226/CH14/EX14.14/example14_sce.sce#S##13247 +14#IC operational Amplifier and basic Op amp circuits#14.13#calculate resistor for schmitt trigger circuit#example13_sce.sce#226/CH14/EX14.13/example13_sce.sce#S##13246 +14#IC operational Amplifier and basic Op amp circuits#14.12#typical output voltage swingand calculate rise time#example12_sce.sce#226/CH14/EX14.12/example12_sce.sce#S##13245 +14#IC operational Amplifier and basic Op amp circuits#14.11#overall voltage gain for instrumentation amplifier#example11_sce.sce#226/CH14/EX14.11/example11_sce.sce#S##13244 +14#IC operational Amplifier and basic Op amp circuits#14.10#suitable resistor for 741 op amp#example10_sce.sce#226/CH14/EX14.10/example10_sce.sce#S##13243 +14#IC operational Amplifier and basic Op amp circuits#14.1#calculate maximum resistance#example1_sce.sce#226/CH14/EX14.1/example1_sce.sce#S##13234 13#Amplifier with negative feedback#13.9#calculate output impedance for circuit modification#example9_sce.sce#226/CH13/EX13.9/example9_sce.sce#S##13227 -13#Amplifier with negative feedback#13.8#calculate Acl Zin and Zout#example8_sce.sce#226/CH13/EX13.8/example8_sce.sce#S##13226 +13#Amplifier with negative feedback#13.8#calculate Acm, Zin and Zout#example8_sce.sce#226/CH13/EX13.8/example8_sce.sce#S##13226 13#Amplifier with negative feedback#13.7#calculate resistor value#example7_sce.sce#226/CH13/EX13.7/example7_sce.sce#S##13225 13#Amplifier with negative feedback#13.6#modify direct coupled amplifier to use as series voltage negative feedback#example6_sce.sce#226/CH13/EX13.6/example6_sce.sce#S##13224 13#Amplifier with negative feedback#13.5#two stage coupled BJT use as voltage feedback#example5_sce.sce#226/CH13/EX13.5/example5_sce.sce#S##13223 @@ -106,21 +106,21 @@ 13#Amplifier with negative feedback#13.14#determine current gain and input impedance#example14_sce.sce#226/CH13/EX13.14/example14_sce.sce#S##13232 13#Amplifier with negative feedback#13.13#suitable capacitor for two stage circuit#example13_sce.sce#226/CH13/EX13.13/example13_sce.sce#S##13231 13#Amplifier with negative feedback#13.12#suitable emitter resistor value#example12_sce.sce#226/CH13/EX13.12/example12_sce.sce#S##13230 -13#Amplifier with negative feedback#13.11#modify Ce amplifier to use emitter current feedback to give Av 70#example11_sce.sce#226/CH13/EX13.11/example11_sce.sce#S##13229 +13#Amplifier with negative feedback#13.11#modify CE amplifier to use emitter current feedback to give Av 70#example11_sce.sce#226/CH13/EX13.11/example11_sce.sce#S##13229 13#Amplifier with negative feedback#13.10#calculate precise value of circuit voltage gain#example10_sce.sce#226/CH13/EX13.10/example10_sce.sce#S##13228 13#Amplifier with negative feedback#13.1#closed loop gain for negative feedback amplifier#example1_sce.sce#226/CH13/EX13.1/example1_sce.sce#S##13219 12#Small signal Amplifiers#12.9#capacitor for two stage direct coupled amplifier#example9_sce.sce#226/CH12/EX12.9/example9_sce.sce#S##13203 -12#Small signal Amplifiers#12.8#resistor for two stage direct coupled amplifier#example8_sce.sce#226/CH12/EX12.8/example8_sce.sce#S##13202 -12#Small signal Amplifiers#12.7#analyze two stage amplifier#example7_sce.sce#226/CH12/EX12.7/example7_sce.sce#S##13201 -12#Small signal Amplifiers#12.5#suitable resistor for common source amplifier#example5_sce.sce#226/CH12/EX12.5/example5_sce.sce#S##13200 -12#Small signal Amplifiers#12.4#suitable resistor for common source circuit#example5_sce.sce#226/CH12/EX12.4/example5_sce.sce#S##13199 -12#Small signal Amplifiers#12.3#suitable capacitor for CE#example3_sce.sce#226/CH12/EX12.3/example3_sce.sce#S##13198 -12#Small signal Amplifiers#12.24#capacitor to resonate secondry and overall voltage gain#example24_sce.sce#226/CH12/EX12.24/example24_sce.sce#S##13218 -12#Small signal Amplifiers#12.23#resonance frequency voltage gainbandwidth of amplifier#example23_sce.sce#226/CH12/EX12.23/example23_sce.sce#S##13217 -12#Small signal Amplifiers#12.22#resonance frequency voltage gainbandwidth of amplifier#example22_sce.sce#226/CH12/EX12.22/example22_sce.sce#S##13216 +12#Small signal Amplifiers#12.8#Analysis of direct coupled two stage amplifier#example8_sce.sce#226/CH12/EX12.8/example8_sce.sce#S##13202 +12#Small signal Amplifiers#12.7#Analysis of two stage amplifier#example7_sce.sce#226/CH12/EX12.7/example7_sce.sce#S##13201 +12#Small signal Amplifiers#12.5#Suitable resistor for common source amplifier#example5_sce.sce#226/CH12/EX12.5/example5_sce.sce#S##13200 +12#Small signal Amplifiers#12.4#Suitable resistor for common source circuit#example5_sce.sce#226/CH12/EX12.4/example5_sce.sce#S##13199 +12#Small signal Amplifiers#12.3#Suitable capacitor for CE amplifier circuit#example3_sce.sce#226/CH12/EX12.3/example3_sce.sce#S##13198 +12#Small signal Amplifiers#12.24#capacitor required to resonate the secondary and overall voltage gain#example24_sce.sce#226/CH12/EX12.24/example24_sce.sce#S##13218 +12#Small signal Amplifiers#12.23#Determination of resonance frequency, voltage gain, bandwidth of amplifier#example23_sce.sce#226/CH12/EX12.23/example23_sce.sce#S##13217 +12#Small signal Amplifiers#12.22#resonance frequency, voltage gain, bandwidth of amplifier#example22_sce.sce#226/CH12/EX12.22/example22_sce.sce#S##13216 12#Small signal Amplifiers#12.21#suitable capacitor for cascode circuit#example21_sce.sce#226/CH12/EX12.21/example21_sce.sce#S##13215 12#Small signal Amplifiers#12.20#suitable resistor for cascode amplifier#example20_sce.sce#226/CH12/EX12.20/example20_sce.sce#S##13214 -12#Small signal Amplifiers#12.2#suitable resistor for common emitter amplifier#example2_sce.sce#226/CH12/EX12.2/example2_sce.sce#S##13197 +12#Small signal Amplifiers#12.2#Suitable resistor values for common emitter amplifier#example2_sce.sce#226/CH12/EX12.2/example2_sce.sce#S##13197 12#Small signal Amplifiers#12.19#suitable capacitor value for amplifier and voltage gain#example19_sce.sce#226/CH12/EX12.19/example19_sce.sce#S##13213 12#Small signal Amplifiers#12.18#suitable resistor for differential amplifier#example18_sce.sce#226/CH12/EX12.18/example18_sce.sce#S##13212 12#Small signal Amplifiers#12.17#determine minimum overall voltage gain#example17_sce.sce#226/CH12/EX12.17/example17_sce.sce#S##13211 @@ -128,123 +128,123 @@ 12#Small signal Amplifiers#12.15#suitable resistor for BIBET amplifier#example15_sce.sce#226/CH12/EX12.15/example15_sce.sce#S##13209 12#Small signal Amplifiers#12.14#Dc feedback pair with an emitter follower output#example14_sce.sce#226/CH12/EX12.14/example14_sce.sce#S##13208 12#Small signal Amplifiers#12.13#analyze two stage amplifier and determine minimum voltage gain#example13_sce.sce#226/CH12/EX12.13/example13_sce.sce#S##13207 -12#Small signal Amplifiers#12.12#suitable capacitor for circuit#example12_sce.sce#226/CH12/EX12.12/example12_sce.sce#S##13206 -12#Small signal Amplifiers#12.11#resistor for two stage amplifier#example11_sce.sce#226/CH12/EX12.11/example11_sce.sce#S##13205 -12#Small signal Amplifiers#12.10#minimum overall voltage gain#example10_sce.sce#226/CH12/EX12.10/example10_sce.sce#S##13204 -12#Small signal Amplifiers#12.1#required capacitance and voltage gain at different frequency#example1_sce.sce#226/CH12/EX12.1/example1_sce.sce#S##13196 -11#Ac analysis of FEt circuits#11.7#input capacitance limited cutoff frequency#example7_sce.sce#226/CH11/EX11.7/example7_sce.sce#S##13195 -11#Ac analysis of FEt circuits#11.6#output voltage#example6_sce.sce#226/CH11/EX11.6/example6_sce.sce#S##13194 -11#Ac analysis of FEt circuits#11.5#circuit and device input and output impedance and voltage gain#example5_sce.sce#226/CH11/EX11.5/example5_sce.sce#S##13193 -11#Ac analysis of FEt circuits#11.4#circuit input and output impedance and voltage gain#example4_sce.sce#226/CH11/EX11.4/example4_sce.sce#S##13192 -11#Ac analysis of FEt circuits#11.3#gate input and source output impedance and voltage gain#example3_sce.sce#226/CH11/EX11.3/example3_sce.sce#S##13191 -11#Ac analysis of FEt circuits#11.2#circuit input and output impedance and voltage gain#example2_sce.sce#226/CH11/EX11.2/example2_sce.sce#S##13190 -10#FET biasing#10.9#design voltage divider bais circuit#example9_sce.sce#226/CH10/EX10.9/example9_sce.sce#S##13181 -10#FET biasing#10.8#self bais circuit#example8_sce.sce#226/CH10/EX10.8/example8_sce.sce#S##13180 -10#FET biasing#10.7#gate bais circuit#example7_sce.sce#226/CH10/EX10.7/example7_sce.sce#S##13179 -10#FET biasing#10.6#Id max Idmin and Vds#example6_sce.sce#226/CH10/EX10.6/example6_sce.sce#S##13178 -10#FET biasing#10.4#determine Idmax and Idmin#example4_sce.sce#226/CH10/EX10.4/example4_sce.sce#S##13177 -10#FET biasing#10.17#determine suitable resistance and calculate Vds#example17_sce.sce#226/CH10/EX10.17/example17_sce.sce#S##13189 -10#FET biasing#10.16#design JFET switching#example16_sce.sce#226/CH10/EX10.16/example16_sce.sce#S##13188 -10#FET biasing#10.14#determine Id and Vds#example14_sce.sce#226/CH10/EX10.14/example14_sce.sce#S##13186 -10#FET biasing#10.13#determine Idmax and Vdsmin#example13_sce.sce#226/CH10/EX10.13/example13_sce.sce#S##13185 -10#FET biasing#10.12#determine Id and Vds#example12_sce.sce#226/CH10/EX10.12/example12_sce.sce#S##13184 -10#FET biasing#10.11#constant current bias circuit#example11_sce.sce#226/CH10/EX10.11/example11_sce.sce#S##13183 -10#FET biasing#10.1#Dc load line#example1_sce.sce#226/CH10/EX10.1/example1_sce.sce#S##13176 -8#BJT specifications and performance#8.9#noise output voltage#example9_sce.sce#226/CH8/EX8.9/example9_sce.sce#S##13171 -8#BJT specifications and performance#8.8#calculate suitable speed up capacitor#example8_sce.sce#226/CH8/EX8.8/example8_sce.sce#S##13170 -8#BJT specifications and performance#8.6#upper 3db frequency#example6_sce.sce#226/CH8/EX8.6/example6_sce.sce#S##13169 -8#BJT specifications and performance#8.5#input capacitance limited upper cutoff frequency#example5_sce.sce#226/CH8/EX8.5/example5_sce.sce#S##13168 -8#BJT specifications and performance#8.4#input capacitance#example4_sce.sce#226/CH8/EX8.4/example4_sce.sce#S##13167 -8#BJT specifications and performance#8.3#output power change#example3_sce.sce#226/CH8/EX8.3/example3_sce.sce#S##13166 -8#BJT specifications and performance#8.2#output power change#example2_sce.sce#226/CH8/EX8.2/example2_sce.sce#S##13165 -8#BJT specifications and performance#8.14#thermal resistance#example14_sce.sce#226/CH8/EX8.14/example14_sce.sce#S##13175 -8#BJT specifications and performance#8.13#maximum power dissipation#example13_sce.sce#226/CH8/EX8.13/example13_sce.sce#S##13174 -8#BJT specifications and performance#8.11#calculate maximum Ic#example11_sce.sce#226/CH8/EX8.11/example11_sce.sce#S##13173 -8#BJT specifications and performance#8.10#total noise output voltage for amlifier#example10_sce.sce#226/CH8/EX8.10/example10_sce.sce#S##13172 -6#Ac analysis of BJT circuits#6.9#circuit input and output impedance with Rl not connected#example9_sce.sce#226/CH6/EX6.9/example9_sce.sce#S##13160 -6#Ac analysis of BJT circuits#6.8#circuit input and output impedance and voltage gain#example8_sce.sce#226/CH6/EX6.8/example8_sce.sce#S##13159 -6#Ac analysis of BJT circuits#6.7#estimate re and circuit voltage gain#example7_sce.sce#226/CH6/EX6.7/example7_sce.sce#S##13158 -6#Ac analysis of BJT circuits#6.6#circuit input and output impedance voltage gain#example6_sce.sce#226/CH6/EX6.6/example6_sce.sce#S##13157 -6#Ac analysis of BJT circuits#6.5#estimate the CE input resistance#example5_sce.sce#226/CH6/EX6.5/example5_sce.sce#S##13156 -6#Ac analysis of BJT circuits#6.4#calculate hfc hob and alfa#example4_sce.sce#226/CH6/EX6.4/example4_sce.sce#S##13153 -6#Ac analysis of BJT circuits#6.3#determine hfe and hoe#example3_sce.sce#226/CH6/EX6.3/example3_sce.sce#S##13152 -6#Ac analysis of BJT circuits#6.2#Dc and Ac load line#example2_sce.sce#226/CH6/EX6.2/example2_sce.sce#S##13155 -6#Ac analysis of BJT circuits#6.13#calculate Ic Ie and Ib#example13_sce.sce#226/CH6/EX6.13/example13_sce.sce#S##13164 -6#Ac analysis of BJT circuits#6.12#calculate vo#example12_sce.sce#226/CH6/EX6.12/example12_sce.sce#S##13163 -6#Ac analysis of BJT circuits#6.11#input impedance and voltage gain when C1 is disconnected#example11_sce.sce#226/CH6/EX6.11/example11_sce.sce#S##13162 -6#Ac analysis of BJT circuits#6.10#circuit input and output impedance and voltage gain#example10_sce.sce#226/CH6/EX6.10/example10_sce.sce#S##13161 -6#Ac analysis of BJT circuits#6.1#calculate base bais voltage#example1_sce.sce#226/CH6/EX6.1/example1_sce.sce#S##13150 -5#BJT biasing#5.9#analyze voltage divider bais circuit for hFE 50#example9_sce.sce#226/CH5/EX5.9/example9_sce.sce#S##13135 -5#BJT biasing#5.8#determine Ic Ve Vc vce#example8_sce.sce#226/CH5/EX5.8/example8_sce.sce#S##13134 -5#BJT biasing#5.7#emitter voltage collector voltage and collector and emitter voltage#example7_sce.sce#226/CH5/EX5.7/example7_sce.sce#S##12547 -5#BJT biasing#5.5#determine Ib Ic and Vce#example5_sce.sce#226/CH5/EX5.5/example5_sce.sce#S##12548 -5#BJT biasing#5.4#maximum and minimum level of Ic and Vce#example4_sce.sce#226/CH5/EX5.4/example4_sce.sce#S##12546 -5#BJT biasing#5.3#determine Ib Ic and Vce#example3_sce.sce#226/CH5/EX5.3/example3_sce.sce#S##12545 -5#BJT biasing#5.23#suitable resistor for capacitor coupled switching#example23_sce.sce#226/CH5/EX5.23/example23_sce.sce#S##13149 -5#BJT biasing#5.22#deremine suitable resistancefor Rb and Rc#example22_sce.sce#226/CH5/EX5.22/example22_sce.sce#S##13148 -5#BJT biasing#5.21#calculate minimum hFE for transistor#example21_sce.sce#226/CH5/EX5.21/example21_sce.sce#S##13147 -5#BJT biasing#5.20#calculate minimum hFE and transistor Vce#example20_sce.sce#226/CH5/EX5.20/example20_sce.sce#S##13146 -5#BJT biasing#5.2#circuit Q point#example2_sce.sce#226/CH5/EX5.2/example2_sce.sce#S##12544 -5#BJT biasing#5.19#change in Ic by effect of change in Vbe#example19_sce.sce#226/CH5/EX5.19/example19_sce.sce#S##13145 -5#BJT biasing#5.18#determine Ic change when tempreture increases#example18_sce.sce#226/CH5/EX5.18/example18_sce.sce#S##13144 -5#BJT biasing#5.17#stability factors for three bias circuit#example17_sce.sce#226/CH5/EX5.17/example17_sce.sce#S##13143 -5#BJT biasing#5.16#design bais circuit operate from 9V supply#example16_sce.sce#226/CH5/EX5.16/example16_sce.sce#S##13142 -5#BJT biasing#5.15#design bais circuit operate from 18V supply#example15_sce.sce#226/CH5/EX5.15/example15_sce.sce#S##13141 -5#BJT biasing#5.14#design voltage divider bais circuit#example14_sce.sce#226/CH5/EX5.14/example14_sce.sce#S##13140 -5#BJT biasing#5.13#design voltage divider bais circuit#example13_sce.sce#226/CH5/EX5.13/example13_sce.sce#S##13139 -5#BJT biasing#5.12#collector to base bais circuit#example12_sce.sce#226/CH5/EX5.12/example12_sce.sce#S##13138 -5#BJT biasing#5.11#design base bias circuit#example11_sce.sce#226/CH5/EX5.11/example11_sce.sce#S##13137 -5#BJT biasing#5.10#analyze voltage divider bais circuit for hFE is 200#example10_sce.sce#226/CH5/EX5.10/example10_sce.sce#S##13136 -5#BJT biasing#5.1#new dc load line#example1_sce.sce#226/CH5/EX5.1/example1_sce.sce#S##12543 -4#Bipolar junction transistors#4.6#determine Ib and Ic#example6_sce.sce#226/CH4/EX4.6/example6_sce.sce#S##12542 -4#Bipolar junction transistors#4.4#calculate Ic Ib and hFE#example4_sce.sce#226/CH4/EX4.4/example4_sce.sce#S##12541 -4#Bipolar junction transistors#4.3#dc collector voltage and circuit voltage gain#example3_sce.sce#226/CH4/EX4.3/example3_sce.sce#S##12540 -4#Bipolar junction transistors#4.2#new base current#example2_sce.sce#226/CH4/EX4.2/example2_sce.sce#S##12539 -4#Bipolar junction transistors#4.1#calculate Ic and Ie#example1_sce.sce#226/CH4/EX4.1/example1_sce.sce#S##12538 -3#Diode applications#3.9#required reservoir capacitance#example9_sce.sce#226/CH3/EX3.9/example9_sce.sce#S##12519 -3#Diode applications#3.8#required reservoir capacitance#example8_sce.sce#226/CH3/EX3.8/example8_sce.sce#S##12518 -3#Diode applications#3.7#transformer for half wave rectifier#example7_sce.sce#226/CH3/EX3.7/example7_sce.sce#S##12517 -3#Diode applications#3.6#required surge limiting resistance#example6_sce.sce#226/CH3/EX3.6/example6_sce.sce#S##12516 -3#Diode applications#3.5#charging and discharging time#example5_sce.sce#226/CH3/EX3.5/example5_sce.sce#S##12515 -3#Diode applications#3.4#required reservoir capacitance#example4_sce.sce#226/CH3/EX3.4/example4_sce.sce#S##12514 -3#Diode applications#3.3#peak to peak voltage#example3_sce.sce#226/CH3/EX3.3/example3_sce.sce#S##12513 -3#Diode applications#3.27#diode forward current#example27_sce.sce#226/CH3/EX3.27/example27_sce.sce#S##12537 -3#Diode applications#3.26#determine C1 and C2#example26_sce.sce#226/CH3/EX3.26/example26_sce.sce#S##12536 -3#Diode applications#3.25#capacitor voltage#example25_sce.sce#226/CH3/EX3.25/example25_sce.sce#S##12535 -3#Diode applications#3.24#suitable value of R1 and C1#example24_sce.sce#226/CH3/EX3.24/example24_sce.sce#S##12534 -3#Diode applications#3.22#zener diode and R1#example22_sce.sce#226/CH3/EX3.22/example22_sce.sce#S##12532 -3#Diode applications#3.21#resistor for R1#example21_sce.sce#226/CH3/EX3.21/example21_sce.sce#S##12531 -3#Diode applications#3.20#resistance R1 and forward current and reverse voltage#example20_sce.sce#226/CH3/EX3.20/example20_sce.sce#S##12530 -3#Diode applications#3.2#peak output voltage and current#example2_sce.sce#226/CH3/EX3.2/example2_sce.sce#S##12512 -3#Diode applications#3.19#resistance R1 and forward and reverse current#example19_sce.sce#226/CH3/EX3.19/example19_sce.sce#S##12529 -3#Diode applications#3.18#line regulation laod regulation and ripple rejection ratio#example18_sce.sce#226/CH3/EX3.18/example18_sce.sce#S##12528 -3#Diode applications#3.17#maximum load current#example17_sce.sce#226/CH3/EX3.17/example17_sce.sce#S##12527 -3#Diode applications#3.16#circuit current#example16_sce.sce#226/CH3/EX3.16/example16_sce.sce#S##12526 -3#Diode applications#3.15#load and source effects and load and line regulation#example15_sce.sce#226/CH3/EX3.15/example15_sce.sce#S##12525 -3#Diode applications#3.14#peak output voltage and value of L1 and C1#example14_sce.sce#226/CH3/EX3.14/example14_sce.sce#S##12524 -3#Diode applications#3.13#suitable value of L1 and C1#example13_sce.sce#226/CH3/EX3.13/example13_sce.sce#S##12523 -3#Diode applications#3.12#dc output voltage and outpur ripple amplitude#example12_sce.sce#226/CH3/EX3.12/example12_sce.sce#S##12522 -3#Diode applications#3.11#specify transformer for full wave rectifier#example11_sce.sce#226/CH3/EX3.11/example11_sce.sce#S##12521 -3#Diode applications#3.10#calculate surge limiting resistance#example10_sce.sce#226/CH3/EX3.10/example10_sce.sce#S##12520 -3#Diode applications#3.1#peak output volatge laod current peak reverse voltage#example1_sce.sce#226/CH3/EX3.1/example1_sce.sce#S##12511 -3#Diode applications#2.23#tilt on output waveform#example23_sce.sce#226/CH3/EX2.23/example23_sce.sce#S##12533 -2#semiconductor diodes#2.9#maximum forward current#example9_sce.sce#226/CH2/EX2.9/example9_sce.sce#S##12499 -2#semiconductor diodes#2.8#new supply voltage#example8_sce.sce#226/CH2/EX2.8/example8_sce.sce#S##12498 -2#semiconductor diodes#2.6#dc load line#example6_sce.sce#226/CH2/EX2.6/example6_sce.sce#S##12497 -2#semiconductor diodes#2.5#forward current#example5_sce.sce#226/CH2/EX2.5/example5_sce.sce#S##12496 -2#semiconductor diodes#2.3#diode current#example3_sce.sce#226/CH2/EX2.3/example3_sce.sce#S##12495 -2#semiconductor diodes#2.17#upper and lower limit of Vz#example17_sce.sce#226/CH2/EX2.17/example17_sce.sce#S##12506 -2#semiconductor diodes#2.16#diode current and power dissipation#example16_sce.sce#226/CH2/EX2.16/example16_sce.sce#S##12505 -2#semiconductor diodes#2.15#maximum current#example15_sce.sce#226/CH2/EX2.15/example15_sce.sce#S##12504 -2#semiconductor diodes#2.14#resistor for R1 and appropriate scale#example14_sce.sce#226/CH2/EX2.14/example14_sce.sce#S##12503 -2#semiconductor diodes#2.12#minimum fall times#example12_sce.sce#226/CH2/EX2.12/example12_sce.sce#S##12502 -2#semiconductor diodes#2.11#diffusion capacitance#example11_sce.sce#226/CH2/EX2.11/example11_sce.sce#S##12501 -2#semiconductor diodes#2.10#diode Vf and junction dynamic resistance#example10_sce.sce#226/CH2/EX2.10/example10_sce.sce#S##12500 -2#semiconductor diodes#2.1#dynamic resistance#example2_sce.sce#226/CH2/EX2.1/example2_sce.sce#S##12494 -2#semiconductor diodes#1.1#forward and reverse resistance#example1_sce.sce#226/CH2/EX1.1/example1_sce.sce#S##12493 -1#basic semiconductor and pn junction theory#1.6#junction forward voltage#example6_sce.sce#226/CH1/EX1.6/example6_sce.sce#S##12056 -1#basic semiconductor and pn junction theory#1.5#junction current#example5_sce.sce#226/CH1/EX1.5/example5_sce.sce#S##12055 -1#basic semiconductor and pn junction theory#1.4#reverse saturation current#example4_sce.sce#226/CH1/EX1.4/example4_sce.sce#S##12054 -1#basic semiconductor and pn junction theory#1.3#conductivity and resistance#example3_sce.sce#226/CH1/EX1.3/example3_sce.sce#S##12053 -1#basic semiconductor and pn junction theory#1.2#drift current velocity#example2_sce.sce#226/CH1/EX1.2/example2_sce.sce#S##12052 -1#basic semiconductor and pn junction theory#1.1#resultant densities#example1_sce.sce#226/CH1/EX1.1/example1_sce.sce#S##12051 +12#Small signal Amplifiers#12.12#Suitable capacitor for circuit#example12_sce.sce#226/CH12/EX12.12/example12_sce.sce#S##13206 +12#Small signal Amplifiers#12.11#CE input and CC output two stage amplifier analysis#example11_sce.sce#226/CH12/EX12.11/example11_sce.sce#S##13205 +12#Small signal Amplifiers#12.10#Minimum overall voltage gain for direct coupled CE amplifier#example10_sce.sce#226/CH12/EX12.10/example10_sce.sce#S##13204 +12#Small signal Amplifiers#12.1#Required capacitance and voltage gain at different frequencies#example1_sce.sce#226/CH12/EX12.1/example1_sce.sce#S##13196 +11#AC Analysis of FET circuits#11.7#Input capacitance limited cutoff frequency for a CS circuit#example7_sce.sce#226/CH11/EX11.7/example7_sce.sce#S##13195 +11#AC Analysis of FET circuits#11.6#AC output voltage with and without bypassed source resistor#example6_sce.sce#226/CH11/EX11.6/example6_sce.sce#S##13194 +11#AC Analysis of FET circuits#11.5#Common Gate circuit analysis#example5_sce.sce#226/CH11/EX11.5/example5_sce.sce#S##13193 +11#AC Analysis of FET circuits#11.4#Common Drain circuit analysis#example4_sce.sce#226/CH11/EX11.4/example4_sce.sce#S##13192 +11#AC Analysis of FET circuits#11.3#Performance parameters of CS circuit with Unbypassed source resistor#example3_sce.sce#226/CH11/EX11.3/example3_sce.sce#S##13191 +11#AC Analysis of FET circuits#11.2#CS circuit performance parameters#example2_sce.sce#226/CH11/EX11.2/example2_sce.sce#S##13190 +10#FET biasing#10.9#Designing a voltage divider bais circuit#example9_sce.sce#226/CH10/EX10.9/example9_sce.sce#S##13181 +10#FET biasing#10.8#Designing a self bais circuit#example8_sce.sce#226/CH10/EX10.8/example8_sce.sce#S##13180 +10#FET biasing#10.7#Transfer charecterstics of gate bais circuit#example7_sce.sce#226/CH10/EX10.7/example7_sce.sce#S##13179 +10#FET biasing#10.6#DC Analysis of Voltage Divider Bias FET circuit#example6_sce.sce#226/CH10/EX10.6/example6_sce.sce#S##13178 +10#FET biasing#10.4#DC circuit analysis#example4_sce.sce#226/CH10/EX10.4/example4_sce.sce#S##13177 +10#FET biasing#10.17#Transfer characteristics of MOSFET in switching bias#example17_sce.sce#226/CH10/EX10.17/example17_sce.sce#S##13189 +10#FET biasing#10.16#Biasing JFET switching circuit#example16_sce.sce#226/CH10/EX10.16/example16_sce.sce#S##13188 +10#FET biasing#10.14#Transfer characteristics of MOSFET#example14_sce.sce#226/CH10/EX10.14/example14_sce.sce#S##13186 +10#FET biasing#10.13#FET universal transfer charecterstics#example13_sce.sce#226/CH10/EX10.13/example13_sce.sce#S##13185 +10#FET biasing#10.12#Transfer characteristics of JFET#example12_sce.sce#226/CH10/EX10.12/example12_sce.sce#S##13184 +10#FET biasing#10.11#Designing a constant current bias circuit#example11_sce.sce#226/CH10/EX10.11/example11_sce.sce#S##13183 +10#FET biasing#10.1#DC load line using FET charecterstics#example1_sce.sce#226/CH10/EX10.1/example1_sce.sce#S##13176 +8#BJT specifications and performance#8.9#Noise output voltage for an amplifier#example9_sce.sce#226/CH8/EX8.9/example9_sce.sce#S##13171 +8#BJT specifications and performance#8.8#Transistor switching times#example8_sce.sce#226/CH8/EX8.8/example8_sce.sce#S##13170 +8#BJT specifications and performance#8.6#Input capacitance effects on Emitter follower circuit#example6_sce.sce#226/CH8/EX8.6/example6_sce.sce#S##13169 +8#BJT specifications and performance#8.5#Input capacitance effect on CE and CB circuits#example5_sce.sce#226/CH8/EX8.5/example5_sce.sce#S##13168 +8#BJT specifications and performance#8.4#Miller capacitance of CE amplifier#example4_sce.sce#226/CH8/EX8.4/example4_sce.sce#S##13167 +8#BJT specifications and performance#8.3#Output power change of voltage amplifier in dB#example3_sce.sce#226/CH8/EX8.3/example3_sce.sce#S##13166 +8#BJT specifications and performance#8.2#Output power change of an amplifier in dB#example2_sce.sce#226/CH8/EX8.2/example2_sce.sce#S##13165 +8#BJT specifications and performance#8.14#Thermal resistance for heat sink#example14_sce.sce#226/CH8/EX8.14/example14_sce.sce#S##13175 +8#BJT specifications and performance#8.13#Maximum power dissipation of 2N3055#example13_sce.sce#226/CH8/EX8.13/example13_sce.sce#S##13174 +8#BJT specifications and performance#8.11#Transistor Power dissipation#example11_sce.sce#226/CH8/EX8.11/example11_sce.sce#S##13173 +8#BJT specifications and performance#8.10#Noise and output voltage of transistor circuit#example10_sce.sce#226/CH8/EX8.10/example10_sce.sce#S##13172 +6#AC Analysis of BJT Circuits#6.9#h-parameter of CC circuit with and without load resistor (Rl)#example9_sce.sce#226/CH6/EX6.9/example9_sce.sce#S##13160 +6#AC Analysis of BJT Circuits#6.8#Input and output impedance and voltage gain of CE circuit#example8_sce.sce#226/CH6/EX6.8/example8_sce.sce#S##13159 +6#AC Analysis of BJT Circuits#6.7#Calculate re and voltage gain of CE circuit#example7_sce.sce#226/CH6/EX6.7/example7_sce.sce#S##13158 +6#AC Analysis of BJT Circuits#6.6#Input and Output impedances and voltage gain of CE circuit#example6_sce.sce#226/CH6/EX6.6/example6_sce.sce#S##13157 +6#AC Analysis of BJT Circuits#6.5#Estimate the CE input resistance and determine the h-parameters#example5_sce.sce#226/CH6/EX6.5/example5_sce.sce#S##13156 +6#AC Analysis of BJT Circuits#6.4#CE h-parameters#example4_sce.sce#226/CH6/EX6.4/example4_sce.sce#S##13153 +6#AC Analysis of BJT Circuits#6.3#h-parameters of CE transistors#example3_sce.sce#226/CH6/EX6.3/example3_sce.sce#S##13152 +6#AC Analysis of BJT Circuits#6.2#DC and AC load line for transistor circuit#example2_sce.sce#226/CH6/EX6.2/example2_sce.sce#S##13155 +6#AC Analysis of BJT Circuits#6.13#DC analysis of Eber-Moll's BJT model#example13_sce.sce#226/CH6/EX6.13/example13_sce.sce#S##13164 +6#AC Analysis of BJT Circuits#6.12#Output voltage (Vo) for CE, CB transistor circuits#example12_sce.sce#226/CH6/EX6.12/example12_sce.sce#S##13163 +6#AC Analysis of BJT Circuits#6.11#Input impedance and voltage gain of CB circuit without coupling capacitor#example11_sce.sce#226/CH6/EX6.11/example11_sce.sce#S##13162 +6#AC Analysis of BJT Circuits#6.10#Input and output impedance and voltage gain of transistor in CB circuit#example10_sce.sce#226/CH6/EX6.10/example10_sce.sce#S##13161 +6#AC Analysis of BJT Circuits#6.1#DC analysis of voltage divider circuit#example1_sce.sce#226/CH6/EX6.1/example1_sce.sce#S##13150 +5#BJT biasing#5.9#Accurate analysis of voltage-divider bias circuit for minimum hFE of 50#example9_sce.sce#226/CH5/EX5.9/example9_sce.sce#S##13135 +5#BJT biasing#5.8#Precise circuit analysis of voltage-divider bias circuit#example8_sce.sce#226/CH5/EX5.8/example8_sce.sce#S##13134 +5#BJT biasing#5.7#DC analysis of voltage -divider bias circuit#example7_sce.sce#226/CH5/EX5.7/example7_sce.sce#S##12547 +5#BJT biasing#5.5#DC analysis of collector-base bias circuit#example5_sce.sce#226/CH5/EX5.5/example5_sce.sce#S##12548 +5#BJT biasing#5.4#Maximum and Minimum levels of Ic and Vce for base bias circuit#example4_sce.sce#226/CH5/EX5.4/example4_sce.sce#S##12546 +5#BJT biasing#5.3#DC analysis of common-base amplifier#example3_sce.sce#226/CH5/EX5.3/example3_sce.sce#S##12545 +5#BJT biasing#5.23#Base and collector resistors for capacitor coupled switching#example23_sce.sce#226/CH5/EX5.23/example23_sce.sce#S##13149 +5#BJT biasing#5.22#Suitable resistances for capacitor coupled switching circuit#example22_sce.sce#226/CH5/EX5.22/example22_sce.sce#S##13148 +5#BJT biasing#5.21#Minimum hFE of a transistor biased in saturation region#example21_sce.sce#226/CH5/EX5.21/example21_sce.sce#S##13147 +5#BJT biasing#5.20#DC analysis of BJT biased as switching circuit#example20_sce.sce#226/CH5/EX5.20/example20_sce.sce#S##13146 +5#BJT biasing#5.2#DC Bias point (Q-Point)#example2_sce.sce#226/CH5/EX5.2/example2_sce.sce#S##12544 +5#BJT biasing#5.19#Effect of base-emitter voltage (Vbe) changes on collector current (Ic)#example19_sce.sce#226/CH5/EX5.19/example19_sce.sce#S##13145 +5#BJT biasing#5.18#Change in collector current (Ic) when temperature increases#example18_sce.sce#226/CH5/EX5.18/example18_sce.sce#S##13144 +5#BJT biasing#5.17#Stability factors for three bias circuit#example17_sce.sce#226/CH5/EX5.17/example17_sce.sce#S##13143 +5#BJT biasing#5.16#Design voltage divider bias circuit to operate from 9V supply#example16_sce.sce#226/CH5/EX5.16/example16_sce.sce#S##13142 +5#BJT biasing#5.15#Design voltage divider bias circuit to operate from 18V supply#example15_sce.sce#226/CH5/EX5.15/example15_sce.sce#S##13141 +5#BJT biasing#5.14#Design voltage divider bias circuit with given bias parameters#example14_sce.sce#226/CH5/EX5.14/example14_sce.sce#S##13140 +5#BJT biasing#5.13#Voltage divider bias circuit design#example13_sce.sce#226/CH5/EX5.13/example13_sce.sce#S##13139 +5#BJT biasing#5.12#Collector to base bias circuit design#example12_sce.sce#226/CH5/EX5.12/example12_sce.sce#S##13138 +5#BJT biasing#5.11#Base bias circuit design#example11_sce.sce#226/CH5/EX5.11/example11_sce.sce#S##13137 +5#BJT biasing#5.10#Analyze voltage divider bias circuit for a maximum hFE of 200#example10_sce.sce#226/CH5/EX5.10/example10_sce.sce#S##13136 +5#BJT biasing#5.1#DC load line#example1_sce.sce#226/CH5/EX5.1/example1_sce.sce#S##12543 +4#Bipolar Junction Transistors#4.6#Base current (Ib) and collector current (Ic) from output charecterstics#example6_sce.sce#226/CH4/EX4.6/example6_sce.sce#S##12542 +4#Bipolar Junction Transistors#4.4#Collector current (Ic), Base current (Ib) and hFE of BJT as switch#example4_sce.sce#226/CH4/EX4.4/example4_sce.sce#S##12541 +4#Bipolar Junction Transistors#4.3#DC collector voltage and circuit voltage gain of CE amplifier#example3_sce.sce#226/CH4/EX4.3/example3_sce.sce#S##12540 +4#Bipolar Junction Transistors#4.2#Common base current gain (Adc), Common-emitter current gain (Bdc) of npn transistor#example2_sce.sce#226/CH4/EX4.2/example2_sce.sce#S##12539 +4#Bipolar Junction Transistors#4.1#Determine the emitter (Ie) and base (Ib) currents of a transistor#example1_sce.sce#226/CH4/EX4.1/example1_sce.sce#S##12538 +3#Diode applications#3.9#Reservoir capacitor value for full - wave rectifier#example9_sce.sce#226/CH3/EX3.9/example9_sce.sce#S##12519 +3#Diode applications#3.8#Required reservoir capacitance value for full- wave rectifier#example8_sce.sce#226/CH3/EX3.8/example8_sce.sce#S##12518 +3#Diode applications#3.7#RMS voltage(Vrms), RMS current(Irms) and Transformer primary current for half wave rectifier#example7_sce.sce#226/CH3/EX3.7/example7_sce.sce#S##12517 +3#Diode applications#3.6#Surge limiting resistance of HWR#example6_sce.sce#226/CH3/EX3.6/example6_sce.sce#S##12516 +3#Diode applications#3.5#Charging and Discharging time of Half -Wave Rectifier(HWR)#example5_sce.sce#226/CH3/EX3.5/example5_sce.sce#S##12515 +3#Diode applications#3.4#Required reservoir capacitance of a HWR#example4_sce.sce#226/CH3/EX3.4/example4_sce.sce#S##12514 +3#Diode applications#3.3#Peak to Peak ripple voltage of HWR#example3_sce.sce#226/CH3/EX3.3/example3_sce.sce#S##12513 +3#Diode applications#3.27#Diode forward current for AND logic circuit#example27_sce.sce#226/CH3/EX3.27/example27_sce.sce#S##12537 +3#Diode applications#3.26#Capacitor (C1, C2) values for voltage doubling circuit#example26_sce.sce#226/CH3/EX3.26/example26_sce.sce#S##12536 +3#Diode applications#3.25#Upper and lower voltages for biased clamping circuits#example25_sce.sce#226/CH3/EX3.25/example25_sce.sce#S##12535 +3#Diode applications#3.24#Component determination of negative voltage clamping circuit#example24_sce.sce#226/CH3/EX3.24/example24_sce.sce#S##12534 +3#Diode applications#3.22#Zener diode as shunt clipper#example22_sce.sce#226/CH3/EX3.22/example22_sce.sce#S##12532 +3#Diode applications#3.21#Suitable resistor for biased shunt clipper#example21_sce.sce#226/CH3/EX3.21/example21_sce.sce#S##12531 +3#Diode applications#3.20#Forward and reverse currents for diode as Negative shunt clipper#example20_sce.sce#226/CH3/EX3.20/example20_sce.sce#S##12530 +3#Diode applications#3.2#Peak output voltage and current of a Bridge rectifier#example2_sce.sce#226/CH3/EX3.2/example2_sce.sce#S##12512 +3#Diode applications#3.19#Load resistance (R1), forward and reverse currents of Voltage regulator circuit#example19_sce.sce#226/CH3/EX3.19/example19_sce.sce#S##12529 +3#Diode applications#3.18#Line regulation, load regulation and ripple rejection ratio of Voltage regulator#example18_sce.sce#226/CH3/EX3.18/example18_sce.sce#S##12528 +3#Diode applications#3.17#Maximum load current of Load regulator circuit#example17_sce.sce#226/CH3/EX3.17/example17_sce.sce#S##12527 +3#Diode applications#3.16#Parameters of Zener diode as voltage regulator#example16_sce.sce#226/CH3/EX3.16/example16_sce.sce#S##12526 +3#Diode applications#3.15#Load regulation,Source effect, line regulation of FWR#example15_sce.sce#226/CH3/EX3.15/example15_sce.sce#S##12525 +3#Diode applications#3.14#Peak output voltage, value of inductor (L1)and capacitor(C1) of L-input filter#example14_sce.sce#226/CH3/EX3.14/example14_sce.sce#S##12524 +3#Diode applications#3.13#Suitable capacitor and inductor values of LC pi filter#example13_sce.sce#226/CH3/EX3.13/example13_sce.sce#S##12523 +3#Diode applications#3.12#DC output voltage and peak to peak voltage of given ripple waveform#example12_sce.sce#226/CH3/EX3.12/example12_sce.sce#S##12522 +3#Diode applications#3.11#Transformer selection for a full-wave bridge rectifier#example11_sce.sce#226/CH3/EX3.11/example11_sce.sce#S##12521 +3#Diode applications#3.10#Surge limiting resistance of bridge rectifier#example10_sce.sce#226/CH3/EX3.10/example10_sce.sce#S##12520 +3#Diode applications#3.1#Peak output voltage(Vpo), Peak load current(Ip) and peak reverse voltage(PIV) of HWR#example1_sce.sce#226/CH3/EX3.1/example1_sce.sce#S##12511 +3#Diode applications#2.23#Tilt on the output waveform of a diode clamping circuit#example23_sce.sce#226/CH3/EX2.23/example23_sce.sce#S##12533 +2#Semiconductor Diodes#2.9#Maximum forward current of a diode at a given temperature#example9_sce.sce#226/CH2/EX2.9/example9_sce.sce#S##12499 +2#Semiconductor Diodes#2.8#Calculating supply voltage from given Q - point#example8_sce.sce#226/CH2/EX2.8/example8_sce.sce#S##12498 +2#Semiconductor Diodes#2.6#DC load line for forward biased diode#example6_sce.sce#226/CH2/EX2.6/example6_sce.sce#S##12497 +2#Semiconductor Diodes#2.5#Forward current of a diode#example5_sce.sce#226/CH2/EX2.5/example5_sce.sce#S##12496 +2#Semiconductor Diodes#2.3#Diode current#example3_sce.sce#226/CH2/EX2.3/example3_sce.sce#S##12495 +2#Semiconductor Diodes#2.17#Upper and Lower limits of Zener voltage(Vz)#example17_sce.sce#226/CH2/EX2.17/example17_sce.sce#S##12506 +2#Semiconductor Diodes#2.16#Maximum diode current and power dissipation of 1N755#example16_sce.sce#226/CH2/EX2.16/example16_sce.sce#S##12505 +2#Semiconductor Diodes#2.15#Maximum current through the Zener diode#example15_sce.sce#226/CH2/EX2.15/example15_sce.sce#S##12504 +2#Semiconductor Diodes#2.14#Plotting Diode charecterstics#example14_sce.sce#226/CH2/EX2.14/example14_sce.sce#S##12503 +2#Semiconductor Diodes#2.12#Minimum fall times for 1N915 and 1N917 diodes#example12_sce.sce#226/CH2/EX2.12/example12_sce.sce#S##12502 +2#Semiconductor Diodes#2.11#Diffusion capacitance of a Si diode#example11_sce.sce#226/CH2/EX2.11/example11_sce.sce#S##12501 +2#Semiconductor Diodes#2.10#Forward voltage drop and junction dynamic resistance of a diode#example10_sce.sce#226/CH2/EX2.10/example10_sce.sce#S##12500 +2#Semiconductor Diodes#2.1#Dynamic resistance of a diode#example2_sce.sce#226/CH2/EX2.1/example2_sce.sce#S##12494 +2#Semiconductor Diodes#1.1#Forward and reverse resistances of a silicon diode#example1_sce.sce#226/CH2/EX1.1/example1_sce.sce#S##12493 +1#Basic Semiconductor and pn - Junction Theory#1.6#Forward bias voltage of a silicon pn - Junction#example6_sce.sce#226/CH1/EX1.6/example6_sce.sce#S##12056 +1#Basic Semiconductor and pn - Junction Theory#1.5#Junction Current of silicon pn-junction#example5_sce.sce#226/CH1/EX1.5/example5_sce.sce#S##12055 +1#Basic Semiconductor and pn - Junction Theory#1.4#Levels of reverse saturation current at different temperatures#example4_sce.sce#226/CH1/EX1.4/example4_sce.sce#S##12054 +1#Basic Semiconductor and pn - Junction Theory#1.3#Conductivity and Resistance of a given material#example3_sce.sce#226/CH1/EX1.3/example3_sce.sce#S##12053 +1#Basic Semiconductor and pn - Junction Theory#1.2#Drift current velocities for electrons and holes#example2_sce.sce#226/CH1/EX1.2/example2_sce.sce#S##12052 +1#Basic Semiconductor and pn - Junction Theory#1.1#Charge densities of free electrons and holes#example1_sce.sce#226/CH1/EX1.1/example1_sce.sce#S##12051 diff --git a/latex/tmp_2273_contributor.txt b/latex/tmp_2273_contributor.txt index e05ab286d..a6f430741 100755 --- a/latex/tmp_2273_contributor.txt +++ b/latex/tmp_2273_contributor.txt @@ -1 +1 @@ -Harpreet Singh#B TECH#Electrical Engineering#VYAS INSTITUTE OF ENGINEERING AND TECHNOLOGY#NA#K. V. P. Pradeep +Harpreet Singh#B TECH#Electrical Engineering#Vyas Institute of Engineering & Technology#NA#K. V. P. Pradeep diff --git a/latex/tmp_2279_contributor.txt b/latex/tmp_2279_contributor.txt index 56535630b..54549c665 100644 --- a/latex/tmp_2279_contributor.txt +++ b/latex/tmp_2279_contributor.txt @@ -1 +1 @@ -S D Vinodhini#Bachelor of Engineering#Electronics Engineering#PSG College of Technology#V. Krishnaveni# +S D Vinodhini#Bachelor of Engineering#Electronics Engineering#PSG College of Technology#V. Krishnaveni#Bhavani diff --git a/latex/tmp_2279_data.txt b/latex/tmp_2279_data.txt index e69de29bb..f26c0d8dd 100644 --- a/latex/tmp_2279_data.txt +++ b/latex/tmp_2279_data.txt @@ -0,0 +1,81 @@ +7#Fourier Analysis of discretetime signals and systems#7.9#Fourier series representation of DT signal#Ex7_9.sce#2279/CH7/EX7.9/Ex7_9.sce#S##120320 +7#Fourier Analysis of discretetime signals and systems#7.8#Fourier series representation of DT signal#Ex7_8.sce#2279/CH7/EX7.8/Ex7_8.sce#S##120319 +7#Fourier Analysis of discretetime signals and systems#7.7#Fourier series representation of DT signal#Ex7_7.sce#2279/CH7/EX7.7/Ex7_7.sce#S##120318 +7#Fourier Analysis of discretetime signals and systems#7.6#Fourier series representation of DT signal#Ex7_6.sce#2279/CH7/EX7.6/Ex7_6.sce#S##120317 +7#Fourier Analysis of discretetime signals and systems#7.5#Fourier series representation of DT signal#Ex7_5.sce#2279/CH7/EX7.5/Ex7_5.sce#S##120316 +7#Fourier Analysis of discretetime signals and systems#7.4#Fourier series representation of DT signal#Ex7_4.sce#2279/CH7/EX7.4/Ex7_4.sce#S##120315 +7#Fourier Analysis of discretetime signals and systems#7.3#Fourier series representation of DT signal#Ex7_3.sce#2279/CH7/EX7.3/Ex7_3.sce#S##120314 +7#Fourier Analysis of discretetime signals and systems#7.26#Discretetime fourier transform#Ex7_26.sce#2279/CH7/EX7.26/Ex7_26.sce#S##120327 +7#Fourier Analysis of discretetime signals and systems#7.24#Fourier transform#Ex7_24.sce#2279/CH7/EX7.24/Ex7_24.sce#S##120326 +7#Fourier Analysis of discretetime signals and systems#7.19#Discretetime fourier transform#Ex7_19.sce#2279/CH7/EX7.19/Ex7_19.sce#S##120325 +7#Fourier Analysis of discretetime signals and systems#7.18#Discretetime fourier transform#Ex7_18.sce#2279/CH7/EX7.18/Ex7_18.sce#S##120324 +7#Fourier Analysis of discretetime signals and systems#7.17#Discretetime fourier transform#Ex7_17.sce#2279/CH7/EX7.17/Ex7_17.sce#S##120323 +7#Fourier Analysis of discretetime signals and systems#7.16#Discretetime fourier transform#Ex7_16.sce#2279/CH7/EX7.16/Ex7_16.sce#S##120322 +7#Fourier Analysis of discretetime signals and systems#7.10#DTFSrepresentation#Ex7_10.sce#2279/CH7/EX7.10/Ex7_10.sce#S##120321 +6#Sampling#6.7#Sampling#Ex6_7.sce#2279/CH6/EX6.7/Ex6_7.sce#S##120313 +6#Sampling#6.6#Sampling#Ex6_6.sce#2279/CH6/EX6.6/Ex6_6.sce#S##120312 +6#Sampling#6.4#Sampling#Ex6_4.sce#2279/CH6/EX6.4/Ex6_4.sce#S##120311 +6#Sampling#6.3#Sampling#Ex6_3.sce#2279/CH6/EX6.3/Ex6_3.sce#S##120310 +6#Sampling#6.2#Sampling#Ex6_2.sce#2279/CH6/EX6.2/Ex6_2.sce#S##120309 +6#Sampling#6.1#Sampling#Ex6_1.sce#2279/CH6/EX6.1/Ex6_1.sce#S##120308 +5#Fourier Analysis of Continuoustime signals and systems#5.8#Fourier series coefficients#Ex5_8.sce#2279/CH5/EX5.8/Ex5_8.sce#S##120294 +5#Fourier Analysis of Continuoustime signals and systems#5.7#Fourier series coefficients of halfwave rectified signal#Ex5_7.sce#2279/CH5/EX5.7/Ex5_7.sce#S##120293 +5#Fourier Analysis of Continuoustime signals and systems#5.6#Fourier series Coefficients#Ex5_6.sce#2279/CH5/EX5.6/Ex5_6.sce#S##120292 +5#Fourier Analysis of Continuoustime signals and systems#5.5#Fourier Series Coefficients#Ex5_5.sce#2279/CH5/EX5.5/Ex5_5.sce#S##120291 +5#Fourier Analysis of Continuoustime signals and systems#5.4#Fourier series representation#Ex5_4.sce#2279/CH5/EX5.4/Ex5_4.sce#S##120290 +5#Fourier Analysis of Continuoustime signals and systems#5.37#Frequency response of the system#Ex5_37.sce#2279/CH5/EX5.37/Ex5_37.sce#S##120307 +5#Fourier Analysis of Continuoustime signals and systems#5.32#Fourier transform of impulse train#Ex5_32.sce#2279/CH5/EX5.32/Ex5_32.sce#S##120306 +5#Fourier Analysis of Continuoustime signals and systems#5.3#Fourier series representation#Ex5_3.sce#2279/CH5/EX5.3/Ex5_3.sce#S##120289 +5#Fourier Analysis of Continuoustime signals and systems#5.25#Fourier Transform of periodic signal #Ex5_25.sce#2279/CH5/EX5.25/Ex5_25.sce#S##120305 +5#Fourier Analysis of Continuoustime signals and systems#5.24#Fourier Transform of periodic sinusoid#Ex5_24.sce#2279/CH5/EX5.24/Ex5_24.sce#S##120304 +5#Fourier Analysis of Continuoustime signals and systems#5.22#Inverse fourier transform#Ex5_22.sce#2279/CH5/EX5.22/Ex5_22.sce#S##120303 +5#Fourier Analysis of Continuoustime signals and systems#5.21#Inverse Fourier Transform#Ex5_21.sce#2279/CH5/EX5.21/Ex5_21.sce#S##120302 +5#Fourier Analysis of Continuoustime signals and systems#5.20#Inverse Fourier transform#Ex5_20.sce#2279/CH5/EX5.20/Ex5_20.sce#S##120301 +5#Fourier Analysis of Continuoustime signals and systems#5.2#Fourier Series representation#Ex5_2.sce#2279/CH5/EX5.2/Ex5_2.sce#S##120288 +5#Fourier Analysis of Continuoustime signals and systems#5.19#Continuoustime Fourier Transform#Ex5_19.sce#2279/CH5/EX5.19/Ex5_19.sce#S##120300 +5#Fourier Analysis of Continuoustime signals and systems#5.18#Inverse Fourier transform#Ex5_18.sce#2279/CH5/EX5.18/Ex5_18.sce#S##120299 +5#Fourier Analysis of Continuoustime signals and systems#5.17#Continuoustime Fourier Transform#Ex5_17.sce#2279/CH5/EX5.17/Ex5_17.sce#S##120298 +5#Fourier Analysis of Continuoustime signals and systems#5.16#Continuoustime Fourier Transform#Ex5_16.sce#2279/CH5/EX5.16/Ex5_16.sce#S##120297 +5#Fourier Analysis of Continuoustime signals and systems#5.15#Continuoustime Fourier Transform#Ex5_15.sce#2279/CH5/EX5.15/Ex5_15.sce#S##120296 +5#Fourier Analysis of Continuoustime signals and systems#5.14#Continuoustime Fourier Transform#Ex5_14.sce#2279/CH5/EX5.14/Ex5_14.sce#S##120295 +5#Fourier Analysis of Continuoustime signals and systems#5.1#Fourier Series representation#Ex5_1.sce#2279/CH5/EX5.1/Ex5_1.sce#S##120287 +4#Linear Time Invariant Systems#4.6#convolution#Ex4_6.sce#2279/CH4/EX4.6/Ex4_6.sce#S##120270 +4#Linear Time Invariant Systems#4.5#Convolution#Ex4_5.sce#2279/CH4/EX4.5/Ex4_5.sce#S##120269 +4#Linear Time Invariant Systems#4.30#Convolution#Ex4_30.sce#2279/CH4/EX4.30/Ex4_30.sce#S##120286 +4#Linear Time Invariant Systems#4.27#Convolution#Ex4_27.sce#2279/CH4/EX4.27/Ex4_27.sce#S##120285 +4#Linear Time Invariant Systems#4.26#Convolution#Ex4_26.sce#2279/CH4/EX4.26/Ex4_26.sce#S##120284 +4#Linear Time Invariant Systems#4.24#Convolution#Ex4_24.sce#2279/CH4/EX4.24/Ex4_24.sce#S##120283 +4#Linear Time Invariant Systems#4.23#Convolution#Ex4_23.sce#2279/CH4/EX4.23/Ex4_23.sce#S##120282 +4#Linear Time Invariant Systems#4.21#Convolution#Ex4_21.sce#2279/CH4/EX4.21/Ex4_21.sce#S##120281 +4#Linear Time Invariant Systems#4.20#Convolution#Ex4_20.sce#2279/CH4/EX4.20/Ex4_20.sce#S##120280 +4#Linear Time Invariant Systems#4.2#Convolution#Ex4_2.sce#2279/CH4/EX4.2/Ex4_2.sce#S##120268 +4#Linear Time Invariant Systems#4.19#Convolution#Ex4_19.sce#2279/CH4/EX4.19/Ex4_19.sce#S##120279 +4#Linear Time Invariant Systems#4.18#Convolution#Ex4_18.sce#2279/CH4/EX4.18/Ex4_18.sce#S##120278 +4#Linear Time Invariant Systems#4.17#Convolution#Ex4_17.sce#2279/CH4/EX4.17/Ex4_17.sce#S##120277 +4#Linear Time Invariant Systems#4.16#convolution#Ex4_16.sce#2279/CH4/EX4.16/Ex4_16.sce#S##120276 +4#Linear Time Invariant Systems#4.15#Convolution#Ex4_15.sce#2279/CH4/EX4.15/Ex4_15.sce#S##120275 +4#Linear Time Invariant Systems#4.14#Convolution#Ex4_14.sce#2279/CH4/EX4.14/Ex4_14.sce#S##120274 +4#Linear Time Invariant Systems#4.13#Convolution#Ex4_13.sce#2279/CH4/EX4.13/Ex4_13.sce#S##120272 +4#Linear Time Invariant Systems#4.11#Convolution#Ex4_11.sce#2279/CH4/EX4.11/Ex4_11.sce#S##120273 +4#Linear Time Invariant Systems#4.10#Convolution#Ex4_10.sce#2279/CH4/EX4.10/Ex4_10.sce#S##120271 +4#Linear Time Invariant Systems#4.1#Convolution#Ex4_1.sce#2279/CH4/EX4.1/Ex4_1.sce#S##120267 +3#continuoustime and discretetime systems#3.18#properties of a system#Ex3_18.sce#2279/CH3/EX3.18/Ex3_18.sce#S##120266 +3#continuoustime and discretetime systems#3.17#properties of a system#Ex3_17.sce#2279/CH3/EX3.17/Ex3_17.sce#S##120265 +3#continuoustime and discretetime systems#3.16#properties of a system#Ex3_16.sce#2279/CH3/EX3.16/Ex3_16.sce#S##120264 +3#continuoustime and discretetime systems#3.15#properties of a system#Ex3_15.sce#2279/CH3/EX3.15/Ex3_15.sce#S##120263 +3#continuoustime and discretetime systems#3.14#properties of a system#Ex3_14.sce#2279/CH3/EX3.14/Ex3_14.sce#S##120262 +3#continuoustime and discretetime systems#3.13#properties of a system#Ex3_13.sce#2279/CH3/EX3.13/Ex3_13.sce#S##120261 +3#continuoustime and discretetime systems#3.11#properties of a system#Ex3_11.sce#2279/CH3/EX3.11/Ex3_11.sce#S##120260 +3#continuoustime and discretetime systems#3.10#properties of a system#Ex3_10.sce#2279/CH3/EX3.10/Ex3_10.sce#S##120259 +2#Continuoustime and discretetime signals#2.3#Signal operations#Ex2_3.sce#2279/CH2/EX2.3/Ex2_3.sce#S##120258 +2#Continuoustime and discretetime signals#2.2#Signal operations#Ex2_2.sce#2279/CH2/EX2.2/Ex2_2.sce#S##120257 +2#Continuoustime and discretetime signals#2.1#Signal Operations#Ex2_1.sce#2279/CH2/EX2.1/Ex2_1.sce#S##120256 +1#Overview of Signals and systems#1.8#Plotting basic signals#Ex1_8.sce#2279/CH1/EX1.8/Ex1_8.sce#S##120254 +1#Overview of Signals and systems#1.7#Plotting basic signals#Ex1_7.sce#2279/CH1/EX1.7/Ex1_7.sce#S##120253 +1#Overview of Signals and systems#1.6#Plotting basic signals#Ex1_6.sce#2279/CH1/EX1.6/Ex1_6.sce#S##120570 +1#Overview of Signals and systems#1.5#Plotting basic signals#Ex1_5.sce#2279/CH1/EX1.5/Ex1_5.sce#S##120251 +1#Overview of Signals and systems#1.4#Plotting basic signals#Ex1_4.sce#2279/CH1/EX1.4/Ex1_4.sce#S##120250 +1#Overview of Signals and systems#1.3#Plotting Basic signals#Ex1_3.sce#2279/CH1/EX1.3/Ex1_3.sce#S##120249 +1#Overview of Signals and systems#1.2#plotting basic signals#Ex1_2.sce#2279/CH1/EX1.2/Ex1_2.sce#S##120248 +1#Overview of Signals and systems#1.10#Plotting basic signals#Ex1_10.sce#2279/CH1/EX1.10/Ex1_10.sce#S##120255 +1#Overview of Signals and systems#1.1#Plotting a dc signal#Ex1_1.sce#2279/CH1/EX1.1/Ex1_1.sce#S##120247 diff --git a/latex/tmp_2288_contributor.txt b/latex/tmp_2288_contributor.txt index e9acdae20..e290a8c45 100755 --- a/latex/tmp_2288_contributor.txt +++ b/latex/tmp_2288_contributor.txt @@ -1 +1 @@ -Mohsin Khan#B.Tech#Electronics Engineering#UTU#Mr. Mohd. Rizwan#K. V. P. Pradeep +Mohsin Khan#B.Tech#Electronics Engineering#Uttarakhand Technical University#Mr. Mohd. Rizwan#K. V. P. Pradeep diff --git a/latex/tmp_2300_contributor.txt b/latex/tmp_2300_contributor.txt index 8359b8fb8..1e5c2daec 100755 --- a/latex/tmp_2300_contributor.txt +++ b/latex/tmp_2300_contributor.txt @@ -1 +1 @@ -Shreeja Lakhlani#B.Tech#Others#DHARMSINH DESAI UNIVERSITY#Prof. Prarthan. D. Mehta#Bhavani Jalkrish +Shreeja Lakhlani#B.Tech#Others#Dharamsinh Desai University#Prof. Prarthan. D. Mehta#Bhavani Jalkrish diff --git a/latex/tmp_2309_contributor.txt b/latex/tmp_2309_contributor.txt index f857d85a1..a80d09b3c 100755 --- a/latex/tmp_2309_contributor.txt +++ b/latex/tmp_2309_contributor.txt @@ -1 +1 @@ -Kadirisani Charan#B.tech#Electrical Engineering#SASTRA UNIVERSITY#Raju N#Chaitanya +Kadirisani Charan#B.tech#Electrical Engineering#Sastra University#Raju N#Chaitanya diff --git a/latex/tmp_2360_contributor.txt b/latex/tmp_2360_contributor.txt index 2b82afb91..6813afc49 100755 --- a/latex/tmp_2360_contributor.txt +++ b/latex/tmp_2360_contributor.txt @@ -1 +1 @@ -Saurabh Bhatia#B.Tech#Electronics Engineering#UTU#Mr. Mohd Rizwan#KVP Pradeep +Saurabh Bhatia#B.Tech#Electronics Engineering#Uttrakhand Technical University#Mr. Mohd Rizwan#KVP Pradeep diff --git a/latex/tmp_2438_contributor.txt b/latex/tmp_2438_contributor.txt index ff5ebb075..29eb7806a 100644 --- a/latex/tmp_2438_contributor.txt +++ b/latex/tmp_2438_contributor.txt @@ -1 +1 @@ -Chanagam Saikomal#B.tech#Electronics Engineering#SASTRA UNIVERSITY#NA#Spandana +Chanagam Saikomal#B.tech#Electronics Engineering#Sastra University#NA#Spandana diff --git a/latex/tmp_2444_contributor.txt b/latex/tmp_2444_contributor.txt index 9384aa793..138ee944b 100755 --- a/latex/tmp_2444_contributor.txt +++ b/latex/tmp_2444_contributor.txt @@ -1 +1 @@ -Waseem Ahmad Ansari#B.Tech#Electronics Engineering#UTU#Mr. Mohd Rizwan#K. V. P. Pradeep +Waseem Ahmad Ansari#B.Tech#Electronics Engineering#Uttrakhand Technical University#Mr. Mohd Rizwan#K. V. P. Pradeep diff --git a/latex/tmp_2492_contributor.txt b/latex/tmp_2492_contributor.txt index bf525f7a8..dd8b46549 100755 --- a/latex/tmp_2492_contributor.txt +++ b/latex/tmp_2492_contributor.txt @@ -1 +1 @@ -Mohd. Irfan#B.Tech#Electronics Engineering#UTU#NA#Chaitanya +Mohd. Irfan#B.Tech#Electronics Engineering#Uttrakhand Technical University#NA#Chaitanya diff --git a/latex/tmp_2498_contributor.txt b/latex/tmp_2498_contributor.txt index dfc4a0e5f..bb64b02ba 100755 --- a/latex/tmp_2498_contributor.txt +++ b/latex/tmp_2498_contributor.txt @@ -1 +1 @@ -Mohd Gufran#B.Tech#Electronics Engineering#UTU#NA#K. V. P. Pradeep +Mohd Gufran#B.Tech#Electronics Engineering#Uttrakhand Technical University#NA#K. V. P. Pradeep diff --git a/latex/tmp_2504_data.txt b/latex/tmp_2504_data.txt index 982d35c40..ca7ffc3c3 100755 --- a/latex/tmp_2504_data.txt +++ b/latex/tmp_2504_data.txt @@ -56,4 +56,4 @@ 2#Similarity#2.5#air speed#2_5.sce#2504/CH2/EX2.5/2_5.sce#S##88085 2#Similarity#2.4#force at the end#2_4.sce#2504/CH2/EX2.4/2_4.sce#S##88084 2#Similarity#2.3#force required#2_3.sce#2504/CH2/EX2.3/2_3.sce#S##88083 -2#Similarity#2.1#Force applied#2_1.sce#2504/CH2/EX2.1/2_1.sce#S##88082 +2#Similarity#2.1#Force applied #2_1.sce#2504/CH2/EX2.1/2_1.sce#S##88082 diff --git a/latex/tmp_2522_contributor.txt b/latex/tmp_2522_contributor.txt index 21c7596c4..aab228972 100755 --- a/latex/tmp_2522_contributor.txt +++ b/latex/tmp_2522_contributor.txt @@ -1 +1 @@ -Rishabh Jain#B.Tech#Electronics Engineering#uptu#None#K. V. P. Pradeep +Rishabh Jain#B.Tech#Electronics Engineering#Dr. A.P.J. Abdul Kalam Technical University#None#K. V. P. Pradeep diff --git a/latex/tmp_2528_data.txt b/latex/tmp_2528_data.txt index e69de29bb..379c9ca21 100755 --- a/latex/tmp_2528_data.txt +++ b/latex/tmp_2528_data.txt @@ -0,0 +1,106 @@ +12#Analog to Digital to Analog Conversion#12.3#sampling rates and no of bits#Ex12_3.sce#2528/CH12/EX12.3/Ex12_3.sce#S##94121 +12#Analog to Digital to Analog Conversion#12.2#Determine the step size#Ex12_2.sce#2528/CH12/EX12.2/Ex12_2.sce#S##94123 +12#Analog to Digital to Analog Conversion#12.1#determine the resolution#Ex12_1.sce#2528/CH12/EX12.1/Ex12_1.sce#S##94122 +11#Active filters#11.7#Notch filter#Ex11_7.sce#2528/CH11/EX11.7/Ex11_7.sce#S##94012 +11#Active filters#11.6#Band pass filter with center frequency#Ex11_6.sce#2528/CH11/EX11.6/Ex11_6.sce#S##94011 +11#Active filters#11.5#Band pass filter#Ex11_5.sce#2528/CH11/EX11.5/Ex11_5.sce#S##94128 +11#Active filters#11.4#Crossover network#Ex11_4.sce#2528/CH11/EX11.4/Ex11_4.sce#S##94127 +11#Active filters#11.3#Fifth order system#Ex11_3.sce#2528/CH11/EX11.3/Ex11_3.sce#S##94126 +11#Active filters#11.2#Design second order bessel filter#Ex11_2.sce#2528/CH11/EX11.2/Ex11_2.sce#S##94125 +11#Active filters#11.1#Butterworth low pass filter#Ex11_1.sce#2528/CH11/EX11.1/Ex11_1.sce#S##94129 +10#Integrators and Differentiators#10.8#LVDT#Ex10_8.sce#2528/CH10/EX10.8/Ex10_8.sce#S##94148 +10#Integrators and Differentiators#10.7#Sketch the output wave form#Ex10_7.sce#2528/CH10/EX10.7/Ex10_7.sce#S##94149 +10#Integrators and Differentiators#10.6#Output Waveform#Ex10_6.sce#2528/CH10/EX10.6/Ex10_6.sce#S##94147 +10#Integrators and Differentiators#10.5#Range for differentiation#Ex10_5.sce#2528/CH10/EX10.5/Ex10_5.sce#S##94146 +10#Integrators and Differentiators#10.4#Integrator connected to accelerometer#Ex10_4.sce#2528/CH10/EX10.4/Ex10_4.sce#S##94145 +10#Integrators and Differentiators#10.3#Output of the circuit#Ex10_3.sce#2528/CH10/EX10.3/Ex10_3.sce#S##94144 +10#Integrators and Differentiators#10.2#Output#Ex10_2.sce#2528/CH10/EX10.2/Ex10_2.sce#S##94143 +10#Integrators and Differentiators#10.1#vout and lower frequency range#Ex10_1.sce#2528/CH10/EX10.1/Ex10_1.sce#S##94142 +9#Oscillators and Frequency Generators#9.9#Free running frequency#Ex9_9.sce#2528/CH9/EX9.9/Ex9_9.sce#S##94138 +9#Oscillators and Frequency Generators#9.8#Maximum and minimum frequency#Ex9_8.sce#2528/CH9/EX9.8/Ex9_8.sce#S##94137 +9#Oscillators and Frequency Generators#9.7#Output frequency#Ex9_7.sce#2528/CH9/EX9.7/Ex9_7.sce#S##94136 +9#Oscillators and Frequency Generators#9.6#Square wave generator#Ex9_6.sce#2528/CH9/EX9.6/Ex9_6.sce#S##94135 +9#Oscillators and Frequency Generators#9.5#Output frequency and amplitude#Ex9_5.sce#2528/CH9/EX9.5/Ex9_5.sce#S##94134 +9#Oscillators and Frequency Generators#9.4#Value of Ri#Ex9_4.sce#2528/CH9/EX9.4/Ex9_4.sce#S##94133 +9#Oscillators and Frequency Generators#9.3#Frequency of oscillation#Ex9_3.sce#2528/CH9/EX9.3/Ex9_3.sce#S##94132 +9#Oscillators and Frequency Generators#9.2#Maximum and minimum frequency of oscillation#Ex9_2.sce#2528/CH9/EX9.2/Ex9_2.sce#S##94131 +9#Oscillators and Frequency Generators#9.12#range of output frequency#Ex9_12.sce#2528/CH9/EX9.12/Ex9_12.sce#S##94141 +9#Oscillators and Frequency Generators#9.11#Square wave generator#Ex9_11.sce#2528/CH9/EX9.11/Ex9_11.sce#S##94140 +9#Oscillators and Frequency Generators#9.10#Timing resistor and capacitor#Ex9_10.sce#2528/CH9/EX9.10/Ex9_10.sce#S##94139 +9#Oscillators and Frequency Generators#9.1#frequency of oscillation#Ex9_1.sce#2528/CH9/EX9.1/Ex9_1.sce#S##94130 +8#Voltage regulation#8.7#Heat sink rating#Ex8_7.sce#2528/CH8/EX8.7/Ex8_7.sce#S##94055 +8#Voltage regulation#8.6#Step down Voltage regulator#Ex8_6.sce#2528/CH8/EX8.6/Ex8_6.sce#S##94054 +8#Voltage regulation#8.5#2V to 5V supply#Ex8_5.sce#2528/CH8/EX8.5/Ex8_5.sce#S##94053 +8#Voltage regulation#8.4#12 V Regulator#Ex8_4.sce#2528/CH8/EX8.4/Ex8_4.sce#S##94052 +8#Voltage regulation#8.3#Value of R2#Ex8_3.sce#2528/CH8/EX8.3/Ex8_3.sce#S##94051 +8#Voltage regulation#8.2#The power dissapation#Ex8_2.sce#2528/CH8/EX8.2/Ex8_2.sce#S##94050 +8#Voltage regulation#8.1#Output #Ex8_1.sce#2528/CH8/EX8.1/Ex8_1.sce#S##94049 +7#Nonlinear circuits #7.9#Output Voltage#Ex7_9.sce#2528/CH7/EX7.9/Ex7_9.sce#S##94043 +7#Nonlinear circuits #7.8#Determine the Output voltage#Ex7_8.sce#2528/CH7/EX7.8/Ex7_8.sce#S##94042 +7#Nonlinear circuits #7.7#Sketch output waveform#Ex7_7.sce#2528/CH7/EX7.7/Ex7_7.sce#S##94041 +7#Nonlinear circuits #7.6#Temperature tranducer response characteristics#Ex7_6.sce#2528/CH7/EX7.6/Ex7_6.sce#S##94040 +7#Nonlinear circuits #7.5#Draw the transfer curve#Ex7_5.sce#2528/CH7/EX7.5/Ex7_5.sce#S##94048 +7#Nonlinear circuits #7.4#Sketch the transfer curve#Ex7_4.sce#2528/CH7/EX7.4/Ex7_4.sce#S##94047 +7#Nonlinear circuits #7.3#Sketch Vout#Ex7_3.sce#2528/CH7/EX7.3/Ex7_3.sce#S##94046 +7#Nonlinear circuits #7.2#Capacitor voltage and time constant#Ex7_2.sce#2528/CH7/EX7.2/Ex7_2.sce#S##94045 +7#Nonlinear circuits #7.1#Point at which led flashes#Ex7_1.sce#2528/CH7/EX7.1/Ex7_1.sce#S##94044 +6#Specialised Op Amps#6.7#Design a non inverting amplifier#Ex6_7.sce#2528/CH6/EX6.7/Ex6_7.sce#S##94120 +6#Specialised Op Amps#6.6#Design an amplifier#Ex6_6.sce#2528/CH6/EX6.6/Ex6_6.sce#S##94119 +6#Specialised Op Amps#6.5#Voltage controlled amplifier#Ex6_5.sce#2528/CH6/EX6.5/Ex6_5.sce#S##94118 +6#Specialised Op Amps#6.4#bandwidth required#Ex6_4.sce#2528/CH6/EX6.4/Ex6_4.sce#S##94117 +6#Specialised Op Amps#6.3#Power bandwidth#Ex6_3.sce#2528/CH6/EX6.3/Ex6_3.sce#S##94116 +6#Specialised Op Amps#6.2#Instrumentation amplifier#Ex6_2.sce#2528/CH6/EX6.2/Ex6_2.sce#S##94115 +6#Specialised Op Amps#6.1#Output signal#Ex6_1.sce#2528/CH6/EX6.1/Ex6_1.sce#S##94114 +5#Practical limitation of Op Amps circuits#5.9#Calculate new offset#Ex5_9.sce#2528/CH5/EX5.9/Ex5_9.sce#S##94107 +5#Practical limitation of Op Amps circuits#5.8#Minimum acceptable slew rate#Ex5_8.sce#2528/CH5/EX5.8/Ex5_8.sce#S##94106 +5#Practical limitation of Op Amps circuits#5.7#Does slewing occur#Ex5_7.sce#2528/CH5/EX5.7/Ex5_7.sce#S##94105 +5#Practical limitation of Op Amps circuits#5.6#Upper break requency#Ex5_6.sce#2528/CH5/EX5.6/Ex5_6.sce#S##94109 +5#Practical limitation of Op Amps circuits#5.5#System gain and upper break#Ex5_5.sce#2528/CH5/EX5.5/Ex5_5.sce#S##94102 +5#Practical limitation of Op Amps circuits#5.4#System gain and upper break frequency#Ex5_4.sce#2528/CH5/EX5.4/Ex5_4.sce#S##94101 +5#Practical limitation of Op Amps circuits#5.3#Minimum acceptable funity#Ex5_3.sce#2528/CH5/EX5.3/Ex5_3.sce#S##94100 +5#Practical limitation of Op Amps circuits#5.2#Frequency response#Ex5_2.sce#2528/CH5/EX5.2/Ex5_2.sce#S##94099 +5#Practical limitation of Op Amps circuits#5.14#Output noise voltage#Ex5_14.sce#2528/CH5/EX5.14/Ex5_14.sce#S##94113 +5#Practical limitation of Op Amps circuits#5.13#Ripples in output#Ex5_13.sce#2528/CH5/EX5.13/Ex5_13.sce#S##94112 +5#Practical limitation of Op Amps circuits#5.12#Output Voltage#Ex5_12.sce#2528/CH5/EX5.12/Ex5_12.sce#S##94111 +5#Practical limitation of Op Amps circuits#5.11#Output drift#Ex5_11.sce#2528/CH5/EX5.11/Ex5_11.sce#S##94110 +5#Practical limitation of Op Amps circuits#5.10#Output voltage typically#Ex5_10.sce#2528/CH5/EX5.10/Ex5_10.sce#S##94108 +5#Practical limitation of Op Amps circuits#5.1#Upper break frequency#Ex5_1.sce#2528/CH5/EX5.1/Ex5_1.sce#S##94103 +4#Basic Op Amp Circuits#4.9#Load current#Ex4_9.sce#2528/CH4/EX4.9/Ex4_9.sce#S##94090 +4#Basic Op Amp Circuits#4.8#Design the circuit#Ex4_8.sce#2528/CH4/EX4.8/Ex4_8.sce#S##94089 +4#Basic Op Amp Circuits#4.7#Minimum and maximum gain#Ex4_7.sce#2528/CH4/EX4.7/Ex4_7.sce#S##94088 +4#Basic Op Amp Circuits#4.6#Design an inverting amplifier#Ex4_6.sce#2528/CH4/EX4.6/Ex4_6.sce#S##94087 +4#Basic Op Amp Circuits#4.5#Input Impedance and output voltage#Ex4_5.sce#2528/CH4/EX4.5/Ex4_5.sce#S##94086 +4#Basic Op Amp Circuits#4.4#Input Impedance and Vout#Ex4_4.sce#2528/CH4/EX4.4/Ex4_4.sce#S##94085 +4#Basic Op Amp Circuits#4.3#Design a voltage follower#Ex4_3.sce#2528/CH4/EX4.3/Ex4_3.sce#S##94084 +4#Basic Op Amp Circuits#4.2#Design an amplifier#Ex4_2.sce#2528/CH4/EX4.2/Ex4_2.sce#S##94083 +4#Basic Op Amp Circuits#4.15#Design the difference amplifier#Ex4_15.sce#2528/CH4/EX4.15/Ex4_15.sce#S##94096 +4#Basic Op Amp Circuits#4.14#Determine the output of non inverting summer#Ex4_14.sce#2528/CH4/EX4.14/Ex4_14.sce#S##94095 +4#Basic Op Amp Circuits#4.13#Output of summing amplifier#Ex4_13.sce#2528/CH4/EX4.13/Ex4_13.sce#S##94094 +4#Basic Op Amp Circuits#4.12#Design the amplifier#Ex4_12.sce#2528/CH4/EX4.12/Ex4_12.sce#S##94093 +4#Basic Op Amp Circuits#4.11#Load Current#Ex4_11.sce#2528/CH4/EX4.11/Ex4_11.sce#S##94097 +4#Basic Op Amp Circuits#4.10#calculate Ri#Ex4_10.sce#2528/CH4/EX4.10/Ex4_10.sce#S##94091 +4#Basic Op Amp Circuits#4.1#Input Impedance and gain#Ex4_1.sce#2528/CH4/EX4.1/Ex4_1.sce#S##94082 +3#Negative Feedback#3.4#Amplifier current gain#Ex3_4.sce#2528/CH3/EX3.4/Ex3_4.sce#S##94081 +3#Negative Feedback#3.3#Input Output impedance#Ex3_3.sce#2528/CH3/EX3.3/Ex3_3.sce#S##94080 +3#Negative Feedback#3.2#Design the amplifier#Ex3_2.sce#2528/CH3/EX3.2/Ex3_2.sce#S##94079 +3#Negative Feedback#3.1#Closed loop gain and break frequency#Ex3_1.sce#2528/CH3/EX3.1/Ex3_1.sce#S##94078 +2#Operational Amplifier Internals#2.2#Square up circuit#Ex2_2.sce#2528/CH2/EX2.2/Ex2_2.sce#S##94077 +1#Introductory Concepts and Fundamentals#1.9#Output power in watts #Ex1_9.sce#2528/CH1/EX1.9/Ex1_9.sce#S##94065 +1#Introductory Concepts and Fundamentals#1.8#Output power in dBW and dBm#Ex1_8.sce#2528/CH1/EX1.8/Ex1_8.sce#S##94064 +1#Introductory Concepts and Fundamentals#1.7#Power in dBW#Ex1_7.sce#2528/CH1/EX1.7/Ex1_7.sce#S##94063 +1#Introductory Concepts and Fundamentals#1.6#Output gain #Ex1_6.sce#2528/CH1/EX1.6/Ex1_6.sce#S##94061 +1#Introductory Concepts and Fundamentals#1.5#Gain#Ex1_5.sce#2528/CH1/EX1.5/Ex1_5.sce#S##98857 +1#Introductory Concepts and Fundamentals#1.4#Total dB gain#Ex1_4.sce#2528/CH1/EX1.4/Ex1_4.sce#S##94059 +1#Introductory Concepts and Fundamentals#1.3#Ordinary power gain#Ex1_3.sce#2528/CH1/EX1.3/Ex1_3.sce#S##94058 +1#Introductory Concepts and Fundamentals#1.2#Loss in dB#Ex1_2.sce#2528/CH1/EX1.2/Ex1_2.sce#S##94057 +1#Introductory Concepts and Fundamentals#1.19#Find input output voltage gains#Ex1_19.sce#2528/CH1/EX1.19/Ex1_19.sce#S##94076 +1#Introductory Concepts and Fundamentals#1.18#Find current in the circuit#Ex1_18.sce#2528/CH1/EX1.18/Ex1_18.sce#S##94075 +1#Introductory Concepts and Fundamentals#1.17#Bode gain plot #Ex1_17.sce#2528/CH1/EX1.17/Ex1_17.sce#S##94074 +1#Introductory Concepts and Fundamentals#1.16#The rise time for Lag network #Ex1_16.sce#2528/CH1/EX1.16/Ex1_16.sce#S##94073 +1#Introductory Concepts and Fundamentals#1.15#Gain and phase values at 1600000 Hz#Ex1_15.sce#2528/CH1/EX1.15/Ex1_15.sce#S##94071 +1#Introductory Concepts and Fundamentals#1.14#Phase Response#Ex1_14.sce#2528/CH1/EX1.14/Ex1_14.sce#S##94070 +1#Introductory Concepts and Fundamentals#1.13#Gain lost at 10 Hz#Ex1_13.sce#2528/CH1/EX1.13/Ex1_13.sce#S##94069 +1#Introductory Concepts and Fundamentals#1.12#The gain of amplifier in dB#Ex1_12.sce#2528/CH1/EX1.12/Ex1_12.sce#S##94068 +1#Introductory Concepts and Fundamentals#1.11#Output signal in dBV#Ex1_11.sce#2528/CH1/EX1.11/Ex1_11.sce#S##94072 +1#Introductory Concepts and Fundamentals#1.10#Value in dBV#Ex1_10.sce#2528/CH1/EX1.10/Ex1_10.sce#S##94066 +1#Introductory Concepts and Fundamentals#1.1#Decibel power gain#Ex1_1.sce#2528/CH1/EX1.1/Ex1_1.sce#S##94056 diff --git a/latex/tmp_2594_contributor.txt b/latex/tmp_2594_contributor.txt index ca7302cd2..ca8ba0ad5 100755 --- a/latex/tmp_2594_contributor.txt +++ b/latex/tmp_2594_contributor.txt @@ -1 +1 @@ -Sakshi Sharma #B.tech #Electronics Engineering#UTTAR PARDESH TECHNICAL UNIVERSITY#None#Bhavani Jalkrish +Sakshi Sharma #B.tech #Electronics Engineering#Dr. A.P.J. Abdul Kalam Technical University#None#Bhavani Jalkrish diff --git a/latex/tmp_2621_contributor.txt b/latex/tmp_2621_contributor.txt index f68a9bfb8..147630ecb 100644 --- a/latex/tmp_2621_contributor.txt +++ b/latex/tmp_2621_contributor.txt @@ -1 +1 @@ -Amit Sexana#B.Tech#Electronics Engineering#UPTU#None#Harpreeth Singh +Amit Sexana#B.Tech#Electronics Engineering#Dr. A.P.J. Abdul Kalam Technical University#None#Harpreeth Singh diff --git a/latex/tmp_2627_contributor.txt b/latex/tmp_2627_contributor.txt index 80a31b52a..90b5bea0f 100755 --- a/latex/tmp_2627_contributor.txt +++ b/latex/tmp_2627_contributor.txt @@ -1 +1 @@ -Keshav Pandey#B.Tech#Mechanical Engineering#UKTU#None#K. V. P. Pradeep +Keshav Pandey#B.Tech#Mechanical Engineering#Uttarakhand Technical University#None#K. V. P. Pradeep diff --git a/latex/tmp_2633_data.txt b/latex/tmp_2633_data.txt index e69de29bb..f27199cd6 100644 --- a/latex/tmp_2633_data.txt +++ b/latex/tmp_2633_data.txt @@ -0,0 +1,79 @@ +12#Hydrodynamics#12.4#Ex 4#12_4.sce#2633/CH12/EX12.4/12_4.sce#S##87120 +12#Hydrodynamics#12.3#Ex 3#Ex12_3.sce#2633/CH12/EX12.3/Ex12_3.sce#S##108844 +12#Hydrodynamics#12.2#Ex 2#12_2.sce#2633/CH12/EX12.2/12_2.sce#S##87118 +12#Hydrodynamics#12.1#Ex 1#12_1.sce#2633/CH12/EX12.1/12_1.sce#S##87146 +11#Hydrostatics#11.6#Ex 6#Ex11_6.sce#2633/CH11/EX11.6/Ex11_6.sce#S##108843 +11#Hydrostatics#11.4#Ex 4#11_4.sce#2633/CH11/EX11.4/11_4.sce#S##87115 +11#Hydrostatics#11.3#Ex 3#11_3.sce#2633/CH11/EX11.3/11_3.sce#S##103493 +11#Hydrostatics#11.2#Ex 2#11_2.sce#2633/CH11/EX11.2/11_2.sce#S##87113 +11#Hydrostatics#11.1#Ex 1#11_1.sce#2633/CH11/EX11.1/11_1.sce#S##87112 +11#Hydrostatics#10.5#Ex 5#11_5.sce#2633/CH11/EX10.5/11_5.sce#S##87116 +10#Force in plane framework#10.5#Ex 3#EX10_5.sce#2633/CH10/EX10.5/EX10_5.sce#S##108842 +10#Force in plane framework#10.4#Ex 2#10_4.sce#2633/CH10/EX10.4/10_4.sce#S##87110 +10#Force in plane framework#10.3#Ex 1#10_3.sce#2633/CH10/EX10.3/10_3.sce#S##87109 +9#Torsion of shafts#9.6#Ex 6#Ex9_6.sce#2633/CH9/EX9.6/Ex9_6.sce#S##108841 +9#Torsion of shafts#9.5#Ex 5#9_5.sce#2633/CH9/EX9.5/9_5.sce#S##87107 +9#Torsion of shafts#9.4#Ex 4#9_4.sce#2633/CH9/EX9.4/9_4.sce#S##87106 +9#Torsion of shafts#9.3#Ex 3#9_3.sce#2633/CH9/EX9.3/9_3.sce#S##87105 +9#Torsion of shafts#9.2#Ex 2#9_2.sce#2633/CH9/EX9.2/9_2.sce#S##87145 +9#Torsion of shafts#9.1#Ex 1#9_1.sce#2633/CH9/EX9.1/9_1.sce#S##87104 +8#Bending of beams#8.4#Ex 4#8_4.sce#2633/CH8/EX8.4/8_4.sce#S##87103 +8#Bending of beams#8.3#Ex 3#8_3.sce#2633/CH8/EX8.3/8_3.sce#S##87102 +8#Bending of beams#8.2#Ex 2#Ex8_2.sce#2633/CH8/EX8.2/Ex8_2.sce#S##108845 +8#Bending of beams#8.1#Ex1#8_1.sce#2633/CH8/EX8.1/8_1.sce#S##87100 +7#Shear force and bending moment diagrams#7.3#Ex 2#Ex7_3.sce#2633/CH7/EX7.3/Ex7_3.sce#S##108840 +7#Shear force and bending moment diagrams#7.2#Ex 1#7_2.sce#2633/CH7/EX7.2/7_2.sce#S##87098 +6#Strength of materials#6.9#Ex 9#6_9.sce#2633/CH6/EX6.9/6_9.sce#S##87093 +6#Strength of materials#6.8#Ex 8#6_8.sce#2633/CH6/EX6.8/6_8.sce#S##87092 +6#Strength of materials#6.7#Ex 7#6_7.sce#2633/CH6/EX6.7/6_7.sce#S##87091 +6#Strength of materials#6.6#Ex 6#6_6.sce#2633/CH6/EX6.6/6_6.sce#S##87090 +6#Strength of materials#6.5#Ex 5#Ex6_5.sce#2633/CH6/EX6.5/Ex6_5.sce#S##108839 +6#Strength of materials#6.4#Ex 4#Ex6_4.sce#2633/CH6/EX6.4/Ex6_4.sce#S##108838 +6#Strength of materials#6.3#Ex 3#6_3.sce#2633/CH6/EX6.3/6_3.sce#S##87087 +6#Strength of materials#6.2#Ex 2#6_2.sce#2633/CH6/EX6.2/6_2.sce#S##102810 +6#Strength of materials#6.14#Ex 14#6_14.sce#2633/CH6/EX6.14/6_14.sce#S##87097 +6#Strength of materials#6.13#Ex 13#6_13.sce#2633/CH6/EX6.13/6_13.sce#S##87096 +6#Strength of materials#6.12#Ex 12#6_12.sce#2633/CH6/EX6.12/6_12.sce#S##87144 +6#Strength of materials#6.11#Ex 11#6_11.sce#2633/CH6/EX6.11/6_11.sce#S##87095 +6#Strength of materials#6.10#Ex 10#6_10.sce#2633/CH6/EX6.10/6_10.sce#S##87094 +6#Strength of materials#6.1#Ex 1#6_1.sce#2633/CH6/EX6.1/6_1.sce#S##87085 +5#Mechanisms#5.5#Ex 5#Ex5_5.sce#2633/CH5/EX5.5/Ex5_5.sce#S##108837 +5#Mechanisms#5.4#Ex 4#5_4.sce#2633/CH5/EX5.4/5_4.sce#S##87083 +5#Mechanisms#5.3#Ex 3#5_3.sce#2633/CH5/EX5.3/5_3.sce#S##87082 +5#Mechanisms#5.2#Ex 2#Ex5_2.sce#2633/CH5/EX5.2/Ex5_2.sce#S##108836 +5#Mechanisms#5.1#Ex 1#Ex5_1.sce#2633/CH5/EX5.1/Ex5_1.sce#S##108835 +4#Simple Harmonic motion#4.6#Ex 6#4_6.sce#2633/CH4/EX4.6/4_6.sce#S##87079 +4#Simple Harmonic motion#4.5#Ex 5#Ex4_5.sce#2633/CH4/EX4.5/Ex4_5.sce#S##108834 +4#Simple Harmonic motion#4.4#Ex 4#4_4.sce#2633/CH4/EX4.4/4_4.sce#S##87077 +4#Simple Harmonic motion#4.3#Ex 3#4_3.sce#2633/CH4/EX4.3/4_3.sce#S##87076 +4#Simple Harmonic motion#4.2#Ex 2#4_2.sce#2633/CH4/EX4.2/4_2.sce#S##87075 +4#Simple Harmonic motion#4.1#Ex 1#4_1.sce#2633/CH4/EX4.1/4_1.sce#S##87074 +3#Motion in a circle#3.9#Ex 9#3_9.sce#2633/CH3/EX3.9/3_9.sce#S##87073 +3#Motion in a circle#3.8#Ex 8#3_8.sce#2633/CH3/EX3.8/3_8.sce#S##87072 +3#Motion in a circle#3.7#Ex 7#Ex3_7.sce#2633/CH3/EX3.7/Ex3_7.sce#S##108833 +3#Motion in a circle#3.6#Ex 6#Ex3_6.sce#2633/CH3/EX3.6/Ex3_6.sce#S##108832 +3#Motion in a circle#3.5#Ex 5#3_5.sce#2633/CH3/EX3.5/3_5.sce#S##87069 +3#Motion in a circle#3.4#Ex 4#3_4.sce#2633/CH3/EX3.4/3_4.sce#S##87068 +3#Motion in a circle#3.3#Ex 3#3_3.sce#2633/CH3/EX3.3/3_3.sce#S##87067 +3#Motion in a circle#3.2#Ex 2#Ex3_2.sce#2633/CH3/EX3.2/Ex3_2.sce#S##108831 +3#Motion in a circle#3.1#Ex 1#3_1.sce#2633/CH3/EX3.1/3_1.sce#S##87065 +2#Angular Motion#2.9#Ex 9#Ex2_9.sce#2633/CH2/EX2.9/Ex2_9.sce#S##108830 +2#Angular Motion#2.8#Ex 8#Ex2_8.sce#2633/CH2/EX2.8/Ex2_8.sce#S##108829 +2#Angular Motion#2.7#Ex 7#2_7.sce#2633/CH2/EX2.7/2_7.sce#S##87060 +2#Angular Motion#2.6#Ex 6#Ex2_6.sce#2633/CH2/EX2.6/Ex2_6.sce#S##108828 +2#Angular Motion#2.5#Ex 5#2_5.sce#2633/CH2/EX2.5/2_5.sce#S##87058 +2#Angular Motion#2.4#Ex 4#2_4.sce#2633/CH2/EX2.4/2_4.sce#S##87057 +2#Angular Motion#2.3#Ex 3#Ex2_3.sce#2633/CH2/EX2.3/Ex2_3.sce#S##108827 +2#Angular Motion#2.2#Ex 2#2_2.sce#2633/CH2/EX2.2/2_2.sce#S##87055 +2#Angular Motion#2.11#Ex 11#2_11.sce#2633/CH2/EX2.11/2_11.sce#S##87064 +2#Angular Motion#2.10#Ex 10#2_10.sce#2633/CH2/EX2.10/2_10.sce#S##102808 +2#Angular Motion#2.1#Ex 1#2_1.sce#2633/CH2/EX2.1/2_1.sce#S##87054 +1#Linear Motion#1.9#Ex 9#Ex1_9.sce#2633/CH1/EX1.9/Ex1_9.sce#S##108826 +1#Linear Motion#1.8#Ex 8#1_8.sce#2633/CH1/EX1.8/1_8.sce#S##87052 +1#Linear Motion#1.7#Ex 7#1_7.sce#2633/CH1/EX1.7/1_7.sce#S##87051 +1#Linear Motion#1.6#Ex 6#Ex1_6.sce#2633/CH1/EX1.6/Ex1_6.sce#S##108825 +1#Linear Motion#1.5#Ex 5#1_5.sce#2633/CH1/EX1.5/1_5.sce#S##87049 +1#Linear Motion#1.4#Ex 4#Ex1_4.sce#2633/CH1/EX1.4/Ex1_4.sce#S##108824 +1#Linear Motion#1.3#Ex 3#1_3.sce#2633/CH1/EX1.3/1_3.sce#S##87047 +1#Linear Motion#1.2#Ex 2#Ex1_2.sce#2633/CH1/EX1.2/Ex1_2.sce#S##108823 +1#Linear Motion#1.1#Ex 1#Ex1_1.sce#2633/CH1/EX1.1/Ex1_1.sce#S##108822 diff --git a/latex/tmp_2699_data.txt b/latex/tmp_2699_data.txt index e69de29bb..6d0594558 100755 --- a/latex/tmp_2699_data.txt +++ b/latex/tmp_2699_data.txt @@ -0,0 +1,272 @@ +14#Digital Logic#14.9#Boolean Solutions#Ex14_9.sce#2699/CH14/EX14.9/Ex14_9.sce#S##97183 +14#Digital Logic#14.8#Boolean Solutions#Ex14_8.sce#2699/CH14/EX14.8/Ex14_8.sce#S##97182 +14#Digital Logic#14.7#Boolean Solutions#Ex14_7.sce#2699/CH14/EX14.7/Ex14_7.sce#S##97181 +14#Digital Logic#14.6#Boolean Solutions#Ex14_6.sce#2699/CH14/EX14.6/Ex14_6.sce#S##97180 +14#Digital Logic#14.5#Boolean Solutions#Ex14_5.sce#2699/CH14/EX14.5/Ex14_5.sce#S##97179 +14#Digital Logic#14.4#Boolean Solutions#Ex14_4.sce#2699/CH14/EX14.4/Ex14_4.sce#S##97178 +14#Digital Logic#14.3#Implementation of EXNOR gate using NOR gate#Ex14_3.sce#2699/CH14/EX14.3/Ex14_3.sce#S##97176 +14#Digital Logic#14.3#Implementation of EXNOR gate using NOR gate#Fig_Ex14_3.xcos#2699/CH14/EX14.3/Fig_Ex14_3.xcos#X##97177 +14#Digital Logic#14.22#simplification of the given logic expression using Demorgans theorem#Ex14_22.sce#2699/CH14/EX14.22/Ex14_22.sce#S##97198 +14#Digital Logic#14.21#simplification of the given logic expression #Ex14_21.sce#2699/CH14/EX14.21/Ex14_21.sce#S##97197 +14#Digital Logic#14.20#truth table of the given logic expression#Ex14_20.sce#2699/CH14/EX14.20/Ex14_20.sce#S##97196 +14#Digital Logic#14.2#Implementation of EXNOR gate using NAND gate#Ex14_2.sce#2699/CH14/EX14.2/Ex14_2.sce#S##97174 +14#Digital Logic#14.2#Implementation of EXNOR gate using NAND gate#Fig_Ex14_2.xcos#2699/CH14/EX14.2/Fig_Ex14_2.xcos#X##97175 +14#Digital Logic#14.19#construction of the given logic circuit using AND OR and INVERTER logic#Ex14_19.sce#2699/CH14/EX14.19/Ex14_19.sce#S##97193 +14#Digital Logic#14.19#construction of the given logic circuit using AND OR and INVERTER logic#Fig_Ex14_19_a.xcos#2699/CH14/EX14.19/Fig_Ex14_19_a.xcos#X##97194 +14#Digital Logic#14.19#construction of the given logic circuit using AND OR and INVERTER logic#Fig_Ex14_19_b.xcos#2699/CH14/EX14.19/Fig_Ex14_19_b.xcos#X##97195 +14#Digital Logic#14.18#Boolean Solutions#Ex14_18.sce#2699/CH14/EX14.18/Ex14_18.sce#S##97192 +14#Digital Logic#14.17#Boolean Solutions#Ex14_17.sce#2699/CH14/EX14.17/Ex14_17.sce#S##97191 +14#Digital Logic#14.16#Boolean Solutions#Ex14_16.sce#2699/CH14/EX14.16/Ex14_16.sce#S##97190 +14#Digital Logic#14.15#Boolean Solutions#Ex14_15.sce#2699/CH14/EX14.15/Ex14_15.sce#S##97189 +14#Digital Logic#14.14#Boolean Solutions#Ex14_14.sce#2699/CH14/EX14.14/Ex14_14.sce#S##97188 +14#Digital Logic#14.13#Boolean Solutions#Ex14_13.sce#2699/CH14/EX14.13/Ex14_13.sce#S##97187 +14#Digital Logic#14.12#Boolean Solutions#Ex14_12.sce#2699/CH14/EX14.12/Ex14_12.sce#S##97186 +14#Digital Logic#14.11#Boolean Solutions#Ex14_11.sce#2699/CH14/EX14.11/Ex14_11.sce#S##97185 +14#Digital Logic#14.10#Boolean Solutions#Ex14_10.sce#2699/CH14/EX14.10/Ex14_10.sce#S##97184 +14#Digital Logic#14.1#Representation of the given boolean expression#Ex14_1.sce#2699/CH14/EX14.1/Ex14_1.sce#S##97172 +14#Digital Logic#14.1#Representation of the given boolean expression#Fig_Ex14_1.xcos#2699/CH14/EX14.1/Fig_Ex14_1.xcos#X##97173 +13#Number Systems#13.9#725point63 with base 8 to binary equivalent#Ex13_9.sce#2699/CH13/EX13.9/Ex13_9.sce#S##97109 +13#Number Systems#13.8#634 with base 8 to binary equivalent#Ex13_8.sce#2699/CH13/EX13.8/Ex13_8.sce#S##97108 +13#Number Systems#13.71#decimal subtraction in 8421BCD using 9s complement method#Ex13_71.sce#2699/CH13/EX13.71/Ex13_71.sce#S##97171 +13#Number Systems#13.70#decimal addition in 8421BCD#Ex13_70.sce#2699/CH13/EX13.70/Ex13_70.sce#S##97170 +13#Number Systems#13.7#111101100 with base 2 to octal equivalent#Ex13_7.sce#2699/CH13/EX13.7/Ex13_7.sce#S##97107 +13#Number Systems#13.69#subtraction of 854 from 3B7 using 16s complement#Ex13_69.sce#2699/CH13/EX13.69/Ex13_69.sce#S##97169 +13#Number Systems#13.68#subtraction of 972 from CB2 using 16s complement #Ex13_68.sce#2699/CH13/EX13.68/Ex13_68.sce#S##97168 +13#Number Systems#13.67#16s complement of A8C#Ex13_67.sce#2699/CH13/EX13.67/Ex13_67.sce#S##97167 +13#Number Systems#13.66#subtraction of C14 from 69B using 15s complement#Ex13_66.sce#2699/CH13/EX13.66/Ex13_66.sce#S##97166 +13#Number Systems#13.65#subtraction of 98F from B02 using 15s complement#Ex13_65.sce#2699/CH13/EX13.65/Ex13_65.sce#S##97165 +13#Number Systems#13.64#15s complement of A9B#Ex13_64.sce#2699/CH13/EX13.64/Ex13_64.sce#S##97164 +13#Number Systems#13.63#hexadecimal addition#Ex13_63.sce#2699/CH13/EX13.63/Ex13_63.sce#S##97163 +13#Number Systems#13.62#hexadecimal addition#Ex13_62.sce#2699/CH13/EX13.62/Ex13_62.sce#S##97162 +13#Number Systems#13.61#hexadecimal addition#Ex13_61.sce#2699/CH13/EX13.61/Ex13_61.sce#S##97161 +13#Number Systems#13.60#subtract 451 from 316 using 8s complement#Ex13_60.sce#2699/CH13/EX13.60/Ex13_60.sce#S##97160 +13#Number Systems#13.6#counting from 0 to 9 in radix 5#Ex13_6.sce#2699/CH13/EX13.6/Ex13_6.sce#S##97106 +13#Number Systems#13.59#subtract 413 from 516 using 8s complement#Ex13_59.sce#2699/CH13/EX13.59/Ex13_59.sce#S##97159 +13#Number Systems#13.58#8s complement of 346#Ex13_58.sce#2699/CH13/EX13.58/Ex13_58.sce#S##97158 +13#Number Systems#13.57#subtract 243 from 153 using 7s complement#Ex13_57.sce#2699/CH13/EX13.57/Ex13_57.sce#S##97157 +13#Number Systems#13.56#subtract 157 from 176 using 7s complement#Ex13_56.sce#2699/CH13/EX13.56/Ex13_56.sce#S##97156 +13#Number Systems#13.55#7s complement of 612#Ex13_55.sce#2699/CH13/EX13.55/Ex13_55.sce#S##97155 +13#Number Systems#13.54#octal nos addition #Ex13_54.sce#2699/CH13/EX13.54/Ex13_54.sce#S##97154 +13#Number Systems#13.53#octal nos addition #Ex13_53.sce#2699/CH13/EX13.53/Ex13_53.sce#S##97153 +13#Number Systems#13.52#addition of octal nos #Ex13_52.sce#2699/CH13/EX13.52/Ex13_52.sce#S##97152 +13#Number Systems#13.51#binary nos subtraction using 1s and 2s complement#Ex13_51.sce#2699/CH13/EX13.51/Ex13_51.sce#S##97151 +13#Number Systems#13.50#decimal nos subtraction using 2s complement#Ex13_50.sce#2699/CH13/EX13.50/Ex13_50.sce#S##97150 +13#Number Systems#13.5#decimal equivalent of 231point23 with base 4#Ex13_5.sce#2699/CH13/EX13.5/Ex13_5.sce#S##97105 +13#Number Systems#13.49#expression of the given decimal nos in 1s and 2s complement#Ex13_49.sce#2699/CH13/EX13.49/Ex13_49.sce#S##97149 +13#Number Systems#13.48#subtraction of 111001 from 101011 using 2s complement#Ex13_48.sce#2699/CH13/EX13.48/Ex13_48.sce#S##97148 +13#Number Systems#13.47#subtraction of 101011 from 111001 using 2s complement#Ex13_47.sce#2699/CH13/EX13.47/Ex13_47.sce#S##97147 +13#Number Systems#13.46#subtraction of 111001 from 101011 using 1s complement#Ex13_46.sce#2699/CH13/EX13.46/Ex13_46.sce#S##97146 +13#Number Systems#13.45#subtraction of 101011 from 111001 using 1s complement#Ex13_45.sce#2699/CH13/EX13.45/Ex13_45.sce#S##97145 +13#Number Systems#13.44#subtraction of 0101 from 1011#Ex13_44.sce#2699/CH13/EX13.44/Ex13_44.sce#S##97144 +13#Number Systems#13.43#addition of 28 and 15 in binary#Ex13_43.sce#2699/CH13/EX13.43/Ex13_43.sce#S##97143 +13#Number Systems#13.42#binary addition#Ex13_42.sce#2699/CH13/EX13.42/Ex13_42.sce#S##97142 +13#Number Systems#13.41#16s complement of A8C#Ex13_41.sce#2699/CH13/EX13.41/Ex13_41.sce#S##97141 +13#Number Systems#13.40#15s complement of A9B#Ex13_40.sce#2699/CH13/EX13.40/Ex13_40.sce#S##97140 +13#Number Systems#13.4#3FD in power of 16 and its decimal equivalent#Ex13_4.sce#2699/CH13/EX13.4/Ex13_4.sce#S##97104 +13#Number Systems#13.39#8s complement of 346#Ex13_39.sce#2699/CH13/EX13.39/Ex13_39.sce#S##97139 +13#Number Systems#13.38#7s complement of 612#Ex13_38.sce#2699/CH13/EX13.38/Ex13_38.sce#S##97138 +13#Number Systems#13.37#2s complement of 10100011 #Ex13_37.sce#2699/CH13/EX13.37/Ex13_37.sce#S##97137 +13#Number Systems#13.36#2s complement of 1001#Ex13_36.sce#2699/CH13/EX13.36/Ex13_36.sce#S##97136 +13#Number Systems#13.35#1s complement of 10111001#Ex13_35.sce#2699/CH13/EX13.35/Ex13_35.sce#S##97135 +13#Number Systems#13.34#1s complement of 1101 #EX13_34.sce#2699/CH13/EX13.34/EX13_34.sce#S##97134 +13#Number Systems#13.33#determination of the value of base x#EX13_33.sce#2699/CH13/EX13.33/EX13_33.sce#S##97133 +13#Number Systems#13.32#2AC5pointD with base 16 to dec oct and bin#EX13_32.sce#2699/CH13/EX13.32/EX13_32.sce#S##97132 +13#Number Systems#13.31#convert the given binary nos to dec hex and oct#Ex13_31.sce#2699/CH13/EX13.31/Ex13_31.sce#S##97131 +13#Number Systems#13.30#22point46 with base 10 to hexadecimal equivalent#Ex13_30.sce#2699/CH13/EX13.30/Ex13_30.sce#S##97130 +13#Number Systems#13.3#567 in power of 8 and its decimal equivalent#Ex13_3.sce#2699/CH13/EX13.3/Ex13_3.sce#S##97103 +13#Number Systems#13.29#35point45 with base 10 to octal equivalent#Ex13_29.sce#2699/CH13/EX13.29/Ex13_29.sce#S##97129 +13#Number Systems#13.28#24point6 with base 10 to binary equivalent#Ex13_28.sce#2699/CH13/EX13.28/Ex13_28.sce#S##97128 +13#Number Systems#13.27#point1289062 with base 10 to hexadecimal equivalent#Ex13_27.sce#2699/CH13/EX13.27/Ex13_27.sce#S##97127 +13#Number Systems#13.26#point640625 with base 10 to octal equivalent#Ex13_26.sce#2699/CH13/EX13.26/Ex13_26.sce#S##97126 +13#Number Systems#13.25#point95 with base 10 to binary equivalent#Ex13_25.sce#2699/CH13/EX13.25/Ex13_25.sce#S##97125 +13#Number Systems#13.24#point8125 with base 10 to binary equivalent#Ex13_24.sce#2699/CH13/EX13.24/Ex13_24.sce#S##97124 +13#Number Systems#13.23#54 with base 10 to radix 4#Ex13_23.sce#2699/CH13/EX13.23/Ex13_23.sce#S##97123 +13#Number Systems#13.22#3509 with base 10 to hexadecimal equivalent#Ex13_22.sce#2699/CH13/EX13.22/Ex13_22.sce#S##97122 +13#Number Systems#13.21#214 with base 10 to octal equivalent#Ex13_21.sce#2699/CH13/EX13.21/Ex13_21.sce#S##97121 +13#Number Systems#13.20#37 with base 10 to binary equivalent#Ex13_20.sce#2699/CH13/EX13.20/Ex13_20.sce#S##97120 +13#Number Systems#13.2#1101point101 in power of 2 and its decimal equivalent#Ex13_2.sce#2699/CH13/EX13.2/Ex13_2.sce#S##97102 +13#Number Systems#13.19#614point15 with base 7 to decimal equivalent#Ex13_19.sce#2699/CH13/EX13.19/Ex13_19.sce#S##97119 +13#Number Systems#13.18#3102point12 with base 4 to decimal equivalent#Ex13_18.sce#2699/CH13/EX13.18/Ex13_18.sce#S##97118 +13#Number Systems#13.17#9B2point1A with base 16 to decimal equivalent#Ex13_17.sce#2699/CH13/EX13.17/Ex13_17.sce#S##97117 +13#Number Systems#13.16#475point25 with base 8 to decimal equivalent#Ex13_16.sce#2699/CH13/EX13.16/Ex13_16.sce#S##97116 +13#Number Systems#13.15#1101point1 with base 2 to decimal equivalent#Ex13_15.sce#2699/CH13/EX13.15/Ex13_15.sce#S##97115 +13#Number Systems#13.14#25B with base 16 to octal equivalent#Ex13_14.sce#2699/CH13/EX13.14/Ex13_14.sce#S##97114 +13#Number Systems#13.13#615 with base 8 to hexadecimal equivalent#Ex13_13.sce#2699/CH13/EX13.13/Ex13_13.sce#S##97113 +13#Number Systems#13.12#5A9pointB4 with base 16 to binary equivalent#Ex13_12.sce#2699/CH13/EX13.12/Ex13_12.sce#S##97112 +13#Number Systems#13.11#3FD with base 16 to binary equivalent#Ex13_11.sce#2699/CH13/EX13.11/Ex13_11.sce#S##97111 +13#Number Systems#13.10#1101100010011011 with base 2 to hexadecimal equivalent#Ex13_10.sce#2699/CH13/EX13.10/Ex13_10.sce#S##97110 +13#Number Systems#13.1#Represesntation of a number 98point72 in powers of 10#Ex13_1.sce#2699/CH13/EX13.1/Ex13_1.sce#S##97101 +12#Communication Systems#12.9#modulation index#Ex12_9.sce#2699/CH12/EX12.9/Ex12_9.sce#S##97072 +12#Communication Systems#12.8#modulation index#Ex12_8.sce#2699/CH12/EX12.8/Ex12_8.sce#S##97071 +12#Communication Systems#12.7#Antenna current#Ex12_7.sce#2699/CH12/EX12.7/Ex12_7.sce#S##97070 +12#Communication Systems#12.6#Power of each sidebands#Ex12_6.sce#2699/CH12/EX12.6/Ex12_6.sce#S##97069 +12#Communication Systems#12.5#Total power#Ex12_5.sce#2699/CH12/EX12.5/Ex12_5.sce#S##97068 +12#Communication Systems#12.4#1Modulation index 2sideband frequencies and amplitude 3bandwidth 4total power 5transmission efficiency#Ex12_4.sce#2699/CH12/EX12.4/Ex12_4.sce#S##108066 +12#Communication Systems#12.30#1Carrier swing 2frequency deviation 3carrier frequency 4modulation index#Ex12_30.sce#2699/CH12/EX12.30/Ex12_30.sce#S##108072 +12#Communication Systems#12.3#AM modulated waveform#Ex12_3.sce#2699/CH12/EX12.3/Ex12_3.sce#S##98821 +12#Communication Systems#12.29#modulation index#Ex12_29.sce#2699/CH12/EX12.29/Ex12_29.sce#S##97092 +12#Communication Systems#12.28#1Frequency deviation 2carrier swing 3lowest frequency reached#Ex12_28.sce#2699/CH12/EX12.28/Ex12_28.sce#S##108071 +12#Communication Systems#12.27#1Carrier swing 2highest and lowest frequencies 3modulation index#Ex12_27.sce#2699/CH12/EX12.27/Ex12_27.sce#S##108070 +12#Communication Systems#12.26#Frequency deviation and carrier swing#Ex12_26.sce#2699/CH12/EX12.26/Ex12_26.sce#S##97089 +12#Communication Systems#12.25#Percent modulation#Ex12_25.sce#2699/CH12/EX12.25/Ex12_25.sce#S##97088 +12#Communication Systems#12.24#sketching the spectrum of the modulated FM wave#Ex12_24.sce#2699/CH12/EX12.24/Ex12_24.sce#S##98824 +12#Communication Systems#12.24#sketching the spectrum of the modulated FM wave#waveform.jpg#2699/CH12/EX12.24/waveform.jpg#R##98825 +12#Communication Systems#12.23#1carrier and modulating frequency 2modulation index and maximum deviation 3Power dissipated#Ex12_23.sce#2699/CH12/EX12.23/Ex12_23.sce#S##108069 +12#Communication Systems#12.22#Peak frequency deviation modulation index#Ex12_22.sce#2699/CH12/EX12.22/Ex12_22.sce#S##97085 +12#Communication Systems#12.21#Maximum deviation and modulation index#Ex12_21.sce#2699/CH12/EX12.21/Ex12_21.sce#S##97084 +12#Communication Systems#12.20#Frequency deviation and modulation index#Ex12_20.sce#2699/CH12/EX12.20/Ex12_20.sce#S##97083 +12#Communication Systems#12.2#Lower and upper side band frequency#Ex12_2.sce#2699/CH12/EX12.2/Ex12_2.sce#S##97064 +12#Communication Systems#12.19#frequency deviation and modulation index#Ex12_19.sce#2699/CH12/EX12.19/Ex12_19.sce#S##97081 +12#Communication Systems#12.18#Percentage power saving#Ex12_18.sce#2699/CH12/EX12.18/Ex12_18.sce#S##97082 +12#Communication Systems#12.17#Equation of the wave and output wave form#Ex12_17.sce#2699/CH12/EX12.17/Ex12_17.sce#S##98822 +12#Communication Systems#12.17#Equation of the wave and output wave form#waveform.jpg#2699/CH12/EX12.17/waveform.jpg#R##98823 +12#Communication Systems#12.16#1Carrier frequency 2modulating frequency 3carrier power 4total power output 5peak power output#Ex12_16.sce#2699/CH12/EX12.16/Ex12_16.sce#S##108068 +12#Communication Systems#12.15#Current and percentage power swing#Ex12_15.sce#2699/CH12/EX12.15/Ex12_15.sce#S##97078 +12#Communication Systems#12.14#Current I#Ex12_14.sce#2699/CH12/EX12.14/Ex12_14.sce#S##97077 +12#Communication Systems#12.13#Total sideband power radiated#Ex12_13.sce#2699/CH12/EX12.13/Ex12_13.sce#S##97076 +12#Communication Systems#12.12#Frequencies#Ex12_12.sce#2699/CH12/EX12.12/Ex12_12.sce#S##108067 +12#Communication Systems#12.11#Carrier power#Ex12_11.sce#2699/CH12/EX12.11/Ex12_11.sce#S##97074 +12#Communication Systems#12.10#modulation index and total radiated power#Ex12_10.sce#2699/CH12/EX12.10/Ex12_10.sce#S##97073 +12#Communication Systems#12.1#Modulation index and percentage modulation#Ex12_1.sce#2699/CH12/EX12.1/Ex12_1.sce#S##108065 +11#Cathode Ray Oscilloscope CRO#11.2#Rms voltage and frequency#Ex11_2.sce#2699/CH11/EX11.2/Ex11_2.sce#S##97062 +11#Cathode Ray Oscilloscope CRO#11.1#Amplitude and rms value of sinusoidal voltage#Ex11_1.sce#2699/CH11/EX11.1/Ex11_1.sce#S##97061 +10#Introduction to Operational Amplifiers#10.9#Gain and output voltage#Ex10_9.sce#2699/CH10/EX10.9/Ex10_9.sce#S##97035 +10#Introduction to Operational Amplifiers#10.8#Feedback resistor Rf#Ex10_8.sce#2699/CH10/EX10.8/Ex10_8.sce#S##108062 +10#Introduction to Operational Amplifiers#10.7#Voltage gain and output waveforms#Ex10_7.sce#2699/CH10/EX10.7/Ex10_7.sce#S##98818 +10#Introduction to Operational Amplifiers#10.7#Voltage gain and output waveforms#waveform.jpg#2699/CH10/EX10.7/waveform.jpg#R##98819 +10#Introduction to Operational Amplifiers#10.6#Reading of output voltage on the voltmeter#Ex10_6.sce#2699/CH10/EX10.6/Ex10_6.sce#S##97031 +10#Introduction to Operational Amplifiers#10.5#Output voltage and waveforms#Ex10_5.sce#2699/CH10/EX10.5/Ex10_5.sce#S##98813 +10#Introduction to Operational Amplifiers#10.5#Output voltage and waveforms#Vin_0point5V.jpg#2699/CH10/EX10.5/Vin_0point5V.jpg#R##98814 +10#Introduction to Operational Amplifiers#10.5#Output voltage and waveforms#Vin_5V.jpg#2699/CH10/EX10.5/Vin_5V.jpg#R##98815 +10#Introduction to Operational Amplifiers#10.4#Voltage gain#Ex10_4.sce#2699/CH10/EX10.4/Ex10_4.sce#S##97030 +10#Introduction to Operational Amplifiers#10.3#Values of two input bias current#Ex10_3.sce#2699/CH10/EX10.3/Ex10_3.sce#S##97029 +10#Introduction to Operational Amplifiers#10.22#Output voltage#Ex10_22.sce#2699/CH10/EX10.22/Ex10_22.sce#S##97060 +10#Introduction to Operational Amplifiers#10.21#Design of an Opamp circuit#Ex10_21.sce#2699/CH10/EX10.21/Ex10_21.sce#S##97058 +10#Introduction to Operational Amplifiers#10.21#Design of an Opamp circuit#Fig_Ex_10_21.xcos#2699/CH10/EX10.21/Fig_Ex_10_21.xcos#X##97059 +10#Introduction to Operational Amplifiers#10.20#Design of adder circuit#Ex10_20.sce#2699/CH10/EX10.20/Ex10_20.sce#S##108064 +10#Introduction to Operational Amplifiers#10.20#Design of adder circuit#Fig_Ex_10_20.xcos#2699/CH10/EX10.20/Fig_Ex_10_20.xcos#X##97057 +10#Introduction to Operational Amplifiers#10.2#Input bias current and input offset current#Ex10_2.sce#2699/CH10/EX10.2/Ex10_2.sce#S##97028 +10#Introduction to Operational Amplifiers#10.19#Output voltage#Ex10_19.sce#2699/CH10/EX10.19/Ex10_19.sce#S##97055 +10#Introduction to Operational Amplifiers#10.18#Output voltage#Ex10_18.sce#2699/CH10/EX10.18/Ex10_18.sce#S##97054 +10#Introduction to Operational Amplifiers#10.17#Output voltage#Ex10_17.sce#2699/CH10/EX10.17/Ex10_17.sce#S##97053 +10#Introduction to Operational Amplifiers#10.16#Output voltage#Ex10_16.sce#2699/CH10/EX10.16/Ex10_16.sce#S##97052 +10#Introduction to Operational Amplifiers#10.15#Relation between Rf and R#Ex10_15.sce#2699/CH10/EX10.15/Ex10_15.sce#S##97051 +10#Introduction to Operational Amplifiers#10.14#Design of Scaling adder#Ex10_14.sce#2699/CH10/EX10.14/Ex10_14.sce#S##97047 +10#Introduction to Operational Amplifiers#10.14#Design of Scaling adder#Fig_Ex_10_14.xcos#2699/CH10/EX10.14/Fig_Ex_10_14.xcos#X##97048 +10#Introduction to Operational Amplifiers#10.13#Output voltage Vo#Ex10_13.sce#2699/CH10/EX10.13/Ex10_13.sce#S##97045 +10#Introduction to Operational Amplifiers#10.12#Otuput voltage Vo#Ex10_12.sce#2699/CH10/EX10.12/Ex10_12.sce#S##97042 +10#Introduction to Operational Amplifiers#10.12#Otuput voltage Vo#Fig_Ex10_12_V2_grounded.xcos#2699/CH10/EX10.12/Fig_Ex10_12_V2_grounded.xcos#X##97049 +10#Introduction to Operational Amplifiers#10.12#Otuput voltage Vo#Fig_Ex10_12_Vo1_grounded.xcos#2699/CH10/EX10.12/Fig_Ex10_12_Vo1_grounded.xcos#X##97046 +10#Introduction to Operational Amplifiers#10.12#Otuput voltage Vo#Fig_EX10_12.jpg#2699/CH10/EX10.12/Fig_EX10_12.jpg#R##97050 +10#Introduction to Operational Amplifiers#10.11#Output voltage Vo#Ex10_11.sce#2699/CH10/EX10.11/Ex10_11.sce#S##97041 +10#Introduction to Operational Amplifiers#10.10#Closed loop gain and feedback resistance#Ex10_10.sce#2699/CH10/EX10.10/Ex10_10.sce#S##108063 +10#Introduction to Operational Amplifiers#10.10#Closed loop gain and feedback resistance#Fig_Ex10_10.xcos#2699/CH10/EX10.10/Fig_Ex10_10.xcos#X##97040 +10#Introduction to Operational Amplifiers#10.1#Output voltage #Ex10_1.sce#2699/CH10/EX10.1/Ex10_1.sce#S##108061 +9#Oscillators#9.9#Frequency of oscillation#Ex9_9.sce#2699/CH9/EX9.9/Ex9_9.sce#S##97022 +9#Oscillators#9.8#designing the value of inductor L#Ex9_8.sce#2699/CH9/EX9.8/Ex9_8.sce#S##97021 +9#Oscillators#9.7#value of inductance L#Ex9_7.sce#2699/CH9/EX9.7/Ex9_7.sce#S##97019 +9#Oscillators#9.6#Frequency of oscillation#Ex9_6.sce#2699/CH9/EX9.6/Ex9_6.sce#S##97020 +9#Oscillators#9.5#Value of capacitor C#Ex9_5.sce#2699/CH9/EX9.5/Ex9_5.sce#S##97018 +9#Oscillators#9.4#Frequency of oscillations#Ex9_4.sce#2699/CH9/EX9.4/Ex9_4.sce#S##97017 +9#Oscillators#9.3#estimation of R and C#Ex9_3.sce#2699/CH9/EX9.3/Ex9_3.sce#S##97015 +9#Oscillators#9.2#Design of an RC phase shift oscillator#Ex9_2.sce#2699/CH9/EX9.2/Ex9_2.sce#S##108058 +9#Oscillators#9.2#Design of an RC phase shift oscillator#Fig_Ex9_2.xcos#2699/CH9/EX9.2/Fig_Ex9_2.xcos#X##97014 +9#Oscillators#9.13#Series and parallel resonant frequency#Ex9_13.sce#2699/CH9/EX9.13/Ex9_13.sce#S##108060 +9#Oscillators#9.12#1series resonant frequency 2parallel resonant frequency 3percentage that the parallel resonant frequency exceeds the series resonant frequency 4Q factor#Ex9_12.sce#2699/CH9/EX9.12/Ex9_12.sce#S##108059 +9#Oscillators#9.11#Range of capacitor C#Ex9_11.sce#2699/CH9/EX9.11/Ex9_11.sce#S##97024 +9#Oscillators#9.10#Range for the capacitor C#Ex9_10.sce#2699/CH9/EX9.10/Ex9_10.sce#S##97023 +9#Oscillators#9.1#Frequency of oscillations#Ex9_1.sce#2699/CH9/EX9.1/Ex9_1.sce#S##97012 +8#Amplifiers#8.4#Gain of an amplifier#Ex8_4.sce#2699/CH8/EX8.4/Ex8_4.sce#S##97010 +8#Amplifiers#8.3#Gain of an amplifier#Ex8_3.sce#2699/CH8/EX8.3/Ex8_3.sce#S##97011 +8#Amplifiers#8.2#Maximum voltage gain#Ex8_2.sce#2699/CH8/EX8.2/Ex8_2.sce#S##97009 +8#Amplifiers#8.1#Gain in dB scale#Ex8_1.sce#2699/CH8/EX8.1/Ex8_1.sce#S##97008 +7#Junction field effect transistors#7.2#1maximum and minimum od output voltage 2voltage gain#Ex7_2.sce#2699/CH7/EX7.2/Ex7_2.sce#S##108057 +7#Junction field effect transistors#7.1#Drain current#Ex7_1.sce#2699/CH7/EX7.1/Ex7_1.sce#S##108056 +6#Power control Devices#6.5#Range of Rt#Ex6_5.sce#2699/CH6/EX6.5/Ex6_5.sce#S##108055 +6#Power control Devices#6.4#Frequency of oscillations#Ex6_4.sce#2699/CH6/EX6.4/Ex6_4.sce#S##97004 +6#Power control Devices#6.3#Frequency of oscillations#Ex6_3.sce#2699/CH6/EX6.3/Ex6_3.sce#S##97003 +6#Power control Devices#6.2#Designing values of R1 R2 and R3#Ex6_2.sce#2699/CH6/EX6.2/Ex6_2.sce#S##108054 +6#Power control Devices#6.1#Finding of various ratings of SCR#Ex6_1.sce#2699/CH6/EX6.1/Ex6_1.sce#S##108053 +5#Biasing methods#5.9#Design of Collector to base bias circuit#Ex5_9.sce#2699/CH5/EX5.9/Ex5_9.sce#S##107997 +5#Biasing methods#5.9#Design of Collector to base bias circuit#Fig_Ex5_9.xcos#2699/CH5/EX5.9/Fig_Ex5_9.xcos#X##96996 +5#Biasing methods#5.8#Design of a fixed biased circuit #Ex5_8.sce#2699/CH5/EX5.8/Ex5_8.sce#S##107967 +5#Biasing methods#5.8#Design of a fixed biased circuit #Fig_Ex5_8.xcos#2699/CH5/EX5.8/Fig_Ex5_8.xcos#X##96990 +5#Biasing methods#5.7#Minimum and maximum values of Ic and Vce#Ex5_7.sce#2699/CH5/EX5.7/Ex5_7.sce#S##107895 +5#Biasing methods#5.6#Determination of Ic Ve and Vce #Ex5_6.sce#2699/CH5/EX5.6/Ex5_6.sce#S##107894 +5#Biasing methods#5.5#Calculation of Vce and Ic#Ex5_5.sce#2699/CH5/EX5.5/Ex5_5.sce#S##107893 +5#Biasing methods#5.4#Calculation of minimum and maximum values of Ic and Vce#Ex5_4.sce#2699/CH5/EX5.4/Ex5_4.sce#S##107892 +5#Biasing methods#5.3#Calculation of Q point values#Ex5_3.sce#2699/CH5/EX5.3/Ex5_3.sce#S##107891 +5#Biasing methods#5.2#Minimum and maximum values of Ic and Vce#Ex5_2.sce#2699/CH5/EX5.2/Ex5_2.sce#S##107890 +5#Biasing methods#5.15#Determination of percent change in Q values#Ex5_15.sce#2699/CH5/EX5.15/Ex5_15.sce#S##108047 +5#Biasing methods#5.14#Calculation of Re Vce and stability factor#Ex5_14.sce#2699/CH5/EX5.14/Ex5_14.sce#S##96998 +5#Biasing methods#5.13#Calculation of R1 and R3#Ex5_13.sce#2699/CH5/EX5.13/Ex5_13.sce#S##108044 +5#Biasing methods#5.12#Resistance Rb#Ex5_12.sce#2699/CH5/EX5.12/Ex5_12.sce#S##108039 +5#Biasing methods#5.11#Stability factor#Ex5_11.sce#2699/CH5/EX5.11/Ex5_11.sce#S##96994 +5#Biasing methods#5.10#Design of voltage divider bias circuit#Ex5_10.sce#2699/CH5/EX5.10/Ex5_10.sce#S##108010 +5#Biasing methods#5.10#Design of voltage divider bias circuit#Fig_Ex5_10.xcos#2699/CH5/EX5.10/Fig_Ex5_10.xcos#X##96993 +5#Biasing methods#5.1#Calculation of Ib Ic and Vce and the region of operation#Ex5_1.sce#2699/CH5/EX5.1/Ex5_1.sce#S##107889 +4#Transistors#4.4#current gain and emitter current#Ex4_4.sce#2699/CH4/EX4.4/Ex4_4.sce#S##96981 +4#Transistors#4.3#Dc voltage gain and current gain#Ex4_3.sce#2699/CH4/EX4.3/Ex4_3.sce#S##107888 +4#Transistors#4.2#Dc current gain and voltage gain#Ex4_2.sce#2699/CH4/EX4.2/Ex4_2.sce#S##96979 +4#Transistors#4.1#Base current#Ex4_1.sce#2699/CH4/EX4.1/Ex4_1.sce#S##107887 +3#Diode applications#3.9#1Average voltage 2efficiency#Ex3_9.sce#2699/CH3/EX3.9/Ex3_9.sce#S##96917 +3#Diode applications#3.8#Input power from the transformer#Ex3_8.sce#2699/CH3/EX3.8/Ex3_8.sce#S##96916 +3#Diode applications#3.7#1no load Dc voltage 2output voltage at 100mA 3percentage regulation#Ex3_7.sce#2699/CH3/EX3.7/Ex3_7.sce#S##96915 +3#Diode applications#3.6#Peak to peak value of output voltage#Ex3_6.sce#2699/CH3/EX3.6/Ex3_6.sce#S##96914 +3#Diode applications#3.5#1Power 2Percentage regulation 3efficiency of rectification and 4TUF#Ex3_5.sce#2699/CH3/EX3.5/Ex3_5.sce#S##96913 +3#Diode applications#3.41#Design of zener regulator#Ex4_41.sce#2699/CH3/EX3.41/Ex4_41.sce#S##96976 +3#Diode applications#3.41#Design of zener regulator#Fig_Ex3_41.xcos#2699/CH3/EX3.41/Fig_Ex3_41.xcos#X##96977 +3#Diode applications#3.40#series resistance and diode current#Ex3_40.sce#2699/CH3/EX3.40/Ex3_40.sce#S##96974 +3#Diode applications#3.40#series resistance and diode current#Fig_Ex3_40.xcos#2699/CH3/EX3.40/Fig_Ex3_40.xcos#X##96975 +3#Diode applications#3.4#Average output voltage#Ex3_4.sce#2699/CH3/EX3.4/Ex3_4.sce#S##96912 +3#Diode applications#3.39#Design of Voltage regulator#Ex3_39.sce#2699/CH3/EX3.39/Ex3_39.sce#S##96972 +3#Diode applications#3.39#Design of Voltage regulator#Fig_Ex3_39.xcos#2699/CH3/EX3.39/Fig_Ex3_39.xcos#X##96973 +3#Diode applications#3.38#Design of zener diode#Ex3_38.sce#2699/CH3/EX3.38/Ex3_38.sce#S##96967 +3#Diode applications#3.37#Design of zener diode#Fig_Ex3_37.xcos#2699/CH3/EX3.37/Fig_Ex3_37.xcos#X##96971 +3#Diode applications#3.36#Design of zener diode#Fig_Ex3_36.xcos#2699/CH3/EX3.36/Fig_Ex3_36.xcos#X##96970 +3#Diode applications#3.35#Minimum and maximum load current#Ex3_35.sce#2699/CH3/EX3.35/Ex3_35.sce#S##107886 +3#Diode applications#3.34#design of zener diode#Ex3_34.sce#2699/CH3/EX3.34/Ex3_34.sce#S##96964 +3#Diode applications#3.33#Range of input voltage#Ex3_33.sce#2699/CH3/EX3.33/Ex3_33.sce#S##96962 +3#Diode applications#3.32#Source regulation and percentage source regulation#Ex3_32.sce#2699/CH3/EX3.32/Ex3_32.sce#S##96960 +3#Diode applications#3.31#Percentage load regulation#Ex3_31.sce#2699/CH3/EX3.31/Ex3_31.sce#S##96959 +3#Diode applications#3.30#Load regulation#Ex3_30.sce#2699/CH3/EX3.30/Ex3_30.sce#S##96958 +3#Diode applications#3.3#Dc voltage and load current#Ex3_3.sce#2699/CH3/EX3.3/Ex3_3.sce#S##96911 +3#Diode applications#3.29#1Average Dc current 2Average Dc voltage 3Ripple voltage #Ex3_29.sce#2699/CH3/EX3.29/Ex3_29.sce#S##107885 +3#Diode applications#3.28#Value of the capacitor required#Ex3_28.sce#2699/CH3/EX3.28/Ex3_28.sce#S##96938 +3#Diode applications#3.27#minimum value of capacitor#Ex3_27.sce#2699/CH3/EX3.27/Ex3_27.sce#S##107884 +3#Diode applications#3.26#Ripple factor#Ex3_26.sce#2699/CH3/EX3.26/Ex3_26.sce#S##107883 +3#Diode applications#3.25#Value of the capacitance needed#Ex3_25.sce#2699/CH3/EX3.25/Ex3_25.sce#S##96934 +3#Diode applications#3.24#Dc output voltage and ripple factor#Ex3_24.sce#2699/CH3/EX3.24/Ex3_24.sce#S##96933 +3#Diode applications#3.23#Rms value of ripple voltage and peak to peak voltage#Ex3_23.sce#2699/CH3/EX3.23/Ex3_23.sce#S##96932 +3#Diode applications#3.22#surge current#Ex3_22.sce#2699/CH3/EX3.22/Ex3_22.sce#S##96931 +3#Diode applications#3.21#Ripple factor#Ex3_21.sce#2699/CH3/EX3.21/Ex3_21.sce#S##98922 +3#Diode applications#3.20#Value of capacitor C#Ex3_20.sce#2699/CH3/EX3.20/Ex3_20.sce#S##96929 +3#Diode applications#3.2#Dc output voltage#Ex3_2.sce#2699/CH3/EX3.2/Ex3_2.sce#S##96910 +3#Diode applications#3.19#Load voltage and ripple voltage#Ex3_19.sce#2699/CH3/EX3.19/Ex3_19.sce#S##98921 +3#Diode applications#3.18#1Dc output voltage 2rms value of of ripple voltage 3ripple factor#Ex3_18.sce#2699/CH3/EX3.18/Ex3_18.sce#S##96927 +3#Diode applications#3.17#1Ripple voltage 2ripple factor#Ex3_17.sce#2699/CH3/EX3.17/Ex3_17.sce#S##96926 +3#Diode applications#3.16#1Average Dc voltage 2Average Dc current 3frequency of output wave forms#Ex3_16.sce#2699/CH3/EX3.16/Ex3_16.sce#S##96925 +3#Diode applications#3.15#1Dc output voltage 2ripple factor 3efficiency 4PIV#Ex3_15.sce#2699/CH3/EX3.15/Ex3_15.sce#S##96924 +3#Diode applications#3.14#Average load current and efficiency #Ex3_14.sce#2699/CH3/EX3.14/Ex3_14.sce#S##96923 +3#Diode applications#3.13#Load voltage and ripple voltage#Ex3_13.sce#2699/CH3/EX3.13/Ex3_13.sce#S##96922 +3#Diode applications#3.12#1Dc load current 2Dc load voltage 3ripple voltage 4PIV ratings of the diode #Ex3_12.sce#2699/CH3/EX3.12/Ex3_12.sce#S##96921 +3#Diode applications#3.11#resistance of the load and efficiency#Ex3_11.sce#2699/CH3/EX3.11/Ex3_11.sce#S##96919 +3#Diode applications#3.10#Load current and rms value of input current#Ex3_10.sce#2699/CH3/EX3.10/Ex3_10.sce#S##98920 +3#Diode applications#3.1#RMS value of current output voltage efficiency#Ex3_1.sce#2699/CH3/EX3.1/Ex3_1.sce#S##96909 +2#Semiconductor Devices#2.9#Maximum forward current#Ex2_9.sce#2699/CH2/EX2.9/Ex2_9.sce#S##96827 +2#Semiconductor Devices#2.8# Pn junction diode current#Ex2_8.sce#2699/CH2/EX2.8/Ex2_8.sce#S##96829 +2#Semiconductor Devices#2.7#New supply voltage#Ex2_7.sce#2699/CH2/EX2.7/Ex2_7.sce#S##96826 +2#Semiconductor Devices#2.6#Load resistance Rl#Ex2_6.sce#2699/CH2/EX2.6/Ex2_6.sce#S##96825 +2#Semiconductor Devices#2.5#Piece Wise linear characteristic of a Diode#Ex2_5.sce#2699/CH2/EX2.5/Ex2_5.sce#S##96824 +2#Semiconductor Devices#2.4#Forward current through the diode#Ex2_4.sce#2699/CH2/EX2.4/Ex2_4.sce#S##107881 +2#Semiconductor Devices#2.3#Current through the resistance#Ex2_3.sce#2699/CH2/EX2.3/Ex2_3.sce#S##107880 +2#Semiconductor Devices#2.2#Dynamic forward resistance#Ex2_2.sce#2699/CH2/EX2.2/Ex2_2.sce#S##96812 +2#Semiconductor Devices#2.17#Zener diode current and power dissipation#Ex2_17.sce#2699/CH2/EX2.17/Ex2_17.sce#S##107882 +2#Semiconductor Devices#2.16#maximum zener current#Ex2_16.sce#2699/CH2/EX2.16/Ex2_16.sce#S##96835 +2#Semiconductor Devices#2.15#voltage across the terminal #Ex2_15.sce#2699/CH2/EX2.15/Ex2_15.sce#S##96834 +2#Semiconductor Devices#2.14#Zener resitance#Ex2_14.sce#2699/CH2/EX2.14/Ex2_14.sce#S##96833 +2#Semiconductor Devices#2.13#Derated power rating#Ex2_13.sce#2699/CH2/EX2.13/Ex2_13.sce#S##96832 +2#Semiconductor Devices#2.12#Maximum reverse recovery time#Ex2_12.sce#2699/CH2/EX2.12/Ex2_12.sce#S##96831 +2#Semiconductor Devices#2.11#Dynamic resistance#Ex2_11.sce#2699/CH2/EX2.11/Ex2_11.sce#S##96830 +2#Semiconductor Devices#2.10#Forward voltage drop#Ex2_10.sce#2699/CH2/EX2.10/Ex2_10.sce#S##96828 +2#Semiconductor Devices#2.1#Dc reverse Resistance#Ex2_1.sce#2699/CH2/EX2.1/Ex2_1.sce#S##107878 diff --git a/latex/tmp_2708_contributor.txt b/latex/tmp_2708_contributor.txt index ba03c0bd8..eba48e8b0 100755 --- a/latex/tmp_2708_contributor.txt +++ b/latex/tmp_2708_contributor.txt @@ -1 +1 @@ -Piyush Ahuja#B.Tech#Electrical Engineering#NIT kuruKshetra#None#K. V. P. Pradeep +Piyush Ahuja#B.Tech#Electrical Engineering#NIT Kurukshetra#None#K. V. P. Pradeep diff --git a/latex/tmp_2720_contributor.txt b/latex/tmp_2720_contributor.txt index a56d92520..68d08a88b 100644 --- a/latex/tmp_2720_contributor.txt +++ b/latex/tmp_2720_contributor.txt @@ -1 +1 @@ -Preeti Rani#B.Tech#Mechanical Engineering#UTU#None#Chaya Ravindra +Preeti Rani#B.Tech#Mechanical Engineering#Uttrakhand Technical University#None#Chaya Ravindra diff --git a/latex/tmp_2741_contributor.txt b/latex/tmp_2741_contributor.txt index 7960fd5e1..a17488c39 100755 --- a/latex/tmp_2741_contributor.txt +++ b/latex/tmp_2741_contributor.txt @@ -1 +1 @@ -Mutra Chanakya Reddy#M.tech (Integrated) -Advanced manufacturing#Mechanical Engineering#SASTRA UNIVERSITY#None#K. V. P. Pradeep +Mutra Chanakya Reddy#M.tech (Integrated) -Advanced manufacturing#Mechanical Engineering#Sastra University#None#K. V. P. Pradeep diff --git a/latex/tmp_2753_contributor.txt b/latex/tmp_2753_contributor.txt index f770379b7..3864ffe76 100755 --- a/latex/tmp_2753_contributor.txt +++ b/latex/tmp_2753_contributor.txt @@ -1 +1 @@ -Vijay Kant Kala#B.Tech#Electronics Engineering#KIET#None#Chaya Ravindra +Vijay Kant Kala#B.Tech#Electronics Engineering#Krishna Institute of Engineering and Technology#None#Chaya Ravindra diff --git a/latex/tmp_2780_contributor.txt b/latex/tmp_2780_contributor.txt index 6d23ee323..d4c89f507 100755 --- a/latex/tmp_2780_contributor.txt +++ b/latex/tmp_2780_contributor.txt @@ -1 +1 @@ -Pratishtha Singh#B.TECH#Electronics Engineering#UTTAR PRADESH TECHNICAL UNIVERSITY, LUCKNOW#None#Bhavani Jalkrish +Pratishtha Singh#B.TECH#Electronics Engineering#Dr. A.P.J. Abdul Kalam Technical University#None#Bhavani Jalkrish diff --git a/latex/tmp_2792_contributor.txt b/latex/tmp_2792_contributor.txt index 7a56f7616..cedaae99d 100644 --- a/latex/tmp_2792_contributor.txt +++ b/latex/tmp_2792_contributor.txt @@ -1 +1 @@ -Rishabh Jain#B.tech#Electronics Engineering#ABES ENG. COLLEGE#None#None +Rishabh Jain#B.tech#Electronics Engineering#ABES ENG. COLLEGE#None#Harpreeth Singh and Bhavani Jalkrish diff --git a/latex/tmp_2792_data.txt b/latex/tmp_2792_data.txt index e69de29bb..67bad4cc8 100644 --- a/latex/tmp_2792_data.txt +++ b/latex/tmp_2792_data.txt @@ -0,0 +1,110 @@ +11#MOSFET TECHNOLOGY DRIVER#11.9#internal quantum efficiency#Ex11_9.sce#2792/CH11/EX11.9/Ex11_9.sce#S##107019 +11#MOSFET TECHNOLOGY DRIVER#11.8#e h recombination time#Ex11_8.sce#2792/CH11/EX11.8/Ex11_8.sce#S##107018 +11#MOSFET TECHNOLOGY DRIVER#11.7#photocurrent dendity#Ex11_7.sce#2792/CH11/EX11.7/Ex11_7.sce#S##107017 +11#MOSFET TECHNOLOGY DRIVER#11.6#number of solar cell required to generate desire power#Ex11_6.sce#2792/CH11/EX11.6/Ex11_6.sce#S##111007 +11#MOSFET TECHNOLOGY DRIVER#11.5#Open circuit voltage#Ex11_5.sce#2792/CH11/EX11.5/Ex11_5.sce#S##107015 +11#MOSFET TECHNOLOGY DRIVER#11.4#Photocurrent#Ex11_4.sce#2792/CH11/EX11.4/Ex11_4.sce#S##107014 +11#MOSFET TECHNOLOGY DRIVER#11.3#excess carrier density#Ex11_3.sce#2792/CH11/EX11.3/Ex11_3.sce#S##107013 +11#MOSFET TECHNOLOGY DRIVER#11.2#Length of material#Ex11_2.sce#2792/CH11/EX11.2/Ex11_2.sce#S##107012 +11#MOSFET TECHNOLOGY DRIVER#11.14#threshold carrier density#Ex11_14.sce#2792/CH11/EX11.14/Ex11_14.sce#S##107023 +11#MOSFET TECHNOLOGY DRIVER#11.12#Cavity length#Ex11_12.sce#2792/CH11/EX11.12/Ex11_12.sce#S##107022 +11#MOSFET TECHNOLOGY DRIVER#11.11#photon flux and Optical power#Ex11_11.sce#2792/CH11/EX11.11/Ex11_11.sce#S##107021 +11#MOSFET TECHNOLOGY DRIVER#11.10#injection efficiency#Ex11_10.sce#2792/CH11/EX11.10/Ex11_10.sce#S##107020 +11#MOSFET TECHNOLOGY DRIVER#11.1#Absorption coefficient#Ex11_1.sce#2792/CH11/EX11.1/Ex11_1.sce#S##107011 +10#MOSFET TECHNOLOGY DRIVER#10.4#Cutoff frequency#Ex10_4.sce#2792/CH10/EX10.4/Ex10_4.sce#S##107025 +10#MOSFET TECHNOLOGY DRIVER#10.3#Output high of the inverter#Ex10_3.sce#2792/CH10/EX10.3/Ex10_3.sce#S##111006 +10#MOSFET TECHNOLOGY DRIVER#10.2#Device parameter#Ex10_2.sce#2792/CH10/EX10.2/Ex10_2.sce#S##107026 +10#MOSFET TECHNOLOGY DRIVER#10.1#Critical voltage and noise margin#Ex10_1.sce#2792/CH10/EX10.1/Ex10_1.sce#S##111005 +9#field effect transistors MOSFET#9.9#mobility of electrons#Ex9_9.sce#2792/CH9/EX9.9/Ex9_9.sce#S##107008 +9#field effect transistors MOSFET#9.8#Drain current#Ex9_8.sce#2792/CH9/EX9.8/Ex9_8.sce#S##107005 +9#field effect transistors MOSFET#9.7#saturation current#Ex9_7.sce#2792/CH9/EX9.7/Ex9_7.sce#S##111004 +9#field effect transistors MOSFET#9.6#Capacitance#Ex9_6.sce#2792/CH9/EX9.6/Ex9_6.sce#S##111003 +9#field effect transistors MOSFET#9.4#channel conductivity and threshold voltage#Ex9_4.sce#2792/CH9/EX9.4/Ex9_4.sce#S##111002 +9#field effect transistors MOSFET#9.3#Threshold voltage#Ex9_3.sce#2792/CH9/EX9.3/Ex9_3.sce#S##106982 +9#field effect transistors MOSFET#9.2#potential#Ex9_2.sce#2792/CH9/EX9.2/Ex9_2.sce#S##106981 +9#field effect transistors MOSFET#9.11#threshold voltage and dopant density#Ex9_11.sce#2792/CH9/EX9.11/Ex9_11.sce#S##107010 +9#field effect transistors MOSFET#9.10#shift in threshold voltage#Ex9_10.sce#2792/CH9/EX9.10/Ex9_10.sce#S##116193 +9#field effect transistors MOSFET#9.1#maximum depletion width#Ex9_1.sce#2792/CH9/EX9.1/Ex9_1.sce#S##111000 +8#Field effect Transistors JFET and MESFET#8.9#transit time#Ex8_9.sce#2792/CH8/EX8.9/Ex8_9.sce#S##106978 +8#Field effect Transistors JFET and MESFET#8.8#maximum cutoff frequency#Ex8_8.sce#2792/CH8/EX8.8/Ex8_8.sce#S##106977 +8#Field effect Transistors JFET and MESFET#8.7#Output current and output resistance#Ex8_7.sce#2792/CH8/EX8.7/Ex8_7.sce#S##106976 +8#Field effect Transistors JFET and MESFET#8.6#Transconductance of the device#Ex8_6.sce#2792/CH8/EX8.6/Ex8_6.sce#S##110999 +8#Field effect Transistors JFET and MESFET#8.5#gate bias#Ex8_5.sce#2792/CH8/EX8.5/Ex8_5.sce#S##106975 +8#Field effect Transistors JFET and MESFET#8.4#maximum channel thickness#Ex8_4.sce#2792/CH8/EX8.4/Ex8_4.sce#S##106974 +8#Field effect Transistors JFET and MESFET#8.3#Threshold voltage#Ex8_3.sce#2792/CH8/EX8.3/Ex8_3.sce#S##106973 +8#Field effect Transistors JFET and MESFET#8.2#gate current density#Ex8_2.sce#2792/CH8/EX8.2/Ex8_2.sce#S##106972 +8#Field effect Transistors JFET and MESFET#8.10#maximum frequency#Ex8_10.sce#2792/CH8/EX8.10/Ex8_10.sce#S##106979 +8#Field effect Transistors JFET and MESFET#8.1#Built in voltage and pinch off#Ex8_1.sce#2792/CH8/EX8.1/Ex8_1.sce#S##106971 +7#Bipolar junction transistor#7.9#punchthrough voltage#Ex7_9.sce#2792/CH7/EX7.9/Ex7_9.sce#S##110998 +7#Bipolar junction transistor#7.8#early voltage#Ex7_8.sce#2792/CH7/EX7.8/Ex7_8.sce#S##106963 +7#Bipolar junction transistor#7.7#emitter efficiency#Ex7_7.sce#2792/CH7/EX7.7/Ex7_7.sce#S##106962 +7#Bipolar junction transistor#7.6#current gain#Ex7_6.sce#2792/CH7/EX7.6/Ex7_6.sce#S##106961 +7#Bipolar junction transistor#7.5#current gain and transconductance#Ex7_5.sce#2792/CH7/EX7.5/Ex7_5.sce#S##106960 +7#Bipolar junction transistor#7.4#electron diffusion length and base width#Ex7_4.sce#2792/CH7/EX7.4/Ex7_4.sce#S##106959 +7#Bipolar junction transistor#7.3#emitter doping#Ex7_3.sce#2792/CH7/EX7.3/Ex7_3.sce#S##106958 +7#Bipolar junction transistor#7.2#saturation voltage#Ex7_2.sce#2792/CH7/EX7.2/Ex7_2.sce#S##106957 +7#Bipolar junction transistor#7.14#emitter efficiency#Ex7_14.sce#2792/CH7/EX7.14/Ex7_14.sce#S##106970 +7#Bipolar junction transistor#7.13#hole concentration#Ex7_13.sce#2792/CH7/EX7.13/Ex7_13.sce#S##110997 +7#Bipolar junction transistor#7.12#Cutoff frequency#Ex7_12.sce#2792/CH7/EX7.12/Ex7_12.sce#S##106968 +7#Bipolar junction transistor#7.11#Output conductance#Ex7_11.sce#2792/CH7/EX7.11/Ex7_11.sce#S##106967 +7#Bipolar junction transistor#7.10#base width#Ex7_10.sce#2792/CH7/EX7.10/Ex7_10.sce#S##116192 +6#semiconductor junctions with Metals and insulators#6.7#length of resistor#Ex6_7.sce#2792/CH6/EX6.7/Ex6_7.sce#S##106953 +6#semiconductor junctions with Metals and insulators#6.6#Tunneling probability#Ex6_6.sce#2792/CH6/EX6.6/Ex6_6.sce#S##108457 +6#semiconductor junctions with Metals and insulators#6.5#capacitance#Ex6_5.sce#2792/CH6/EX6.5/Ex6_5.sce#S##106952 +6#semiconductor junctions with Metals and insulators#6.4#saturation current density#Ex6_4.sce#2792/CH6/EX6.4/Ex6_4.sce#S##106951 +6#semiconductor junctions with Metals and insulators#6.3#diode current#Ex6_3.sce#2792/CH6/EX6.3/Ex6_3.sce#S##106950 +6#semiconductor junctions with Metals and insulators#6.2#doping density#Ex6_2.sce#2792/CH6/EX6.2/Ex6_2.sce#S##106949 +6#semiconductor junctions with Metals and insulators#6.1#Mobility of electrons in alluminium#Ex6_1.sce#2792/CH6/EX6.1/Ex6_1.sce#S##106948 +5#Junction in Semiconductors P N diodes#5.9#prefactor in short diode#Ex5_9.sce#2792/CH5/EX5.9/Ex5_9.sce#S##110995 +5#Junction in Semiconductors P N diodes#5.8#photocurrent#Ex5_8.sce#2792/CH5/EX5.8/Ex5_8.sce#S##115338 +5#Junction in Semiconductors P N diodes#5.7#Photon generation rate and optical power#Ex5_7.sce#2792/CH5/EX5.7/Ex5_7.sce#S##110993 +5#Junction in Semiconductors P N diodes#5.6#diode injection efficiency#Ex5_6.sce#2792/CH5/EX5.6/Ex5_6.sce#S##110992 +5#Junction in Semiconductors P N diodes#5.5#current density#Ex5_5.sce#2792/CH5/EX5.5/Ex5_5.sce#S##107130 +5#Junction in Semiconductors P N diodes#5.4#Diode current#Ex5_4.sce#2792/CH5/EX5.4/Ex5_4.sce#S##110991 +5#Junction in Semiconductors P N diodes#5.3#Average field in depletion region#Ex5_3.sce#2792/CH5/EX5.3/Ex5_3.sce#S##108459 +5#Junction in Semiconductors P N diodes#5.2#depletion width#Ex5_2.sce#2792/CH5/EX5.2/Ex5_2.sce#S##108458 +5#Junction in Semiconductors P N diodes#5.15#Total diode recovery time#Ex5_15.sce#2792/CH5/EX5.15/Ex5_15.sce#S##107138 +5#Junction in Semiconductors P N diodes#5.14#admittance of diode#Ex5_14.sce#2792/CH5/EX5.14/Ex5_14.sce#S##107137 +5#Junction in Semiconductors P N diodes#5.13#thickness and width of n region#Ex5_13.sce#2792/CH5/EX5.13/Ex5_13.sce#S##113927 +5#Junction in Semiconductors P N diodes#5.12#Breakdown voltage#Ex5_12.sce#2792/CH5/EX5.12/Ex5_12.sce#S##107136 +5#Junction in Semiconductors P N diodes#5.11#Diode current and ideality factor#Ex5_11.sce#2792/CH5/EX5.11/Ex5_11.sce#S##110990 +5#Junction in Semiconductors P N diodes#5.10#Generation recombination time#Ex5_10.sce#2792/CH5/EX5.10/Ex5_10.sce#S##107135 +5#Junction in Semiconductors P N diodes#5.1#Contact potential and depletion width#Ex5_1.sce#2792/CH5/EX5.1/Ex5_1.sce#S##107127 +3#CARRIER DYNAMICS IN SEMICONDUCTOR#3.9#diffusion coefficient#Ex3_9.sce#2792/CH3/EX3.9/Ex3_9.sce#S##106939 +3#CARRIER DYNAMICS IN SEMICONDUCTOR#3.8#Diffusion current density#Ex3_8.sce#2792/CH3/EX3.8/Ex3_8.sce#S##106938 +3#CARRIER DYNAMICS IN SEMICONDUCTOR#3.7#Tunneling probability#Ex3_7.sce#2792/CH3/EX3.7/Ex3_7.sce#S##106937 +3#CARRIER DYNAMICS IN SEMICONDUCTOR#3.6#transit time#Ex3_6.sce#2792/CH3/EX3.6/Ex3_6.sce#S##105886 +3#CARRIER DYNAMICS IN SEMICONDUCTOR#3.5#RELAXATION TIME#Ex3_5.sce#2792/CH3/EX3.5/Ex3_5.sce#S##105885 +3#CARRIER DYNAMICS IN SEMICONDUCTOR#3.4#Maximum and minimum conductivity#Ex3_4.sce#2792/CH3/EX3.4/Ex3_4.sce#S##105884 +3#CARRIER DYNAMICS IN SEMICONDUCTOR#3.3#conductivity #Ex3_3.sce#2792/CH3/EX3.3/Ex3_3.sce#S##105883 +3#CARRIER DYNAMICS IN SEMICONDUCTOR#3.2#Scattering time#Ex3_2.sce#2792/CH3/EX3.2/Ex3_2.sce#S##105882 +3#CARRIER DYNAMICS IN SEMICONDUCTOR#3.16#fraction of donor and diffusion length#Ex3_16.sce#2792/CH3/EX3.16/Ex3_16.sce#S##106947 +3#CARRIER DYNAMICS IN SEMICONDUCTOR#3.14#diffusion length#Ex3_14.sce#2792/CH3/EX3.14/Ex3_14.sce#S##108772 +3#CARRIER DYNAMICS IN SEMICONDUCTOR#3.13#Electron trapping time#Ex3_13.sce#2792/CH3/EX3.13/Ex3_13.sce#S##106945 +3#CARRIER DYNAMICS IN SEMICONDUCTOR#3.12#Carrier generation rate#Ex3_12.sce#2792/CH3/EX3.12/Ex3_12.sce#S##106944 +3#CARRIER DYNAMICS IN SEMICONDUCTOR#3.11#Minimum thickness of sample#Ex3_11.sce#2792/CH3/EX3.11/Ex3_11.sce#S##106942 +3#CARRIER DYNAMICS IN SEMICONDUCTOR#3.10#position of electron and hole quasi fermi level#Ex3_10.sce#2792/CH3/EX3.10/Ex3_10.sce#S##106941 +3#CARRIER DYNAMICS IN SEMICONDUCTOR#3.1#Relaxation time#Ex3_1.sce#2792/CH3/EX3.1/Ex3_1.sce#S##105881 +2#Electron in semiconductors#2.9#effective density of states#Ex2_9.sce#2792/CH2/EX2.9/Ex2_9.sce#S##107140 +2#Electron in semiconductors#2.5#Energy of electron#Ex2_5.sce#2792/CH2/EX2.5/Ex2_5.sce#S##105879 +2#Electron in semiconductors#2.4#Momentum of electrons and free electrons#Ex2_4.sce#2792/CH2/EX2.4/Ex2_4.sce#S##105878 +2#Electron in semiconductors#2.3#ENERGY OF ELECTRON AND OF HOLE#Ex2_3.sce#2792/CH2/EX2.3/Ex2_3.sce#S##110987 +2#Electron in semiconductors#2.2#Density of states masses#Ex2_2.sce#2792/CH2/EX2.2/Ex2_2.sce#S##105876 +2#Electron in semiconductors#2.17#Free electron density#Ex2_17.sce#2792/CH2/EX2.17/Ex2_17.sce#S##108465 +2#Electron in semiconductors#2.16#fraction of ionised#Ex2_16.sce#2792/CH2/EX2.16/Ex2_16.sce#S##107139 +2#Electron in semiconductors#2.14#Electron carrier concentration using Boltzmann approximation and Joyce dixon#Ex2_14.sce#2792/CH2/EX2.14/Ex2_14.sce#S##110989 +2#Electron in semiconductors#2.13#Position of fermi level#Ex2_13.sce#2792/CH2/EX2.13/Ex2_13.sce#S##105880 +2#Electron in semiconductors#2.12#Donor and acceptor energy level#Ex2_12.sce#2792/CH2/EX2.12/Ex2_12.sce#S##110988 +2#Electron in semiconductors#2.11#Intrinsic carrier concentration#Ex2_11.sce#2792/CH2/EX2.11/Ex2_11.sce#S##108462 +2#Electron in semiconductors#2.10#Position of intrinsic Fermi level#Ex2_10.sce#2792/CH2/EX2.10/Ex2_10.sce#S##107141 +2#Electron in semiconductors#2.1#K value#Ex2_1.sce#2792/CH2/EX2.1/Ex2_1.sce#S##105875 +1#ELECTRONS IN SOLIDS#1.9#FERMI LEVEL ENERGY#Ex1_9.sce#2792/CH1/EX1.9/Ex1_9.sce#S##110986 +1#ELECTRONS IN SOLIDS#1.8#DENSITY OF STATES#Ex1_8.sce#2792/CH1/EX1.8/Ex1_8.sce#S##97549 +1#ELECTRONS IN SOLIDS#1.7#DENSITY#Ex1_7.sce#2792/CH1/EX1.7/Ex1_7.sce#S##97548 +1#ELECTRONS IN SOLIDS#1.6#WAVELENGTH#Ex1_6.sce#2792/CH1/EX1.6/Ex1_6.sce#S##97547 +1#ELECTRONS IN SOLIDS#1.5#HEIGHT OF MONOLAYER#Ex1_5.sce#2792/CH1/EX1.5/Ex1_5.sce#S##97546 +1#ELECTRONS IN SOLIDS#1.4#SURFACE 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Technology#None#Lavitha Pereira diff --git a/latex/tmp_3035_contributor.txt b/latex/tmp_3035_contributor.txt index 138235dee..1b431852c 100755 --- a/latex/tmp_3035_contributor.txt +++ b/latex/tmp_3035_contributor.txt @@ -1 +1 @@ -Jai Mathur#MCA#Computer Engineering#IIT Project Staff#None#Bhavani Jalkrish +Jai Mathur#MCA#Computer Engineering#IIT Bombay#None#Bhavani Jalkrish diff --git a/latex/tmp_3041_contributor.txt b/latex/tmp_3041_contributor.txt index b41430e2c..47da72722 100755 --- a/latex/tmp_3041_contributor.txt +++ b/latex/tmp_3041_contributor.txt @@ -1 +1 @@ -Ashutosh Kumar#B.Tech.#Computer Engineering#UPTU#None#Chaitanya +Ashutosh Kumar#B.Tech.#Computer Engineering#Dr. A.P.J. 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Theory#10.2#Example#Ex10_2.sce#3041/CH10/EX10.2/Ex10_2.sce#S##105835 +10# Circuit Theory#10.11#Example#Ex10_11.sce#3041/CH10/EX10.11/Ex10_11.sce#S##105843 +10# Circuit Theory#10.10#Example#Ex10_10.sce#3041/CH10/EX10.10/Ex10_10.sce#S##105842 +10# Circuit Theory#10.1#Example#Ex10_1.sce#3041/CH10/EX10.1/Ex10_1.sce#S##105834 +9#Integrated Circuit Fabrication#9.5#Example#Ex9_5.sce#3041/CH9/EX9.5/Ex9_5.sce#S##105833 +9#Integrated Circuit Fabrication#9.4#Example#Ex9_4.sce#3041/CH9/EX9.4/Ex9_4.sce#S##105832 +9#Integrated Circuit Fabrication#9.3#Example#Ex9_3.sce#3041/CH9/EX9.3/Ex9_3.sce#S##105831 +9#Integrated Circuit Fabrication#9.2#Example#Ex9_2.sce#3041/CH9/EX9.2/Ex9_2.sce#S##105830 +8#Multivibrators And Switching Regulators#8.8#Example#Ex8_8.sce#3041/CH8/EX8.8/Ex8_8.sce#S##105829 +8#Multivibrators And Switching Regulators#8.7#Example#Ex8_7.sce#3041/CH8/EX8.7/Ex8_7.sce#S##108218 +8#Multivibrators And Switching Regulators#8.6#Example#Ex8_6.sce#3041/CH8/EX8.6/Ex8_6.sce#S##105827 +8#Multivibrators And Switching Regulators#8.5#Example#Ex8_5.sce#3041/CH8/EX8.5/Ex8_5.sce#S##105826 +8#Multivibrators And Switching Regulators#8.4#Example#Ex8_4.sce#3041/CH8/EX8.4/Ex8_4.sce#S##105825 +8#Multivibrators And Switching Regulators#8.3#Example#Ex8_3.sce#3041/CH8/EX8.3/Ex8_3.sce#S##105824 +8#Multivibrators And Switching Regulators#8.2#Example#Ex8_2.sce#3041/CH8/EX8.2/Ex8_2.sce#S##105823 +8#Multivibrators And Switching Regulators#8.1#Example#Ex8_1.sce#3041/CH8/EX8.1/Ex8_1.sce#S##105822 +7#Operational Amplifiers#7.9#Example#Ex7_9.sce#3041/CH7/EX7.9/Ex7_9.sce#S##105815 +7#Operational Amplifiers#7.8#Example#Ex7_8.sce#3041/CH7/EX7.8/Ex7_8.sce#S##105814 +7#Operational Amplifiers#7.7#Example#Ex7_7.sce#3041/CH7/EX7.7/Ex7_7.sce#S##105813 +7#Operational Amplifiers#7.6#Example#Ex7_6.sce#3041/CH7/EX7.6/Ex7_6.sce#S##105812 +7#Operational Amplifiers#7.4#Example#Ex7_4.sce#3041/CH7/EX7.4/Ex7_4.sce#S##105811 +7#Operational Amplifiers#7.3#Example#Ex7_3.sce#3041/CH7/EX7.3/Ex7_3.sce#S##105810 +7#Operational Amplifiers#7.23#Example#Ex7_23.sce#3041/CH7/EX7.23/Ex7_23.sce#S##105821 +7#Operational Amplifiers#7.22#Example#Ex7_22.sce#3041/CH7/EX7.22/Ex7_22.sce#S##105820 +7#Operational Amplifiers#7.21#Example#Ex7_21.sce#3041/CH7/EX7.21/Ex7_21.sce#S##105819 +7#Operational Amplifiers#7.2#Example#Ex7_2.sce#3041/CH7/EX7.2/Ex7_2.sce#S##105809 +7#Operational Amplifiers#7.14#Example#Ex7_14.sce#3041/CH7/EX7.14/Ex7_14.sce#S##105818 +7#Operational Amplifiers#7.11#Example#Ex7_11.sce#3041/CH7/EX7.11/Ex7_11.sce#S##108217 +7#Operational Amplifiers#7.10#Example#Ex7_10.sce#3041/CH7/EX7.10/Ex7_10.sce#S##105816 +7#Operational Amplifiers#7.1#Example#Ex7_1.sce#3041/CH7/EX7.1/Ex7_1.sce#S##105808 +6#Feedback Amplifiers And Oscillators#6.9#Example#Ex6_9.sce#3041/CH6/EX6.9/Ex6_9.sce#S##108216 +6#Feedback Amplifiers And Oscillators#6.8#Example#Ex6_8.sce#3041/CH6/EX6.8/Ex6_8.sce#S##105802 +6#Feedback Amplifiers And Oscillators#6.7#Example#Ex6_7.sce#3041/CH6/EX6.7/Ex6_7.sce#S##105801 +6#Feedback Amplifiers And Oscillators#6.5#Example#Ex6_5.sce#3041/CH6/EX6.5/Ex6_5.sce#S##105800 +6#Feedback Amplifiers And Oscillators#6.4#Example#Ex6_4.sce#3041/CH6/EX6.4/Ex6_4.sce#S##105799 +6#Feedback Amplifiers And Oscillators#6.3#Example#Ex6_3.sce#3041/CH6/EX6.3/Ex6_3.sce#S##105798 +6#Feedback Amplifiers And Oscillators#6.2#Example#Ex6_2.sce#3041/CH6/EX6.2/Ex6_2.sce#S##105797 +6#Feedback Amplifiers And Oscillators#6.13#Example#Ex6_13.sce#3041/CH6/EX6.13/Ex6_13.sce#S##105807 +6#Feedback Amplifiers And Oscillators#6.12#Example#Ex6_12.sce#3041/CH6/EX6.12/Ex6_12.sce#S##105806 +6#Feedback Amplifiers And Oscillators#6.11#Example#Ex6_11.sce#3041/CH6/EX6.11/Ex6_11.sce#S##105805 +6#Feedback Amplifiers And Oscillators#6.10#Example#Ex6_10.sce#3041/CH6/EX6.10/Ex6_10.sce#S##105804 +6#Feedback Amplifiers And Oscillators#6.1#Example#Ex6_1.sce#3041/CH6/EX6.1/Ex6_1.sce#S##105796 +5#Large Signals Amplifiers#5.9#Example#Ex5_9.sce#3041/CH5/EX5.9/Ex5_9.sce#S##105568 +5#Large Signals Amplifiers#5.8#Example#Ex5_8.sce#3041/CH5/EX5.8/Ex5_8.sce#S##105567 +5#Large Signals Amplifiers#5.7#Example#Ex5_7.sce#3041/CH5/EX5.7/Ex5_7.sce#S##105566 +5#Large Signals Amplifiers#5.6#Example#Ex5_6.sce#3041/CH5/EX5.6/Ex5_6.sce#S##105565 +5#Large Signals Amplifiers#5.5#Example#Ex5_5.sce#3041/CH5/EX5.5/Ex5_5.sce#S##105564 +5#Large Signals Amplifiers#5.4#Example#Ex5_4.sce#3041/CH5/EX5.4/Ex5_4.sce#S##105563 +5#Large Signals Amplifiers#5.3#Example#Ex5_3.sce#3041/CH5/EX5.3/Ex5_3.sce#S##105562 +5#Large Signals Amplifiers#5.2#Example#Ex5_2.sce#3041/CH5/EX5.2/Ex5_2.sce#S##105561 +5#Large Signals Amplifiers#5.13#Example#Ex5_13.sce#3041/CH5/EX5.13/Ex5_13.sce#S##105571 +5#Large Signals Amplifiers#5.12#Example#Ex5_12.sce#3041/CH5/EX5.12/Ex5_12.sce#S##105570 +5#Large Signals Amplifiers#5.10#Example#Ex5_10.sce#3041/CH5/EX5.10/Ex5_10.sce#S##105569 +5#Large Signals Amplifiers#5.1#Example#Ex5_1.sce#3041/CH5/EX5.1/Ex5_1.sce#S##105560 +4# SMALL SIGNAL AMPLIFIERS FREQUENCY RESPONSE#4.9#Example#Ex4_9.sce#3041/CH4/EX4.9/Ex4_9.sce#S##105547 +4# SMALL SIGNAL AMPLIFIERS FREQUENCY RESPONSE#4.8#Example#Ex4_8.sce#3041/CH4/EX4.8/Ex4_8.sce#S##105546 +4# SMALL SIGNAL AMPLIFIERS FREQUENCY RESPONSE#4.7#Example#Ex4_7.sce#3041/CH4/EX4.7/Ex4_7.sce#S##105545 +4# SMALL SIGNAL AMPLIFIERS FREQUENCY RESPONSE#4.6#Example#Ex4_6.sce#3041/CH4/EX4.6/Ex4_6.sce#S##108215 +4# SMALL SIGNAL AMPLIFIERS FREQUENCY RESPONSE#4.5#Example#Ex4_5.sce#3041/CH4/EX4.5/Ex4_5.sce#S##105543 +4# SMALL SIGNAL AMPLIFIERS FREQUENCY RESPONSE#4.4#Example#Ex4_4.sce#3041/CH4/EX4.4/Ex4_4.sce#S##105542 +4# SMALL SIGNAL AMPLIFIERS FREQUENCY RESPONSE#4.3#Example#Ex4_3.sce#3041/CH4/EX4.3/Ex4_3.sce#S##105541 +4# SMALL SIGNAL AMPLIFIERS FREQUENCY RESPONSE#4.23#Example#Ex4_23.sce#3041/CH4/EX4.23/Ex4_23.sce#S##105559 +4# SMALL SIGNAL AMPLIFIERS FREQUENCY RESPONSE#4.21#Example#Ex4_21.sce#3041/CH4/EX4.21/Ex4_21.sce#S##105558 +4# SMALL SIGNAL AMPLIFIERS FREQUENCY RESPONSE#4.2#Example#Ex4_2.sce#3041/CH4/EX4.2/Ex4_2.sce#S##105540 +4# SMALL SIGNAL AMPLIFIERS FREQUENCY RESPONSE#4.19#Example#Ex4_19.sce#3041/CH4/EX4.19/Ex4_19.sce#S##105557 +4# SMALL SIGNAL AMPLIFIERS FREQUENCY RESPONSE#4.18#Example#Ex4_18.sce#3041/CH4/EX4.18/Ex4_18.sce#S##108214 +4# SMALL SIGNAL AMPLIFIERS FREQUENCY RESPONSE#4.17#Example#Ex4_17.sce#3041/CH4/EX4.17/Ex4_17.sce#S##105555 +4# SMALL SIGNAL AMPLIFIERS FREQUENCY RESPONSE#4.16#Example#Ex4_16.sce#3041/CH4/EX4.16/Ex4_16.sce#S##105554 +4# SMALL SIGNAL AMPLIFIERS FREQUENCY RESPONSE#4.15#Example#Ex4_15.sce#3041/CH4/EX4.15/Ex4_15.sce#S##105553 +4# SMALL SIGNAL AMPLIFIERS FREQUENCY RESPONSE#4.14#Example#Ex4_14.sce#3041/CH4/EX4.14/Ex4_14.sce#S##105552 +4# SMALL SIGNAL AMPLIFIERS FREQUENCY RESPONSE#4.13#Example#Ex4_13.sce#3041/CH4/EX4.13/Ex4_13.sce#S##105551 +4# SMALL SIGNAL AMPLIFIERS FREQUENCY RESPONSE#4.12#Example#Ex4_12.sce#3041/CH4/EX4.12/Ex4_12.sce#S##105550 +4# SMALL SIGNAL AMPLIFIERS FREQUENCY RESPONSE#4.11#Example#Ex4_11.sce#3041/CH4/EX4.11/Ex4_11.sce#S##105549 +4# SMALL SIGNAL AMPLIFIERS FREQUENCY RESPONSE#4.10#Example#Ex4_10.sce#3041/CH4/EX4.10/Ex4_10.sce#S##105548 +4# SMALL SIGNAL AMPLIFIERS FREQUENCY RESPONSE#4.1#Example#Ex4_1.sce#3041/CH4/EX4.1/Ex4_1.sce#S##105539 +3#SMALL SIGNAL MODELS AMPLIFICATION AND BIASING#3.9#Example#Ex3_9.sce#3041/CH3/EX3.9/Ex3_9.sce#S##105517 +3#SMALL SIGNAL MODELS AMPLIFICATION AND BIASING#3.8#Example#Ex3_8.sce#3041/CH3/EX3.8/Ex3_8.sce#S##105516 +3#SMALL SIGNAL MODELS AMPLIFICATION AND BIASING#3.7#Example#Ex3_7.sce#3041/CH3/EX3.7/Ex3_7.sce#S##105515 +3#SMALL SIGNAL MODELS AMPLIFICATION AND BIASING#3.6#Example#Ex3_6.sce#3041/CH3/EX3.6/Ex3_6.sce#S##105514 +3#SMALL SIGNAL MODELS AMPLIFICATION AND BIASING#3.5#Example#Ex3_5.sce#3041/CH3/EX3.5/Ex3_5.sce#S##105513 +3#SMALL SIGNAL MODELS AMPLIFICATION AND BIASING#3.4#Example#Ex3_4.sce#3041/CH3/EX3.4/Ex3_4.sce#S##105512 +3#SMALL SIGNAL MODELS AMPLIFICATION AND BIASING#3.31#Example#Ex3_31.sce#3041/CH3/EX3.31/Ex3_31.sce#S##105538 +3#SMALL SIGNAL MODELS AMPLIFICATION AND BIASING#3.30#Example#Ex3_30.sce#3041/CH3/EX3.30/Ex3_30.sce#S##105537 +3#SMALL SIGNAL MODELS AMPLIFICATION AND BIASING#3.3#Example#Ex3_3.sce#3041/CH3/EX3.3/Ex3_3.sce#S##105511 +3#SMALL SIGNAL MODELS AMPLIFICATION AND BIASING#3.29#Example#Ex3_29.sce#3041/CH3/EX3.29/Ex3_29.sce#S##105536 +3#SMALL SIGNAL MODELS AMPLIFICATION AND BIASING#3.28#Example#Ex3_28.sce#3041/CH3/EX3.28/Ex3_28.sce#S##105535 +3#SMALL SIGNAL MODELS AMPLIFICATION AND BIASING#3.26#Example#Ex3_26.sce#3041/CH3/EX3.26/Ex3_26.sce#S##105534 +3#SMALL SIGNAL MODELS AMPLIFICATION AND BIASING#3.25#Example#Ex3_25.sce#3041/CH3/EX3.25/Ex3_25.sce#S##105533 +3#SMALL SIGNAL MODELS AMPLIFICATION AND BIASING#3.24#Example#Ex3_24.sce#3041/CH3/EX3.24/Ex3_24.sce#S##105531 +3#SMALL SIGNAL MODELS AMPLIFICATION AND BIASING#3.23#Example#Ex3_23.sce#3041/CH3/EX3.23/Ex3_23.sce#S##105532 +3#SMALL SIGNAL MODELS AMPLIFICATION AND BIASING#3.22#Example#Ex3_22.sce#3041/CH3/EX3.22/Ex3_22.sce#S##105530 +3#SMALL SIGNAL MODELS AMPLIFICATION AND BIASING#3.21#Example#Ex3_21.sce#3041/CH3/EX3.21/Ex3_21.sce#S##105529 +3#SMALL SIGNAL MODELS AMPLIFICATION AND BIASING#3.20#Example#Ex3_20.sce#3041/CH3/EX3.20/Ex3_20.sce#S##105528 +3#SMALL SIGNAL MODELS AMPLIFICATION AND BIASING#3.2#Example#Ex3_2.sce#3041/CH3/EX3.2/Ex3_2.sce#S##105510 +3#SMALL SIGNAL MODELS AMPLIFICATION AND BIASING#3.19#Example#Ex3_19.sce#3041/CH3/EX3.19/Ex3_19.sce#S##105527 +3#SMALL SIGNAL MODELS AMPLIFICATION AND BIASING#3.18#Example#Ex3_18.sce#3041/CH3/EX3.18/Ex3_18.sce#S##105526 +3#SMALL SIGNAL MODELS AMPLIFICATION AND BIASING#3.17#Example#Ex3_17.sce#3041/CH3/EX3.17/Ex3_17.sce#S##105525 +3#SMALL SIGNAL MODELS AMPLIFICATION AND BIASING#3.16#Example#Ex3_16.sce#3041/CH3/EX3.16/Ex3_16.sce#S##108213 +3#SMALL SIGNAL MODELS AMPLIFICATION AND BIASING#3.15#Example#Ex3_15.sce#3041/CH3/EX3.15/Ex3_15.sce#S##105523 +3#SMALL SIGNAL MODELS AMPLIFICATION AND BIASING#3.14#Example#Ex3_14.sce#3041/CH3/EX3.14/Ex3_14.sce#S##105522 +3#SMALL SIGNAL MODELS AMPLIFICATION AND BIASING#3.13#Example#Ex3_13.sce#3041/CH3/EX3.13/Ex3_13.sce#S##105521 +3#SMALL SIGNAL MODELS AMPLIFICATION AND BIASING#3.12#Example#Ex3_12.sce#3041/CH3/EX3.12/Ex3_12.sce#S##105520 +3#SMALL SIGNAL MODELS AMPLIFICATION AND BIASING#3.11#Example#Ex3_11.sce#3041/CH3/EX3.11/Ex3_11.sce#S##105519 +3#SMALL SIGNAL MODELS AMPLIFICATION AND BIASING#3.10#Example#Ex3_10.sce#3041/CH3/EX3.10/Ex3_10.sce#S##105518 +3#SMALL SIGNAL MODELS AMPLIFICATION AND BIASING#3.1#Example#Ex3_1.sce#3041/CH3/EX3.1/Ex3_1.sce#S##105509 +2#TRANSISTORS AND OTHER DEVICES#2.8#Example#Ex2_8.sce#3041/CH2/EX2.8/Ex2_8.sce#S##105503 +2#TRANSISTORS AND OTHER DEVICES#2.7#Example#Ex2_7.sce#3041/CH2/EX2.7/Ex2_7.sce#S##105502 +2#TRANSISTORS AND OTHER DEVICES#2.5#Example#Ex2_5.sce#3041/CH2/EX2.5/Ex2_5.sce#S##105501 +2#TRANSISTORS AND OTHER DEVICES#2.4#Example#Ex2_4.sce#3041/CH2/EX2.4/Ex2_4.sce#S##105500 +2#TRANSISTORS AND OTHER DEVICES#2.3#Example#Ex2_3.sce#3041/CH2/EX2.3/Ex2_3.sce#S##105499 +2#TRANSISTORS AND OTHER DEVICES#2.2#Example#Ex2_2.sce#3041/CH2/EX2.2/Ex2_2.sce#S##105498 +2#TRANSISTORS AND OTHER DEVICES#2.16#Example#Ex2_16.sce#3041/CH2/EX2.16/Ex2_16.sce#S##105508 +2#TRANSISTORS AND OTHER DEVICES#2.15#Example#Ex2_15.sce#3041/CH2/EX2.15/Ex2_15.sce#S##105507 +2#TRANSISTORS AND OTHER DEVICES#2.14#Example#Ex2_14.sce#3041/CH2/EX2.14/Ex2_14.sce#S##105506 +2#TRANSISTORS AND OTHER DEVICES#2.13#Example#Ex2_13.sce#3041/CH2/EX2.13/Ex2_13.sce#S##105505 +2#TRANSISTORS AND OTHER DEVICES#2.10#Example#Ex2_10.sce#3041/CH2/EX2.10/Ex2_10.sce#S##105504 +2#TRANSISTORS AND OTHER DEVICES#2.1#Example#Ex2_1.sce#3041/CH2/EX2.1/Ex2_1.sce#S##108212 +1#SEMICONDUCTORS DIODE AND DIODE CIRCUITS#1.9#Example#Ex1_9.sce#3041/CH1/EX1.9/Ex1_9.sce#S##105474 +1#SEMICONDUCTORS DIODE AND DIODE CIRCUITS#1.7#Example#Ex1_7.sce#3041/CH1/EX1.7/Ex1_7.sce#S##105473 +1#SEMICONDUCTORS DIODE AND DIODE CIRCUITS#1.6#Example#Ex1_6.sce#3041/CH1/EX1.6/Ex1_6.sce#S##108211 +1#SEMICONDUCTORS DIODE AND DIODE CIRCUITS#1.5#Example#Ex1_5.sce#3041/CH1/EX1.5/Ex1_5.sce#S##105471 +1#SEMICONDUCTORS DIODE AND DIODE CIRCUITS#1.4#Example#Ex1_4.sce#3041/CH1/EX1.4/Ex1_4.sce#S##105470 +1#SEMICONDUCTORS DIODE AND DIODE CIRCUITS#1.36#Example#Ex1_36.sce#3041/CH1/EX1.36/Ex1_36.sce#S##105496 +1#SEMICONDUCTORS DIODE AND DIODE CIRCUITS#1.35#Example#Ex1_35.sce#3041/CH1/EX1.35/Ex1_35.sce#S##105495 +1#SEMICONDUCTORS DIODE AND DIODE CIRCUITS#1.34#Example#Ex1_34.sce#3041/CH1/EX1.34/Ex1_34.sce#S##105494 +1#SEMICONDUCTORS DIODE AND DIODE CIRCUITS#1.33#Example#Ex1_33.sce#3041/CH1/EX1.33/Ex1_33.sce#S##105493 +1#SEMICONDUCTORS DIODE AND DIODE CIRCUITS#1.32#Example#Ex1_32.sce#3041/CH1/EX1.32/Ex1_32.sce#S##105492 +1#SEMICONDUCTORS DIODE AND DIODE CIRCUITS#1.30#Example#Ex1_30.sce#3041/CH1/EX1.30/Ex1_30.sce#S##105491 +1#SEMICONDUCTORS DIODE AND DIODE CIRCUITS#1.3#Example#Ex1_3.sce#3041/CH1/EX1.3/Ex1_3.sce#S##105469 +1#SEMICONDUCTORS DIODE AND DIODE CIRCUITS#1.29#Example#Ex1_29.sce#3041/CH1/EX1.29/Ex1_29.sce#S##105490 +1#SEMICONDUCTORS DIODE AND DIODE CIRCUITS#1.28#Example#Ex1_28.sce#3041/CH1/EX1.28/Ex1_28.sce#S##105489 +1#SEMICONDUCTORS DIODE AND DIODE CIRCUITS#1.27#Example#Ex1_27.sce#3041/CH1/EX1.27/Ex1_27.sce#S##105488 +1#SEMICONDUCTORS DIODE AND DIODE CIRCUITS#1.26#Example#Ex1_26.sce#3041/CH1/EX1.26/Ex1_26.sce#S##105487 +1#SEMICONDUCTORS DIODE AND DIODE CIRCUITS#1.25#Example#Ex1_25.sce#3041/CH1/EX1.25/Ex1_25.sce#S##105486 +1#SEMICONDUCTORS DIODE AND DIODE CIRCUITS#1.24#Example#Ex1_24.sce#3041/CH1/EX1.24/Ex1_24.sce#S##105485 +1#SEMICONDUCTORS DIODE AND DIODE CIRCUITS#1.20#Example#Ex1_20.sce#3041/CH1/EX1.20/Ex1_20.sce#S##105484 +1#SEMICONDUCTORS DIODE AND DIODE CIRCUITS#1.2#Example#Ex1_2.sce#3041/CH1/EX1.2/Ex1_2.sce#S##105468 +1#SEMICONDUCTORS DIODE AND DIODE CIRCUITS#1.19#Example#Ex1_19.sce#3041/CH1/EX1.19/Ex1_19.sce#S##108210 +1#SEMICONDUCTORS DIODE AND DIODE CIRCUITS#1.18#Example#Ex1_18.sce#3041/CH1/EX1.18/Ex1_18.sce#S##108209 +1#SEMICONDUCTORS DIODE AND DIODE CIRCUITS#1.17#Example#Ex1_17.sce#3041/CH1/EX1.17/Ex1_17.sce#S##105481 +1#SEMICONDUCTORS DIODE AND DIODE CIRCUITS#1.16#Example#Ex1_16.sce#3041/CH1/EX1.16/Ex1_16.sce#S##105480 +1#SEMICONDUCTORS DIODE AND DIODE CIRCUITS#1.15#Example#Ex1_15.sce#3041/CH1/EX1.15/Ex1_15.sce#S##108208 +1#SEMICONDUCTORS DIODE AND DIODE CIRCUITS#1.14#Example#Ex1_14.sce#3041/CH1/EX1.14/Ex1_14.sce#S##105478 +1#SEMICONDUCTORS DIODE AND DIODE CIRCUITS#1.13#Example#Ex1_13.sce#3041/CH1/EX1.13/Ex1_13.sce#S##105477 +1#SEMICONDUCTORS DIODE AND DIODE CIRCUITS#1.12#Example#Ex1_12.sce#3041/CH1/EX1.12/Ex1_12.sce#S##105476 +1#SEMICONDUCTORS DIODE AND DIODE CIRCUITS#1.11#Example#Ex1_11.sce#3041/CH1/EX1.11/Ex1_11.sce#S##105475 +1#SEMICONDUCTORS DIODE AND DIODE CIRCUITS#1.1#Example#Ex1_1.sce#3041/CH1/EX1.1/Ex1_1.sce#S##108207 diff --git a/latex/tmp_3116_contributor.txt b/latex/tmp_3116_contributor.txt index fec1dbedc..c640cd50d 100755 --- a/latex/tmp_3116_contributor.txt +++ b/latex/tmp_3116_contributor.txt @@ -1 +1 @@ -Ankit Rai#B.Tech#Mechanical Engineering#MMMUT#None#Avik Kumar Das +Ankit Rai#B.Tech#Mechanical Engineering#Madan Mohan Malaviya University of Technology#None#Avik Kumar Das diff --git a/latex/tmp_3169_contributor.txt b/latex/tmp_3169_contributor.txt index 3e7dfa97a..5dd8e4c28 100644 --- a/latex/tmp_3169_contributor.txt +++ b/latex/tmp_3169_contributor.txt @@ -1 +1 @@ -Patel Chaitanya Kishorbhai#B.TECH#Others#Dharmsinh Desai University#None#None +Patel Chaitanya Kishorbhai#B.TECH#Others#Dharmsinh Desai University#None#Spandana diff --git a/latex/tmp_3169_data.txt b/latex/tmp_3169_data.txt index e69de29bb..63a280e62 100644 --- a/latex/tmp_3169_data.txt +++ b/latex/tmp_3169_data.txt @@ -0,0 +1,43 @@ +9#Non Destructive Testing of Materials and Electrical Apparatus#9.9#calculation of maximum and minimum value of capacitance and tandelta#Ex9_9.sce#3169/CH9/EX9.9/Ex9_9.sce#S##115358 +9#Non Destructive Testing of Materials and Electrical Apparatus#9.8#calculation of voltage at balance#Ex9_8.sce#3169/CH9/EX9.8/Ex9_8.sce#S##115357 +9#Non Destructive Testing of Materials and Electrical Apparatus#9.7#calculation of dielectric constant and loss factor tandelta#Ex9_7.sce#3169/CH9/EX9.7/Ex9_7.sce#S##115356 +9#Non Destructive Testing of Materials and Electrical Apparatus#9.6#calculation of magnitude of the charge transferred from the cavity#Ex9_6.sce#3169/CH9/EX9.6/Ex9_6.sce#S##115355 +9#Non Destructive Testing of Materials and Electrical Apparatus#9.5#calculation of dielectric constant and tandelta of the transformer oil#Ex9_5.sce#3169/CH9/EX9.5/Ex9_5.sce#S##115354 +9#Non Destructive Testing of Materials and Electrical Apparatus#9.4#calculation of capacitance and tandelta of bushing#Ex9_4.sce#3169/CH9/EX9.4/Ex9_4.sce#S##115353 +9#Non Destructive Testing of Materials and Electrical Apparatus#9.3#calculation of dielectric constant and complex permittivity of bakelite#Ex9_3.sce#3169/CH9/EX9.3/Ex9_3.sce#S##115331 +9#Non Destructive Testing of Materials and Electrical Apparatus#9.2#calculation of resistivity of the specimen#Ex9_2.sce#3169/CH9/EX9.2/Ex9_2.sce#S##115302 +9#Non Destructive Testing of Materials and Electrical Apparatus#9.1#calculation of the volume resistivity#Ex9_1.sce#3169/CH9/EX9.1/Ex9_1.sce#S##115301 +8#Overvoltage Phenomenon and Insulation Coordination in Electric Power Systems#8.9#working out of insulation coordination#Ex8_9.sce#3169/CH8/EX8.9/Ex8_9.sce#S##115300 +8#Overvoltage Phenomenon and Insulation Coordination in Electric Power Systems#8.8#calculation of rise in voltage at the other end#Ex8_8.sce#3169/CH8/EX8.8/Ex8_8.sce#S##115512 +8#Overvoltage Phenomenon and Insulation Coordination in Electric Power Systems#8.7#calculation of sparkover voltage and the arrester current#Ex8_7.sce#3169/CH8/EX8.7/Ex8_7.sce#S##115299 +8#Overvoltage Phenomenon and Insulation Coordination in Electric Power Systems#8.6#calculation of value of voltage at the receiving end in Bewley lattice diagram#Ex8_6.sce#3169/CH8/EX8.6/Ex8_6.sce#S##115298 +8#Overvoltage Phenomenon and Insulation Coordination in Electric Power Systems#8.5#calculation of the transmitted reflected voltage and current waves#Ex8_5.sce#3169/CH8/EX8.5/Ex8_5.sce#S##116191 +8#Overvoltage Phenomenon and Insulation Coordination in Electric Power Systems#8.2#calculation of the voltage build up at the junction#Ex8_2.sce#3169/CH8/EX8.2/Ex8_2.sce#S##115296 +8#Overvoltage Phenomenon and Insulation Coordination in Electric Power Systems#8.1#calculation of surge impedance velocity and time taken by the surge to travel to the other end#Ex8_1.sce#3169/CH8/EX8.1/Ex8_1.sce#S##115295 +7#Measurement of High Voltages and Currents#7.8#calculation of resistance and capacitance#Ex7_8.sce#3169/CH7/EX7.8/Ex7_8.sce#S##115294 +7#Measurement of High Voltages and Currents#7.7#Estimation of values of mutual inductance resistance and capacitance#Ex7_7.sce#3169/CH7/EX7.7/Ex7_7.sce#S##115293 +7#Measurement of High Voltages and Currents#7.6#calculation of ohmic value of shunt an its dimensions#Ex7_6.sce#3169/CH7/EX7.6/Ex7_6.sce#S##115292 +7#Measurement of High Voltages and Currents#7.5#calculation of capacitance needed for correct compensation#Ex7_5.sce#3169/CH7/EX7.5/Ex7_5.sce#S##115291 +7#Measurement of High Voltages and Currents#7.4#calculation of divider ratio#Ex7_4.sce#3169/CH7/EX7.4/Ex7_4.sce#S##115290 +7#Measurement of High Voltages and Currents#7.3#calculation of correction factors for atmospheric conditions#Ex7_3.sce#3169/CH7/EX7.3/Ex7_3.sce#S##115289 +7#Measurement of High Voltages and Currents#7.2#Design of a peak reading voltmeter#Ex7_2.sce#3169/CH7/EX7.2/Ex7_2.sce#S##115288 +7#Measurement of High Voltages and Currents#7.1#calculation of capacitance of generating voltmeter#Ex7_1.sce#3169/CH7/EX7.1/Ex7_1.sce#S##115287 +6#Generation of High Voltages and Currents#6.9#calculation of self capacitance and leakage reactance#Ex6_9.sce#3169/CH6/EX6.9/Ex6_9.sce#S##115280 +6#Generation of High Voltages and Currents#6.8#calculation of output voltage#Ex6_8.sce#3169/CH6/EX6.8/Ex6_8.sce#S##115279 +6#Generation of High Voltages and Currents#6.7#calculation of peak value of output voltage and highest resonant frequency produced#Ex6_7.sce#3169/CH6/EX6.7/Ex6_7.sce#S##115511 +6#Generation of High Voltages and Currents#6.6#calculation of front and tail time#Ex6_6.sce#3169/CH6/EX6.6/Ex6_6.sce#S##115275 +6#Generation of High Voltages and Currents#6.5#calculation circuit inductance and dynamic resistance#Ex6_5.sce#3169/CH6/EX6.5/Ex6_5.sce#S##115510 +6#Generation of High Voltages and Currents#6.4#calculation of circuit inductance and dynamic resistance#Ex6_4.sce#3169/CH6/EX6.4/Ex6_4.sce#S##115278 +6#Generation of High Voltages and Currents#6.3#calculation of series resistance damping resistance and maximum output voltage of the generator#Ex6_3.sce#3169/CH6/EX6.3/Ex6_3.sce#S##115509 +6#Generation of High Voltages and Currents#6.2#calculation of series inductance and input voltage to transformer#Ex6_2.sce#3169/CH6/EX6.2/Ex6_2.sce#S##115274 +6#Generation of High Voltages and Currents#6.10#calculation of resistance and inductance#Ex6_10.sce#3169/CH6/EX6.10/Ex6_10.sce#S##115286 +6#Generation of High Voltages and Currents#6.1#calculation of percentage ripple the regulation and the optimum number of stages for minimum regulation in Cockcroft Walton type voltage multiplier#Ex6_1.sce#3169/CH6/EX6.1/Ex6_1.sce#S##115273 +4#Breakdown in Solid Dielectrics#4.3#calculation of the dimensions of electrodes in coaxial cylindrical capacitor#Ex4_3.sce#3169/CH4/EX4.3/Ex4_3.sce#S##115272 +4#Breakdown in Solid Dielectrics#4.2#calculation of voltage at which an internal discharge can occur#Ex4_2.sce#3169/CH4/EX4.2/Ex4_2.sce#S##115271 +4#Breakdown in Solid Dielectrics#4.1#calculation of heat generated in specimen due to dielectric loss#Ex4_1.sce#3169/CH4/EX4.1/Ex4_1.sce#S##115266 +3#Conduction and Breakdown in Liquid Dielectrics#3.1#determination of power law dependence between the gap spacing and the applied voltage of the oil#Ex3_1.sce#3169/CH3/EX3.1/Ex3_1.sce#S##115508 +2#Conduction and Breakdown in Gases#2.5#calculation of minimum spark over voltage#Ex2_5.sce#3169/CH2/EX2.5/Ex2_5.sce#S##115254 +2#Conduction and Breakdown in Gases#2.4#calculation of breakdown voltage of a spark gap#Ex2_4.sce#3169/CH2/EX2.4/Ex2_4.sce#S##115252 +2#Conduction and Breakdown in Gases#2.3#calculation of Townsend secondary ionization coefficient#Ex2_3.sce#3169/CH2/EX2.3/Ex2_3.sce#S##115253 +2#Conduction and Breakdown in Gases#2.2#calculation of Townsend primary ionization coefficient#Ex2_2.sce#3169/CH2/EX2.2/Ex2_2.sce#S##115250 +2#Conduction and Breakdown in Gases#2.1#calculation of breakdown strength of air#Ex2_1.sce#3169/CH2/EX2.1/Ex2_1.sce#S##115249 diff --git a/latex/tmp_3176_data.txt b/latex/tmp_3176_data.txt index e69de29bb..3a0fc0d23 100644 --- a/latex/tmp_3176_data.txt +++ b/latex/tmp_3176_data.txt @@ -0,0 +1,200 @@ +10#Image Segmentation#10.9#Another illustration of the three principal Edge Detection Methods#Ex10_9.sce#3176/CH10/EX10.9/Ex10_9.sce#S##115192 +10#Image Segmentation#10.9#Another illustration of the three principal Edge Detection Methods#Ex10_9.tif#3176/DEPENDENCIES/Ex10_9.tif#D#Another illustration of the three principal Edge Detection Methods#1183 +10#Image Segmentation#10.8#Illustration of the Canny Edge Detection Methods#Ex10_8.sce#3176/CH10/EX10.8/Ex10_8.sce#S##115191 +10#Image Segmentation#10.8#Illustration of the Canny Edge Detection Methods#Ex10_8.tif#3176/DEPENDENCIES/Ex10_8.tif#D#Illustration of the Canny Edge Detection Methods#1181 +10#Image Segmentation#10.7#Illustration of the Marr Hildreth Edge Detection Methods#Ex10_7.sce#3176/CH10/EX10.7/Ex10_7.sce#S##115190 +10#Image Segmentation#10.7#Illustration of the Marr Hildreth Edge Detection Methods#Ex10_7.tif#3176/DEPENDENCIES/Ex10_7.tif#D#Illustration of the Marr Hildreth Edge Detection Methods#1178 +10#Image Segmentation#10.6#Illustration of the 2 D Gradient Magnitude and Angle#Ex10_6.sce#3176/CH10/EX10.6/Ex10_6.sce#S##115189 +10#Image Segmentation#10.6#Illustration of the 2 D Gradient Magnitude and Angle#Ex10_6.tif#3176/DEPENDENCIES/Ex10_6.tif#D#Illustration of the 2 D Gradient Magnitude and Angle#1179 +10#Image Segmentation#10.4#Behavior of the First and Second Derivative of a Noisy Edge#Ex10_4.sce#3176/CH10/EX10.4/Ex10_4.sce#S##115188 +10#Image Segmentation#10.4#Behavior of the First and Second Derivative of a Noisy Edge#Ex10_4.tif#3176/DEPENDENCIES/Ex10_4.tif#D#Behavior of the First and Second Derivative of a Noisy Edge#1177 +10#Image Segmentation#10.3#Detection of Lines in Specified Direction#Ex10_3.sce#3176/CH10/EX10.3/Ex10_3.sce#S##115187 +10#Image Segmentation#10.3#Detection of Lines in Specified Direction#Ex10_3.tif#3176/DEPENDENCIES/Ex10_3.tif#D#Detection of Lines in Specified Direction#1180 +10#Image Segmentation#10.23#Segmentation by Region Growing#Ex10_23.sce#3176/CH10/EX10.23/Ex10_23.sce#S##115202 +10#Image Segmentation#10.23#Segmentation by Region Growing#Ex_10_23_1.jpeg#3176/CH10/EX10.23/Ex_10_23_1.jpeg#R##115203 +10#Image Segmentation#10.23#Segmentation by Region Growing#Ex_10_23_2.jpeg#3176/CH10/EX10.23/Ex_10_23_2.jpeg#R##115204 +10#Image Segmentation#10.22#Document Thresholding Using Moving Averages#Ex10_22.sce#3176/CH10/EX10.22/Ex10_22.sce#S##115200 +10#Image Segmentation#10.22#Document Thresholding Using Moving Averages#Ex_10_22_1.jpeg#3176/CH10/EX10.22/Ex_10_22_1.jpeg#R##115201 +10#Image Segmentation#10.22#Document Thresholding Using Moving Averages#Ex10_22.tif#3176/DEPENDENCIES/Ex10_22.tif#D#Document Thresholding Using Moving Averages#1184 +10#Image Segmentation#10.20#Variable Thresholding Via Image Partitioning#Ex10_20.sce#3176/CH10/EX10.20/Ex10_20.sce#S##115199 +10#Image Segmentation#10.20#Variable Thresholding Via Image Partitioning#Ex10_20.tif#3176/DEPENDENCIES/Ex10_20.tif#D#Variable Thresholding Via Image Partitioning#1176 +10#Image Segmentation#10.2#Using the Laplacian for the Detection#Ex10_2.sce#3176/CH10/EX10.2/Ex10_2.sce#S##115184 +10#Image Segmentation#10.2#Using the Laplacian for the Detection#Ex_10_2_3.jpeg#3176/CH10/EX10.2/Ex_10_2_3.jpeg#R##115185 +10#Image Segmentation#10.2#Using the Laplacian for the Detection#Ex_10_2_4.jpeg#3176/CH10/EX10.2/Ex_10_2_4.jpeg#R##115186 +10#Image Segmentation#10.2#Using the Laplacian for the Detection#Ex10_2.tif#3176/DEPENDENCIES/Ex10_2.tif#D#Using the Laplacian for the Detection#1182 +10#Image Segmentation#10.19#Multipal Global Thresholding#Ex10_19.sce#3176/CH10/EX10.19/Ex10_19.sce#S##115198 +10#Image Segmentation#10.19#Multipal Global Thresholding#Ex10_19.tif#3176/DEPENDENCIES/Ex10_19.tif#D#Multipal Global Thresholding#1175 +10#Image Segmentation#10.18#Using Edge Information Based on the Laplacian to Improve Global Thresholding#Ex10_18.sce#3176/CH10/EX10.18/Ex10_18.sce#S##115197 +10#Image Segmentation#10.18#Using Edge Information Based on the Laplacian to Improve Global Thresholding#Ex10_18.tif#3176/DEPENDENCIES/Ex10_18.tif#D#Using Edge Information Based on the Laplacian to Improve Global Thresholding#1174 +10#Image Segmentation#10.16#Optimum Global Thresholding using Otsu Method#Ex10_16.sce#3176/CH10/EX10.16/Ex10_16.sce#S##115194 +10#Image Segmentation#10.16#Optimum Global Thresholding using Otsu Method#Ex_10_16_3.jpeg#3176/CH10/EX10.16/Ex_10_16_3.jpeg#R##115195 +10#Image Segmentation#10.16#Optimum Global Thresholding using Otsu Method#Ex_10_16_4.jpeg#3176/CH10/EX10.16/Ex_10_16_4.jpeg#R##115196 +10#Image Segmentation#10.16#Optimum Global Thresholding using Otsu Method#Ex10_16.tif#3176/DEPENDENCIES/Ex10_16.tif#D#Optimum Global Thresholding using Otsu's Method#1173 +10#Image Segmentation#10.15#Global Thresholding#Ex10_15.sce#3176/CH10/EX10.15/Ex10_15.sce#S##115193 +10#Image Segmentation#10.15#Global Thresholding#Ex10_15.tif#3176/DEPENDENCIES/Ex10_15.tif#D#Global Thresholding#1172 +10#Image Segmentation#10.1#Detection of Isolated Point in an Image#Ex10_1.sce#3176/CH10/EX10.1/Ex10_1.sce#S##115183 +10#Image Segmentation#10.1#Detection of Isolated Point in an Image#Ex10_1.tif#3176/DEPENDENCIES/Ex10_1.tif#D#Detection of Isolated Point in an Image#1171 +9#Morphological Image Processing#9.9#Illustration of Gray Scale Erosion and Dilation#Ex9_9.sce#3176/CH9/EX9.9/Ex9_9.sce#S##115181 +9#Morphological Image Processing#9.9#Illustration of Gray Scale Erosion and Dilation#Ex9_9.png#3176/DEPENDENCIES/Ex9_9.png#D#Illustration of Gray Scale Erosion and Dilation#1169 +9#Morphological Image Processing#9.7#Using Connected Components to Detect Foreign Object in Packaged Food#Ex9_7.sce#3176/CH9/EX9.7/Ex9_7.sce#S##115180 +9#Morphological Image Processing#9.7#Using Connected Components to Detect Foreign Object in Packaged Food#Ex9_7.png#3176/DEPENDENCIES/Ex9_7.png#D#Using Connected Components to Detect Foreign Object in Packaged Food#1168 +9#Morphological Image Processing#9.5#Boundary Extraction by Morphological Processing#Ex9_5.sce#3176/CH9/EX9.5/Ex9_5.sce#S##115179 +9#Morphological Image Processing#9.5#Boundary Extraction by Morphological Processing#Ex9_5.png#3176/DEPENDENCIES/Ex9_5.png#D#Boundary Extraction by Morphological Processing#1170 +9#Morphological Image Processing#9.4#Use of opening and closing for Morphological Filtering#Ex9_4.sce#3176/CH9/EX9.4/Ex9_4.sce#S##115178 +9#Morphological Image Processing#9.4#Use of opening and closing for Morphological Filtering#Ex9_4.png#3176/DEPENDENCIES/Ex9_4.png#D#Use of opening and closing for Morphological Filtering#1167 +9#Morphological Image Processing#9.2#An Illustration of Dilation#Ex9_2.sce#3176/CH9/EX9.2/Ex9_2.sce#S##115177 +9#Morphological Image Processing#9.2#An Illustration of Dilation#Ex9_2.tif#3176/DEPENDENCIES/Ex9_2.tif#D#An Illustration of Dilation#1166 +9#Morphological Image Processing#9.10#Illustration of Gray Scale Opening and Closing#Ex9_10.sce#3176/CH9/EX9.10/Ex9_10.sce#S##115182 +9#Morphological Image Processing#9.10#Illustration of Gray Scale Opening and Closing#Ex9_10.png#3176/DEPENDENCIES/Ex9_10.png#D#Illustration of Gray Scale Opening and Closing#1165 +9#Morphological Image Processing#9.1#Using Erosion to remove image component#Ex9_1.sce#3176/CH9/EX9.1/Ex9_1.sce#S##115176 +9#Morphological Image Processing#9.1#Using Erosion to remove image component#Ex9_1.tif#3176/DEPENDENCIES/Ex9_1.tif#D#Using Erosion to remove image component#1164 +8#Image Compression#8.2#Image Entropy Estimation#Ex8_2.sce#3176/CH8/EX8.2/Ex8_2.sce#S##115175 +8#Image Compression#8.2#Image Entropy Estimation#Ex8_2.tif#3176/DEPENDENCIES/Ex8_2.tif#D#Image Entropy Estimation#1163 +6#Color Image Processing#6.9#Tonal Transformations#Ex6_9.sce#3176/CH6/EX6.9/Ex6_9.sce#S##115166 +6#Color Image Processing#6.9#Tonal Transformations#Ex6_9_3.tif#3176/DEPENDENCIES/Ex6_9_3.tif#D#Tonal Transformations#1148 +6#Color Image Processing#6.9#Tonal Transformations#Ex6_9_2.tif#3176/DEPENDENCIES/Ex6_9_2.tif#D#Tonal Transformations#1147 +6#Color Image Processing#6.9#Tonal Transformations#Ex6_9_1.tif#3176/DEPENDENCIES/Ex6_9_1.tif#D#Tonal Transformations#1146 +6#Color Image Processing#6.7#Computing Color Image Components#Ex6_7.sce#3176/CH6/EX6.7/Ex6_7.sce#S##115165 +6#Color Image Processing#6.7#Computing Color Image Components#Ex6_7.tif#3176/DEPENDENCIES/Ex6_7.tif#D#Computing Color Image Components#1145 +6#Color Image Processing#6.6#Color Coding of Multi Spectral Images#Ex6_6.sce#3176/CH6/EX6.6/Ex6_6.sce#S##115164 +6#Color Image Processing#6.6#Color Coding of Multi Spectral Images#Ex6_6_4.TIF#3176/DEPENDENCIES/Ex6_6_4.TIF#D#Color Coding of Multi Spectral Images#1157 +6#Color Image Processing#6.6#Color Coding of Multi Spectral Images#Ex6_6_3.TIF#3176/DEPENDENCIES/Ex6_6_3.TIF#D#Color Coding of Multi Spectral Images#1156 +6#Color Image Processing#6.6#Color Coding of Multi Spectral Images#Ex6_6_2.TIF#3176/DEPENDENCIES/Ex6_6_2.TIF#D#Color Coding of Multi Spectral Images#1155 +6#Color Image Processing#6.6#Color Coding of Multi Spectral Images#Ex6_6_1.TIF#3176/DEPENDENCIES/Ex6_6_1.TIF#D#Color Coding of Multi Spectral Images#1154 +6#Color Image Processing#6.5#Use of Psuedocolor for highlighting Explosives Contained in Luggage#Ex6_5.sce#3176/CH6/EX6.5/Ex6_5.sce#S##115163 +6#Color Image Processing#6.5#Use of Psuedocolor for highlighting Explosives Contained in Luggage#Ex6_5.png#3176/DEPENDENCIES/Ex6_5.png#D#Use of Psedocolor for highlighting Exposives Contained in Luggage#1153 +6#Color Image Processing#6.4#Use of Color to Highlight Rainfall Levels#Ex6_4.sce#3176/CH6/EX6.4/Ex6_4.sce#S##115162 +6#Color Image Processing#6.4#Use of Color to Highlight Rainfall Levels#Ex6_4.tif#3176/DEPENDENCIES/Ex6_4.tif#D#Use of Color to Highlight Rainfall Levels#1144 +6#Color Image Processing#6.3#Intensity Slicing#Ex6_3.sce#3176/CH6/EX6.3/Ex6_3.sce#S##115161 +6#Color Image Processing#6.3#Intensity Slicing#Ex6_3.tif#3176/DEPENDENCIES/Ex6_3.tif#D#Intensity Slicing#1143 +6#Color Image Processing#6.17#Illustration of the effects of converting noisy RGB Images to HSV#Ex6_17.sce#3176/CH6/EX6.17/Ex6_17.sce#S##115174 +6#Color Image Processing#6.17#Illustration of the effects of converting noisy RGB Images to HSV#Ex6_17_R.tif#3176/DEPENDENCIES/Ex6_17_R.tif#D#Illustration of the effects of converting noisy RGB Images to HSI#1152 +6#Color Image Processing#6.17#Illustration of the effects of converting noisy RGB Images to HSV#Ex6_17_G.tif#3176/DEPENDENCIES/Ex6_17_G.tif#D#Illustration of the effects of converting noisy RGB Images to HSI#1151 +6#Color Image Processing#6.17#Illustration of the effects of converting noisy RGB Images to HSV#Ex6_17_B.tif#3176/DEPENDENCIES/Ex6_17_B.tif#D#Illustration of the effects of converting noisy RGB Images to HSI#1150 +6#Color Image Processing#6.16#Edge Detection Vector Space#Ex6_16.sce#3176/CH6/EX6.16/Ex6_16.sce#S##115173 +6#Color Image Processing#6.16#Edge Detection Vector Space#Ex6_16.tif#3176/DEPENDENCIES/Ex6_16.tif#D#Edge Detection Vector Space#1149 +6#Color Image Processing#6.14#Segmentation in HSI Space#Ex6_14.sce#3176/CH6/EX6.14/Ex6_14.sce#S##115172 +6#Color Image Processing#6.14#Segmentation in HSI Space#Ex6_14.tif#3176/DEPENDENCIES/Ex6_14.tif#D#egmentation in HSI Space#1162 +6#Color Image Processing#6.13#Sharpning with the Laplacian#Ex6_13.sce#3176/CH6/EX6.13/Ex6_13.sce#S##115170 +6#Color Image Processing#6.13#Sharpning with the Laplacian#Ex6_13.tif#3176/DEPENDENCIES/Ex6_13.tif#D#Sharpning with the Laplacian#1161 +6#Color Image Processing#6.12#Color Image Smoothning by Neighbourhood Averaging#Ex6_12.sce#3176/CH6/EX6.12/Ex6_12.sce#S##115169 +6#Color Image Processing#6.12#Color Image Smoothning by Neighbourhood Averaging#Ex6_12.tif#3176/DEPENDENCIES/Ex6_12.tif#D#Color Image Smoothning by Neighbourhood Averaging#1160 +6#Color Image Processing#6.11#Histogram Equalization in the HSI Color Space#Ex6_11.sce#3176/CH6/EX6.11/Ex6_11.sce#S##115168 +6#Color Image Processing#6.11#Histogram Equalization in the HSI Color Space#Ex6_11.tif#3176/DEPENDENCIES/Ex6_11.tif#D#Histogram Equalization in the HSI Color Space#1159 +6#Color Image Processing#6.10#Color Balancing#Ex6_10.sce#3176/CH6/EX6.10/Ex6_10.sce#S##115167 +6#Color Image Processing#6.10#Color Balancing#Ex6_10.tif#3176/DEPENDENCIES/Ex6_10.tif#D#Color Balancing#1158 +5#Image Restoration and Reconstruction #5.8#Removal of Periodic Noise by Notch Filtering#Ex5_8.sce#3176/CH5/EX5.8/Ex5_8.sce#S##115157 +5#Image Restoration and Reconstruction #5.8#Removal of Periodic Noise by Notch Filtering#Ex5_8.tif#3176/DEPENDENCIES/Ex5_8.tif#D#Removal of Periodic Noise by Notch Filtering#1095 +5#Image Restoration and Reconstruction #5.5#Illustration of Adaptive Median Filter#Ex5_5.sce#3176/CH5/EX5.5/Ex5_5.sce#S##115156 +5#Image Restoration and Reconstruction #5.5#Illustration of Adaptive Median Filter#Ex5_5.tif#3176/DEPENDENCIES/Ex5_5.tif#D#Illustration of Adaptive Median Filter#1094 +5#Image Restoration and Reconstruction #5.4#Illustration of Adaptive Local Noise Reduction Filtering#Ex5_4.sce#3176/CH5/EX5.4/Ex5_4.sce#S##115155 +5#Image Restoration and Reconstruction #5.4#Illustration of Adaptive Local Noise Reduction Filtering#Ex5_4.tif#3176/DEPENDENCIES/Ex5_4.tif#D#Illustration of Adaptive Local Noise Reduction Filtering#1090 +5#Image Restoration and Reconstruction #5.3#Illustration of Order Statistic filter#Ex5_3.sce#3176/CH5/EX5.3/Ex5_3.sce#S##115154 +5#Image Restoration and Reconstruction #5.3#Illustration of Order Statistic filter#Ex5_3.tif#3176/DEPENDENCIES/Ex5_3.tif#D#Illustration of Order Statistic filter#1093 +5#Image Restoration and Reconstruction #5.2#Illustration of Mean Filters#Ex5_2.sce#3176/CH5/EX5.2/Ex5_2.sce#S##115152 +5#Image Restoration and Reconstruction #5.2#Illustration of Mean Filters#Ex5_2.tif#3176/DEPENDENCIES/Ex5_2.tif#D#Illustration of Mean Filters#1092 +5#Image Restoration and Reconstruction #5.12#Comparision of Inverse Filtering and Wiener Filtering#Ex5_12.sce#3176/CH5/EX5.12/Ex5_12.sce#S##115160 +5#Image Restoration and Reconstruction #5.12#Comparision of Inverse Filtering and Wiener Filtering#Ex5_12.png#3176/DEPENDENCIES/Ex5_12.png#D#Comparision of Inverse Filtering and Wiener Filtering#1098 +5#Image Restoration and Reconstruction #5.11#Inverse Filtering#Ex5_11.sce#3176/CH5/EX5.11/Ex5_11.sce#S##115159 +5#Image Restoration and Reconstruction #5.11#Inverse Filtering#Ex5_11.png#3176/DEPENDENCIES/Ex5_11.png#D#Inverse Filtering#1097 +5#Image Restoration and Reconstruction #5.10#Image Blurring Due to Motion#Ex5_10.sce#3176/CH5/EX5.10/Ex5_10.sce#S##115158 +5#Image Restoration and Reconstruction #5.10#Image Blurring Due to Motion#Ex5_10.png#3176/DEPENDENCIES/Ex5_10.png#D#Image Bluring Due to Motion#1096 +5#Image Restoration and Reconstruction #5.1#Noisy Images and their Histogram#Ex5_1.sce#3176/CH5/EX5.1/Ex5_1.sce#S##115151 +5#Image Restoration and Reconstruction #5.1#Noisy Images and their Histogram#Ex5_1.tif#3176/DEPENDENCIES/Ex5_1.tif#D#Noisy Images and their Histogram#1091 +4#Filtering in Frequency Domain#4.9#Illustration of Jaggies in Image Zooming#Ex4_9.sce#3176/CH4/EX4.9/Ex4_9.sce#S##115126 +4#Filtering in Frequency Domain#4.9#Illustration of Jaggies in Image Zooming#Ex4_9.tif#3176/DEPENDENCIES/Ex4_9.tif#D#Illustration of Jaggies in Image Zooming#1127 +4#Filtering in Frequency Domain#4.8#Illustration of Jaggies in Image Shrinking#Ex4_8.sce#3176/CH4/EX4.8/Ex4_8.sce#S##115125 +4#Filtering in Frequency Domain#4.8#Illustration of Jaggies in Image Shrinking#Ex4_8.tif#3176/DEPENDENCIES/Ex4_8.tif#D#Illustration of Jaggies in Image Shrinking#1126 +4#Filtering in Frequency Domain#4.7#Illustration of Aliasing in Resampled Images#Ex4_7.sce#3176/CH4/EX4.7/Ex4_7.sce#S##115124 +4#Filtering in Frequency Domain#4.7#Illustration of Aliasing in Resampled Images#Ex4_7.tif#3176/DEPENDENCIES/Ex4_7.tif#D#Illustration of Aliasing in Resampled Images#1125 +4#Filtering in Frequency Domain#4.4#The Mechanics of Computing the DFT#Ex4_4.sce#3176/CH4/EX4.4/Ex4_4.sce#S##115123 +4#Filtering in Frequency Domain#4.24#Enhancement of Corrupted Cassini Saturn Image by Notch Filtering#Ex4_24.sce#3176/CH4/EX4.24/Ex4_24.sce#S##115150 +4#Filtering in Frequency Domain#4.24#Enhancement of Corrupted Cassini Saturn Image by Notch Filtering#Ex4_24.tif#3176/DEPENDENCIES/Ex4_24.tif#D#Enhancement of Corrupted Cassini Saturn Image by Notch Filtering#1142 +4#Filtering in Frequency Domain#4.23#Reduction of Moire Patterns Using Notch Filtering#Ex4_23.sce#3176/CH4/EX4.23/Ex4_23.sce#S##115147 +4#Filtering in Frequency Domain#4.23#Reduction of Moire Patterns Using Notch Filtering#Ex_4_23_3.jpeg#3176/CH4/EX4.23/Ex_4_23_3.jpeg#R##115148 +4#Filtering in Frequency Domain#4.23#Reduction of Moire Patterns Using Notch Filtering#Ex_4_23_4.jpeg#3176/CH4/EX4.23/Ex_4_23_4.jpeg#R##115149 +4#Filtering in Frequency Domain#4.23#Reduction of Moire Patterns Using Notch Filtering#Ex4_23.tif#3176/DEPENDENCIES/Ex4_23.tif#D#Reduction of Moire Patterns Using Notch Filtering#1141 +4#Filtering in Frequency Domain#4.22#Image Enhancement using Homomorphic Filtering#Ex4_22.sce#3176/CH4/EX4.22/Ex4_22.sce#S##115146 +4#Filtering in Frequency Domain#4.22#Image Enhancement using Homomorphic Filtering#Ex4_22.tif#3176/DEPENDENCIES/Ex4_22.tif#D#Image Enhancement using Homomorphic Filtering#1140 +4#Filtering in Frequency Domain#4.21#Image Enhancement using High Frequency Emphasis Filtering#Ex4_21.sce#3176/CH4/EX4.21/Ex4_21.sce#S##115143 +4#Filtering in Frequency Domain#4.21#Image Enhancement using High Frequency Emphasis Filtering#Ex_4_21_3.jpeg#3176/CH4/EX4.21/Ex_4_21_3.jpeg#R##115144 +4#Filtering in Frequency Domain#4.21#Image Enhancement using High Frequency Emphasis Filtering#Ex_4_21_4.jpeg#3176/CH4/EX4.21/Ex_4_21_4.jpeg#R##115145 +4#Filtering in Frequency Domain#4.21#Image Enhancement using High Frequency Emphasis Filtering#Ex4_21.tif#3176/DEPENDENCIES/Ex4_21.tif#D#Image Enhancement using High Frequency Emphasis Filtering#1139 +4#Filtering in Frequency Domain#4.20#Image Sharpening in the Frequency Domain using the Laplacian#Ex4_20.sce#3176/CH4/EX4.20/Ex4_20.sce#S##115142 +4#Filtering in Frequency Domain#4.20#Image Sharpening in the Frequency Domain using the Laplacian#Ex4_20.tif#3176/DEPENDENCIES/Ex4_20.tif#D#Image Sharpning in the Frequency Domain using the Laplacian#1138 +4#Filtering in Frequency Domain#4.19#Using Highpass Filter and Thresholding for Image enhancement #Ex4_19.sce#3176/CH4/EX4.19/Ex4_19.sce#S##115139 +4#Filtering in Frequency Domain#4.19#Using Highpass Filter and Thresholding for Image enhancement #Ex_4_19_2.jpeg#3176/CH4/EX4.19/Ex_4_19_2.jpeg#R##115140 +4#Filtering in Frequency Domain#4.19#Using Highpass Filter and Thresholding for Image enhancement #Ex_4_19_3.jpeg#3176/CH4/EX4.19/Ex_4_19_3.jpeg#R##115141 +4#Filtering in Frequency Domain#4.19#Using Highpass Filter and Thresholding for Image enhancement #Ex4_19.tif#3176/DEPENDENCIES/Ex4_19.tif#D#Using Highpass Filter and Thresholding for Image enhancement#1137 +4#Filtering in Frequency Domain#4.18#Image Smoothing using Gaussian Lowpass Filter#Ex4_18.sce#3176/CH4/EX4.18/Ex4_18.sce#S##115136 +4#Filtering in Frequency Domain#4.18#Image Smoothing using Gaussian Lowpass Filter#Ex_4_18_2.jpeg#3176/CH4/EX4.18/Ex_4_18_2.jpeg#R##115137 +4#Filtering in Frequency Domain#4.18#Image Smoothing using Gaussian Lowpass Filter#Ex_4_18_4.jpeg#3176/CH4/EX4.18/Ex_4_18_4.jpeg#R##115138 +4#Filtering in Frequency Domain#4.18#Image Smoothing using Gaussian Lowpass Filter#Ex4_18.tif#3176/DEPENDENCIES/Ex4_18.tif#D#Image Smoothing using Gaussian Lowpass Filter#1136 +4#Filtering in Frequency Domain#4.17#Image Smoothing with a Butterworth Lowpass Filter#Ex4_17.sce#3176/CH4/EX4.17/Ex4_17.sce#S##115133 +4#Filtering in Frequency Domain#4.17#Image Smoothing with a Butterworth Lowpass Filter#Ex_4_17_2.jpeg#3176/CH4/EX4.17/Ex_4_17_2.jpeg#R##115134 +4#Filtering in Frequency Domain#4.17#Image Smoothing with a Butterworth Lowpass Filter#Ex_4_17_4.jpeg#3176/CH4/EX4.17/Ex_4_17_4.jpeg#R##115135 +4#Filtering in Frequency Domain#4.17#Image Smoothing with a Butterworth Lowpass Filter#Ex4_17.tif#3176/DEPENDENCIES/Ex4_17.tif#D#Image Smoothing with a Butterworth Lowoass Filter#1135 +4#Filtering in Frequency Domain#4.16#Image Smoothing using an ILPF#Ex4_16.sce#3176/CH4/EX4.16/Ex4_16.sce#S##115130 +4#Filtering in Frequency Domain#4.16#Image Smoothing using an ILPF#Ex_4_16_3.jpeg#3176/CH4/EX4.16/Ex_4_16_3.jpeg#R##115131 +4#Filtering in Frequency Domain#4.16#Image Smoothing using an ILPF#Ex_4_16_5.jpeg#3176/CH4/EX4.16/Ex_4_16_5.jpeg#R##115132 +4#Filtering in Frequency Domain#4.16#Image Smoothing using an ILPF#Ex4_16.tif#3176/DEPENDENCIES/Ex4_16.tif#D#Image Smoothing using an ILPF#1134 +4#Filtering in Frequency Domain#4.15#Obtaining a Frequency Domain Filtering from a Small Spatial Mask#Ex4_15.sce#3176/CH4/EX4.15/Ex4_15.sce#S##115129 +4#Filtering in Frequency Domain#4.15#Obtaining a Frequency Domain Filtering from a Small Spatial Mask#Ex4_15.tif#3176/DEPENDENCIES/Ex4_15.tif#D#Obtaining a Frequency Domain Filtering from a Small Spatial Mask#1133 +4#Filtering in Frequency Domain#4.14#Illustration of the Properties of the Fourier Spectrum and Phase Angle#Ex4_14.sce#3176/CH4/EX4.14/Ex4_14.sce#S##115128 +4#Filtering in Frequency Domain#4.14#Illustration of the Properties of the Fourier Spectrum and Phase Angle#Ex4_14_2.tif#3176/DEPENDENCIES/Ex4_14_2.tif#D#Illustration of the Properties of the Fourier Spectrum and Phase Angle#1132 +4#Filtering in Frequency Domain#4.14#Illustration of the Properties of the Fourier Spectrum and Phase Angle#Ex4_14.tif#3176/DEPENDENCIES/Ex4_14.tif#D#Illustration of the Properties of the Fourier Spectrum and Phase Angle#1131 +4#Filtering in Frequency Domain#4.13#2 D Fourier Spectrum of a Simple Function#Ex4_13.sce#3176/CH4/EX4.13/Ex4_13.sce#S##115127 +4#Filtering in Frequency Domain#4.13#2 D Fourier Spectrum of a Simple Function#Ex4_13_3.png#3176/DEPENDENCIES/Ex4_13_3.png#D#2 D Fourier Spectrum of a Simple Function#1130 +4#Filtering in Frequency Domain#4.13#2 D Fourier Spectrum of a Simple Function#Ex4_13_2.png#3176/DEPENDENCIES/Ex4_13_2.png#D#2 D Fourier Spectrum of a Simple Function#1129 +4#Filtering in Frequency Domain#4.13#2 D Fourier Spectrum of a Simple Function#Ex4_13_1.tif#3176/DEPENDENCIES/Ex4_13_1.tif#D#2 D Fourier Spectrum of a Simple Function#1128 +4#Filtering in Frequency Domain#4.1#Obtaining the Fourier Transform of a Simple Function#Ex4_1.sce#3176/CH4/EX4.1/Ex4_1.sce#S##115122 +3#Intensity Transformation and Spatial Filtering#3.8#Histogram Specification#Ex3_8.sce#3176/CH3/EX3.8/Ex3_8.sce#S##115111 +3#Intensity Transformation and Spatial Filtering#3.8#Histogram Specification#Ex_3_8_1.jpeg#3176/CH3/EX3.8/Ex_3_8_1.jpeg#R##115112 +3#Intensity Transformation and Spatial Filtering#3.8#Histogram Specification#Ex_3_8_2.jpeg#3176/CH3/EX3.8/Ex_3_8_2.jpeg#R##115113 +3#Intensity Transformation and Spatial Filtering#3.6#Histogram Equalization with probability calculation#Ex3_6.sce#3176/CH3/EX3.6/Ex3_6.sce#S##115110 +3#Intensity Transformation and Spatial Filtering#3.6#Histogram Equalization with probability calculation#Ex3_6_2.tif#3176/DEPENDENCIES/Ex3_6_2.tif#D#Histogram Equalization#1124 +3#Intensity Transformation and Spatial Filtering#3.6#Histogram Equalization with probability calculation#Ex3_6_1.tif#3176/DEPENDENCIES/Ex3_6_1.tif#D#Histogram Equalization#1123 +3#Intensity Transformation and Spatial Filtering#3.6#Histogram Equalization with probability calculation#Ex3_6.tif#3176/DEPENDENCIES/Ex3_6.tif#D#Histogram Equalization#1122 +3#Intensity Transformation and Spatial Filtering#3.5#A Simple Illustration of Histogram Equalization#Ex3_5.sce#3176/CH3/EX3.5/Ex3_5.sce#S##115109 +3#Intensity Transformation and Spatial Filtering#3.3#Intensity Level Slicing#Ex3_3.sce#3176/CH3/EX3.3/Ex3_3.sce#S##115108 +3#Intensity Transformation and Spatial Filtering#3.3#Intensity Level Slicing#Ex3_3.tif#3176/DEPENDENCIES/Ex3_3.tif#D#Intensity Level Slicing#1121 +3#Intensity Transformation and Spatial Filtering#3.2#Illustration of Power Law Transformation#Ex3_2.sce#3176/CH3/EX3.2/Ex3_2.sce#S##115107 +3#Intensity Transformation and Spatial Filtering#3.2#Illustration of Power Law Transformation#Ex3_2.tif#3176/DEPENDENCIES/Ex3_2.tif#D#Illustration of Power Law Transformation#1120 +3#Intensity Transformation and Spatial Filtering#3.17#Use of gradient for Edge Enhancement #Ex3_17.sce#3176/CH3/EX3.17/Ex3_17.sce#S##115121 +3#Intensity Transformation and Spatial Filtering#3.17#Use of gradient for Edge Enhancement #Ex3_17.png#3176/DEPENDENCIES/Ex3_17.png#D#Use of gradient for Edge Enhancement #1117 +3#Intensity Transformation and Spatial Filtering#3.16#Image Sharpning using UnSharp Masking and HighBoost Filtering #Ex3_16.sce#3176/CH3/EX3.16/Ex3_16.sce#S##115120 +3#Intensity Transformation and Spatial Filtering#3.16#Image Sharpning using UnSharp Masking and HighBoost Filtering #Ex3_16.tif#3176/DEPENDENCIES/Ex3_16.tif#D#Image Sharpning using Un-Sharp Masking and High-Boost Filtering #1116 +3#Intensity Transformation and Spatial Filtering#3.15#Image Sharpning using Laplacian #Ex3_15.sce#3176/CH3/EX3.15/Ex3_15.sce#S##115119 +3#Intensity Transformation and Spatial Filtering#3.15#Image Sharpning using Laplacian #Ex3_15.tif#3176/DEPENDENCIES/Ex3_15.tif#D#Image Sharpning using Laplacian #1119 +3#Intensity Transformation and Spatial Filtering#3.14#Median Filtering for Noise Reduction#Ex3_14.sce#3176/CH3/EX3.14/Ex3_14.sce#S##115118 +3#Intensity Transformation and Spatial Filtering#3.14#Median Filtering for Noise Reduction#Ex3_14.tif#3176/DEPENDENCIES/Ex3_14.tif#D#Median Filtering for Noise Reduction#1118 +3#Intensity Transformation and Spatial Filtering#3.13#Image Smoothing#Ex3_13.sce#3176/CH3/EX3.13/Ex3_13.sce#S##115117 +3#Intensity Transformation and Spatial Filtering#3.13#Image Smoothing#Ex3_13.tif#3176/DEPENDENCIES/Ex3_13.tif#D#Image Smoothing#1114 +3#Intensity Transformation and Spatial Filtering#3.12#Local Enhancement using Histogram Statistic#Ex3_12.sce#3176/CH3/EX3.12/Ex3_12.sce#S##115116 +3#Intensity Transformation and Spatial Filtering#3.12#Local Enhancement using Histogram Statistic#Ex3_12.tif#3176/DEPENDENCIES/Ex3_12.tif#D#Local Enhancement using Histogram Statistic#1113 +3#Intensity Transformation and Spatial Filtering#3.11#Computing Histogram Statistic#Ex3_11.sce#3176/CH3/EX3.11/Ex3_11.sce#S##115115 +3#Intensity Transformation and Spatial Filtering#3.10#Local Histogram Equalization#3_10_his_equ.jpeg#3176/CH3/EX3.10/3_10_his_equ.jpeg#R##110256 +3#Intensity Transformation and Spatial Filtering#3.10#Local Histogram Equalization#3_10_his_local.jpeg#3176/CH3/EX3.10/3_10_his_local.jpeg#R##110257 +3#Intensity Transformation and Spatial Filtering#3.10#Local Histogram Equalization#Ex3_10.sce#3176/CH3/EX3.10/Ex3_10.sce#S##115114 +3#Intensity Transformation and Spatial Filtering#3.10#Local Histogram Equalization#Ex3_10.tif#3176/DEPENDENCIES/Ex3_10.tif#D#Local Histogram Equalization#1115 +3#Intensity Transformation and Spatial Filtering#3.1#Gamma Intensity transformation#Ex3_1.sce#3176/CH3/EX3.1/Ex3_1.sce#S##115106 +3#Intensity Transformation and Spatial Filtering#3.1#Gamma Intensity transformation#Ex3_1.tif#3176/DEPENDENCIES/Ex3_1.tif#D#Gamma Intensity transformation#1112 +2#Digital Image Fundamental#2.7#Image Multiplication for Shadding Correction#Ex2_7.sce#3176/CH2/EX2.7/Ex2_7.sce#S##115104 +2#Digital Image Fundamental#2.7#Image Multiplication for Shadding Correction#Ex2_7_3.tif#3176/DEPENDENCIES/Ex2_7_3.tif#D#Image Multiplication for Shadding Correction#1107 +2#Digital Image Fundamental#2.7#Image Multiplication for Shadding Correction#Ex2_7_2.tif#3176/DEPENDENCIES/Ex2_7_2.tif#D#Image Multiplication for Shadding Correction#1106 +2#Digital Image Fundamental#2.7#Image Multiplication for Shadding Correction#Ex2_7_1.tif#3176/DEPENDENCIES/Ex2_7_1.tif#D#Image Multiplication for Shadding Correction#1105 +2#Digital Image Fundamental#2.7#Image Multiplication for Shadding Correction#Ex2_7.tif#3176/DEPENDENCIES/Ex2_7.tif#D#Image Multiplication for Shadding Correction#1104 +2#Digital Image Fundamental#2.6#Image Subtraction for Enhancing differences#Ex2_6.sce#3176/CH2/EX2.6/Ex2_6.sce#S##115103 +2#Digital Image Fundamental#2.6#Image Subtraction for Enhancing differences#Ex2_6.tif#3176/DEPENDENCIES/Ex2_6.tif#D#Image Subtraction for Enhancing differences#1103 +2#Digital Image Fundamental#2.5#Addition of Noisy Images for Noise Reduction#Ex2_5.sce#3176/CH2/EX2.5/Ex2_5.sce#S##115102 +2#Digital Image Fundamental#2.5#Addition of Noisy Images for Noise Reduction#Ex2_5.tif#3176/DEPENDENCIES/Ex2_5.tif#D#Addition of Noisy Images for Noise Reduction#1102 +2#Digital Image Fundamental#2.4#Comparision of Interpolation Approaches for Image Shrinking and Zooming#Ex2_4.sce#3176/CH2/EX2.4/Ex2_4.sce#S##115101 +2#Digital Image Fundamental#2.4#Comparision of Interpolation Approaches for Image Shrinking and Zooming#Ex2_4.tif#3176/DEPENDENCIES/Ex2_4.tif#D#Comparision of Interpolation Approaches for Image Shrinking and Zooming#1101 +2#Digital Image Fundamental#2.3#Typical Effects of Varying the Number of Intensity Levels in a Digital Image#Ex2_3.sce#3176/CH2/EX2.3/Ex2_3.sce#S##115100 +2#Digital Image Fundamental#2.3#Typical Effects of Varying the Number of Intensity Levels in a Digital Image#Ex2_3.png#3176/DEPENDENCIES/Ex2_3.png#D#Typical Effects of Varying the Number of Intensity Levels in a digital Image#1100 +2#Digital Image Fundamental#2.2#Illustration of the Effects of Reducing Image Spatial Resolution#Ex2_2.sce#3176/CH2/EX2.2/Ex2_2.sce#S##115099 +2#Digital Image Fundamental#2.2#Illustration of the Effects of Reducing Image Spatial Resolution#Ex2_2.tif#3176/DEPENDENCIES/Ex2_2.tif#D#Illustration of the Effects of Reducing Image Spatial Resolution#1099 +2#Digital Image Fundamental#2.12#Standard Deviation#Ex2_12.sce#3176/CH2/EX2.12/Ex2_12.sce#S##115105 +2#Digital Image Fundamental#2.12#Standard Deviation#Ex2_12_2.tif#3176/DEPENDENCIES/Ex2_12_2.tif#D#Standard Deviation#1111 +2#Digital Image Fundamental#2.12#Standard Deviation#Ex2_12_1.tif#3176/DEPENDENCIES/Ex2_12_1.tif#D#Standard Deviation#1110 +2#Digital Image Fundamental#2.12#Standard Deviation#Ex2_12.tif#3176/DEPENDENCIES/Ex2_12.tif#D#Standard Deviation#1109 diff --git a/latex/tmp_3176_dep_data.txt b/latex/tmp_3176_dep_data.txt index e69de29bb..9c5267076 100644 --- a/latex/tmp_3176_dep_data.txt +++ b/latex/tmp_3176_dep_data.txt @@ -0,0 +1,94 @@ +Ex10_9.tif#3176/DEPENDENCIES/Ex10_9.tif#Another illustration of the three principal Edge Detection Methods#1183 +Ex10_8.tif#3176/DEPENDENCIES/Ex10_8.tif#Illustration of the Canny Edge Detection Methods#1181 +Ex10_7.tif#3176/DEPENDENCIES/Ex10_7.tif#Illustration of the Marr Hildreth Edge Detection Methods#1178 +Ex10_6.tif#3176/DEPENDENCIES/Ex10_6.tif#Illustration of the 2 D Gradient Magnitude and Angle#1179 +Ex10_4.tif#3176/DEPENDENCIES/Ex10_4.tif#Behavior of the First and Second Derivative of a Noisy Edge#1177 +Ex10_3.tif#3176/DEPENDENCIES/Ex10_3.tif#Detection of Lines in Specified Direction#1180 +Ex10_22.tif#3176/DEPENDENCIES/Ex10_22.tif#Document Thresholding Using Moving Averages#1184 +Ex10_20.tif#3176/DEPENDENCIES/Ex10_20.tif#Variable Thresholding Via Image Partitioning#1176 +Ex10_2.tif#3176/DEPENDENCIES/Ex10_2.tif#Using the Laplacian for the Detection#1182 +Ex10_19.tif#3176/DEPENDENCIES/Ex10_19.tif#Multipal Global Thresholding#1175 +Ex10_18.tif#3176/DEPENDENCIES/Ex10_18.tif#Using Edge Information Based on the Laplacian to Improve Global Thresholding#1174 +Ex10_16.tif#3176/DEPENDENCIES/Ex10_16.tif#Optimum Global Thresholding using Otsu's Method#1173 +Ex10_15.tif#3176/DEPENDENCIES/Ex10_15.tif#Global Thresholding#1172 +Ex10_1.tif#3176/DEPENDENCIES/Ex10_1.tif#Detection of Isolated Point in an Image#1171 +Ex9_9.png#3176/DEPENDENCIES/Ex9_9.png#Illustration of Gray Scale Erosion and Dilation#1169 +Ex9_7.png#3176/DEPENDENCIES/Ex9_7.png#Using Connected Components to Detect Foreign Object in Packaged Food#1168 +Ex9_5.png#3176/DEPENDENCIES/Ex9_5.png#Boundary Extraction by Morphological Processing#1170 +Ex9_4.png#3176/DEPENDENCIES/Ex9_4.png#Use of opening and closing for Morphological Filtering#1167 +Ex9_2.tif#3176/DEPENDENCIES/Ex9_2.tif#An Illustration of Dilation#1166 +Ex9_10.png#3176/DEPENDENCIES/Ex9_10.png#Illustration of Gray Scale Opening and Closing#1165 +Ex9_1.tif#3176/DEPENDENCIES/Ex9_1.tif#Using Erosion to remove image component#1164 +Ex8_2.tif#3176/DEPENDENCIES/Ex8_2.tif#Image Entropy Estimation#1163 +Ex6_9_3.tif#3176/DEPENDENCIES/Ex6_9_3.tif#Tonal Transformations#1148 +Ex6_9_2.tif#3176/DEPENDENCIES/Ex6_9_2.tif#Tonal Transformations#1147 +Ex6_9_1.tif#3176/DEPENDENCIES/Ex6_9_1.tif#Tonal Transformations#1146 +Ex6_7.tif#3176/DEPENDENCIES/Ex6_7.tif#Computing Color Image Components#1145 +Ex6_6_4.TIF#3176/DEPENDENCIES/Ex6_6_4.TIF#Color Coding of Multi Spectral Images#1157 +Ex6_6_3.TIF#3176/DEPENDENCIES/Ex6_6_3.TIF#Color Coding of Multi Spectral Images#1156 +Ex6_6_2.TIF#3176/DEPENDENCIES/Ex6_6_2.TIF#Color Coding of Multi Spectral Images#1155 +Ex6_6_1.TIF#3176/DEPENDENCIES/Ex6_6_1.TIF#Color Coding of Multi Spectral Images#1154 +Ex6_5.png#3176/DEPENDENCIES/Ex6_5.png#Use of Psedocolor for highlighting Exposives Contained in Luggage#1153 +Ex6_4.tif#3176/DEPENDENCIES/Ex6_4.tif#Use of Color to Highlight Rainfall Levels#1144 +Ex6_3.tif#3176/DEPENDENCIES/Ex6_3.tif#Intensity Slicing#1143 +Ex6_17_R.tif#3176/DEPENDENCIES/Ex6_17_R.tif#Illustration of the effects of converting noisy RGB Images to HSI#1152 +Ex6_17_G.tif#3176/DEPENDENCIES/Ex6_17_G.tif#Illustration of the effects of converting noisy RGB Images to HSI#1151 +Ex6_17_B.tif#3176/DEPENDENCIES/Ex6_17_B.tif#Illustration of the effects of converting noisy RGB Images to HSI#1150 +Ex6_16.tif#3176/DEPENDENCIES/Ex6_16.tif#Edge Detection Vector Space#1149 +Ex6_14.tif#3176/DEPENDENCIES/Ex6_14.tif#egmentation in HSI Space#1162 +Ex6_13.tif#3176/DEPENDENCIES/Ex6_13.tif#Sharpning with the Laplacian#1161 +Ex6_12.tif#3176/DEPENDENCIES/Ex6_12.tif#Color Image Smoothning by Neighbourhood Averaging#1160 +Ex6_11.tif#3176/DEPENDENCIES/Ex6_11.tif#Histogram Equalization in the HSI Color Space#1159 +Ex6_10.tif#3176/DEPENDENCIES/Ex6_10.tif#Color Balancing#1158 +Ex5_8.tif#3176/DEPENDENCIES/Ex5_8.tif#Removal of Periodic Noise by Notch Filtering#1095 +Ex5_5.tif#3176/DEPENDENCIES/Ex5_5.tif#Illustration of Adaptive Median Filter#1094 +Ex5_4.tif#3176/DEPENDENCIES/Ex5_4.tif#Illustration of Adaptive Local Noise Reduction Filtering#1090 +Ex5_3.tif#3176/DEPENDENCIES/Ex5_3.tif#Illustration of Order Statistic filter#1093 +Ex5_2.tif#3176/DEPENDENCIES/Ex5_2.tif#Illustration of Mean Filters#1092 +Ex5_12.png#3176/DEPENDENCIES/Ex5_12.png#Comparision of Inverse Filtering and Wiener Filtering#1098 +Ex5_11.png#3176/DEPENDENCIES/Ex5_11.png#Inverse Filtering#1097 +Ex5_10.png#3176/DEPENDENCIES/Ex5_10.png#Image Bluring Due to Motion#1096 +Ex5_1.tif#3176/DEPENDENCIES/Ex5_1.tif#Noisy Images and their Histogram#1091 +Ex4_9.tif#3176/DEPENDENCIES/Ex4_9.tif#Illustration of Jaggies in Image Zooming#1127 +Ex4_8.tif#3176/DEPENDENCIES/Ex4_8.tif#Illustration of Jaggies in Image Shrinking#1126 +Ex4_7.tif#3176/DEPENDENCIES/Ex4_7.tif#Illustration of Aliasing in Resampled Images#1125 +Ex4_24.tif#3176/DEPENDENCIES/Ex4_24.tif#Enhancement of Corrupted Cassini Saturn Image by Notch Filtering#1142 +Ex4_23.tif#3176/DEPENDENCIES/Ex4_23.tif#Reduction of Moire Patterns Using Notch Filtering#1141 +Ex4_22.tif#3176/DEPENDENCIES/Ex4_22.tif#Image Enhancement using Homomorphic Filtering#1140 +Ex4_21.tif#3176/DEPENDENCIES/Ex4_21.tif#Image Enhancement using High Frequency Emphasis Filtering#1139 +Ex4_20.tif#3176/DEPENDENCIES/Ex4_20.tif#Image Sharpning in the Frequency Domain using the Laplacian#1138 +Ex4_19.tif#3176/DEPENDENCIES/Ex4_19.tif#Using Highpass Filter and Thresholding for Image enhancement#1137 +Ex4_18.tif#3176/DEPENDENCIES/Ex4_18.tif#Image Smoothing using Gaussian Lowpass Filter#1136 +Ex4_17.tif#3176/DEPENDENCIES/Ex4_17.tif#Image Smoothing with a Butterworth Lowoass Filter#1135 +Ex4_16.tif#3176/DEPENDENCIES/Ex4_16.tif#Image Smoothing using an ILPF#1134 +Ex4_15.tif#3176/DEPENDENCIES/Ex4_15.tif#Obtaining a Frequency Domain Filtering from a Small Spatial Mask#1133 +Ex4_14_2.tif#3176/DEPENDENCIES/Ex4_14_2.tif#Illustration of the Properties of the Fourier Spectrum and Phase Angle#1132 +Ex4_14.tif#3176/DEPENDENCIES/Ex4_14.tif#Illustration of the Properties of the Fourier Spectrum and Phase Angle#1131 +Ex4_13_3.png#3176/DEPENDENCIES/Ex4_13_3.png#2 D Fourier Spectrum of a Simple Function#1130 +Ex4_13_2.png#3176/DEPENDENCIES/Ex4_13_2.png#2 D Fourier Spectrum of a Simple Function#1129 +Ex4_13_1.tif#3176/DEPENDENCIES/Ex4_13_1.tif#2 D Fourier Spectrum of a Simple Function#1128 +Ex3_6_2.tif#3176/DEPENDENCIES/Ex3_6_2.tif#Histogram Equalization#1124 +Ex3_6_1.tif#3176/DEPENDENCIES/Ex3_6_1.tif#Histogram Equalization#1123 +Ex3_6.tif#3176/DEPENDENCIES/Ex3_6.tif#Histogram Equalization#1122 +Ex3_3.tif#3176/DEPENDENCIES/Ex3_3.tif#Intensity Level Slicing#1121 +Ex3_2.tif#3176/DEPENDENCIES/Ex3_2.tif#Illustration of Power Law Transformation#1120 +Ex3_17.png#3176/DEPENDENCIES/Ex3_17.png#Use of gradient for Edge Enhancement #1117 +Ex3_16.tif#3176/DEPENDENCIES/Ex3_16.tif#Image Sharpning using Un-Sharp Masking and High-Boost Filtering #1116 +Ex3_15.tif#3176/DEPENDENCIES/Ex3_15.tif#Image Sharpning using Laplacian #1119 +Ex3_14.tif#3176/DEPENDENCIES/Ex3_14.tif#Median Filtering for Noise Reduction#1118 +Ex3_13.tif#3176/DEPENDENCIES/Ex3_13.tif#Image Smoothing#1114 +Ex3_12.tif#3176/DEPENDENCIES/Ex3_12.tif#Local Enhancement using Histogram Statistic#1113 +Ex3_10.tif#3176/DEPENDENCIES/Ex3_10.tif#Local Histogram Equalization#1115 +Ex3_1.tif#3176/DEPENDENCIES/Ex3_1.tif#Gamma Intensity transformation#1112 +Ex2_7_3.tif#3176/DEPENDENCIES/Ex2_7_3.tif#Image Multiplication for Shadding Correction#1107 +Ex2_7_2.tif#3176/DEPENDENCIES/Ex2_7_2.tif#Image Multiplication for Shadding Correction#1106 +Ex2_7_1.tif#3176/DEPENDENCIES/Ex2_7_1.tif#Image Multiplication for Shadding Correction#1105 +Ex2_7.tif#3176/DEPENDENCIES/Ex2_7.tif#Image Multiplication for Shadding Correction#1104 +Ex2_6.tif#3176/DEPENDENCIES/Ex2_6.tif#Image Subtraction for Enhancing differences#1103 +Ex2_5.tif#3176/DEPENDENCIES/Ex2_5.tif#Addition of Noisy Images for Noise Reduction#1102 +Ex2_4.tif#3176/DEPENDENCIES/Ex2_4.tif#Comparision of Interpolation Approaches for Image Shrinking and Zooming#1101 +Ex2_3.png#3176/DEPENDENCIES/Ex2_3.png#Typical Effects of Varying the Number of Intensity Levels in a digital Image#1100 +Ex2_2.tif#3176/DEPENDENCIES/Ex2_2.tif#Illustration of the Effects of Reducing Image Spatial Resolution#1099 +Ex2_12_2.tif#3176/DEPENDENCIES/Ex2_12_2.tif#Standard Deviation#1111 +Ex2_12_1.tif#3176/DEPENDENCIES/Ex2_12_1.tif#Standard Deviation#1110 +Ex2_12.tif#3176/DEPENDENCIES/Ex2_12.tif#Standard Deviation#1109 diff --git a/latex/tmp_3204_contributor.txt b/latex/tmp_3204_contributor.txt index c1271fe0b..c2e89ab5c 100644 --- a/latex/tmp_3204_contributor.txt +++ b/latex/tmp_3204_contributor.txt @@ -1 +1 @@ -Danish Ansari Sadruddin#Engineering#Civil Engineering#University of Pune#None#None +Danish Ansari Sadruddin#Engineering#Civil Engineering#University of Pune#None#Spandana diff --git a/latex/tmp_3204_data.txt b/latex/tmp_3204_data.txt index e69de29bb..6d0317fc9 100644 --- a/latex/tmp_3204_data.txt +++ b/latex/tmp_3204_data.txt @@ -0,0 +1,201 @@ +26#Appendix#26.9#Appendix#Ex26_9.sce#3204/CH26/EX26.9/Ex26_9.sce#S##118435 +26#Appendix#26.8#Appendix#Ex26_8.sce#3204/CH26/EX26.8/Ex26_8.sce#S##118434 +26#Appendix#26.7#Appendix#Ex26_7.sce#3204/CH26/EX26.7/Ex26_7.sce#S##118433 +26#Appendix#26.6#Appendix#Ex26_6.sce#3204/CH26/EX26.6/Ex26_6.sce#S##118432 +26#Appendix#26.5#Appendix#Ex26_5.sce#3204/CH26/EX26.5/Ex26_5.sce#S##118431 +26#Appendix#26.4#Appendix#Ex26_4.sce#3204/CH26/EX26.4/Ex26_4.sce#S##118430 +26#Appendix#26.3#Appendix#Ex26_3.sce#3204/CH26/EX26.3/Ex26_3.sce#S##118429 +26#Appendix#26.2#Appendix#Ex26_2.sce#3204/CH26/EX26.2/Ex26_2.sce#S##118428 +26#Appendix#26.19#Appendix#Ex26_19.sce#3204/CH26/EX26.19/Ex26_19.sce#S##118445 +26#Appendix#26.18#Appendix#Ex26_18.sce#3204/CH26/EX26.18/Ex26_18.sce#S##118444 +26#Appendix#26.17#Appendix#Ex26_17.sce#3204/CH26/EX26.17/Ex26_17.sce#S##118443 +26#Appendix#26.16#Appendix#Ex26_16.sce#3204/CH26/EX26.16/Ex26_16.sce#S##118442 +26#Appendix#26.15#Appendix#Ex26_15.sce#3204/CH26/EX26.15/Ex26_15.sce#S##118441 +26#Appendix#26.14#Appendix#Ex26_14.sce#3204/CH26/EX26.14/Ex26_14.sce#S##118440 +26#Appendix#26.13#Appendix#Ex26_13.sce#3204/CH26/EX26.13/Ex26_13.sce#S##118439 +26#Appendix#26.12#Appendix#Ex26_12.sce#3204/CH26/EX26.12/Ex26_12.sce#S##118438 +26#Appendix#26.11#Appendix#Ex26_11.sce#3204/CH26/EX26.11/Ex26_11.sce#S##118437 +26#Appendix#26.10#Appendix#Ex26_10.sce#3204/CH26/EX26.10/Ex26_10.sce#S##118436 +26#Appendix#26.1#Appendix#Ex26_1.sce#3204/CH26/EX26.1/Ex26_1.sce#S##118427 +25#Shear Force and Bending Moment#25.7#Shear Force and Bending Moment#Ex25_7.sce#3204/CH25/EX25.7/Ex25_7.sce#S##114774 +25#Shear Force and Bending Moment#25.5#Shear Force and Bending Moment#Ex25_5.sce#3204/CH25/EX25.5/Ex25_5.sce#S##114771 +24#Mechanical Vibrations#24.5#Equivalent spring constant#Ex24_5.sce#3204/CH24/EX24.5/Ex24_5.sce#S##117380 +24#Mechanical Vibrations#24.2#Simple Harmonic Motion#Ex24_2.sce#3204/CH24/EX24.2/Ex24_2.sce#S##117379 +24#Mechanical Vibrations#24.12#Pendulum Motion#Ex24_12.sce#3204/CH24/EX24.12/Ex24_12.sce#S##117383 +24#Mechanical Vibrations#24.11#Pendulum Motion#Ex24_11.sce#3204/CH24/EX24.11/Ex24_11.sce#S##117382 +24#Mechanical Vibrations#24.10#Pendulum Motion#Ex24_10.sce#3204/CH24/EX24.10/Ex24_10.sce#S##117381 +24#Mechanical Vibrations#24.1#Simple Harmonic Motion#Ex24_1.sce#3204/CH24/EX24.1/Ex24_1.sce#S##117378 +23#Kinetics of Rigid Body Work and Energy#23.2#Principle of work and energy for a rigid body#Ex23_2.sce#3204/CH23/EX23.2/Ex23_2.sce#S##114764 +22#Kinetics of Rigid Body Force and Acceleration#22.8#Relation between the translatory motion and rotary motion of a body in plane motion#Ex22_8.sce#3204/CH22/EX22.8/Ex22_8.sce#S##114762 +22#Kinetics of Rigid Body Force and Acceleration#22.5#Relation between the translatory motion and rotary motion of a body in plane motion#Ex22_5.sce#3204/CH22/EX22.5/Ex22_5.sce#S##114761 +22#Kinetics of Rigid Body Force and Acceleration#22.2#Relation between the translatory motion and rotary motion of a body in plane motion#Ex22_2.sce#3204/CH22/EX22.2/Ex22_2.sce#S##114760 +22#Kinetics of Rigid Body Force and Acceleration#22.10#Relation between the translatory motion and rotary motion of a body in plane motion#Ex22_10.sce#3204/CH22/EX22.10/Ex22_10.sce#S##114763 +22#Kinetics of Rigid Body Force and Acceleration#22.1#Relation between the translatory motion and rotary motion of a body in plane motion#Ex22_1.sce#3204/CH22/EX22.1/Ex22_1.sce#S##117377 +21#Kinematics of rigid body#21.9#Instantaneous Centre of rotation in plane motion#Ex21_9.sce#3204/CH21/EX21.9/Ex21_9.sce#S##114758 +21#Kinematics of rigid body#21.8#Instantaneous Centre of rotation in plane motion#Ex21_8.sce#3204/CH21/EX21.8/Ex21_8.sce#S##114754 +21#Kinematics of rigid body#21.7#Instantaneous Centre of rotation in plane motion#Ex21_7.sce#3204/CH21/EX21.7/Ex21_7.sce#S##114753 +21#Kinematics of rigid body#21.6#Instantaneous Centre of rotation in plane motion#Ex21_6.sce#3204/CH21/EX21.6/Ex21_6.sce#S##114752 +21#Kinematics of rigid body#21.5#Absolute and relative velocity in plane motion#Ex21_5.sce#3204/CH21/EX21.5/Ex21_5.sce#S##117376 +21#Kinematics of rigid body#21.4#Absolute and relative velocity in plane motion#Ex21_4.sce#3204/CH21/EX21.4/Ex21_4.sce#S##114750 +21#Kinematics of rigid body#21.3#Absolute and relative velocity in plane motion#Ex21_3.sce#3204/CH21/EX21.3/Ex21_3.sce#S##114749 +21#Kinematics of rigid body#21.2#Absolute and relative velocity in plane motion#Ex21_2.sce#3204/CH21/EX21.2/Ex21_2.sce#S##114748 +21#Kinematics of rigid body#21.13#Instantaneous Centre of rotation in plane motion#Ex21_13.sce#3204/CH21/EX21.13/Ex21_13.sce#S##114757 +21#Kinematics of rigid body#21.12#Instantaneous Centre of rotation in plane motion#Ex21_12.sce#3204/CH21/EX21.12/Ex21_12.sce#S##117375 +21#Kinematics of rigid body#21.11#Instantaneous Centre of rotation in plane motion#Ex21_11.sce#3204/CH21/EX21.11/Ex21_11.sce#S##114755 +21#Kinematics of rigid body#21.1#Linear and angular velocity linear and angular acceleration in rotation#Ex21_1.sce#3204/CH21/EX21.1/Ex21_1.sce#S##117374 +20#Motion of Projectile#20.9#Motion of Projectile#Ex20_9.sce#3204/CH20/EX20.9/Ex20_9.sce#S##114745 +20#Motion of Projectile#20.8#Motion of Projectile#Ex20_8.sce#3204/CH20/EX20.8/Ex20_8.sce#S##114744 +20#Motion of Projectile#20.7#Motion of Projectile#Ex20_7.sce#3204/CH20/EX20.7/Ex20_7.sce#S##114743 +20#Motion of Projectile#20.6#Motion of Projectile#Ex20_6.sce#3204/CH20/EX20.6/Ex20_6.sce#S##114742 +20#Motion of Projectile#20.5#Motion of Projectile#Ex20_5.sce#3204/CH20/EX20.5/Ex20_5.sce#S##114741 +20#Motion of Projectile#20.3#Motion of Projectile#Ex20_3.sce#3204/CH20/EX20.3/Ex20_3.sce#S##114740 +20#Motion of Projectile#20.2#Motion of Projectile#Ex20_2.sce#3204/CH20/EX20.2/Ex20_2.sce#S##114739 +20#Motion of Projectile#20.10#Motion of Projectile#Ex20_10.sce#3204/CH20/EX20.10/Ex20_10.sce#S##114746 +20#Motion of Projectile#20.1#Motion of Projectile#Ex20_1.sce#3204/CH20/EX20.1/Ex20_1.sce#S##114738 +19#Relative Motion#19.4#Relative Velocity#Ex19_4.sce#3204/CH19/EX19.4/Ex19_4.sce#S##114737 +19#Relative Motion#19.3#Relative Velocity#Ex19_3.sce#3204/CH19/EX19.3/Ex19_3.sce#S##114736 +19#Relative Motion#19.2#Relative Velocity#Ex19_2.sce#3204/CH19/EX19.2/Ex19_2.sce#S##114735 +19#Relative Motion#19.1#Relative Velocity#Ex19_1.sce#3204/CH19/EX19.1/Ex19_1.sce#S##114734 +18#Impact Collision of Elastic Bodies#18.9#Principle of conservation of Momentum#Ex18_9.sce#3204/CH18/EX18.9/Ex18_9.sce#S##114731 +18#Impact Collision of Elastic Bodies#18.8#Principle of conservation of Energy#Ex18_8.sce#3204/CH18/EX18.8/Ex18_8.sce#S##114730 +18#Impact Collision of Elastic Bodies#18.7#Principle of conservation of Energy#Ex18_7.sce#3204/CH18/EX18.7/Ex18_7.sce#S##114729 +18#Impact Collision of Elastic Bodies#18.6#Principle of conservation of Energy#Ex18_6.sce#3204/CH18/EX18.6/Ex18_6.sce#S##114728 +18#Impact Collision of Elastic Bodies#18.5#Motion of ball#Ex18_5.sce#3204/CH18/EX18.5/Ex18_5.sce#S##118426 +18#Impact Collision of Elastic Bodies#18.4#Principle of conservation of Momentum#Ex18_4.sce#3204/CH18/EX18.4/Ex18_4.sce#S##114727 +18#Impact Collision of Elastic Bodies#18.3#Principle of conservation of Momentum#Ex18_3.sce#3204/CH18/EX18.3/Ex18_3.sce#S##114726 +18#Impact Collision of Elastic Bodies#18.2#Principle of conservation of Momentum#Ex18_2.sce#3204/CH18/EX18.2/Ex18_2.sce#S##114725 +18#Impact Collision of Elastic Bodies#18.11#Principle of conservation of Energy Momentum and work and energy#Ex18_11.sce#3204/CH18/EX18.11/Ex18_11.sce#S##114733 +18#Impact Collision of Elastic Bodies#18.10#Principle of conservation of Momentum#Ex18_10.sce#3204/CH18/EX18.10/Ex18_10.sce#S##114732 +18#Impact Collision of Elastic Bodies#18.1#Principle of conservation of Momentum#Ex18_1.sce#3204/CH18/EX18.1/Ex18_1.sce#S##114724 +17#Kinetics of a Particle Impulse and Momentum#17.8#Principle of conservation of angular momentum#Ex17_8.sce#3204/CH17/EX17.8/Ex17_8.sce#S##114723 +17#Kinetics of a Particle Impulse and Momentum#17.6#Principle of impulse and momentum#Ex17_6.sce#3204/CH17/EX17.6/Ex17_6.sce#S##114722 +17#Kinetics of a Particle Impulse and Momentum#17.5#Principle of impulse and momentum#Ex17_5.sce#3204/CH17/EX17.5/Ex17_5.sce#S##114721 +17#Kinetics of a Particle Impulse and Momentum#17.3#Principle of impulse and momentum#Ex17_3.sce#3204/CH17/EX17.3/Ex17_3.sce#S##114720 +17#Kinetics of a Particle Impulse and Momentum#17.2#Principle of impulse and momentum#Ex17_2.sce#3204/CH17/EX17.2/Ex17_2.sce#S##114719 +17#Kinetics of a Particle Impulse and Momentum#17.1#Principle of impulse and momentum#Ex17_1.sce#3204/CH17/EX17.1/Ex17_1.sce#S##114718 +16#Kinetics of a Particle Work and Energy#16.9#Principle of conservation of energy#Ex16_9.sce#3204/CH16/EX16.9/Ex16_9.sce#S##114715 +16#Kinetics of a Particle Work and Energy#16.7#Principle of conservation of energy#Ex16_7.sce#3204/CH16/EX16.7/Ex16_7.sce#S##114714 +16#Kinetics of a Particle Work and Energy#16.6#Principle of conservation of energy#Ex16_6.sce#3204/CH16/EX16.6/Ex16_6.sce#S##114713 +16#Kinetics of a Particle Work and Energy#16.5#Principle of conservation of energy#Ex16_5.sce#3204/CH16/EX16.5/Ex16_5.sce#S##114712 +16#Kinetics of a Particle Work and Energy#16.4#Power#Ex16_4.sce#3204/CH16/EX16.4/Ex16_4.sce#S##114711 +16#Kinetics of a Particle Work and Energy#16.3#Work and energy principle for a system of particles#Ex16_3.sce#3204/CH16/EX16.3/Ex16_3.sce#S##114710 +16#Kinetics of a Particle Work and Energy#16.11#Principle of conservation of energy#Ex16_11.sce#3204/CH16/EX16.11/Ex16_11.sce#S##114717 +16#Kinetics of a Particle Work and Energy#16.10#Principle of work and energy#Ex16_10.sce#3204/CH16/EX16.10/Ex16_10.sce#S##114716 +16#Kinetics of a Particle Work and Energy#16.1#Work of the Force of Spring#Ex16_1.sce#3204/CH16/EX16.1/Ex16_1.sce#S##114709 +15#Curvilinear motion of a particle#15.9#Equations of dynamic equilibrium#Ex15_9.sce#3204/CH15/EX15.9/Ex15_9.sce#S##118422 +15#Curvilinear motion of a particle#15.7#Components of motion#Ex15_7.sce#3204/CH15/EX15.7/Ex15_7.sce#S##118421 +15#Curvilinear motion of a particle#15.6#Motion of a particle on a curved frictionless path#Ex15_6.sce#3204/CH15/EX15.6/Ex15_6.sce#S##115056 +15#Curvilinear motion of a particle#15.5#Morion of a particle on a curved frictionless path#Ex15_5.sce#3204/CH15/EX15.5/Ex15_5.sce#S##117373 +15#Curvilinear motion of a particle#15.3#Components of Acceleration#Ex15_3.sce#3204/CH15/EX15.3/Ex15_3.sce#S##114701 +15#Curvilinear motion of a particle#15.21#Motion of vehicles on leveled and banked roads#Ex15_21.sce#3204/CH15/EX15.21/Ex15_21.sce#S##114708 +15#Curvilinear motion of a particle#15.20#Motion of vehicles on leveled and banked roads#Ex15_20.sce#3204/CH15/EX15.20/Ex15_20.sce#S##114707 +15#Curvilinear motion of a particle#15.2#Components of Acceleration#Ex15_2.sce#3204/CH15/EX15.2/Ex15_2.sce#S##114700 +15#Curvilinear motion of a particle#15.19#Motion of vehicles on leveled and banked roads#Ex15_19.sce#3204/CH15/EX15.19/Ex15_19.sce#S##114706 +15#Curvilinear motion of a particle#15.18#Motion of vehicles on leveled and banked roads#Ex15_18.sce#3204/CH15/EX15.18/Ex15_18.sce#S##114705 +15#Curvilinear motion of a particle#15.16#Motion of a particle in a curved frictionless path#Ex15_16.sce#3204/CH15/EX15.16/Ex15_16.sce#S##117372 +15#Curvilinear motion of a particle#15.15#Motion of a particle in a curved frictionless path#Ex15_15.sce#3204/CH15/EX15.15/Ex15_15.sce#S##117371 +15#Curvilinear motion of a particle#15.13#motion of a particle on curved frictionless path#Ex15_13.sce#3204/CH15/EX15.13/Ex15_13.sce#S##118425 +15#Curvilinear motion of a particle#15.12#Motion of particle on curved frictionless path#Ex15_12.sce#3204/CH15/EX15.12/Ex15_12.sce#S##118424 +15#Curvilinear motion of a particle#15.10#Equations of dynamic equilibrium#Ex15_10.sce#3204/CH15/EX15.10/Ex15_10.sce#S##118423 +14#Rectilinear Motion of a particle#14.9#Displacement time relationship#Ex14_9.sce#3204/CH14/EX14.9/Ex14_9.sce#S##114686 +14#Rectilinear Motion of a particle#14.7#Displacement time relationship#Ex14_7.sce#3204/CH14/EX14.7/Ex14_7.sce#S##114685 +14#Rectilinear Motion of a particle#14.6#Displacement time relationship#Ex14_6.sce#3204/CH14/EX14.6/Ex14_6.sce#S##114684 +14#Rectilinear Motion of a particle#14.5#Displacement time relationship#Ex14_5.sce#3204/CH14/EX14.5/Ex14_5.sce#S##114683 +14#Rectilinear Motion of a particle#14.4#Velocity time relationship#Ex14_4.sce#3204/CH14/EX14.4/Ex14_4.sce#S##115054 +14#Rectilinear Motion of a particle#14.30#Motion of two Bodies#Ex14_30.sce#3204/CH14/EX14.30/Ex14_30.sce#S##114699 +14#Rectilinear Motion of a particle#14.3#Displacement velocity and acceleration of connected bodies#Ex14_3.sce#3204/CH14/EX14.3/Ex14_3.sce#S##118418 +14#Rectilinear Motion of a particle#14.25#Motion of two Bodies#Ex14_25.sce#3204/CH14/EX14.25/Ex14_25.sce#S##114698 +14#Rectilinear Motion of a particle#14.24#Motion of two Bodies#Ex14_24.sce#3204/CH14/EX14.24/Ex14_24.sce#S##114697 +14#Rectilinear Motion of a particle#14.23#Motion of two Bodies#Ex14_23.sce#3204/CH14/EX14.23/Ex14_23.sce#S##114696 +14#Rectilinear Motion of a particle#14.22#Motion of two Bodies#Ex14_22.sce#3204/CH14/EX14.22/Ex14_22.sce#S##114695 +14#Rectilinear Motion of a particle#14.21#Motion of two Bodies#Ex14_21.sce#3204/CH14/EX14.21/Ex14_21.sce#S##114694 +14#Rectilinear Motion of a particle#14.20#Motion of two Bodies#Ex14_20.sce#3204/CH14/EX14.20/Ex14_20.sce#S##114693 +14#Rectilinear Motion of a particle#14.19#Motion of two Bodies#Ex14_19.sce#3204/CH14/EX14.19/Ex14_19.sce#S##114692 +14#Rectilinear Motion of a particle#14.18#Motion of two Bodies#Ex14_18.sce#3204/CH14/EX14.18/Ex14_18.sce#S##114691 +14#Rectilinear Motion of a particle#14.17#D Alamberts Principle#Ex14_17.sce#3204/CH14/EX14.17/Ex14_17.sce#S##115938 +14#Rectilinear Motion of a particle#14.16#D AlembertsPrinciple#Ex14_16.sce#3204/CH14/EX14.16/Ex14_16.sce#S##114689 +14#Rectilinear Motion of a particle#14.15#D AlembertsPrinciple#Ex14_15.sce#3204/CH14/EX14.15/Ex14_15.sce#S##114688 +14#Rectilinear Motion of a particle#14.12#Variable acceleration#Ex14_12.sce#3204/CH14/EX14.12/Ex14_12.sce#S##118420 +14#Rectilinear Motion of a particle#14.11#Variable acceleration#Ex14_11.sce#3204/CH14/EX14.11/Ex14_11.sce#S##118419 +14#Rectilinear Motion of a particle#14.10#Distance travelled by a particle in the n th second#Ex14_10.sce#3204/CH14/EX14.10/Ex14_10.sce#S##114687 +13#Principle of Virtual Work#13.7#Application of Principle of Virtual Work#Ex13_7.sce#3204/CH13/EX13.7/Ex13_7.sce#S##114682 +13#Principle of Virtual Work#13.1#Application of Principle of Virtual Work#Ex13_1.sce#3204/CH13/EX13.1/Ex13_1.sce#S##114681 +12#Moment of Inertia#12.9#Moment of Inertia of a Composite area or hollow section#Ex12_9.sce#3204/CH12/EX12.9/Ex12_9.sce#S##114677 +12#Moment of Inertia#12.8#Moment of Inertia of a Composite area or hollow section#Ex12_8.sce#3204/CH12/EX12.8/Ex12_8.sce#S##117370 +12#Moment of Inertia#12.7#Moment of Inertia of an area of a plane figure with respect to an axis in its plane#Ex12_7.sce#3204/CH12/EX12.7/Ex12_7.sce#S##114675 +12#Moment of Inertia#12.15#Principal Moment of Inertia#Ex12_15.sce#3204/CH12/EX12.15/Ex12_15.sce#S##114680 +12#Moment of Inertia#12.14#Product of Inertia#Ex12_14.sce#3204/CH12/EX12.14/Ex12_14.sce#S##114679 +12#Moment of Inertia#12.10#Moment of Inertia of a Composite area or hollow section#Ex12_10.sce#3204/CH12/EX12.10/Ex12_10.sce#S##114678 +10#Uniform Flexible Suspension Cables#10.6#Catenary Cables#Ex10_6.sce#3204/CH10/EX10.6/Ex10_6.sce#S##114674 +10#Uniform Flexible Suspension Cables#10.5#Cables uniformly loaded per unit horizontal distance#Ex10_5.sce#3204/CH10/EX10.5/Ex10_5.sce#S##114673 +10#Uniform Flexible Suspension Cables#10.4#Cables uniformly loaded per unit horizontal distance#Ex10_4.sce#3204/CH10/EX10.4/Ex10_4.sce#S##114672 +10#Uniform Flexible Suspension Cables#10.3#Cables uniformly loaded per unit horizontal distance#Ex10_3.sce#3204/CH10/EX10.3/Ex10_3.sce#S##114671 +10#Uniform Flexible Suspension Cables#10.2#Cables subjected to concentrated loads#Ex10_2.sce#3204/CH10/EX10.2/Ex10_2.sce#S##114670 +10#Uniform Flexible Suspension Cables#10.1#Cable subjected to concentrated loads#Ex10_1.sce#3204/CH10/EX10.1/Ex10_1.sce#S##114669 +9#Analysis of Plane Trusses and Frames #9.6#Axial Forces in members of the truss#Ex9_6.sce#3204/CH9/EX9.6/Ex9_6.sce#S##114663 +9#Analysis of Plane Trusses and Frames #9.5#Axial Forces in members of the truss#Ex9_5.sce#3204/CH9/EX9.5/Ex9_5.sce#S##114662 +9#Analysis of Plane Trusses and Frames #9.3#Axial Forces in members of the truss#Ex9_3.sce#3204/CH9/EX9.3/Ex9_3.sce#S##114661 +9#Analysis of Plane Trusses and Frames #9.2#axial forces in members of truss#Ex9_2.sce#3204/CH9/EX9.2/Ex9_2.sce#S##114660 +9#Analysis of Plane Trusses and Frames #9.15#Axial Forces in members of the truss#Ex9_15.sce#3204/CH9/EX9.15/Ex9_15.sce#S##114668 +9#Analysis of Plane Trusses and Frames #9.14#Axial Forces in members of the truss#Ex9_14.sce#3204/CH9/EX9.14/Ex9_14.sce#S##114667 +9#Analysis of Plane Trusses and Frames #9.13#Axial Forces in members of the truss#Ex9_13.sce#3204/CH9/EX9.13/Ex9_13.sce#S##114666 +9#Analysis of Plane Trusses and Frames #9.12#Axial Forces in members of the truss#Ex9_12.sce#3204/CH9/EX9.12/Ex9_12.sce#S##114665 +9#Analysis of Plane Trusses and Frames #9.10#Axial Forces in members of the truss#Ex9_10.sce#3204/CH9/EX9.10/Ex9_10.sce#S##114664 +9#Analysis of Plane Trusses and Frames #9.1#Axial forces in members of Truss#Ex9_1.sce#3204/CH9/EX9.1/Ex9_1.sce#S##114659 +8#Simple Lifting Machines#8.5#Simple screw jack#Ex8_5.sce#3204/CH8/EX8.5/Ex8_5.sce#S##114648 +8#Simple Lifting Machines#8.4#Performance of a machine#Ex8_4.sce#3204/CH8/EX8.4/Ex8_4.sce#S##114647 +8#Simple Lifting Machines#8.3#Performance of Machine#Ex8_3.sce#3204/CH8/EX8.3/Ex8_3.sce#S##114646 +8#Simple Lifting Machines#8.2#Simple machines performance#Ex8_2.sce#3204/CH8/EX8.2/Ex8_2.sce#S##118535 +8#Simple Lifting Machines#8.1#Simple Machine#Ex8_1.sce#3204/CH8/EX8.1/Ex8_1.sce#S##114645 +7#Application of friction#7.9#belt friction#Ex7_9.sce#3204/CH7/EX7.9/Ex7_9.sce#S##114626 +7#Application of friction#7.8#belt friction#Ex7_8.sce#3204/CH7/EX7.8/Ex7_8.sce#S##114623 +7#Application of friction#7.7#belt friction#Ex7_7.sce#3204/CH7/EX7.7/Ex7_7.sce#S##114622 +7#Application of friction#7.6#belt friction#Ex7_6.sce#3204/CH7/EX7.6/Ex7_6.sce#S##114621 +7#Application of friction#7.5#Belt friction#Ex7_5.sce#3204/CH7/EX7.5/Ex7_5.sce#S##114620 +7#Application of friction#7.4#Belt friction#Ex7_4.sce#3204/CH7/EX7.4/Ex7_4.sce#S##115937 +7#Application of friction#7.2#Application of Friction#Ex7_2.sce#3204/CH7/EX7.2/Ex7_2.sce#S##115936 +7#Application of friction#7.11#Application of Friction#Ex7_11.sce#3204/CH7/EX7.11/Ex7_11.sce#S##114636 +7#Application of friction#7.10#Friction in a square threaded screw#Ex7_10.sce#3204/CH7/EX7.10/Ex7_10.sce#S##114627 +7#Application of friction#7.1#Application of Friction#Ex7_1.sce#3204/CH7/EX7.1/Ex7_1.sce#S##115935 +6#Friction#6.9#Friction#Ex6_9.sce#3204/CH6/EX6.9/Ex6_9.sce#S##114615 +6#Friction#6.7#Friction#Ex6_7.sce#3204/CH6/EX6.7/Ex6_7.sce#S##114614 +6#Friction#6.4#Friction#Ex6_4.sce#3204/CH6/EX6.4/Ex6_4.sce#S##114613 +6#Friction#6.13#Friction#Ex6_13.sce#3204/CH6/EX6.13/Ex6_13.sce#S##114616 +6#Friction#6.1#Friction#Ex6_1.sce#3204/CH6/EX6.1/Ex6_1.sce#S##114612 +5#General Case of Forces in a plane#5.6#Equations of Equilibrium#Ex5_6.sce#3204/CH5/EX5.6/Ex5_6.sce#S##114611 +5#General Case of Forces in a plane#5.5#Equations of Equilibrium#Ex5_5.sce#3204/CH5/EX5.5/Ex5_5.sce#S##114610 +5#General Case of Forces in a plane#5.4#Equations of Equilibrium#Ex5_4.sce#3204/CH5/EX5.4/Ex5_4.sce#S##114609 +5#General Case of Forces in a plane#5.3#Equations of equilibrium#Ex5_3.sce#3204/CH5/EX5.3/Ex5_3.sce#S##114608 +5#General Case of Forces in a plane#5.2#Equations of equilibrium#Ex5_2.sce#3204/CH5/EX5.2/Ex5_2.sce#S##114607 +4#Centroid Centre of mass and Centre of Gravity#4.9#Centroid of a composite plane figure#Ex4_9.sce#3204/CH4/EX4.9/Ex4_9.sce#S##114606 +4#Centroid Centre of mass and Centre of Gravity#4.8#Centroid of a composite plane figure#Ex4_8.sce#3204/CH4/EX4.8/Ex4_8.sce#S##114605 +3#Parallel forces in a plane#3.9#Resultant of Forces in a Plane#Ex3_9.sce#3204/CH3/EX3.9/Ex3_9.sce#S##114592 +3#Parallel forces in a plane#3.8#Resultant of Forces in a Plane#Ex3_8.sce#3204/CH3/EX3.8/Ex3_8.sce#S##114591 +3#Parallel forces in a plane#3.7#Resultant of forces in a plane#Ex3_7.sce#3204/CH3/EX3.7/Ex3_7.sce#S##115481 +3#Parallel forces in a plane#3.6#Resultant of forces in a plane#Ex3_6.sce#3204/CH3/EX3.6/Ex3_6.sce#S##117369 +3#Parallel forces in a plane#3.5#Resultant of Forces in a Plane#Ex3_5.sce#3204/CH3/EX3.5/Ex3_5.sce#S##117368 +3#Parallel forces in a plane#3.3#Resultant of Forces in a Plane#Ex3_3.sce#3204/CH3/EX3.3/Ex3_3.sce#S##114587 +3#Parallel forces in a plane#3.2#Resultant of forces in a Plane#Ex3_2.sce#3204/CH3/EX3.2/Ex3_2.sce#S##114586 +3#Parallel forces in a plane#3.14#Distributed forces in a plane#Ex3_14.sce#3204/CH3/EX3.14/Ex3_14.sce#S##114604 +3#Parallel forces in a plane#3.13#Distributed forces in a plane#Ex3_13.sce#3204/CH3/EX3.13/Ex3_13.sce#S##114603 +3#Parallel forces in a plane#3.12#Distributed force in a plane#Ex3_12.sce#3204/CH3/EX3.12/Ex3_12.sce#S##114602 +3#Parallel forces in a plane#3.11#Distributed force in a plane#Ex3_11.sce#3204/CH3/EX3.11/Ex3_11.sce#S##115098 +3#Parallel forces in a plane#3.10#Distributed Force in a Plane#Ex3_10.sce#3204/CH3/EX3.10/Ex3_10.sce#S##114593 +3#Parallel forces in a plane#3.1#Resultant of Forces in a Plane#Ex3_1.sce#3204/CH3/EX3.1/Ex3_1.sce#S##114585 +2#Parallel Forces in a Plane#2.9#equilibrium of a body subjected to three forces#Ex2_9.sce#3204/CH2/EX2.9/Ex2_9.sce#S##114572 +2#Parallel Forces in a Plane#2.8#equilibrium of a body subjected to two forces#Ex2_8.sce#3204/CH2/EX2.8/Ex2_8.sce#S##114571 +2#Parallel Forces in a Plane#2.4#Equilibrium equations#Ex2_4.sce#3204/CH2/EX2.4/Ex2_4.sce#S##114570 +2#Parallel Forces in a Plane#2.23#Equilibrium of a body#Ex2_23.sce#3204/CH2/EX2.23/Ex2_23.sce#S##114584 +2#Parallel Forces in a Plane#2.21#Equilibrium of a body#Ex2_21.sce#3204/CH2/EX2.21/Ex2_21.sce#S##114583 +2#Parallel Forces in a Plane#2.20#Equilibrium of a body#Ex2_20.sce#3204/CH2/EX2.20/Ex2_20.sce#S##114582 +2#Parallel Forces in a Plane#2.2#addition of concurrent forces#Ex2_2.sce#3204/CH2/EX2.2/Ex2_2.sce#S##114569 +2#Parallel Forces in a Plane#2.19#Equilibrium of a body#Ex2_19.sce#3204/CH2/EX2.19/Ex2_19.sce#S##114581 +2#Parallel Forces in a Plane#2.18#Equilibrium of a body#Ex2_18.sce#3204/CH2/EX2.18/Ex2_18.sce#S##114580 +2#Parallel Forces in a Plane#2.17#Equilibrium of a body#Ex2_17.sce#3204/CH2/EX2.17/Ex2_17.sce#S##114579 +2#Parallel Forces in a Plane#2.16#Equilibrium of a Body#Ex2_16.sce#3204/CH2/EX2.16/Ex2_16.sce#S##114578 +2#Parallel Forces in a Plane#2.15#equilibrium of a body#Ex2_15.sce#3204/CH2/EX2.15/Ex2_15.sce#S##114577 +2#Parallel Forces in a Plane#2.13#reaction at the hinge#Ex2_13.sce#3204/CH2/EX2.13/Ex2_13.sce#S##114576 +2#Parallel Forces in a Plane#2.12#reaction at the hinge#Ex2_12.sce#3204/CH2/EX2.12/Ex2_12.sce#S##117367 +2#Parallel Forces in a Plane#2.11#reaction at the hinge#Ex2_11.sce#3204/CH2/EX2.11/Ex2_11.sce#S##117366 +2#Parallel Forces in a Plane#2.10#equilibrium of a body subjected to three forces#Ex2_10.sce#3204/CH2/EX2.10/Ex2_10.sce#S##114573 +2#Parallel Forces in a Plane#2.1#CFP#Ex_2_1.sce#3204/CH2/EX2.1/Ex_2_1.sce#S##114456 diff --git a/latex/tmp_3250_data.txt b/latex/tmp_3250_data.txt index e69de29bb..02d7d865c 100644 --- a/latex/tmp_3250_data.txt +++ b/latex/tmp_3250_data.txt @@ -0,0 +1,142 @@ +7#MANUFACTURING IN TWENTY FIRST CENTURY MICROMACHINING GENERATIVE MANUFACTURING AND SELF ASSEMBLY#7.4#Calculation of time required to develop the PMMA resist#Ex7_4.sce#3250/CH7/EX7.4/Ex7_4.sce#S##113520 +7#MANUFACTURING IN TWENTY FIRST CENTURY MICROMACHINING GENERATIVE MANUFACTURING AND SELF ASSEMBLY#7.4#Calculation of time required to develop the PMMA resist#Ex7_4.txt#3250/CH7/EX7.4/Ex7_4.txt#R##112037 +7#MANUFACTURING IN TWENTY FIRST CENTURY MICROMACHINING GENERATIVE MANUFACTURING AND SELF ASSEMBLY#7.3#Calculation of minimum level of exposure of the PMMA surface#Ex7_3.sce#3250/CH7/EX7.3/Ex7_3.sce#S##113519 +7#MANUFACTURING IN TWENTY FIRST CENTURY MICROMACHINING GENERATIVE MANUFACTURING AND SELF ASSEMBLY#7.3#Calculation of minimum level of exposure of the PMMA surface#Ex7_3.txt#3250/CH7/EX7.3/Ex7_3.txt#R##112036 +7#MANUFACTURING IN TWENTY FIRST CENTURY MICROMACHINING GENERATIVE MANUFACTURING AND SELF ASSEMBLY#7.2#Calculation of time required to machine the hole #Ex7_2.sce#3250/CH7/EX7.2/Ex7_2.sce#S##113518 +7#MANUFACTURING IN TWENTY FIRST CENTURY MICROMACHINING GENERATIVE MANUFACTURING AND SELF ASSEMBLY#7.2#Calculation of time required to machine the hole #Ex7_2.txt#3250/CH7/EX7.2/Ex7_2.txt#R##112035 +7#MANUFACTURING IN TWENTY FIRST CENTURY MICROMACHINING GENERATIVE MANUFACTURING AND SELF ASSEMBLY#7.1#Calculation of maximum allowable wavelength of the exposing light#Ex7_1.sce#3250/CH7/EX7.1/Ex7_1.sce#S##113517 +7#MANUFACTURING IN TWENTY FIRST CENTURY MICROMACHINING GENERATIVE MANUFACTURING AND SELF ASSEMBLY#7.1#Calculation of maximum allowable wavelength of the exposing light#Ex7_1.txt#3250/CH7/EX7.1/Ex7_1.txt#R##112033 +6#UNCONVENTIONAL MACHINING PROCESSES#6.9#Calculation of time required to complete drilling operation#Ex6_9.sce#3250/CH6/EX6.9/Ex6_9.sce#S##113507 +6#UNCONVENTIONAL MACHINING PROCESSES#6.9#Calculation of time required to complete drilling operation#Ex6_9.txt#3250/CH6/EX6.9/Ex6_9.txt#R##112023 +6#UNCONVENTIONAL MACHINING PROCESSES#6.8#Calculation of equation of required tool geometry#Ex6_8.sce#3250/CH6/EX6.8/Ex6_8.sce#S##113506 +6#UNCONVENTIONAL MACHINING PROCESSES#6.8#Calculation of equation of required tool geometry#Ex6_8.txt#3250/CH6/EX6.8/Ex6_8.txt#R##112022 +6#UNCONVENTIONAL MACHINING PROCESSES#6.7#Calculation of total force actin on the tool#Ex6_7.sce#3250/CH6/EX6.7/Ex6_7.sce#S##113505 +6#UNCONVENTIONAL MACHINING PROCESSES#6.7#Calculation of total force actin on the tool#Ex6_7.txt#3250/CH6/EX6.7/Ex6_7.txt#R##112021 +6#UNCONVENTIONAL MACHINING PROCESSES#6.6#Calculation of largest passible feed rate#Ex6_6.sce#3250/CH6/EX6.6/Ex6_6.sce#S##113504 +6#UNCONVENTIONAL MACHINING PROCESSES#6.6#Calculation of largest passible feed rate#Ex6_6.txt#3250/CH6/EX6.6/Ex6_6.txt#R##112020 +6#UNCONVENTIONAL MACHINING PROCESSES#6.5#Calculation of equilibrium gap#Ex6_5.sce#3250/CH6/EX6.5/Ex6_5.sce#S##113503 +6#UNCONVENTIONAL MACHINING PROCESSES#6.5#Calculation of equilibrium gap#Ex6_5.txt#3250/CH6/EX6.5/Ex6_5.txt#R##112019 +6#UNCONVENTIONAL MACHINING PROCESSES#6.4#Calculation of removal rate#Ex6_4.sce#3250/CH6/EX6.4/Ex6_4.sce#S##113502 +6#UNCONVENTIONAL MACHINING PROCESSES#6.4#Calculation of removal rate#Ex6_4.txt#3250/CH6/EX6.4/Ex6_4.txt#R##112018 +6#UNCONVENTIONAL MACHINING PROCESSES#6.3#Calculation of current required#Ex6_3.sce#3250/CH6/EX6.3/Ex6_3.sce#S##113501 +6#UNCONVENTIONAL MACHINING PROCESSES#6.3#Calculation of current required#Ex6_3.txt#3250/CH6/EX6.3/Ex6_3.txt#R##112017 +6#UNCONVENTIONAL MACHINING PROCESSES#6.2#Calculation of percentage change in cutting time#Ex6_2.sce#3250/CH6/EX6.2/Ex6_2.sce#S##113500 +6#UNCONVENTIONAL MACHINING PROCESSES#6.2#Calculation of percentage change in cutting time#Ex6_2.txt#3250/CH6/EX6.2/Ex6_2.txt#R##112016 +6#UNCONVENTIONAL MACHINING PROCESSES#6.17#Calculation of time#Ex6_17.sce#3250/CH6/EX6.17/Ex6_17.sce#S##113516 +6#UNCONVENTIONAL MACHINING PROCESSES#6.17#Calculation of time#Ex6_17.txt#3250/CH6/EX6.17/Ex6_17.txt#R##112032 +6#UNCONVENTIONAL MACHINING PROCESSES#6.16#Calculation of minimum value of beam power intensity#Ex6_16.sce#3250/CH6/EX6.16/Ex6_16.sce#S##113514 +6#UNCONVENTIONAL MACHINING PROCESSES#6.16#Calculation of minimum value of beam power intensity#Ex6_16.txt#3250/CH6/EX6.16/Ex6_16.txt#R##112031 +6#UNCONVENTIONAL MACHINING PROCESSES#6.15#Calculation of time#Ex6_15.sce#3250/CH6/EX6.15/Ex6_15.sce#S##113513 +6#UNCONVENTIONAL MACHINING PROCESSES#6.15#Calculation of time#Ex6_15.txt#3250/CH6/EX6.15/Ex6_15.txt#R##112030 +6#UNCONVENTIONAL MACHINING PROCESSES#6.14#Calculation of time#Ex6_14.sce#3250/CH6/EX6.14/Ex6_14.sce#S##113512 +6#UNCONVENTIONAL MACHINING PROCESSES#6.14#Calculation of time#Ex6_14.txt#3250/CH6/EX6.14/Ex6_14.txt#R##112029 +6#UNCONVENTIONAL MACHINING PROCESSES#6.13#Calculation of speed of cutting#Ex6_13.sce#3250/CH6/EX6.13/Ex6_13.sce#S##113511 +6#UNCONVENTIONAL MACHINING PROCESSES#6.13#Calculation of speed of cutting#Ex6_13.txt#3250/CH6/EX6.13/Ex6_13.txt#R##112028 +6#UNCONVENTIONAL MACHINING PROCESSES#6.12#Calculation of electron range#Ex6_12.sce#3250/CH6/EX6.12/Ex6_12.sce#S##113510 +6#UNCONVENTIONAL MACHINING PROCESSES#6.12#Calculation of electron range#Ex6_12.txt#3250/CH6/EX6.12/Ex6_12.txt#R##112027 +6#UNCONVENTIONAL MACHINING PROCESSES#6.11#Calculation of speed of cutting#Ex6_11.sce#3250/CH6/EX6.11/Ex6_11.sce#S##113509 +6#UNCONVENTIONAL MACHINING PROCESSES#6.11#Calculation of speed of cutting#Ex6_11.txt#3250/CH6/EX6.11/Ex6_11.txt#R##112025 +6#UNCONVENTIONAL MACHINING PROCESSES#6.10#Calculation of surface roughness#Ex6_10.sce#3250/CH6/EX6.10/Ex6_10.sce#S##113508 +6#UNCONVENTIONAL MACHINING PROCESSES#6.10#Calculation of surface roughness#Ex6_10.txt#3250/CH6/EX6.10/Ex6_10.txt#R##112024 +6#UNCONVENTIONAL MACHINING PROCESSES#6.1#Calculation of time#Ex6_1.sce#3250/CH6/EX6.1/Ex6_1.sce#S##113499 +6#UNCONVENTIONAL MACHINING PROCESSES#6.1#Calculation of time#Ex6_1.txt#3250/CH6/EX6.1/Ex6_1.txt#R##112015 +5#JOINING PROCESSES#5.4#Calculation of maximum shear stress#Ex5_4.sce#3250/CH5/EX5.4/Ex5_4.sce#S##113498 +5#JOINING PROCESSES#5.4#Calculation of maximum shear stress#Ex5_4.txt#3250/CH5/EX5.4/Ex5_4.txt#R##112014 +5#JOINING PROCESSES#5.3#Calculation of maximum passible welding speed#Ex5_3.sce#3250/CH5/EX5.3/Ex5_3.sce#S##113497 +5#JOINING PROCESSES#5.3#Calculation of maximum passible welding speed#Ex5_3.txt#3250/CH5/EX5.3/Ex5_3.txt#R##112013 +5#JOINING PROCESSES#5.2#Calculation of rate of heat generated per unit area#Ex5_2.sce#3250/CH5/EX5.2/Ex5_2.sce#S##113496 +5#JOINING PROCESSES#5.2#Calculation of rate of heat generated per unit area#Ex5_2.txt#3250/CH5/EX5.2/Ex5_2.txt#R##112012 +5#JOINING PROCESSES#5.1#Calculation of maximum power of the arc#Ex5_1.sce#3250/CH5/EX5.1/Ex5_1.sce#S##113493 +5#JOINING PROCESSES#5.1#Calculation of maximum power of the arc#Ex5_1.txt#3250/CH5/EX5.1/Ex5_1.txt#R##112011 +4#FORMING PROCESSES#4.9#Calculation of three components of machining force #Ex4_9.sce#3250/CH4/EX4.9/Ex4_9.sce#S##113473 +4#FORMING PROCESSES#4.9#Calculation of three components of machining force #Ex4_9.txt#3250/CH4/EX4.9/Ex4_9.txt#R##111990 +4#FORMING PROCESSES#4.8#Calculation of percentage increase in tool life#Ex4_8.sce#3250/CH4/EX4.8/Ex4_8.sce#S##113472 +4#FORMING PROCESSES#4.8#Calculation of percentage increase in tool life#Ex4_8.txt#3250/CH4/EX4.8/Ex4_8.txt#R##111989 +4#FORMING PROCESSES#4.7#Calculation of maximum speed at which cutting is passible #Ex4_7.sce#3250/CH4/EX4.7/Ex4_7.sce#S##113470 +4#FORMING PROCESSES#4.7#Calculation of maximum speed at which cutting is passible #Ex4_7.txt#3250/CH4/EX4.7/Ex4_7.txt#R##111988 +4#FORMING PROCESSES#4.6#Calculation of maximum temperature along the rake face#Ex4_6.sce#3250/CH4/EX4.6/Ex4_6.sce#S##113471 +4#FORMING PROCESSES#4.6#Calculation of maximum temperature along the rake face#Ex4_6.txt#3250/CH4/EX4.6/Ex4_6.txt#R##111987 +4#FORMING PROCESSES#4.5#Calculation of cutting force#Ex4_5.sce#3250/CH4/EX4.5/Ex4_5.sce#S##113469 +4#FORMING PROCESSES#4.5#Calculation of cutting force#Ex4_5.txt#3250/CH4/EX4.5/Ex4_5.txt#R##111986 +4#FORMING PROCESSES#4.4#Calculation of shear angle and cutting force and thrust force#Ex4_4.sce#3250/CH4/EX4.4/Ex4_4.sce#S##113468 +4#FORMING PROCESSES#4.4#Calculation of shear angle and cutting force and thrust force#Ex4_4.txt#3250/CH4/EX4.4/Ex4_4.txt#R##111985 +4#FORMING PROCESSES#4.3#Calculation of shear angle and cutting and trust force #Ex4_3.sce#3250/CH4/EX4.3/Ex4_3.sce#S##113467 +4#FORMING PROCESSES#4.3#Calculation of shear angle and cutting and trust force #Ex4_3.txt#3250/CH4/EX4.3/Ex4_3.txt#R##111984 +4#FORMING PROCESSES#4.28#Calculation of optimum cutting speed#Ex4_28.sce#3250/CH4/EX4.28/Ex4_28.sce#S##113492 +4#FORMING PROCESSES#4.28#Calculation of optimum cutting speed#Ex4_28.txt#3250/CH4/EX4.28/Ex4_28.txt#R##112009 +4#FORMING PROCESSES#4.27#Calculation of cost#Ex4_27.sce#3250/CH4/EX4.27/Ex4_27.sce#S##113491 +4#FORMING PROCESSES#4.27#Calculation of cost#Ex4_27.txt#3250/CH4/EX4.27/Ex4_27.txt#R##112008 +4#FORMING PROCESSES#4.26#Calculation of cutting speed#Ex4_26.sce#3250/CH4/EX4.26/Ex4_26.sce#S##113495 +4#FORMING PROCESSES#4.26#Calculation of cutting speed#Ex4_26.txt#3250/CH4/EX4.26/Ex4_26.txt#R##112007 +4#FORMING PROCESSES#4.25#Calculation of maximum height of unevenness#Ex4_25.sce#3250/CH4/EX4.25/Ex4_25.sce#S##113490 +4#FORMING PROCESSES#4.25#Calculation of maximum height of unevenness#Ex4_25.txt#3250/CH4/EX4.25/Ex4_25.txt#R##112006 +4#FORMING PROCESSES#4.24#Calculation of maximum height of unevenness#Ex4_24.sce#3250/CH4/EX4.24/Ex4_24.sce#S##113489 +4#FORMING PROCESSES#4.24#Calculation of maximum height of unevenness#Ex4_24.txt#3250/CH4/EX4.24/Ex4_24.txt#R##112005 +4#FORMING PROCESSES#4.22#Calculation of required depth of cut and feed#Ex4_22.sce#3250/CH4/EX4.22/Ex4_22.sce#S##113487 +4#FORMING PROCESSES#4.22#Calculation of required depth of cut and feed#Ex4_22.txt#3250/CH4/EX4.22/Ex4_22.txt#R##112004 +4#FORMING PROCESSES#4.21#Calculation of grinding force#Ex4_21.sce#3250/CH4/EX4.21/Ex4_21.sce#S##113486 +4#FORMING PROCESSES#4.21#Calculation of grinding force#Ex4_21.txt#3250/CH4/EX4.21/Ex4_21.txt#R##112003 +4#FORMING PROCESSES#4.20#Calculation of power required#Ex4_20.sce#3250/CH4/EX4.20/Ex4_20.sce#S##113485 +4#FORMING PROCESSES#4.20#Calculation of power required#Ex4_20.txt#3250/CH4/EX4.20/Ex4_20.txt#R##112002 +4#FORMING PROCESSES#4.2#Calculation of coefficient of friction and ultimate shear stress #Ex4_2.sce#3250/CH4/EX4.2/Ex4_2.sce#S##113466 +4#FORMING PROCESSES#4.2#Calculation of coefficient of friction and ultimate shear stress #Ex4_2.txt#3250/CH4/EX4.2/Ex4_2.txt#R##111983 +4#FORMING PROCESSES#4.19#Calculation of peak broaching load#Ex4_19.sce#3250/CH4/EX4.19/Ex4_19.sce#S##113484 +4#FORMING PROCESSES#4.19#Calculation of peak broaching load#Ex4_19.txt#3250/CH4/EX4.19/Ex4_19.txt#R##112001 +4#FORMING PROCESSES#4.18#Calculation of power required#Ex4_18.sce#3250/CH4/EX4.18/Ex4_18.sce#S##113483 +4#FORMING PROCESSES#4.18#Calculation of power required#Ex4_18.txt#3250/CH4/EX4.18/Ex4_18.txt#R##112000 +4#FORMING PROCESSES#4.17#Calculation of power required#Ex4_17.sce#3250/CH4/EX4.17/Ex4_17.sce#S##113481 +4#FORMING PROCESSES#4.17#Calculation of power required#Ex4_17.txt#3250/CH4/EX4.17/Ex4_17.txt#R##111999 +4#FORMING PROCESSES#4.16#Calculation of power required#Ex4_16.sce#3250/CH4/EX4.16/Ex4_16.sce#S##113480 +4#FORMING PROCESSES#4.16#Calculation of power required#Ex4_16.txt#3250/CH4/EX4.16/Ex4_16.txt#R##111996 +4#FORMING PROCESSES#4.15#Calculation of power consumption#Ex4_15.sce#3250/CH4/EX4.15/Ex4_15.sce#S##113479 +4#FORMING PROCESSES#4.15#Calculation of power consumption#Ex4_15.txt#3250/CH4/EX4.15/Ex4_15.txt#R##111995 +4#FORMING PROCESSES#4.14#Calculation of drilling torque and thrust force#Ex4_14.sce#3250/CH4/EX4.14/Ex4_14.sce#S##113478 +4#FORMING PROCESSES#4.14#Calculation of drilling torque and thrust force#Ex4_14.txt#3250/CH4/EX4.14/Ex4_14.txt#R##111994 +4#FORMING PROCESSES#4.12#Calculation of component of the machining force and feed force component#Ex4_12.sce#3250/CH4/EX4.12/Ex4_12.sce#S##113477 +4#FORMING PROCESSES#4.12#Calculation of component of the machining force and feed force component#Ex4_12.txt#3250/CH4/EX4.12/Ex4_12.txt#R##111993 +4#FORMING PROCESSES#4.11#Calculation of normal rake angle#Ex4_11.sce#3250/CH4/EX4.11/Ex4_11.sce#S##113476 +4#FORMING PROCESSES#4.11#Calculation of normal rake angle#Ex4_11.txt#3250/CH4/EX4.11/Ex4_11.txt#R##111992 +4#FORMING PROCESSES#4.10#Calculation of average power consumption and specific power consumption#Ex4_10.sce#3250/CH4/EX4.10/Ex4_10.sce#S##113474 +4#FORMING PROCESSES#4.10#Calculation of average power consumption and specific power consumption#Ex4_10.txt#3250/CH4/EX4.10/Ex4_10.txt#R##111991 +4#FORMING PROCESSES#4.1#Calculation of shear plane angle and shear strain#Ex4_1.sce#3250/CH4/EX4.1/Ex4_1.sce#S##113465 +4#FORMING PROCESSES#4.1#Calculation of shear plane angle and shear strain#Ex4_1.txt#3250/CH4/EX4.1/Ex4_1.txt#R##111982 +3#FORMING PROCESSES#3.9#Calculation of maximum bending force and required punch angle#Ex3_9.sce#3250/CH3/EX3.9/Ex3_9.sce#S##113461 +3#FORMING PROCESSES#3.9#Calculation of maximum bending force and required punch angle#Ex3_9.txt#3250/CH3/EX3.9/Ex3_9.txt#R##111978 +3#FORMING PROCESSES#3.8#Calculation of drawing force and minimum passible radius of the cup which can drawn#Ex3_8.sce#3250/CH3/EX3.8/Ex3_8.sce#S##113460 +3#FORMING PROCESSES#3.8#Calculation of drawing force and minimum passible radius of the cup which can drawn#Ex3_8.txt#3250/CH3/EX3.8/Ex3_8.txt#R##111977 +3#FORMING PROCESSES#3.7#Calculation of drawing power and maximum passible reduction in die#Ex3_7.sce#3250/CH3/EX3.7/Ex3_7.sce#S##113459 +3#FORMING PROCESSES#3.7#Calculation of drawing power and maximum passible reduction in die#Ex3_7.txt#3250/CH3/EX3.7/Ex3_7.txt#R##111976 +3#FORMING PROCESSES#3.6#Calculation of maximum forging force#Ex3_6.sce#3250/CH3/EX3.6/Ex3_6.sce#S##113458 +3#FORMING PROCESSES#3.6#Calculation of maximum forging force#Ex3_6.txt#3250/CH3/EX3.6/Ex3_6.txt#R##111975 +3#FORMING PROCESSES#3.5#Calculation of maximum forging force#Ex3_5.sce#3250/CH3/EX3.5/Ex3_5.sce#S##113457 +3#FORMING PROCESSES#3.5#Calculation of maximum forging force#Ex3_5.txt#3250/CH3/EX3.5/Ex3_5.txt#R##111973 +3#FORMING PROCESSES#3.4#Calculation of maximum forging force#Ex3_4.sce#3250/CH3/EX3.4/Ex3_4.sce#S##113456 +3#FORMING PROCESSES#3.4#Calculation of maximum forging force#Ex3_4.txt#3250/CH3/EX3.4/Ex3_4.txt#R##111972 +3#FORMING PROCESSES#3.3#Calculation of mill power#Ex3_3.sce#3250/CH3/EX3.3/Ex3_3.sce#S##113455 +3#FORMING PROCESSES#3.3#Calculation of mill power#Ex3_3.txt#3250/CH3/EX3.3/Ex3_3.txt#R##111971 +3#FORMING PROCESSES#3.2#Calculation of roll separating force and power required in the rolling process#Ex3_2.sce#3250/CH3/EX3.2/Ex3_2.sce#S##113454 +3#FORMING PROCESSES#3.2#Calculation of roll separating force and power required in the rolling process#Ex3_2.txt#3250/CH3/EX3.2/Ex3_2.txt#R##111970 +3#FORMING PROCESSES#3.12#Calculation of proper clearance between die and punch and maximum punching force and energy required to punch and die#Ex3_12.sce#3250/CH3/EX3.12/Ex3_12.sce#S##113464 +3#FORMING PROCESSES#3.12#Calculation of proper clearance between die and punch and maximum punching force and energy required to punch and die#Ex3_12.txt#3250/CH3/EX3.12/Ex3_12.txt#R##111981 +3#FORMING PROCESSES#3.11#Calculation of maximum force required for extruding the billet and percent of the total input lost#Ex3_11.sce#3250/CH3/EX3.11/Ex3_11.sce#S##113463 +3#FORMING PROCESSES#3.11#Calculation of maximum force required for extruding the billet and percent of the total input lost#Ex3_11.txt#3250/CH3/EX3.11/Ex3_11.txt#R##111980 +3#FORMING PROCESSES#3.10#Calculation of minimum value of die length and minimum required capacity of machine#Ex3_10.sce#3250/CH3/EX3.10/Ex3_10.sce#S##113462 +3#FORMING PROCESSES#3.10#Calculation of minimum value of die length and minimum required capacity of machine#Ex3_10.txt#3250/CH3/EX3.10/Ex3_10.txt#R##111979 +3#FORMING PROCESSES#3.1#Calculation of strip thickness and average shear yield stress and angle subtended by deformation zone and location of neutral point#Ex3_1.sce#3250/CH3/EX3.1/Ex3_1.sce#S##113453 +3#FORMING PROCESSES#3.1#Calculation of strip thickness and average shear yield stress and angle subtended by deformation zone and location of neutral point#Ex3_1.txt#3250/CH3/EX3.1/Ex3_1.txt#R##111969 +2#CASTING PROCESSES#2.9#Calculation of riser volume#Ex2_9.sce#3250/CH2/EX2.9/Ex2_9.sce#S##113452 +2#CASTING PROCESSES#2.9#Calculation of riser volume#Ex2_9.txt#3250/CH2/EX2.9/Ex2_9.txt#R##111968 +2#CASTING PROCESSES#2.8#Calculation of mould length and cooling water requirement#Ex2_8.sce#3250/CH2/EX2.8/Ex2_8.sce#S##113451 +2#CASTING PROCESSES#2.8#Calculation of mould length and cooling water requirement#Ex2_8.txt#3250/CH2/EX2.8/Ex2_8.txt#R##111967 +2#CASTING PROCESSES#2.7#Calculation of solidification time and surface temperature#Ex2_7.sce#3250/CH2/EX2.7/Ex2_7.sce#S##113450 +2#CASTING PROCESSES#2.7#Calculation of solidification time and surface temperature#Ex2_7.txt#3250/CH2/EX2.7/Ex2_7.txt#R##111966 +2#CASTING PROCESSES#2.6#Calculation of solidification time and surface temperature#Ex2_6.sce#3250/CH2/EX2.6/Ex2_6.sce#S##113449 +2#CASTING PROCESSES#2.6#Calculation of solidification time and surface temperature#Ex2_6.txt#3250/CH2/EX2.6/Ex2_6.txt#R##111965 +2#CASTING PROCESSES#2.5#Calculation of solidification time#Ex2_5.sce#3250/CH2/EX2.5/Ex2_5.sce#S##113448 +2#CASTING PROCESSES#2.5#Calculation of solidification time#Ex2_5.txt#3250/CH2/EX2.5/Ex2_5.txt#R##111964 +2#CASTING PROCESSES#2.3#Calculation of time and discharge rate#Ex2_3.sce#3250/CH2/EX2.3/Ex2_3.sce#S##113447 +2#CASTING PROCESSES#2.3#Calculation of time and discharge rate#Ex2_3.txt#3250/CH2/EX2.3/Ex2_3.txt#R##111963 +2#CASTING PROCESSES#2.2#Calculation of filling time#Ex2_2.sce#3250/CH2/EX2.2/Ex2_2.sce#S##113446 +2#CASTING PROCESSES#2.2#Calculation of filling time#Ex2_2.txt#3250/CH2/EX2.2/Ex2_2.txt#R##111961 +2#CASTING PROCESSES#1.1#Calculation of filling time#Ex2_1.sce#3250/CH2/EX1.1/Ex2_1.sce#S##113445 +2#CASTING PROCESSES#1.1#Calculation of filling time#Ex2_1.txt#3250/CH2/EX1.1/Ex2_1.txt#R##111960 diff --git a/latex/tmp_3257_data.txt b/latex/tmp_3257_data.txt index e69de29bb..e527ef5cb 100644 --- a/latex/tmp_3257_data.txt +++ b/latex/tmp_3257_data.txt @@ -0,0 +1,95 @@ +12#Joining and Fastening Processes#12.5#Heat generation in resistance spot welding#Ex12_5.sce#3257/CH12/EX12.5/Ex12_5.sce#S##111364 +12#Joining and Fastening Processes#12.5#Heat generation in resistance spot welding#Ex12_5.txt#3257/CH12/EX12.5/Ex12_5.txt#R##111365 +12#Joining and Fastening Processes#12.2#Current in shielded metal arc welding#Ex12_2.sce#3257/CH12/EX12.2/Ex12_2.sce#S##113804 +12#Joining and Fastening Processes#12.2#Current in shielded metal arc welding#Ex12_2.txt#3257/CH12/EX12.2/Ex12_2.txt#R##111363 +12#Joining and Fastening Processes#12.1#Estimation of welding speed for different materials#Ex12_1.sce#3257/CH12/EX12.1/Ex12_1.sce#S##113803 +12#Joining and Fastening Processes#12.1#Estimation of welding speed for different materials#Ex12_1.txt#3257/CH12/EX12.1/Ex12_1.txt#R##111361 +11#Properties and Processing of Metal Powders Ceramics Glasses and Superconductors#11.9#Dimensional changes during shaping of ceramic components#Ex11_9.sce#3257/CH11/EX11.9/Ex11_9.sce#S##111358 +11#Properties and Processing of Metal Powders Ceramics Glasses and Superconductors#11.9#Dimensional changes during shaping of ceramic components#Ex11_9.txt#3257/CH11/EX11.9/Ex11_9.txt#R##111359 +11#Properties and Processing of Metal Powders Ceramics Glasses and Superconductors#11.7#Effect of porosity on properties#Ex11_7.sce#3257/CH11/EX11.7/Ex11_7.sce#S##113802 +11#Properties and Processing of Metal Powders Ceramics Glasses and Superconductors#11.7#Effect of porosity on properties#Ex11_7.txt#3257/CH11/EX11.7/Ex11_7.txt#R##111357 +11#Properties and Processing of Metal Powders Ceramics Glasses and Superconductors#11.4#Shrinkage in sintering#Ex11_4.sce#3257/CH11/EX11.4/Ex11_4.sce#S##111354 +11#Properties and Processing of Metal Powders Ceramics Glasses and Superconductors#11.4#Shrinkage in sintering#Ex11_4.txt#3257/CH11/EX11.4/Ex11_4.txt#R##111355 +11#Properties and Processing of Metal Powders Ceramics Glasses and Superconductors#11.3#Pressure decay in composition#Ex11_3.sce#3257/CH11/EX11.3/Ex11_3.sce#S##114107 +11#Properties and Processing of Metal Powders Ceramics Glasses and Superconductors#11.3#Pressure decay in composition#Ex11_3.txt#3257/CH11/EX11.3/Ex11_3.txt#R##111353 +11#Properties and Processing of Metal Powders Ceramics Glasses and Superconductors#11.2#Density of metal powder lubricant mix#Ex11_2.sce#3257/CH11/EX11.2/Ex11_2.sce#S##113800 +11#Properties and Processing of Metal Powders Ceramics Glasses and Superconductors#11.2#Density of metal powder lubricant mix#Ex11_2.txt#3257/CH11/EX11.2/Ex11_2.txt#R##111351 +11#Properties and Processing of Metal Powders Ceramics Glasses and Superconductors#11.1#Particle shape factor determination#Ex11_1.sce#3257/CH11/EX11.1/Ex11_1.sce#S##111348 +11#Properties and Processing of Metal Powders Ceramics Glasses and Superconductors#11.1#Particle shape factor determination#Ex11_1.txt#3257/CH11/EX11.1/Ex11_1.txt#R##111349 +10#Properties and Processing of Polymers and Reinforced Plastics Rapid prototyping and Rapid Tooling#10.7#Injection molding of gears#Ex10_7.sce#3257/CH10/EX10.7/Ex10_7.sce#S##111346 +10#Properties and Processing of Polymers and Reinforced Plastics Rapid prototyping and Rapid Tooling#10.7#Injection molding of gears#Ex10_7.txt#3257/CH10/EX10.7/Ex10_7.txt#R##111347 +10#Properties and Processing of Polymers and Reinforced Plastics Rapid prototyping and Rapid Tooling#10.6#Blow film#Ex10_6.sce#3257/CH10/EX10.6/Ex10_6.sce#S##111344 +10#Properties and Processing of Polymers and Reinforced Plastics Rapid prototyping and Rapid Tooling#10.6#Blow film#Ex10_6.txt#3257/CH10/EX10.6/Ex10_6.txt#R##111345 +10#Properties and Processing of Polymers and Reinforced Plastics Rapid prototyping and Rapid Tooling#10.5#Analysis of plastic extruder#Ex10_5.sce#3257/CH10/EX10.5/Ex10_5.sce#S##111727 +10#Properties and Processing of Polymers and Reinforced Plastics Rapid prototyping and Rapid Tooling#10.5#Analysis of plastic extruder#Ex10_5.txt#3257/CH10/EX10.5/Ex10_5.txt#R##111341 +10#Properties and Processing of Polymers and Reinforced Plastics Rapid prototyping and Rapid Tooling#10.5#Analysis of plastic extruder#Ex10_5.JPG#3257/CH10/EX10.5/Ex10_5.JPG#R##111728 +10#Properties and Processing of Polymers and Reinforced Plastics Rapid prototyping and Rapid Tooling#10.4#Properties of a graphite epoxy reinforce plastic#Ex10_4.sce#3257/CH10/EX10.4/Ex10_4.sce#S##111342 +10#Properties and Processing of Polymers and Reinforced Plastics Rapid prototyping and Rapid Tooling#10.4#Properties of a graphite epoxy reinforce plastic#Ex10_4.txt#3257/CH10/EX10.4/Ex10_4.txt#R##111343 +10#Properties and Processing of Polymers and Reinforced Plastics Rapid prototyping and Rapid Tooling#10.3#Stress relaxation in a thermoplastic members under tension #Ex10_3.sce#3257/CH10/EX10.3/Ex10_3.sce#S##111336 +10#Properties and Processing of Polymers and Reinforced Plastics Rapid prototyping and Rapid Tooling#10.3#Stress relaxation in a thermoplastic members under tension #Ex10_3.txt#3257/CH10/EX10.3/Ex10_3.txt#R##111337 +10#Properties and Processing of Polymers and Reinforced Plastics Rapid prototyping and Rapid Tooling#10.2#Lowering the viscosity of a polymer#Ex10_2.sce#3257/CH10/EX10.2/Ex10_2.sce#S##113799 +10#Properties and Processing of Polymers and Reinforced Plastics Rapid prototyping and Rapid Tooling#10.2#Lowering the viscosity of a polymer#Ex10_2.txt#3257/CH10/EX10.2/Ex10_2.txt#R##111335 +10#Properties and Processing of Polymers and Reinforced Plastics Rapid prototyping and Rapid Tooling#10.1#Degree of polymerization in polyvinyl chloride#Ex10_1.sce#3257/CH10/EX10.1/Ex10_1.sce#S##111332 +10#Properties and Processing of Polymers and Reinforced Plastics Rapid prototyping and Rapid Tooling#10.1#Degree of polymerization in polyvinyl chloride#Ex10_1.txt#3257/CH10/EX10.1/Ex10_1.txt#R##111333 +9#Material Removal Processes Abrasive Chemical Electrical and High Energy Beams#9.6#Machining time in electrical discharge machining vs drilling#Ex9_6.sce#3257/CH9/EX9.6/Ex9_6.sce#S##111330 +9#Material Removal Processes Abrasive Chemical Electrical and High Energy Beams#9.6#Machining time in electrical discharge machining vs drilling#Ex9_6.txt#3257/CH9/EX9.6/Ex9_6.txt#R##111331 +9#Material Removal Processes Abrasive Chemical Electrical and High Energy Beams#9.5#Machining time in electrochemical machining vs drilling#Ex9_5.sce#3257/CH9/EX9.5/Ex9_5.sce#S##113798 +9#Material Removal Processes Abrasive Chemical Electrical and High Energy Beams#9.5#Machining time in electrochemical machining vs drilling#Ex9_5.txt#3257/CH9/EX9.5/Ex9_5.txt#R##111329 +9#Material Removal Processes Abrasive Chemical Electrical and High Energy Beams#9.2#Forces in surface grinding#Ex9_2.sce#3257/CH9/EX9.2/Ex9_2.sce#S##113797 +9#Material Removal Processes Abrasive Chemical Electrical and High Energy Beams#9.2#Forces in surface grinding#Ex9_2.txt#3257/CH9/EX9.2/Ex9_2.txt#R##111327 +9#Material Removal Processes Abrasive Chemical Electrical and High Energy Beams#9.1#Chip dimensions in grinding#Ex9_1.sce#3257/CH9/EX9.1/Ex9_1.sce#S##111324 +9#Material Removal Processes Abrasive Chemical Electrical and High Energy Beams#9.1#Chip dimensions in grinding#Ex9_1.txt#3257/CH9/EX9.1/Ex9_1.txt#R##111325 +8#Material Removal Processes Cutting#8.6#Calculation of material removal rate power required and cutting time in face milling#Ex8_6.sce#3257/CH8/EX8.6/Ex8_6.sce#S##111322 +8#Material Removal Processes Cutting#8.6#Calculation of material removal rate power required and cutting time in face milling#Ex8_6.txt#3257/CH8/EX8.6/Ex8_6.txt#R##111323 +8#Material Removal Processes Cutting#8.4#Material removal rate and cutting force in turning#Ex8_4.sce#3257/CH8/EX8.4/Ex8_4.sce#S##113796 +8#Material Removal Processes Cutting#8.4#Material removal rate and cutting force in turning#Ex8_4.txt#3257/CH8/EX8.4/Ex8_4.txt#R##111321 +8#Material Removal Processes Cutting#8.3#Increase in tool life by reducing the cutting speed#Ex8_3.sce#3257/CH8/EX8.3/Ex8_3.sce#S##113795 +8#Material Removal Processes Cutting#8.3#Increase in tool life by reducing the cutting speed#Ex8_3.txt#3257/CH8/EX8.3/Ex8_3.txt#R##111319 +8#Material Removal Processes Cutting#8.2#Comparison of forming and machining energy#Ex8_2.sce#3257/CH8/EX8.2/Ex8_2.sce#S##113794 +8#Material Removal Processes Cutting#8.2#Comparison of forming and machining energy#Ex8_2.txt#3257/CH8/EX8.2/Ex8_2.txt#R##111317 +8#Material Removal Processes Cutting#8.1#Relative energies in cutting#Ex8_1.sce#3257/CH8/EX8.1/Ex8_1.sce#S##111314 +8#Material Removal Processes Cutting#8.1#Relative energies in cutting#Ex8_1.txt#3257/CH8/EX8.1/Ex8_1.txt#R##111315 +7#Sheet Metal Forming processes#7.9#Estimating cup diameter and earing#Ex7_9.sce#3257/CH7/EX7.9/Ex7_9.sce#S##113792 +7#Sheet Metal Forming processes#7.9#Estimating cup diameter and earing#Ex7_9.txt#3257/CH7/EX7.9/Ex7_9.txt#R##113793 +7#Sheet Metal Forming processes#7.8#Theoretical limiting drawing ratio#Ex7_8.sce#3257/CH7/EX7.8/Ex7_8.sce#S##111308 +7#Sheet Metal Forming processes#7.8#Theoretical limiting drawing ratio#Ex7_8.txt#3257/CH7/EX7.8/Ex7_8.txt#R##111309 +7#Sheet Metal Forming processes#7.7#Estimating the limiting drawing ratio#Ex7_7.sce#3257/CH7/EX7.7/Ex7_7.sce#S##111306 +7#Sheet Metal Forming processes#7.7#Estimating the limiting drawing ratio#Ex7_7.txt#3257/CH7/EX7.7/Ex7_7.txt#R##111307 +7#Sheet Metal Forming processes#7.5#Peak pressure in explosive forming#Ex7_5.sce#3257/CH7/EX7.5/Ex7_5.sce#S##111304 +7#Sheet Metal Forming processes#7.5#Peak pressure in explosive forming#Ex7_5.txt#3257/CH7/EX7.5/Ex7_5.txt#R##111305 +7#Sheet Metal Forming processes#7.4#Work done in stretch forming#Ex7_4.sce#3257/CH7/EX7.4/Ex7_4.sce#S##111302 +7#Sheet Metal Forming processes#7.4#Work done in stretch forming#Ex7_4.txt#3257/CH7/EX7.4/Ex7_4.txt#R##111303 +7#Sheet Metal Forming processes#7.3#Estimating springback#Ex7_3.sce#3257/CH7/EX7.3/Ex7_3.sce#S##111300 +7#Sheet Metal Forming processes#7.3#Estimating springback#Ex7_3.txt#3257/CH7/EX7.3/Ex7_3.txt#R##111301 +7#Sheet Metal Forming processes#7.10#Estimating diameter of expansion#Ex7_10.sce#3257/CH7/EX7.10/Ex7_10.sce#S##111312 +7#Sheet Metal Forming processes#7.10#Estimating diameter of expansion#Ex7_10.txt#3257/CH7/EX7.10/Ex7_10.txt#R##111313 +7#Sheet Metal Forming processes#7.1#Calculation of maximum punch force#Ex7_1.sce#3257/CH7/EX7.1/Ex7_1.sce#S##111298 +7#Sheet Metal Forming processes#7.1#Calculation of maximum punch force#Ex7_1.txt#3257/CH7/EX7.1/Ex7_1.txt#R##111299 +6#Bulk deformation Processes#6.7#Power required for rolling#Ex6_7.sce#3257/CH6/EX6.7/Ex6_7.sce#S##114105 +6#Bulk deformation Processes#6.7#Power required for rolling#Ex6_7.txt#3257/CH6/EX6.7/Ex6_7.txt#R##114106 +6#Bulk deformation Processes#6.6#Force in hot extrusion#Ex6_6.sce#3257/CH6/EX6.6/Ex6_6.sce#S##113790 +6#Bulk deformation Processes#6.6#Force in hot extrusion#Ex6_6.txt#3257/CH6/EX6.6/Ex6_6.txt#R##111295 +6#Bulk deformation Processes#6.4#Power required for rolling#Ex6_4.sce#3257/CH6/EX6.4/Ex6_4.sce#S##111292 +6#Bulk deformation Processes#6.4#Power required for rolling#Ex6_4.txt#3257/CH6/EX6.4/Ex6_4.txt#R##111293 +6#Bulk deformation Processes#6.1#Calculation of upsetting force#Ex6_1.sce#3257/CH6/EX6.1/Ex6_1.sce#S##111290 +6#Bulk deformation Processes#6.1#Calculation of upsetting force#Ex6_1.txt#3257/CH6/EX6.1/Ex6_1.txt#R##111291 +5#Metal Casting Processes and Equipment Heat Treatment#5.3#Solidification time for various solid shapes#Ex5_3.sce#3257/CH5/EX5.3/Ex5_3.sce#S##111288 +5#Metal Casting Processes and Equipment Heat Treatment#5.3#Solidification time for various solid shapes#Ex5_3.txt#3257/CH5/EX5.3/Ex5_3.txt#R##111289 +5#Metal Casting Processes and Equipment Heat Treatment#5.2#Design and analysis of sprue for casting#Ex5_2.sce#3257/CH5/EX5.2/Ex5_2.sce#S##111286 +5#Metal Casting Processes and Equipment Heat Treatment#5.2#Design and analysis of sprue for casting#Ex5_2.txt#3257/CH5/EX5.2/Ex5_2.txt#R##111287 +5#Metal Casting Processes and Equipment Heat Treatment#5.1#Determining the amount of phases in carbon steel#Ex5_1.sce#3257/CH5/EX5.1/Ex5_1.sce#S##111284 +5#Metal Casting Processes and Equipment Heat Treatment#5.1#Determining the amount of phases in carbon steel#Ex5_1.txt#3257/CH5/EX5.1/Ex5_1.txt#R##111285 +4#Surface Tribology Dimensional Characteristics Inspection and Product Quality Assurance#4.2#Adhesive wear in sliding#Ex4_2.sce#3257/CH4/EX4.2/Ex4_2.sce#S##111282 +4#Surface Tribology Dimensional Characteristics Inspection and Product Quality Assurance#4.2#Adhesive wear in sliding#Ex4_2.txt#3257/CH4/EX4.2/Ex4_2.txt#R##111283 +4#Surface Tribology Dimensional Characteristics Inspection and Product Quality Assurance#4.1#Determination of coefficient of friction#Ex4_1.sce#3257/CH4/EX4.1/Ex4_1.sce#S##111280 +4#Surface Tribology Dimensional Characteristics Inspection and Product Quality Assurance#4.1#Determination of coefficient of friction#Ex4_1.txt#3257/CH4/EX4.1/Ex4_1.txt#R##111281 +2#Fundamentals of the Mechanical Behavior of Materials #2.8#Temperature rise in simple deformation#Ex2_8.sce#3257/CH2/EX2.8/Ex2_8.sce#S##111278 +2#Fundamentals of the Mechanical Behavior of Materials #2.8#Temperature rise in simple deformation#Ex2_8.txt#3257/CH2/EX2.8/Ex2_8.txt#R##111279 +2#Fundamentals of the Mechanical Behavior of Materials #2.5#Yielding of a thin walled shell#Ex2_5.sce#3257/CH2/EX2.5/Ex2_5.sce#S##113789 +2#Fundamentals of the Mechanical Behavior of Materials #2.5#Yielding of a thin walled shell#Ex2_5.txt#3257/CH2/EX2.5/Ex2_5.txt#R##111277 +2#Fundamentals of the Mechanical Behavior of Materials #2.4#Elimination of stress by tension#Ex2_4.txt#3257/CH2/EX2.4/Ex2_4.txt#R##111275 +2#Fundamentals of the Mechanical Behavior of Materials #2.4#Elimination of stress by tension#Ex2_4.sce#3257/CH2/EX2.4/Ex2_4.sce#S##111274 +2#Fundamentals of the Mechanical Behavior of Materials #2.3#Calculation of modulus resilience from hardness#Ex2_3.txt#3257/CH2/EX2.3/Ex2_3.txt#R##111273 +2#Fundamentals of the Mechanical Behavior of Materials #2.3#Calculation of modulus resilience from hardness#Ex2_3.sce#3257/CH2/EX2.3/Ex2_3.sce#S##113788 +2#Fundamentals of the Mechanical Behavior of Materials #2.1#Calculation of ultimate tensile strength #Ex2_1.txt#3257/CH2/EX2.1/Ex2_1.txt#R##111271 +2#Fundamentals of the Mechanical Behavior of Materials #2.1#Calculation of ultimate tensile strength #Ex2_1.sce#3257/CH2/EX2.1/Ex2_1.sce#S##111270 diff --git a/latex/tmp_3281_data.txt b/latex/tmp_3281_data.txt index e69de29bb..0cd5da079 100644 --- a/latex/tmp_3281_data.txt +++ b/latex/tmp_3281_data.txt @@ -0,0 +1,340 @@ +12#Microwave Measurements#12.9#Three port circulator#ex12_9.sce#3281/CH12/EX12.9/ex12_9.sce#S##112497 +12#Microwave Measurements#12.9#Three port circulator#ex12_9.jpg#3281/CH12/EX12.9/ex12_9.jpg#R##112498 +12#Microwave Measurements#12.8#Rectangular waveguide#ex12_8.jpg#3281/CH12/EX12.8/ex12_8.jpg#R##112496 +12#Microwave Measurements#12.8#Rectangular waveguide#ex12_8.sce#3281/CH12/EX12.8/ex12_8.sce#S##112495 +12#Microwave Measurements#12.7#Microwave line#ex12_7.jpg#3281/CH12/EX12.7/ex12_7.jpg#R##112494 +12#Microwave Measurements#12.7#Microwave line#ex12_7.sce#3281/CH12/EX12.7/ex12_7.sce#S##112493 +12#Microwave Measurements#12.6#Microwave line#ex12_6.sce#3281/CH12/EX12.6/ex12_6.sce#S##112491 +12#Microwave Measurements#12.6#Microwave line#ex12_6.jpg#3281/CH12/EX12.6/ex12_6.jpg#R##112492 +12#Microwave Measurements#12.5#Directional couplers#ex12_5.jpg#3281/CH12/EX12.5/ex12_5.jpg#R##112490 +12#Microwave Measurements#12.5#Directional couplers#ex12_5.sce#3281/CH12/EX12.5/ex12_5.sce#S##112489 +12#Microwave Measurements#12.4#VSWR of waveguide#ex12_4.jpg#3281/CH12/EX12.4/ex12_4.jpg#R##112488 +12#Microwave Measurements#12.4#VSWR of waveguide#ex12_4.sce#3281/CH12/EX12.4/ex12_4.sce#S##112487 +12#Microwave Measurements#12.3#Transmission waveguide#ex12_3.sce#3281/CH12/EX12.3/ex12_3.sce#S##112485 +12#Microwave Measurements#12.3#Transmission waveguide#ex12_3.jpg#3281/CH12/EX12.3/ex12_3.jpg#R##112486 +12#Microwave Measurements#12.2#Detector mismatch#ex12_2.sce#3281/CH12/EX12.2/ex12_2.sce#S##112483 +12#Microwave Measurements#12.2#Detector mismatch#ex12_2.jpg#3281/CH12/EX12.2/ex12_2.jpg#R##112484 +12#Microwave Measurements#12.11#Rectangular Waveguide#ex12_11.sce#3281/CH12/EX12.11/ex12_11.sce#S##112501 +12#Microwave Measurements#12.11#Rectangular Waveguide#ex12_11.jpg#3281/CH12/EX12.11/ex12_11.jpg#R##112502 +12#Microwave Measurements#12.10#Air filled cavity#ex12_10.sce#3281/CH12/EX12.10/ex12_10.sce#S##112499 +12#Microwave Measurements#12.10#Air filled cavity#ex12_10.jpg#3281/CH12/EX12.10/ex12_10.jpg#R##112500 +12#Microwave Measurements#12.1#Microwave diode#ex12_1.sce#3281/CH12/EX12.1/ex12_1.sce#S##112481 +12#Microwave Measurements#12.1#Microwave diode#ex12_1.jpg#3281/CH12/EX12.1/ex12_1.jpg#R##112482 +11#Microwave Integrated Circuits#11.2#Yield#ex11_2.sce#3281/CH11/EX11.2/ex11_2.sce#S##111813 +11#Microwave Integrated Circuits#11.2#Yield#ex11_2.jpg#3281/CH11/EX11.2/ex11_2.jpg#R##111814 +11#Microwave Integrated Circuits#11.1#Costs#ex11_1.sce#3281/CH11/EX11.1/ex11_1.sce#S##111811 +11#Microwave Integrated Circuits#11.1#Costs#ex11_1.jpg#3281/CH11/EX11.1/ex11_1.jpg#R##111812 +10#Striplines and Microstrip Lines#10.9#Branch coupler#ex10_9.sce#3281/CH10/EX10.9/ex10_9.sce#S##112471 +10#Striplines and Microstrip Lines#10.9#Branch coupler#ex10_9.jpg#3281/CH10/EX10.9/ex10_9.jpg#R##112472 +10#Striplines and Microstrip Lines#10.8#Stripline coupler#ex10_8.jpg#3281/CH10/EX10.8/ex10_8.jpg#R##112470 +10#Striplines and Microstrip Lines#10.8#Stripline coupler#ex10_8.sce#3281/CH10/EX10.8/ex10_8.sce#S##112469 +10#Striplines and Microstrip Lines#10.7#Parallel stripline#ex10_7.jpg#3281/CH10/EX10.7/ex10_7.jpg#R##112468 +10#Striplines and Microstrip Lines#10.7#Parallel stripline#ex10_7.sce#3281/CH10/EX10.7/ex10_7.sce#S##112467 +10#Striplines and Microstrip Lines#10.6#Microstrip line#ex10_6.jpg#3281/CH10/EX10.6/ex10_6.jpg#R##112466 +10#Striplines and Microstrip Lines#10.6#Microstrip line#ex10_6.sce#3281/CH10/EX10.6/ex10_6.sce#S##112465 +10#Striplines and Microstrip Lines#10.5#Microstrip line#ex10_5.jpg#3281/CH10/EX10.5/ex10_5.jpg#R##112464 +10#Striplines and Microstrip Lines#10.5#Microstrip line#ex10_5.sce#3281/CH10/EX10.5/ex10_5.sce#S##112463 +10#Striplines and Microstrip Lines#10.4#Stripline#ex10_4.jpg#3281/CH10/EX10.4/ex10_4.jpg#R##112462 +10#Striplines and Microstrip Lines#10.4#Stripline#ex10_4.sce#3281/CH10/EX10.4/ex10_4.sce#S##112461 +10#Striplines and Microstrip Lines#10.3#Microstrip#ex10_3.jpg#3281/CH10/EX10.3/ex10_3.jpg#R##112460 +10#Striplines and Microstrip Lines#10.3#Microstrip#ex10_3.sce#3281/CH10/EX10.3/ex10_3.sce#S##112459 +10#Striplines and Microstrip Lines#10.2#Microstrip line#ex10_2.jpg#3281/CH10/EX10.2/ex10_2.jpg#R##112458 +10#Striplines and Microstrip Lines#10.2#Microstrip line#ex10_2.sce#3281/CH10/EX10.2/ex10_2.sce#S##112457 +10#Striplines and Microstrip Lines#10.13#Lossless stripline#ex10_13.sce#3281/CH10/EX10.13/ex10_13.sce#S##112479 +10#Striplines and Microstrip Lines#10.13#Lossless stripline#ex10_13.jpg#3281/CH10/EX10.13/ex10_13.jpg#R##112480 +10#Striplines and Microstrip Lines#10.12#Shielded stripline#ex10_12.sce#3281/CH10/EX10.12/ex10_12.sce#S##112477 +10#Striplines and Microstrip Lines#10.12#Shielded stripline#ex10_12.jpg#3281/CH10/EX10.12/ex10_12.jpg#R##112478 +10#Striplines and Microstrip Lines#10.11#Paralle stripline#ex10_11.jpg#3281/CH10/EX10.11/ex10_11.jpg#R##112476 +10#Striplines and Microstrip Lines#10.11#Paralle stripline#ex10_11.sce#3281/CH10/EX10.11/ex10_11.sce#S##112475 +10#Striplines and Microstrip Lines#10.10#Broadside stripline#ex10_10.jpg#3281/CH10/EX10.10/ex10_10.jpg#R##112474 +10#Striplines and Microstrip Lines#10.10#Broadside stripline#ex10_10.sce#3281/CH10/EX10.10/ex10_10.sce#S##112473 +10#Striplines and Microstrip Lines#10.1#Copper stripline#ex10_1.jpg#3281/CH10/EX10.1/ex10_1.jpg#R##112456 +10#Striplines and Microstrip Lines#10.1#Copper stripline#ex10_1.sce#3281/CH10/EX10.1/ex10_1.sce#S##112455 +9#Microwave Solid State Generators and Amplifiers#9.9#MESFET#ex9_9.sce#3281/CH9/EX9.9/ex9_9.sce#S##112423 +9#Microwave Solid State Generators and Amplifiers#9.9#MESFET#ex9_9.jpg#3281/CH9/EX9.9/ex9_9.jpg#R##112424 +9#Microwave Solid State Generators and Amplifiers#9.8#JEFT#ex9_8.sce#3281/CH9/EX9.8/ex9_8.sce#S##112421 +9#Microwave Solid State Generators and Amplifiers#9.8#JEFT#ex9_8.jpg#3281/CH9/EX9.8/ex9_8.jpg#R##112422 +9#Microwave Solid State Generators and Amplifiers#9.7#Microwave transistor#ex9_7.sce#3281/CH9/EX9.7/ex9_7.sce#S##112419 +9#Microwave Solid State Generators and Amplifiers#9.7#Microwave transistor#ex9_7.jpg#3281/CH9/EX9.7/ex9_7.jpg#R##112420 +9#Microwave Solid State Generators and Amplifiers#9.6#Transistor Amplifier#ex9_6.sce#3281/CH9/EX9.6/ex9_6.sce#S##113917 +9#Microwave Solid State Generators and Amplifiers#9.6#Transistor Amplifier#ex9_6.jpg#3281/CH9/EX9.6/ex9_6.jpg#R##113918 +9#Microwave Solid State Generators and Amplifiers#9.5#Microwave transistor#ex9_5.sce#3281/CH9/EX9.5/ex9_5.sce#S##112415 +9#Microwave Solid State Generators and Amplifiers#9.5#Microwave transistor#ex9_5.jpg#3281/CH9/EX9.5/ex9_5.jpg#R##112416 +9#Microwave Solid State Generators and Amplifiers#9.4#GaAs FET#ex9_4.sce#3281/CH9/EX9.4/ex9_4.sce#S##112413 +9#Microwave Solid State Generators and Amplifiers#9.4#GaAs FET#ex9_4.jpg#3281/CH9/EX9.4/ex9_4.jpg#R##112414 +9#Microwave Solid State Generators and Amplifiers#9.3#Heterojunction transistor#ex9_3.sce#3281/CH9/EX9.3/ex9_3.sce#S##112411 +9#Microwave Solid State Generators and Amplifiers#9.3#Heterojunction transistor#ex9_3.jpg#3281/CH9/EX9.3/ex9_3.jpg#R##112412 +9#Microwave Solid State Generators and Amplifiers#9.25#Heterojunction laser#ex9_25.sce#3281/CH9/EX9.25/ex9_25.sce#S##112453 +9#Microwave Solid State Generators and Amplifiers#9.25#Heterojunction laser#ex9_25.jpg#3281/CH9/EX9.25/ex9_25.jpg#R##112454 +9#Microwave Solid State Generators and Amplifiers#9.24#Laser#ex9_24.sce#3281/CH9/EX9.24/ex9_24.sce#S##112451 +9#Microwave Solid State Generators and Amplifiers#9.24#Laser#ex9_24.jpg#3281/CH9/EX9.24/ex9_24.jpg#R##112452 +9#Microwave Solid State Generators and Amplifiers#9.23#Laser#ex9_23.sce#3281/CH9/EX9.23/ex9_23.sce#S##112449 +9#Microwave Solid State Generators and Amplifiers#9.23#Laser#ex9_23.jpg#3281/CH9/EX9.23/ex9_23.jpg#R##112450 +9#Microwave Solid State Generators and Amplifiers#9.22#BARITT diode#ex9_22.sce#3281/CH9/EX9.22/ex9_22.sce#S##112447 +9#Microwave Solid State Generators and Amplifiers#9.22#BARITT diode#ex9_22.jpg#3281/CH9/EX9.22/ex9_22.jpg#R##112448 +9#Microwave Solid State Generators and Amplifiers#9.21#TRAPATT diode#ex9_21.sce#3281/CH9/EX9.21/ex9_21.sce#S##112445 +9#Microwave Solid State Generators and Amplifiers#9.21#TRAPATT diode#ex9_21.jpg#3281/CH9/EX9.21/ex9_21.jpg#R##112446 +9#Microwave Solid State Generators and Amplifiers#9.20#IMPATT diode#ex9_20.sce#3281/CH9/EX9.20/ex9_20.sce#S##112443 +9#Microwave Solid State Generators and Amplifiers#9.20#IMPATT diode#ex9_20.jpg#3281/CH9/EX9.20/ex9_20.jpg#R##112444 +9#Microwave Solid State Generators and Amplifiers#9.2#Bipolar transistor#ex9_2.sce#3281/CH9/EX9.2/ex9_2.sce#S##112409 +9#Microwave Solid State Generators and Amplifiers#9.2#Bipolar transistor#ex9_2.jpg#3281/CH9/EX9.2/ex9_2.jpg#R##112410 +9#Microwave Solid State Generators and Amplifiers#9.19#IMPATT diode#ex9_19.sce#3281/CH9/EX9.19/ex9_19.sce#S##112441 +9#Microwave Solid State Generators and Amplifiers#9.19#IMPATT diode#ex9_19.jpg#3281/CH9/EX9.19/ex9_19.jpg#R##112442 +9#Microwave Solid State Generators and Amplifiers#9.18#IMPATT diode#ex9_18.sce#3281/CH9/EX9.18/ex9_18.sce#S##112439 +9#Microwave Solid State Generators and Amplifiers#9.18#IMPATT diode#ex9_18.jpg#3281/CH9/EX9.18/ex9_18.jpg#R##112440 +9#Microwave Solid State Generators and Amplifiers#9.17#IMPATT diode#ex9_17.sce#3281/CH9/EX9.17/ex9_17.sce#S##112437 +9#Microwave Solid State Generators and Amplifiers#9.17#IMPATT diode#ex9_17.jpg#3281/CH9/EX9.17/ex9_17.jpg#R##112438 +9#Microwave Solid State Generators and Amplifiers#9.15#Gunn diode#ex9_15.sce#3281/CH9/EX9.15/ex9_15.sce#S##112435 +9#Microwave Solid State Generators and Amplifiers#9.15#Gunn diode#ex9_15.jpg#3281/CH9/EX9.15/ex9_15.jpg#R##112436 +9#Microwave Solid State Generators and Amplifiers#9.14#Gunn diode#ex9_14.sce#3281/CH9/EX9.14/ex9_14.sce#S##112433 +9#Microwave Solid State Generators and Amplifiers#9.14#Gunn diode#ex9_14.jpg#3281/CH9/EX9.14/ex9_14.jpg#R##112434 +9#Microwave Solid State Generators and Amplifiers#9.13#Gunn diode#ex9_13.sce#3281/CH9/EX9.13/ex9_13.sce#S##112431 +9#Microwave Solid State Generators and Amplifiers#9.13#Gunn diode#ex9_13.jpg#3281/CH9/EX9.13/ex9_13.jpg#R##112432 +9#Microwave Solid State Generators and Amplifiers#9.12#Tunnel diode#ex9_12.sce#3281/CH9/EX9.12/ex9_12.sce#S##112429 +9#Microwave Solid State Generators and Amplifiers#9.12#Tunnel diode#ex9_12.jpg#3281/CH9/EX9.12/ex9_12.jpg#R##112430 +9#Microwave Solid State Generators and Amplifiers#9.11#Gunn oscillator#ex9_11.jpg#3281/CH9/EX9.11/ex9_11.jpg#R##114873 +9#Microwave Solid State Generators and Amplifiers#9.11#Gunn oscillator#ex9_11.sce#3281/CH9/EX9.11/ex9_11.sce#S##114872 +9#Microwave Solid State Generators and Amplifiers#9.10#Gunn device#ex9_10.sce#3281/CH9/EX9.10/ex9_10.sce#S##112425 +9#Microwave Solid State Generators and Amplifiers#9.10#Gunn device#ex9_10.jpg#3281/CH9/EX9.10/ex9_10.jpg#R##112426 +8#Microwave Solid State Control Devices#8.9#330 stage CCD#ex8_9.sce#3281/CH8/EX8.9/ex8_9.sce#S##112399 +8#Microwave Solid State Control Devices#8.9#330 stage CCD#ex8_9.jpg#3281/CH8/EX8.9/ex8_9.jpg#R##112400 +8#Microwave Solid State Control Devices#8.8#Negative resistance parametric amplifier#ex8_8.sce#3281/CH8/EX8.8/ex8_8.sce#S##112397 +8#Microwave Solid State Control Devices#8.8#Negative resistance parametric amplifier#ex8_8.jpg#3281/CH8/EX8.8/ex8_8.jpg#R##112398 +8#Microwave Solid State Control Devices#8.7#Parametric amplifier#ex8_7.sce#3281/CH8/EX8.7/ex8_7.sce#S##112395 +8#Microwave Solid State Control Devices#8.7#Parametric amplifier#ex8_7.jpg#3281/CH8/EX8.7/ex8_7.jpg#R##112396 +8#Microwave Solid State Control Devices#8.6#Parametric upconverter#ex8_6.sce#3281/CH8/EX8.6/ex8_6.sce#S##112393 +8#Microwave Solid State Control Devices#8.6#Parametric upconverter#ex8_6.jpg#3281/CH8/EX8.6/ex8_6.jpg#R##112394 +8#Microwave Solid State Control Devices#8.3#Silicon switching diode#ex8_3.sce#3281/CH8/EX8.3/ex8_3.sce#S##112391 +8#Microwave Solid State Control Devices#8.3#Silicon switching diode#ex8_3.jpg#3281/CH8/EX8.3/ex8_3.jpg#R##112392 +8#Microwave Solid State Control Devices#8.2#Pin diode switches#ex8_2.sce#3281/CH8/EX8.2/ex8_2.sce#S##112389 +8#Microwave Solid State Control Devices#8.2#Pin diode switches#ex8_2.jpg#3281/CH8/EX8.2/ex8_2.jpg#R##112390 +8#Microwave Solid State Control Devices#8.13#Surface channel CCD#ex8_13.sce#3281/CH8/EX8.13/ex8_13.sce#S##112407 +8#Microwave Solid State Control Devices#8.13#Surface channel CCD#ex8_13.jpg#3281/CH8/EX8.13/ex8_13.jpg#R##112408 +8#Microwave Solid State Control Devices#8.12#3 phase CCD#ex8_12.sce#3281/CH8/EX8.12/ex8_12.sce#S##112405 +8#Microwave Solid State Control Devices#8.12#3 phase CCD#ex8_12.jpg#3281/CH8/EX8.12/ex8_12.jpg#R##112406 +8#Microwave Solid State Control Devices#8.11#Surface channel CCD#ex8_11.sce#3281/CH8/EX8.11/ex8_11.sce#S##112403 +8#Microwave Solid State Control Devices#8.11#Surface channel CCD#ex8_11.jpg#3281/CH8/EX8.11/ex8_11.jpg#R##112404 +8#Microwave Solid State Control Devices#8.10#3 phase CCD#ex8_10.sce#3281/CH8/EX8.10/ex8_10.sce#S##112401 +8#Microwave Solid State Control Devices#8.10#3 phase CCD#ex8_10.jpg#3281/CH8/EX8.10/ex8_10.jpg#R##112402 +8#Microwave Solid State Control Devices#8.1#Single pole Switch#ex8_1.sce#3281/CH8/EX8.1/ex8_1.sce#S##112387 +8#Microwave Solid State Control Devices#8.1#Single pole Switch#ex8_1.jpg#3281/CH8/EX8.1/ex8_1.jpg#R##112388 +7#Cross Field Microwave Tubes M Type#7.9#Inverted coaxial Magnetron#ex7_9.sce#3281/CH7/EX7.9/ex7_9.sce#S##112377 +7#Cross Field Microwave Tubes M Type#7.9#Inverted coaxial Magnetron#ex7_9.jpg#3281/CH7/EX7.9/ex7_9.jpg#R##112378 +7#Cross Field Microwave Tubes M Type#7.8#Cross field amplifier#ex7_8.sce#3281/CH7/EX7.8/ex7_8.sce#S##112375 +7#Cross Field Microwave Tubes M Type#7.8#Cross field amplifier#ex7_8.jpg#3281/CH7/EX7.8/ex7_8.jpg#R##112376 +7#Cross Field Microwave Tubes M Type#7.7#Frequency Aglile Magnetron#ex7_7.sce#3281/CH7/EX7.7/ex7_7.sce#S##112373 +7#Cross Field Microwave Tubes M Type#7.7#Frequency Aglile Magnetron#ex7_7.jpg#3281/CH7/EX7.7/ex7_7.jpg#R##112374 +7#Cross Field Microwave Tubes M Type#7.6#Carcinotron#ex7_6.jpg#3281/CH7/EX7.6/ex7_6.jpg#R##114871 +7#Cross Field Microwave Tubes M Type#7.6#Carcinotron#ex7_6.sce#3281/CH7/EX7.6/ex7_6.sce#S##114870 +7#Cross Field Microwave Tubes M Type#7.5#Conventional Magnetron#ex7_5.sce#3281/CH7/EX7.5/ex7_5.sce#S##112369 +7#Cross Field Microwave Tubes M Type#7.5#Conventional Magnetron#ex7_5.jpg#3281/CH7/EX7.5/ex7_5.jpg#R##112370 +7#Cross Field Microwave Tubes M Type#7.4#Conventional Magnetron#ex7_4.sce#3281/CH7/EX7.4/ex7_4.sce#S##112367 +7#Cross Field Microwave Tubes M Type#7.4#Conventional Magnetron#ex7_4.jpg#3281/CH7/EX7.4/ex7_4.jpg#R##112368 +7#Cross Field Microwave Tubes M Type#7.3#Cylindrical Magnetron#ex7_3.sce#3281/CH7/EX7.3/ex7_3.sce#S##112365 +7#Cross Field Microwave Tubes M Type#7.3#Cylindrical Magnetron#ex7_3.jpg#3281/CH7/EX7.3/ex7_3.jpg#R##112366 +7#Cross Field Microwave Tubes M Type#7.2#Cylindrical Magnetron#ex7_2.sce#3281/CH7/EX7.2/ex7_2.sce#S##112363 +7#Cross Field Microwave Tubes M Type#7.2#Cylindrical Magnetron#ex7_2.jpg#3281/CH7/EX7.2/ex7_2.jpg#R##112364 +7#Cross Field Microwave Tubes M Type#7.13#Agile coaxial Magnetron#ex7_13.jpg#3281/CH7/EX7.13/ex7_13.jpg#R##114869 +7#Cross Field Microwave Tubes M Type#7.13#Agile coaxial Magnetron#ex7_13.sce#3281/CH7/EX7.13/ex7_13.sce#S##114868 +7#Cross Field Microwave Tubes M Type#7.12#Inverted Coaxial Magnetron#ex7_12.sce#3281/CH7/EX7.12/ex7_12.sce#S##112383 +7#Cross Field Microwave Tubes M Type#7.12#Inverted Coaxial Magnetron#ex7_12.jpg#3281/CH7/EX7.12/ex7_12.jpg#R##112384 +7#Cross Field Microwave Tubes M Type#7.11#Linear Magnetron#ex7_11.sce#3281/CH7/EX7.11/ex7_11.sce#S##112381 +7#Cross Field Microwave Tubes M Type#7.11#Linear Magnetron#ex7_11.jpg#3281/CH7/EX7.11/ex7_11.jpg#R##112382 +7#Cross Field Microwave Tubes M Type#7.10#Inverted coaxial Magnetron#ex7_10.sce#3281/CH7/EX7.10/ex7_10.sce#S##112379 +7#Cross Field Microwave Tubes M Type#7.10#Inverted coaxial Magnetron#ex7_10.jpg#3281/CH7/EX7.10/ex7_10.jpg#R##112380 +7#Cross Field Microwave Tubes M Type#7.1#X band Magnetron#ex7_1.sce#3281/CH7/EX7.1/ex7_1.sce#S##112361 +7#Cross Field Microwave Tubes M Type#7.1#X band Magnetron#ex7_1.jpg#3281/CH7/EX7.1/ex7_1.jpg#R##112362 +6#Microwave Travelling Wave Tubes O type#6.9#Helix TWT#ex6_9.sce#3281/CH6/EX6.9/ex6_9.sce#S##112353 +6#Microwave Travelling Wave Tubes O type#6.9#Helix TWT#ex6_9.jpg#3281/CH6/EX6.9/ex6_9.jpg#R##112354 +6#Microwave Travelling Wave Tubes O type#6.8#Gridded TWT#ex6_8.sce#3281/CH6/EX6.8/ex6_8.sce#S##112351 +6#Microwave Travelling Wave Tubes O type#6.8#Gridded TWT#ex6_8.jpg#3281/CH6/EX6.8/ex6_8.jpg#R##112352 +6#Microwave Travelling Wave Tubes O type#6.7#Multicavity TWT#ex6_7.sce#3281/CH6/EX6.7/ex6_7.sce#S##112349 +6#Microwave Travelling Wave Tubes O type#6.7#Multicavity TWT#ex6_7.jpg#3281/CH6/EX6.7/ex6_7.jpg#R##112350 +6#Microwave Travelling Wave Tubes O type#6.6#O Type Backward Wave amplifier#ex6_6.sce#3281/CH6/EX6.6/ex6_6.sce#S##112347 +6#Microwave Travelling Wave Tubes O type#6.6#O Type Backward Wave amplifier#ex6_6.jpg#3281/CH6/EX6.6/ex6_6.jpg#R##112348 +6#Microwave Travelling Wave Tubes O type#6.5#Cavity coupled#ex6_5.sce#3281/CH6/EX6.5/ex6_5.sce#S##112345 +6#Microwave Travelling Wave Tubes O type#6.5#Cavity coupled#ex6_5.jpg#3281/CH6/EX6.5/ex6_5.jpg#R##112346 +6#Microwave Travelling Wave Tubes O type#6.4#O type TWT#ex6_4.sce#3281/CH6/EX6.4/ex6_4.sce#S##112343 +6#Microwave Travelling Wave Tubes O type#6.4#O type TWT#ex6_4.jpg#3281/CH6/EX6.4/ex6_4.jpg#R##112344 +6#Microwave Travelling Wave Tubes O type#6.3#Helical TWT#ex6_3.sce#3281/CH6/EX6.3/ex6_3.sce#S##112341 +6#Microwave Travelling Wave Tubes O type#6.3#Helical TWT#ex6_3.jpg#3281/CH6/EX6.3/ex6_3.jpg#R##112342 +6#Microwave Travelling Wave Tubes O type#6.2#Helix TWT#ex6_2.sce#3281/CH6/EX6.2/ex6_2.sce#S##112339 +6#Microwave Travelling Wave Tubes O type#6.2#Helix TWT#ex6_2.jpg#3281/CH6/EX6.2/ex6_2.jpg#R##112340 +6#Microwave Travelling Wave Tubes O type#6.12#TWT#ex6_12.sce#3281/CH6/EX6.12/ex6_12.sce#S##112359 +6#Microwave Travelling Wave Tubes O type#6.12#TWT#ex6_12.jpg#3281/CH6/EX6.12/ex6_12.jpg#R##112360 +6#Microwave Travelling Wave Tubes O type#6.11#TWT#ex6_11.sce#3281/CH6/EX6.11/ex6_11.sce#S##112357 +6#Microwave Travelling Wave Tubes O type#6.11#TWT#ex6_11.jpg#3281/CH6/EX6.11/ex6_11.jpg#R##112358 +6#Microwave Travelling Wave Tubes O type#6.10#Low Power TWT#ex6_10.sce#3281/CH6/EX6.10/ex6_10.sce#S##112355 +6#Microwave Travelling Wave Tubes O type#6.10#Low Power TWT#ex6_10.jpg#3281/CH6/EX6.10/ex6_10.jpg#R##112356 +6#Microwave Travelling Wave Tubes O type#6.1#TWT#ex6_1.sce#3281/CH6/EX6.1/ex6_1.sce#S##112337 +6#Microwave Travelling Wave Tubes O type#6.1#TWT#ex6_1.jpg#3281/CH6/EX6.1/ex6_1.jpg#R##112338 +5#Microwave Tubes Klystrons#5.9#Four cavity Klystron#ex5_9.sce#3281/CH5/EX5.9/ex5_9.sce#S##112317 +5#Microwave Tubes Klystrons#5.9#Four cavity Klystron#ex5_9.jpg#3281/CH5/EX5.9/ex5_9.jpg#R##112318 +5#Microwave Tubes Klystrons#5.8#Two cavity Klystron#ex5_8.sce#3281/CH5/EX5.8/ex5_8.sce#S##112315 +5#Microwave Tubes Klystrons#5.8#Two cavity Klystron#ex5_8.jpg#3281/CH5/EX5.8/ex5_8.jpg#R##112316 +5#Microwave Tubes Klystrons#5.7#Two cavity Klystron#ex5_7.sce#3281/CH5/EX5.7/ex5_7.sce#S##112313 +5#Microwave Tubes Klystrons#5.7#Two cavity Klystron#ex5_7.jpg#3281/CH5/EX5.7/ex5_7.jpg#R##112314 +5#Microwave Tubes Klystrons#5.6#Two cavity Klystron#ex5_6.sce#3281/CH5/EX5.6/ex5_6.sce#S##112311 +5#Microwave Tubes Klystrons#5.6#Two cavity Klystron#ex5_6.jpg#3281/CH5/EX5.6/ex5_6.jpg#R##112312 +5#Microwave Tubes Klystrons#5.5#Two cavity Klystron#ex5_5.sce#3281/CH5/EX5.5/ex5_5.sce#S##112309 +5#Microwave Tubes Klystrons#5.5#Two cavity Klystron#ex5_5.jpg#3281/CH5/EX5.5/ex5_5.jpg#R##112310 +5#Microwave Tubes Klystrons#5.4#Two cavity Klystron#ex5_4.sce#3281/CH5/EX5.4/ex5_4.sce#S##112307 +5#Microwave Tubes Klystrons#5.4#Two cavity Klystron#ex5_4.jpg#3281/CH5/EX5.4/ex5_4.jpg#R##112308 +5#Microwave Tubes Klystrons#5.3#Two cavity Klystron#ex5_3.sce#3281/CH5/EX5.3/ex5_3.sce#S##112305 +5#Microwave Tubes Klystrons#5.3#Two cavity Klystron#ex5_3.jpg#3281/CH5/EX5.3/ex5_3.jpg#R##112306 +5#Microwave Tubes Klystrons#5.2#Two cavity Klystron#ex5_2.sce#3281/CH5/EX5.2/ex5_2.sce#S##112303 +5#Microwave Tubes Klystrons#5.2#Two cavity Klystron#ex5_2.jpg#3281/CH5/EX5.2/ex5_2.jpg#R##112304 +5#Microwave Tubes Klystrons#5.18#Re entrant Coaxial Cavity#ex5_18.sce#3281/CH5/EX5.18/ex5_18.sce#S##113915 +5#Microwave Tubes Klystrons#5.18#Re entrant Coaxial Cavity#ex5_18.jpg#3281/CH5/EX5.18/ex5_18.jpg#R##113916 +5#Microwave Tubes Klystrons#5.17#Electron Gun#ex5_17.sce#3281/CH5/EX5.17/ex5_17.sce#S##112333 +5#Microwave Tubes Klystrons#5.17#Electron Gun#ex5_17.jpg#3281/CH5/EX5.17/ex5_17.jpg#R##112334 +5#Microwave Tubes Klystrons#5.16#Reflex Klystron#ex5_16.sce#3281/CH5/EX5.16/ex5_16.sce#S##113913 +5#Microwave Tubes Klystrons#5.16#Reflex Klystron#ex5_16.jpg#3281/CH5/EX5.16/ex5_16.jpg#R##113914 +5#Microwave Tubes Klystrons#5.15#Reflex Klystron#ex5_15.sce#3281/CH5/EX5.15/ex5_15.sce#S##112329 +5#Microwave Tubes Klystrons#5.15#Reflex Klystron#ex5_15.jpg#3281/CH5/EX5.15/ex5_15.jpg#R##112330 +5#Microwave Tubes Klystrons#5.14#Reflex Klystron#ex5_14.sce#3281/CH5/EX5.14/ex5_14.sce#S##112327 +5#Microwave Tubes Klystrons#5.14#Reflex Klystron#ex5_14.jpg#3281/CH5/EX5.14/ex5_14.jpg#R##112328 +5#Microwave Tubes Klystrons#5.13#Reflex Klystron#ex5_13.sce#3281/CH5/EX5.13/ex5_13.sce#S##112325 +5#Microwave Tubes Klystrons#5.13#Reflex Klystron#ex5_13.jpg#3281/CH5/EX5.13/ex5_13.jpg#R##112326 +5#Microwave Tubes Klystrons#5.12#Reflex Klystron#ex5_12.sce#3281/CH5/EX5.12/ex5_12.sce#S##112323 +5#Microwave Tubes Klystrons#5.12#Reflex Klystron#ex5_12.jpg#3281/CH5/EX5.12/ex5_12.jpg#R##112324 +5#Microwave Tubes Klystrons#5.11#Reflex Klystron#ex5_11.sce#3281/CH5/EX5.11/ex5_11.sce#S##112321 +5#Microwave Tubes Klystrons#5.11#Reflex Klystron#ex5_11.jpg#3281/CH5/EX5.11/ex5_11.jpg#R##112322 +5#Microwave Tubes Klystrons#5.10#Four cavity Klystron#ex5_10.sce#3281/CH5/EX5.10/ex5_10.sce#S##112319 +5#Microwave Tubes Klystrons#5.10#Four cavity Klystron#ex5_10.jpg#3281/CH5/EX5.10/ex5_10.jpg#R##112320 +5#Microwave Tubes Klystrons#5.1#Two Cavity Klystron#ex5_1.sce#3281/CH5/EX5.1/ex5_1.sce#S##113911 +5#Microwave Tubes Klystrons#5.1#Two Cavity Klystron#ex5_1.jpg#3281/CH5/EX5.1/ex5_1.jpg#R##113912 +4#Microwave Resonators and Waveguide Components#4.9#Rectangular resonator#ex4_9.sce#3281/CH4/EX4.9/ex4_9.sce#S##112589 +4#Microwave Resonators and Waveguide Components#4.9#Rectangular resonator#ex4_9.jpg#3281/CH4/EX4.9/ex4_9.jpg#R##112590 +4#Microwave Resonators and Waveguide Components#4.8#Rectangular Resonant Cavity#ex4_8.jpg#3281/CH4/EX4.8/ex4_8.jpg#R##113910 +4#Microwave Resonators and Waveguide Components#4.8#Rectangular Resonant Cavity#ex4_8.sce#3281/CH4/EX4.8/ex4_8.sce#S##113909 +4#Microwave Resonators and Waveguide Components#4.7#Cubical Resonator#ex4_7.sce#3281/CH4/EX4.7/ex4_7.sce#S##112585 +4#Microwave Resonators and Waveguide Components#4.7#Cubical Resonator#ex4_7.jpg#3281/CH4/EX4.7/ex4_7.jpg#R##112586 +4#Microwave Resonators and Waveguide Components#4.6#Resonator comparison#ex4_6.sce#3281/CH4/EX4.6/ex4_6.sce#S##112583 +4#Microwave Resonators and Waveguide Components#4.6#Resonator comparison#ex4_6.jpg#3281/CH4/EX4.6/ex4_6.jpg#R##112584 +4#Microwave Resonators and Waveguide Components#4.5#Cylindrical resonator#ex4_5.sce#3281/CH4/EX4.5/ex4_5.sce#S##112581 +4#Microwave Resonators and Waveguide Components#4.5#Cylindrical resonator#ex4_5.jpg#3281/CH4/EX4.5/ex4_5.jpg#R##112582 +4#Microwave Resonators and Waveguide Components#4.4#Rectangular resonator#ex4_4.sce#3281/CH4/EX4.4/ex4_4.sce#S##112579 +4#Microwave Resonators and Waveguide Components#4.4#Rectangular resonator#ex4_4.jpg#3281/CH4/EX4.4/ex4_4.jpg#R##112580 +4#Microwave Resonators and Waveguide Components#4.3#X band resonator#ex4_3.sce#3281/CH4/EX4.3/ex4_3.sce#S##112577 +4#Microwave Resonators and Waveguide Components#4.3#X band resonator#ex4_3.jpg#3281/CH4/EX4.3/ex4_3.jpg#R##112578 +4#Microwave Resonators and Waveguide Components#4.24#Attenuator matrix#ex4_24.sce#3281/CH4/EX4.24/ex4_24.sce#S##112613 +4#Microwave Resonators and Waveguide Components#4.24#Attenuator matrix#ex4_24.jpg#3281/CH4/EX4.24/ex4_24.jpg#R##112614 +4#Microwave Resonators and Waveguide Components#4.23#Rectangular Waveguide#ex4_23.sce#3281/CH4/EX4.23/ex4_23.sce#S##112611 +4#Microwave Resonators and Waveguide Components#4.23#Rectangular Waveguide#ex4_23.jpg#3281/CH4/EX4.23/ex4_23.jpg#R##112612 +4#Microwave Resonators and Waveguide Components#4.22#Circulator Matrix#ex4_22.sce#3281/CH4/EX4.22/ex4_22.sce#S##112609 +4#Microwave Resonators and Waveguide Components#4.22#Circulator Matrix#ex4_22.jpg#3281/CH4/EX4.22/ex4_22.jpg#R##112610 +4#Microwave Resonators and Waveguide Components#4.21#Isolator Matrix#ex4_21.sce#3281/CH4/EX4.21/ex4_21.sce#S##114866 +4#Microwave Resonators and Waveguide Components#4.21#Isolator Matrix#ex4_21.jpg#3281/CH4/EX4.21/ex4_21.jpg#R##114867 +4#Microwave Resonators and Waveguide Components#4.20#Directional coupler#ex4_20.sce#3281/CH4/EX4.20/ex4_20.sce#S##112605 +4#Microwave Resonators and Waveguide Components#4.20#Directional coupler#ex4_20.jpg#3281/CH4/EX4.20/ex4_20.jpg#R##112606 +4#Microwave Resonators and Waveguide Components#4.2#Rectangulr resonator#ex4_2.sce#3281/CH4/EX4.2/ex4_2.sce#S##112575 +4#Microwave Resonators and Waveguide Components#4.2#Rectangulr resonator#ex4_2.jpg#3281/CH4/EX4.2/ex4_2.jpg#R##112576 +4#Microwave Resonators and Waveguide Components#4.18#Directional Coupler#ex4_18.sce#3281/CH4/EX4.18/ex4_18.sce#S##112603 +4#Microwave Resonators and Waveguide Components#4.18#Directional Coupler#ex4_18.jpg#3281/CH4/EX4.18/ex4_18.jpg#R##112604 +4#Microwave Resonators and Waveguide Components#4.15#Magic Tee#ex4_15.sce#3281/CH4/EX4.15/ex4_15.sce#S##112601 +4#Microwave Resonators and Waveguide Components#4.15#Magic Tee#ex4_15.jpg#3281/CH4/EX4.15/ex4_15.jpg#R##112602 +4#Microwave Resonators and Waveguide Components#4.14#E plane tee#ex4_14.sce#3281/CH4/EX4.14/ex4_14.sce#S##112599 +4#Microwave Resonators and Waveguide Components#4.14#E plane tee#ex4_14.jpg#3281/CH4/EX4.14/ex4_14.jpg#R##112600 +4#Microwave Resonators and Waveguide Components#4.13#Lossless plane H tee#ex4_13.sce#3281/CH4/EX4.13/ex4_13.sce#S##112597 +4#Microwave Resonators and Waveguide Components#4.13#Lossless plane H tee#ex4_13.jpg#3281/CH4/EX4.13/ex4_13.jpg#R##112598 +4#Microwave Resonators and Waveguide Components#4.12#Cylindrical Resonator#ex4_12.jpg#3281/CH4/EX4.12/ex4_12.jpg#R##114865 +4#Microwave Resonators and Waveguide Components#4.12#Cylindrical Resonator#ex4_12.sce#3281/CH4/EX4.12/ex4_12.sce#S##114864 +4#Microwave Resonators and Waveguide Components#4.11#Cylindrical resonantor#ex4_11.sce#3281/CH4/EX4.11/ex4_11.sce#S##112593 +4#Microwave Resonators and Waveguide Components#4.11#Cylindrical resonantor#ex4_11.jpg#3281/CH4/EX4.11/ex4_11.jpg#R##112594 +4#Microwave Resonators and Waveguide Components#4.10#Cylindrical resonator#ex4_10.sce#3281/CH4/EX4.10/ex4_10.sce#S##112591 +4#Microwave Resonators and Waveguide Components#4.10#Cylindrical resonator#ex4_10.jpg#3281/CH4/EX4.10/ex4_10.jpg#R##112592 +4#Microwave Resonators and Waveguide Components#4.1#Rectangular cavity resonator#ex4_1.sce#3281/CH4/EX4.1/ex4_1.sce#S##112573 +4#Microwave Resonators and Waveguide Components#4.1#Rectangular cavity resonator#ex4_1.jpg#3281/CH4/EX4.1/ex4_1.jpg#R##112574 +3#Microwave Network Analysis#3.6#Microwave network#ex3_6.sce#3281/CH3/EX3.6/ex3_6.sce#S##112297 +3#Microwave Network Analysis#3.6#Microwave network#ex3_6.jpg#3281/CH3/EX3.6/ex3_6.jpg#R##112298 +3#Microwave Network Analysis#3.5#Network#ex3_5.sce#3281/CH3/EX3.5/ex3_5.sce#S##112295 +3#Microwave Network Analysis#3.5#Network#ex3_5.jpg#3281/CH3/EX3.5/ex3_5.jpg#R##112296 +3#Microwave Network Analysis#3.4#Scattering matrix#ex3_4.sce#3281/CH3/EX3.4/ex3_4.sce#S##112293 +3#Microwave Network Analysis#3.4#Scattering matrix#ex3_4.jpg#3281/CH3/EX3.4/ex3_4.jpg#R##112294 +3#Microwave Network Analysis#3.12#Transistor amplifier circuit#ex3_12.sce#3281/CH3/EX3.12/ex3_12.sce#S##112299 +3#Microwave Network Analysis#3.12#Transistor amplifier circuit#ex3_12.jpg#3281/CH3/EX3.12/ex3_12.jpg#R##112300 +2#Waveguides#2.9#Dimensions#ex2_9.sce#3281/CH2/EX2.9/ex2_9.sce#S##112255 +2#Waveguides#2.9#Dimensions#ex2_9.jpg#3281/CH2/EX2.9/ex2_9.jpg#R##112256 +2#Waveguides#2.8#Lossless Rectangular Waveguide#ex2_8.jpg#3281/CH2/EX2.8/ex2_8.jpg#R##112264 +2#Waveguides#2.8#Lossless Rectangular Waveguide#ex2_8.sce#3281/CH2/EX2.8/ex2_8.sce#S##112263 +2#Waveguides#2.7#Rectangular waveguide#ex2_7.sce#3281/CH2/EX2.7/ex2_7.sce#S##112251 +2#Waveguides#2.7#Rectangular waveguide#ex2_7.jpg#3281/CH2/EX2.7/ex2_7.jpg#R##112252 +2#Waveguides#2.5#Rectangular waveguide#ex2_5.sce#3281/CH2/EX2.5/ex2_5.sce#S##112249 +2#Waveguides#2.5#Rectangular waveguide#ex2_5.jpg#3281/CH2/EX2.5/ex2_5.jpg#R##112250 +2#Waveguides#2.4#Wider dimension#ex2_4.sce#3281/CH2/EX2.4/ex2_4.sce#S##112247 +2#Waveguides#2.4#Wider dimension#ex2_4.jpg#3281/CH2/EX2.4/ex2_4.jpg#R##112248 +2#Waveguides#2.31#Dielectric constant#ex2_31.sce#3281/CH2/EX2.31/ex2_31.sce#S##112265 +2#Waveguides#2.31#Dielectric constant#ex2_31.jpg#3281/CH2/EX2.31/ex2_31.jpg#R##112266 +2#Waveguides#2.30#Cutoff frequencies#ex2_30.sce#3281/CH2/EX2.30/ex2_30.sce#S##112267 +2#Waveguides#2.30#Cutoff frequencies#ex2_30.jpg#3281/CH2/EX2.30/ex2_30.jpg#R##112268 +2#Waveguides#2.3#Rectangular Waveguide#ex2_3.sce#3281/CH2/EX2.3/ex2_3.sce#S##112245 +2#Waveguides#2.3#Rectangular Waveguide#ex2_3.jpg#3281/CH2/EX2.3/ex2_3.jpg#R##112246 +2#Waveguides#2.29#Circular waveguide#ex2_29.sce#3281/CH2/EX2.29/ex2_29.sce#S##112269 +2#Waveguides#2.29#Circular waveguide#ex2_29.jpg#3281/CH2/EX2.29/ex2_29.jpg#R##112270 +2#Waveguides#2.28#Rectangular Waveguide#ex2_28.sce#3281/CH2/EX2.28/ex2_28.sce#S##112271 +2#Waveguides#2.28#Rectangular Waveguide#ex2_28.jpg#3281/CH2/EX2.28/ex2_28.jpg#R##112272 +2#Waveguides#2.27#Circular Waveguide#ex2_27.sce#3281/CH2/EX2.27/ex2_27.sce#S##112273 +2#Waveguides#2.27#Circular Waveguide#ex2_27.jpg#3281/CH2/EX2.27/ex2_27.jpg#R##112274 +2#Waveguides#2.26#Rectangular Waveguide#ex2_26.sce#3281/CH2/EX2.26/ex2_26.sce#S##112275 +2#Waveguides#2.26#Rectangular Waveguide#ex2_26.jpg#3281/CH2/EX2.26/ex2_26.jpg#R##112276 +2#Waveguides#2.25#Air filled rectangular waveguide#ex2_25.sce#3281/CH2/EX2.25/ex2_25.sce#S##112277 +2#Waveguides#2.25#Air filled rectangular waveguide#ex2_25.jpg#3281/CH2/EX2.25/ex2_25.jpg#R##112278 +2#Waveguides#2.24#Air filled circular waveguide#ex2_24.sce#3281/CH2/EX2.24/ex2_24.sce#S##112279 +2#Waveguides#2.24#Air filled circular waveguide#ex2_24.jpg#3281/CH2/EX2.24/ex2_24.jpg#R##112280 +2#Waveguides#2.23#Circular waveguide#ex2_23.sce#3281/CH2/EX2.23/ex2_23.sce#S##112281 +2#Waveguides#2.23#Circular waveguide#ex2_23.jpg#3281/CH2/EX2.23/ex2_23.jpg#R##112282 +2#Waveguides#2.22#Rectangular Waveguide#ex2_22.sce#3281/CH2/EX2.22/ex2_22.sce#S##112283 +2#Waveguides#2.22#Rectangular Waveguide#ex2_22.jpg#3281/CH2/EX2.22/ex2_22.jpg#R##112284 +2#Waveguides#2.21#Rectangular Waveguide#ex2_21.sce#3281/CH2/EX2.21/ex2_21.sce#S##114862 +2#Waveguides#2.21#Rectangular Waveguide#ex2_21.jpg#3281/CH2/EX2.21/ex2_21.jpg#R##114863 +2#Waveguides#2.20#Ratio of cross section#ex2_20.sce#3281/CH2/EX2.20/ex2_20.sce#S##112287 +2#Waveguides#2.20#Ratio of cross section#ex2_20.jpg#3281/CH2/EX2.20/ex2_20.jpg#R##112288 +2#Waveguides#2.2#Rectangular Waveguide#ex2_2.sce#3281/CH2/EX2.2/ex2_2.sce#S##112243 +2#Waveguides#2.2#Rectangular Waveguide#ex2_2.jpg#3281/CH2/EX2.2/ex2_2.jpg#R##112244 +2#Waveguides#2.19#Rectangular Waveguide#ex2_19.jpg#3281/CH2/EX2.19/ex2_19.jpg#R##114861 +2#Waveguides#2.19#Rectangular Waveguide#ex2_19.sce#3281/CH2/EX2.19/ex2_19.sce#S##114860 +2#Waveguides#2.18#Rectangular Waveguide#ex2_18.sce#3281/CH2/EX2.18/ex2_18.sce#S##112291 +2#Waveguides#2.18#Rectangular Waveguide#ex2_18.jpg#3281/CH2/EX2.18/ex2_18.jpg#R##112292 +2#Waveguides#2.17#Air filled Rectangular Waveguide#ex2_17.sce#3281/CH2/EX2.17/ex2_17.sce#S##112261 +2#Waveguides#2.17#Air filled Rectangular Waveguide#ex2_17.jpg#3281/CH2/EX2.17/ex2_17.jpg#R##112262 +2#Waveguides#2.14#Waveguide#ex2_14.sce#3281/CH2/EX2.14/ex2_14.sce#S##112259 +2#Waveguides#2.14#Waveguide#ex2_14.jpg#3281/CH2/EX2.14/ex2_14.jpg#R##112260 +2#Waveguides#2.10#Rectangular Waveguide#ex2_10.sce#3281/CH2/EX2.10/ex2_10.sce#S##112257 +2#Waveguides#2.10#Rectangular Waveguide#ex2_10.jpg#3281/CH2/EX2.10/ex2_10.jpg#R##112258 +2#Waveguides#2.1#Dominant mode#ex2_1.sce#3281/CH2/EX2.1/ex2_1.sce#S##112241 +2#Waveguides#2.1#Dominant mode#ex2_1.jpg#3281/CH2/EX2.1/ex2_1.jpg#R##112242 +1#Microwaves#1.9#Transmission Line#ex1_9.sce#3281/CH1/EX1.9/ex1_9.sce#S##112629 +1#Microwaves#1.9#Transmission Line#ex1_9.jpg#3281/CH1/EX1.9/ex1_9.jpg#R##112630 +1#Microwaves#1.8#Transmission Line#ex1_8.sce#3281/CH1/EX1.8/ex1_8.sce#S##112627 +1#Microwaves#1.8#Transmission Line#ex1_8.jpg#3281/CH1/EX1.8/ex1_8.jpg#R##112628 +1#Microwaves#1.7#Lossy cable#ex1_7.sce#3281/CH1/EX1.7/ex1_7.sce#S##112625 +1#Microwaves#1.7#Lossy cable#ex1_7.jpg#3281/CH1/EX1.7/ex1_7.jpg#R##112626 +1#Microwaves#1.6#Lossless line#ex1_6.sce#3281/CH1/EX1.6/ex1_6.sce#S##112623 +1#Microwaves#1.6#Lossless line#ex1_6.jpg#3281/CH1/EX1.6/ex1_6.jpg#R##112624 +1#Microwaves#1.5#Parallel resonant circuit#ex1_5.sce#3281/CH1/EX1.5/ex1_5.sce#S##112621 +1#Microwaves#1.5#Parallel resonant circuit#ex1_5.jpg#3281/CH1/EX1.5/ex1_5.jpg#R##112622 +1#Microwaves#1.4#Quater wave transformer#ex1_4.sce#3281/CH1/EX1.4/ex1_4.sce#S##112619 +1#Microwaves#1.4#Quater wave transformer#ex1_4.jpg#3281/CH1/EX1.4/ex1_4.jpg#R##112620 +1#Microwaves#1.3#Microwave line#ex1_3.sce#3281/CH1/EX1.3/ex1_3.sce#S##112617 +1#Microwaves#1.3#Microwave line#ex1_3.jpg#3281/CH1/EX1.3/ex1_3.jpg#R##112618 +1#Microwaves#1.2#Lossless line#ex1_2.sce#3281/CH1/EX1.2/ex1_2.sce#S##112615 +1#Microwaves#1.2#Lossless line#ex1_2.jpg#3281/CH1/EX1.2/ex1_2.jpg#R##112616 +1#Microwaves#1.19#Range in sea water#ex1_19.sce#3281/CH1/EX1.19/ex1_19.sce#S##112647 +1#Microwaves#1.19#Range in sea water#ex1_19.jpg#3281/CH1/EX1.19/ex1_19.jpg#R##112648 +1#Microwaves#1.18#Electromagnetic wave#ex1_18.sce#3281/CH1/EX1.18/ex1_18.sce#S##112645 +1#Microwaves#1.18#Electromagnetic wave#ex1_18.jpg#3281/CH1/EX1.18/ex1_18.jpg#R##112646 +1#Microwaves#1.17#Polyethylene#ex1_17.sce#3281/CH1/EX1.17/ex1_17.sce#S##112643 +1#Microwaves#1.17#Polyethylene#ex1_17.jpg#3281/CH1/EX1.17/ex1_17.jpg#R##112644 +1#Microwaves#1.16#EM Plane#ex1_16.jpg#3281/CH1/EX1.16/ex1_16.jpg#R##113907 +1#Microwaves#1.16#EM Plane#ex1_16.sce#3281/CH1/EX1.16/ex1_16.sce#S##113906 +1#Microwaves#1.15#Microwave line#ex1_15.sce#3281/CH1/EX1.15/ex1_15.sce#S##112639 +1#Microwaves#1.15#Microwave line#ex1_15.jpg#3281/CH1/EX1.15/ex1_15.jpg#R##112640 +1#Microwaves#1.13#Transmission line#ex1_13.sce#3281/CH1/EX1.13/ex1_13.sce#S##112637 +1#Microwaves#1.13#Transmission line#ex1_13.jpg#3281/CH1/EX1.13/ex1_13.jpg#R##112638 +1#Microwaves#1.12#Active Device#ex1_12.jpg#3281/CH1/EX1.12/ex1_12.jpg#R##114859 +1#Microwaves#1.12#Active Device#ex1_12.sce#3281/CH1/EX1.12/ex1_12.sce#S##114858 +1#Microwaves#1.11#Microwave line#ex1_11.sce#3281/CH1/EX1.11/ex1_11.sce#S##112633 +1#Microwaves#1.11#Microwave line#ex1_11.jpg#3281/CH1/EX1.11/ex1_11.jpg#R##112634 +1#Microwaves#1.10#Transmission Line#ex1_10.sce#3281/CH1/EX1.10/ex1_10.sce#S##112631 +1#Microwaves#1.10#Transmission Line#ex1_10.jpg#3281/CH1/EX1.10/ex1_10.jpg#R##112632 diff --git a/latex/tmp_3308_data.txt b/latex/tmp_3308_data.txt index e69de29bb..b8ecef7f4 100644 --- a/latex/tmp_3308_data.txt +++ b/latex/tmp_3308_data.txt @@ -0,0 +1,44 @@ +36#Quality Assurance Testing And Inspection#36.2#Calculation of Control Limits and Standard Deviation#Ex36_2.sce#3308/CH36/EX36.2/Ex36_2.sce#S##111938 +36#Quality Assurance Testing And Inspection#36.2#Calculation of Control Limits and Standard Deviation#Ex36_2.txt#3308/CH36/EX36.2/Ex36_2.txt#R##111939 +36#Quality Assurance Testing And Inspection#36.1#Calculation of Loss Function and Payback Period in Polymer Tubing#Ex36_1.sce#3308/CH36/EX36.1/Ex36_1.sce#S##111936 +36#Quality Assurance Testing And Inspection#36.1#Calculation of Loss Function and Payback Period in Polymer Tubing#Ex36_1.txt#3308/CH36/EX36.1/Ex36_1.txt#R##111937 +32#Tribology Friction Wear and Lubrication#32.1#Calculation of Cofficient of Friction#Ex32_1.sce#3308/CH32/EX32.1/Ex32_1.sce#S##111934 +32#Tribology Friction Wear and Lubrication#32.1#Calculation of Cofficient of Friction#Ex32_1.txt#3308/CH32/EX32.1/Ex32_1.txt#R##111935 +28#Solid State Welding Processes#28.1#Calculation of Heat Generated in Spot Welding#Ex28_1.sce#3308/CH28/EX28.1/Ex28_1.sce#S##111932 +28#Solid State Welding Processes#28.1#Calculation of Heat Generated in Spot Welding#Ex28_1.txt#3308/CH28/EX28.1/Ex28_1.txt#R##111933 +25#Abrasive Machining and Finishing Operations#25.2#Calculation of Force in Surface Grinding#Ex25_2.sce#3308/CH25/EX25.2/Ex25_2.sce#S##111930 +25#Abrasive Machining and Finishing Operations#25.2#Calculation of Force in Surface Grinding#Ex25_2.txt#3308/CH25/EX25.2/Ex25_2.txt#R##111931 +25#Abrasive Machining and Finishing Operations#25.1#Calculation of Chip Dimensions in Surface Grinding#Ex25_1.sce#3308/CH25/EX25.1/Ex25_1.sce#S##111928 +25#Abrasive Machining and Finishing Operations#25.1#Calculation of Chip Dimensions in Surface Grinding#Ex25_1.txt#3308/CH25/EX25.1/Ex25_1.txt#R##111929 +23#Machining Processes Used to Produce Various Shape#23.2#Calculation of Material Removal Rate Power Required and Cutting Time in Face Milling#Ex23_2.sce#3308/CH23/EX23.2/Ex23_2.sce#S##111926 +23#Machining Processes Used to Produce Various Shape#23.2#Calculation of Material Removal Rate Power Required and Cutting Time in Face Milling#Ex23_2.txt#3308/CH23/EX23.2/Ex23_2.txt#R##111927 +23#Machining Processes Used to Produce Various Shape#23.1#Calculation of Material Removal Rate Power Required Torque and Cutting Time in Slab Milling#Ex23_1.sce#3308/CH23/EX23.1/Ex23_1.sce#S##111924 +23#Machining Processes Used to Produce Various Shape#23.1#Calculation of Material Removal Rate Power Required Torque and Cutting Time in Slab Milling#Ex23_1.txt#3308/CH23/EX23.1/Ex23_1.txt#R##111925 +22#Machining Processes Used to Produce Round Shape#22.2#Calculation of Material Removal Rate and Torque in Drlling#Ex22_2.sce#3308/CH22/EX22.2/Ex22_2.sce#S##111922 +22#Machining Processes Used to Produce Round Shape#22.2#Calculation of Material Removal Rate and Torque in Drlling#Ex22_2.txt#3308/CH22/EX22.2/Ex22_2.txt#R##111923 +22#Machining Processes Used to Produce Round Shape#22.1#Calculation of Material Removal Rate and Cutting Force in Turning#Ex22_1.sce#3308/CH22/EX22.1/Ex22_1.sce#S##111920 +22#Machining Processes Used to Produce Round Shape#22.1#Calculation of Material Removal Rate and Cutting Force in Turning#Ex22_1.txt#3308/CH22/EX22.1/Ex22_1.txt#R##111921 +20#Machining Processes Used to Produce Round Shape#20.2#Change in Tool Life by Changing the Cutting Speed#Ex20_2.sce#3308/CH20/EX20.2/Ex20_2.sce#S##111918 +20#Machining Processes Used to Produce Round Shape#20.2#Change in Tool Life by Changing the Cutting Speed#Ex20_2.txt#3308/CH20/EX20.2/Ex20_2.txt#R##111919 +20#Machining Processes Used to Produce Round Shape#20.1#Calculation of Energy used as friction In cutting#Ex20_1.sce#3308/CH20/EX20.1/Ex20_1.sce#S##111916 +20#Machining Processes Used to Produce Round Shape#20.1#Calculation of Energy used as friction In cutting#Ex20_1.txt#3308/CH20/EX20.1/Ex20_1.txt#R##111917 +18#Forming and Shaping Plastics And Composite Materials#18.2#Calculation of number of Gears In Injection Moulding#Ex18_2.sce#3308/CH18/EX18.2/Ex18_2.sce#S##111914 +18#Forming and Shaping Plastics And Composite Materials#18.2#Calculation of number of Gears In Injection Moulding#Ex18_2.txt#3308/CH18/EX18.2/Ex18_2.txt#R##111915 +18#Forming and Shaping Plastics And Composite Materials#18.1#Calculation of Diameter of Die in Extrusion#Ex18_1.sce#3308/CH18/EX18.1/Ex18_1.sce#S##111912 +18#Forming and Shaping Plastics And Composite Materials#18.1#Calculation of Diameter of Die in Extrusion#Ex18_1.txt#3308/CH18/EX18.1/Ex18_1.txt#R##111913 +17#Processing of Powder Metals Ceramics Glass and Superconductors#17.1#Calculation of Dimensional Changes During Shaping of Ceramic Components#Ex17_1.sce#3308/CH17/EX17.1/Ex17_1.sce#S##111910 +17#Processing of Powder Metals Ceramics Glass and Superconductors#17.1#Calculation of Dimensional Changes During Shaping of Ceramic Components#Ex17_1.txt#3308/CH17/EX17.1/Ex17_1.txt#R##111911 +16#Sheet Metal Forming Processes#16.1#Calculation of Punch Force#Ex16_1.sce#3308/CH16/EX16.1/Ex16_1.sce#S##111908 +16#Sheet Metal Forming Processes#16.1#Calculation of Punch Force#Ex16_1.txt#3308/CH16/EX16.1/Ex16_1.txt#R##111909 +15#Extrusion and Drawing of Metals#15.1#Calculation of Force in Hot Extrusion#Ex15_1.sce#3308/CH15/EX15.1/Ex15_1.sce#S##111906 +15#Extrusion and Drawing of Metals#15.1#Calculation of Force in Hot Extrusion#Ex15_1.txt#3308/CH15/EX15.1/Ex15_1.txt#R##111907 +14#Forging of Metals#14.1#Calculation of Forging Force#Ex14_1.sce#3308/CH14/EX14.1/Ex14_1.sce#S##111904 +14#Forging of Metals#14.1#Calculation of Forging Force#Ex14_1.txt#3308/CH14/EX14.1/Ex14_1.txt#R##111905 +13#Rolling of Metals#13.1#Calculation of Roll Force and Torque#Ex13_1.sce#3308/CH13/EX13.1/Ex13_1.sce#S##111902 +13#Rolling of Metals#13.1#Calculation of Roll Force and Torque#Ex13_1.txt#3308/CH13/EX13.1/Ex13_1.txt#R##111903 +10#Fundamental of Metal Casting#10.1#solidification time for various shapes#Ex10_1.sce#3308/CH10/EX10.1/Ex10_1.sce#S##111900 +10#Fundamental of Metal Casting#10.1#solidification time for various shapes#Ex10_1.txt#3308/CH10/EX10.1/Ex10_1.txt#R##111901 +9#Composite Materials Structure General Properties and Applicatons#9.1#Calculation of fraction of load supported by fibre#Ex9_1.sce#3308/CH9/EX9.1/Ex9_1.sce#S##111898 +9#Composite Materials Structure General Properties and Applicatons#9.1#Calculation of fraction of load supported by fibre#Ex9_1.txt#3308/CH9/EX9.1/Ex9_1.txt#R##111899 +2#Mechanical Behavior Testing and Manufacturing Properties of Materials#2.1#Calculation of Ultimate Tensile Strength#Ex2_1.sce#3308/CH2/EX2.1/Ex2_1.sce#S##111896 +2#Mechanical Behavior Testing and Manufacturing Properties of Materials#2.1#Calculation of Ultimate Tensile Strength#Ex2_1.txt#3308/CH2/EX2.1/Ex2_1.txt#R##111897 diff --git a/latex/tmp_3311_data.txt b/latex/tmp_3311_data.txt index e69de29bb..1df524a00 100644 --- a/latex/tmp_3311_data.txt +++ b/latex/tmp_3311_data.txt @@ -0,0 +1,183 @@ +16#Power Electronic Applications#16.9#Determine the value of coupling capacitor verfiy if the value is acceptable or not If not then determine the new value#Ex16_9.sce#3311/CH16/EX16.9/Ex16_9.sce#S##113572 +16#Power Electronic Applications#16.8#Determine turn ratio of demagnetizing winding with primary winding switch voltagae rating and dc supply current#Ex16_8.sce#3311/CH16/EX16.8/Ex16_8.sce#S##113571 +16#Power Electronic Applications#16.7#Determine average input power and current ratings of the trasistor primary winding indutance and number of turns and ratings of the diode#Ex16_7.sce#3311/CH16/EX16.7/Ex16_7.sce#S##113570 +16#Power Electronic Applications#16.6#Determine maximum duty cycle and flyback convertor turns ratio#Ex16_6.sce#3311/CH16/EX16.6/Ex16_6.sce#S##113569 +16#Power Electronic Applications#16.5#Calculate back up time and charger peak output power#Ex16_5.sce#3311/CH16/EX16.5/Ex16_5.sce#S##113568 +16#Power Electronic Applications#16.4#Determine dc supply voltage and charging current#Ex16_4.sce#3311/CH16/EX16.4/Ex16_4.sce#S##113567 +16#Power Electronic Applications#16.3#Determine AH efficiency and WH efficiency#Ex16_3.sce#3311/CH16/EX16.3/Ex16_3.sce#S##113566 +16#Power Electronic Applications#16.2#Select a suitable battery#Ex16_2.sce#3311/CH16/EX16.2/Ex16_2.sce#S##113565 +16#Power Electronic Applications#16.16#What will be the firing angle and output power available#Ex16_16.sce#3311/CH16/EX16.16/Ex16_16.sce#S##113579 +16#Power Electronic Applications#16.15#Calculate the value of load resistance commutating capacitor and resistance connected in series#Ex16_15.sce#3311/CH16/EX16.15/Ex16_15.sce#S##113578 +16#Power Electronic Applications#16.14#Determine supply frequency#Ex16_14.sce#3311/CH16/EX16.14/Ex16_14.sce#S##113577 +16#Power Electronic Applications#16.13#Determine voltage and current#Ex16_13.sce#3311/CH16/EX16.13/Ex16_13.sce#S##113576 +16#Power Electronic Applications#16.12#Determine supply frequency#Ex16_12.sce#3311/CH16/EX16.12/Ex16_12.sce#S##113575 +16#Power Electronic Applications#16.11#Determine depth of heating and heat generated per unit surface area#Ex16_11.sce#3311/CH16/EX16.11/Ex16_11.sce#S##113574 +16#Power Electronic Applications#16.10#Determine rms current and peak reverse voltage#Ex16_10.sce#3311/CH16/EX16.10/Ex16_10.sce#S##113573 +16#Power Electronic Applications#16.1#Determine kVA rating of invertor Wattage of the rectifier and AH rating of battery#Ex16_1.sce#3311/CH16/EX16.1/Ex16_1.sce#S##113564 +15#Control of A C Drives#15.3#Determine the input voltage armature current excitation voltage torque angle and pull out torque#Ex15_3.sce#3311/CH15/EX15.3/Ex15_3.sce#S##113563 +15#Control of A C Drives#15.2#Determine the angle of firing advance in different cases voltage ratio and power flow#Ex15_2.sce#3311/CH15/EX15.2/Ex15_2.sce#S##113562 +15#Control of A C Drives#15.1#Determine the new value of torque developed by motor#Ex15_1.sce#3311/CH15/EX15.1/Ex15_1.sce#S##113561 +14#Control of D C Drives#14.9#Determine motor torque motor current and supply power factor#Ex14_9.sce#3311/CH14/EX14.9/Ex14_9.sce#S##113557 +14#Control of D C Drives#14.8#Determine no load speeds firing angle supply power factor and the speed regulation#Ex14_8.sce#3311/CH14/EX14.8/Ex14_8.sce#S##113556 +14#Control of D C Drives#14.7#Determine the triggering angle of the convertor #Ex14_7.sce#3311/CH14/EX14.7/Ex14_7.sce#S##113555 +14#Control of D C Drives#14.6#Determine the motor speed#Ex14_6.sce#3311/CH14/EX14.6/Ex14_6.sce#S##113554 +14#Control of D C Drives#14.5#What should be firing angle different speeds and calculate the motor speed#Ex14_5.sce#3311/CH14/EX14.5/Ex14_5.sce#S##113553 +14#Control of D C Drives#14.4#Determine motor torque speed of the motor supply power factor firing angle and power fed back to the supply#Ex14_4.sce#3311/CH14/EX14.4/Ex14_4.sce#S##113552 +14#Control of D C Drives#14.3#Compute the field current firing angle of the convertor and the input power factor#Ex14_3.sce#3311/CH14/EX14.3/Ex14_3.sce#S##113551 +14#Control of D C Drives#14.2#Compute the speed at which motor can hold the load by regenerative braking#Ex14_2.sce#3311/CH14/EX14.2/Ex14_2.sce#S##113550 +14#Control of D C Drives#14.12#Determine the range of frequencies of the chopper#Ex14_12.sce#3311/CH14/EX14.12/Ex14_12.sce#S##113560 +14#Control of D C Drives#14.11#Determine the firing angle power factor active power and reactive power at rated speed and its 10 and their ratio#Ex14_11.sce#3311/CH14/EX14.11/Ex14_11.sce#S##113559 +14#Control of D C Drives#14.10#Determine the firing angle of the armature convertor speed of the motor and firing angle of the field convertor#Ex14_10.sce#3311/CH14/EX14.10/Ex14_10.sce#S##113558 +14#Control of D C Drives#14.1#Determine motor terminal voltage and the value of flux as a percentage of rated flux#Ex14_1.sce#3311/CH14/EX14.1/Ex14_1.sce#S##113549 +13#Protection and Cooling of Power Switching Devices#13.9#Compute the required fusing time#Ex13_9.sce#3311/CH13/EX13.9/Ex13_9.sce#S##113439 +13#Protection and Cooling of Power Switching Devices#13.8#Calculate the peak value of the fault current#Ex13_8.sce#3311/CH13/EX13.8/Ex13_8.sce#S##113438 +13#Protection and Cooling of Power Switching Devices#13.7#Design a suitable circuit#Ex13_7.sce#3311/CH13/EX13.7/Ex13_7.sce#S##113437 +13#Protection and Cooling of Power Switching Devices#13.6#Design a suitable selenium voltage protection circuit and compute energy dissipated per plate#Ex13_6.sce#3311/CH13/EX13.6/Ex13_6.sce#S##113436 +13#Protection and Cooling of Power Switching Devices#13.5#Determine the snubber component values for critical damping value of R and power loss#Ex13_5.sce#3311/CH13/EX13.5/Ex13_5.sce#S##113435 +13#Protection and Cooling of Power Switching Devices#13.4#Compute initial capacitor voltage magnetizing current and capacitor value to limit the transient capacitor voltage#Ex13_4.sce#3311/CH13/EX13.4/Ex13_4.sce#S##113434 +13#Protection and Cooling of Power Switching Devices#13.3#Design a snubber circuit#Ex13_3.sce#3311/CH13/EX13.3/Ex13_3.sce#S##113433 +13#Protection and Cooling of Power Switching Devices#13.2#Compute the required parameters snubber circuit#Ex13_2.sce#3311/CH13/EX13.2/Ex13_2.sce#S##113432 +13#Protection and Cooling of Power Switching Devices#13.18#Determine the maximum power disspation#Ex13_18.sce#3311/CH13/EX13.18/Ex13_18.sce#S##113548 +13#Protection and Cooling of Power Switching Devices#13.17#Determine the thermal resistance of the heat sink#Ex13_17.sce#3311/CH13/EX13.17/Ex13_17.sce#S##113547 +13#Protection and Cooling of Power Switching Devices#13.16#Determine the heat sink required#Ex13_16.sce#3311/CH13/EX13.16/Ex13_16.sce#S##113546 +13#Protection and Cooling of Power Switching Devices#13.15#Plot instantaneous junction temperature#Ex13_15.sce#3311/CH13/EX13.15/Ex13_15.sce#S##113545 +13#Protection and Cooling of Power Switching Devices#13.14#Determine total average power loss and percentage increase in deivce rating#Ex13_14.sce#3311/CH13/EX13.14/Ex13_14.sce#S##113544 +13#Protection and Cooling of Power Switching Devices#13.13#Determine junction temperature#Ex13_13.sce#3311/CH13/EX13.13/Ex13_13.sce#S##113543 +13#Protection and Cooling of Power Switching Devices#13.12#Determine the value of thermal resistance heat sink and temperature at base#Ex13_12.sce#3311/CH13/EX13.12/Ex13_12.sce#S##113542 +13#Protection and Cooling of Power Switching Devices#13.11#Compute the values of RF filter components#Ex13_11.sce#3311/CH13/EX13.11/Ex13_11.sce#S##113441 +13#Protection and Cooling of Power Switching Devices#13.10#What is the minimum value of load inductance and what will be the new value of L#Ex13_10.sce#3311/CH13/EX13.10/Ex13_10.sce#S##113440 +13#Protection and Cooling of Power Switching Devices#13.1#Compute the values of di dt inductor and the snubber circuit component Rs and Cs#Ex13_1.sce#3311/CH13/EX13.1/Ex13_1.sce#S##113431 +12#Resonant Convertors#12.7#Design a ZVS three level PWM convertor#Ex12_7.sce#3311/CH12/EX12.7/Ex12_7.sce#S##113430 +12#Resonant Convertors#12.6#Determine values of resonant components Lr and Cr peak voltage rating of the resonant capacitor and charging and discharging period of capcaitor#Ex12_6.sce#3311/CH12/EX12.6/Ex12_6.sce#S##113429 +12#Resonant Convertors#12.5#Determine values of resonant components Lr and Cr peak switching current peak voltage rating of the resonant capacitor#Ex12_5.sce#3311/CH12/EX12.5/Ex12_5.sce#S##113428 +12#Resonant Convertors#12.4#Design E class resonant invertor#Ex12_4.sce#3311/CH12/EX12.4/Ex12_4.sce#S##113427 +12#Resonant Convertors#12.3#Determine resonant frequency maximum operating frequency Peak thyristor current average thyristor current rms thyristor current rms load current and average supply current#Ex12_3.sce#3311/CH12/EX12.3/Ex12_3.sce#S##113426 +12#Resonant Convertors#12.2#Determine resonant frequency maximum operating frequency Peak thyristor current average thyristor current rms thyristor current rms load current and average supply current#Ex12_2.sce#3311/CH12/EX12.2/Ex12_2.sce#S##113425 +12#Resonant Convertors#12.1#Determine circuit turn off time maximum possible output frequency capacitor voltage rms load current output power and average and rms SCR currents#Ex12_1.sce#3311/CH12/EX12.1/Ex12_1.sce#S##113424 +11#A C Regulators#11.7#Determine required ratings of triacs and thyrstors#Ex11_7.sce#3311/CH11/EX11.7/Ex11_7.sce#S##113541 +11#A C Regulators#11.6#Determine rms output phase voltage input power factor#Ex11_6.sce#3311/CH11/EX11.6/Ex11_6.sce#S##113540 +11#A C Regulators#11.5#Determine rms current of tyristor T1 and T2 rms current of Thyristor T3 and T4 and input power factor#Ex11_5.sce#3311/CH11/EX11.5/Ex11_5.sce#S##113539 +11#A C Regulators#11.4#Plot a curve of load power against firing delay angle and determine required thyristor rating#Ex11_4.sce#3311/CH11/EX11.4/Ex11_4.sce#S##113538 +11#A C Regulators#11.3#Determine various parameters#Ex11_3.sce#3311/CH11/EX11.3/Ex11_3.sce#S##113537 +11#A C Regulators#11.2#Determine rms value of output voltage input power factor and average input current#Ex11_2.sce#3311/CH11/EX11.2/Ex11_2.sce#S##113536 +11#A C Regulators#11.1#Determine various parameters#Ex11_1.sce#3311/CH11/EX11.1/Ex11_1.sce#S##113535 +10#Cycloconverters#10.5#Determine the input current to the convertors#Ex10_5.sce#3311/CH10/EX10.5/Ex10_5.sce#S##113423 +10#Cycloconverters#10.4#Determine the value of fundamental rms output voltage rms output current and output power#Ex10_4.sce#3311/CH10/EX10.4/Ex10_4.sce#S##113422 +10#Cycloconverters#10.3#Determine the value of fundamental rms output voltage rms output current and output power#Ex10_3.sce#3311/CH10/EX10.3/Ex10_3.sce#S##113421 +10#Cycloconverters#10.2#Estimate peak and rms value of load voltage#Ex10_2.sce#3311/CH10/EX10.2/Ex10_2.sce#S##113420 +10#Cycloconverters#10.1#Determine required supply voltage thyristor rating and power factor of the supply current#Ex10_1.sce#3311/CH10/EX10.1/Ex10_1.sce#S##113419 +9#Inverters#9.9#What should be te amplitude of modulation index#Ex9_9.sce#3311/CH9/EX9.9/Ex9_9.sce#S##113403 +9#Inverters#9.8#Compute Total rms output voltage fundamental output voltage DF and HF and gain of the invertor#Ex9_8.sce#3311/CH9/EX9.8/Ex9_8.sce#S##113402 +9#Inverters#9.7#Compute DC and switch voltage ratings#Ex9_7.sce#3311/CH9/EX9.7/Ex9_7.sce#S##113401 +9#Inverters#9.6#Determine carrier ratio and the number of pulses per cycle Fundamental output voltage DF and HF of the output voltage and the order of first five significant harmonics#Ex9_6.sce#3311/CH9/EX9.6/Ex9_6.sce#S##113400 +9#Inverters#9.5#Determine transistor ratings THD DF and HF and DF of the lowest order harmonic#Ex9_5.sce#3311/CH9/EX9.5/Ex9_5.sce#S##113399 +9#Inverters#9.4#Determine IGBT ratings THD DF and HF and DF of the lowest order harmonic#Ex9_4.sce#3311/CH9/EX9.4/Ex9_4.sce#S##113398 +9#Inverters#9.3#Determine rms load current at fundamental frequency rms value of load current power output and average supply current#Ex9_3.sce#3311/CH9/EX9.3/Ex9_3.sce#S##113397 +9#Inverters#9.29#Design a 400 Hz parallel invertor#Ex9_29.sce#3311/CH9/EX9.29/Ex9_29.sce#S##113418 +9#Inverters#9.28#Design an OTT filter#Ex9_28.sce#3311/CH9/EX9.28/Ex9_28.sce#S##113417 +9#Inverters#9.27#Determine commutating capacitor load current Fcritical and Rcritical#Ex9_27.sce#3311/CH9/EX9.27/Ex9_27.sce#S##113416 +9#Inverters#9.26#Find the rms load current load power and thyristor ratings#Ex9_26.sce#3311/CH9/EX9.26/Ex9_26.sce#S##113415 +9#Inverters#9.25#Obtain the value of commutating components and the value of resistance#Ex9_25.sce#3311/CH9/EX9.25/Ex9_25.sce#S##113414 +9#Inverters#9.24#Obtain the value of commutating components L and C#Ex9_24.sce#3311/CH9/EX9.24/Ex9_24.sce#S##113413 +9#Inverters#9.23#What value of C should the load have in order to obtain load commutation of SCR#Ex9_23.sce#3311/CH9/EX9.23/Ex9_23.sce#S##113412 +9#Inverters#9.22#Calculate rms output voltage at fundamental frequency output power average and peak current and peak reverse blocking voltage#Ex9_22.sce#3311/CH9/EX9.22/Ex9_22.sce#S##113411 +9#Inverters#9.21#Calculate rms output voltage at fundamental frequency output power average and peak current and peak reverse blocking voltage#Ex9_21.sce#3311/CH9/EX9.21/Ex9_21.sce#S##113410 +9#Inverters#9.20#Design a parallel invertor#Ex9_20.sce#3311/CH9/EX9.20/Ex9_20.sce#S##113409 +9#Inverters#9.2#Compute fundamental output voltage first five harmonics of the output voltage rms value by direct integration and harmonic summation method output rms and fundamental power and transistor switch ratings#Ex9_2.sce#3311/CH9/EX9.2/Ex9_2.sce#S##113396 +9#Inverters#9.19#Design a self commutated invertor circuit and compute output power#Ex9_19.sce#3311/CH9/EX9.19/Ex9_19.sce#S##113408 +9#Inverters#9.18#Design a series invertor circuit#Ex9_18.sce#3311/CH9/EX9.18/Ex9_18.sce#S##113407 +9#Inverters#9.17#Determine dc voltage rms line and phase voltages and Device voltage ratings#Ex9_17.sce#3311/CH9/EX9.17/Ex9_17.sce#S##113406 +9#Inverters#9.14#Determine various parameters#Ex9_14.sce#3311/CH9/EX9.14/Ex9_14.sce#S##113534 +9#Inverters#9.12#Determine rms value of the output line and phase voltages rms value of the fundamental component of the line and phase voltage#Ex9_12.sce#3311/CH9/EX9.12/Ex9_12.sce#S##113405 +9#Inverters#9.10#Determine fundamental output voltage and first five dominant harmonics#Ex9_10.sce#3311/CH9/EX9.10/Ex9_10.sce#S##113404 +9#Inverters#9.1#Compute rms value of output voltage fundamental component of the output voltage waveform first five harmonics of the output voltage fundamental power consumed rms power consumed rms value by harmonic summation method#Ex9_1.sce#3311/CH9/EX9.1/Ex9_1.sce#S##113395 +8#Choppers#8.9#Find the chopping frequency#Ex8_9.sce#3311/CH8/EX8.9/Ex8_9.sce#S##113375 +8#Choppers#8.8#Calculate the mean values of load voltage and current#Ex8_8.sce#3311/CH8/EX8.8/Ex8_8.sce#S##113374 +8#Choppers#8.7#Compute following quantities#Ex8_7.sce#3311/CH8/EX8.7/Ex8_7.sce#S##113373 +8#Choppers#8.6#Calculate limit of current pulsation chopping frequency duty cycle and output voltage#Ex8_6.sce#3311/CH8/EX8.6/Ex8_6.sce#S##113372 +8#Choppers#8.5#Calculate the conduction and blocking period of the thyristor#Ex8_5.sce#3311/CH8/EX8.5/Ex8_5.sce#S##113371 +8#Choppers#8.4#Calculate the required pulse width#Ex8_4.sce#3311/CH8/EX8.4/Ex8_4.sce#S##113370 +8#Choppers#8.3#Determine average and rms output voltage chopper efficiency and effective input resistance#Ex8_3.sce#3311/CH8/EX8.3/Ex8_3.sce#S##113369 +8#Choppers#8.28#Compute average output voltage average input current peak to peak current of the inductors peak to peak output ripple voltages and peak current of the device#Ex8_28.sce#3311/CH8/EX8.28/Ex8_28.sce#S##113394 +8#Choppers#8.27#Determine range of duty cycle peak to peak choke ripple current and average supply current#Ex8_27.sce#3311/CH8/EX8.27/Ex8_27.sce#S##113393 +8#Choppers#8.26#Compute average output voltage peak to peak output ripple voltage peak to peak current of the inductor and peak current of the device#Ex8_26.sce#3311/CH8/EX8.26/Ex8_26.sce#S##113392 +8#Choppers#8.25#Determine duty cycle ripple and peak current of inductor ripple voltage#Ex8_25.sce#3311/CH8/EX8.25/Ex8_25.sce#S##113391 +8#Choppers#8.24#Determine maximum ON period of MOSFET Battery drain current and the value of choke required#Ex8_24.sce#3311/CH8/EX8.24/Ex8_24.sce#S##113390 +8#Choppers#8.23#Find duty cycle filter inductance and filter capacitance#Ex8_23.sce#3311/CH8/EX8.23/Ex8_23.sce#S##113389 +8#Choppers#8.22#Design the jones chopper#Ex8_22.sce#3311/CH8/EX8.22/Ex8_22.sce#S##113388 +8#Choppers#8.21#Compute the inductance steady state speed and current swing#Ex8_21.sce#3311/CH8/EX8.21/Ex8_21.sce#S##113387 +8#Choppers#8.20#Compute the value of commutating capacitance and transformer inductances#Ex8_20.sce#3311/CH8/EX8.20/Ex8_20.sce#S##113386 +8#Choppers#8.19#Compute the value of commutating capacitance average output voltage circuit off time total commutation interval#Ex8_19.sce#3311/CH8/EX8.19/Ex8_19.sce#S##113385 +8#Choppers#8.18#Compute the value of commutating capacitor and inductor Maximum capacitor voltage and peak commutating current#Ex8_18.sce#3311/CH8/EX8.18/Ex8_18.sce#S##113384 +8#Choppers#8.17#Compute the value of commutating capacitor and inductor#Ex8_17.sce#3311/CH8/EX8.17/Ex8_17.sce#S##113383 +8#Choppers#8.16#Determine duty cycle of chopper#Ex8_16.sce#3311/CH8/EX8.16/Ex8_16.sce#S##113382 +8#Choppers#8.15#Determine duty cycle for motoring regenerating mode and to achieve regenerating mode power returned and switching frequency#Ex8_15.sce#3311/CH8/EX8.15/Ex8_15.sce#S##113381 +8#Choppers#8.14#Determine duty cycle for motoring regenerating mode and to achieve regenerating mode and poweer returned#Ex8_14.sce#3311/CH8/EX8.14/Ex8_14.sce#S##113380 +8#Choppers#8.13#Determine average and rms output voltage and form and ripple factor#Ex8_13.sce#3311/CH8/EX8.13/Ex8_13.sce#S##113379 +8#Choppers#8.12#Determine the ON time of the chopper#Ex8_12.sce#3311/CH8/EX8.12/Ex8_12.sce#S##113378 +8#Choppers#8.11#Compute the current in the motor#Ex8_11.sce#3311/CH8/EX8.11/Ex8_11.sce#S##113377 +8#Choppers#8.10#Find the on period average load current magnitude of ripple current and its rms value#Ex8_10.sce#3311/CH8/EX8.10/Ex8_10.sce#S##113376 +8#Choppers#8.1#Determine time ratio of the chopper#Ex8_1.sce#3311/CH8/EX8.1/Ex8_1.sce#S##113368 +7#Dual Converters#7.2#Design dual convertor#Ex7_2.sce#3311/CH7/EX7.2/Ex7_2.sce#S##113367 +7#Dual Converters#7.1#Compute the peak value of circulating current#Ex7_1.sce#3311/CH7/EX7.1/Ex7_1.sce#S##113366 +6#Phase Controlled Convertors#6.9#Find average output current and power delivered#Ex6_9.sce#3311/CH6/EX6.9/Ex6_9.sce#S##113344 +6#Phase Controlled Convertors#6.8#Determine firing angle output current and thyristor current#Ex6_8.sce#3311/CH6/EX6.8/Ex6_8.sce#S##113343 +6#Phase Controlled Convertors#6.7#Determine the firing angle#Ex6_7.sce#3311/CH6/EX6.7/Ex6_7.sce#S##113342 +6#Phase Controlled Convertors#6.6#Determine variuos parameters#Ex6_6.sce#3311/CH6/EX6.6/Ex6_6.sce#S##114455 +6#Phase Controlled Convertors#6.5#Determine design details#Ex6_5.sce#3311/CH6/EX6.5/Ex6_5.sce#S##113340 +6#Phase Controlled Convertors#6.4#Determine average current power supplied and dissipated and power factor#Ex6_4.sce#3311/CH6/EX6.4/Ex6_4.sce#S##113339 +6#Phase Controlled Convertors#6.36#Calculate various parameters#Ex6_36.sce#3311/CH6/EX6.36/Ex6_36.sce#S##113365 +6#Phase Controlled Convertors#6.35#Calculate reducation in dc output voltage and overlap angle#Ex6_35.sce#3311/CH6/EX6.35/Ex6_35.sce#S##113364 +6#Phase Controlled Convertors#6.34#Calculate delay angle power delivered and fundamental reactive power#Ex6_34.sce#3311/CH6/EX6.34/Ex6_34.sce#S##113363 +6#Phase Controlled Convertors#6.33#Design the 3 phase bridge convertor#Ex6_33.sce#3311/CH6/EX6.33/Ex6_33.sce#S##113362 +6#Phase Controlled Convertors#6.32#Compute the firing angle and overlap angle#Ex6_32.sce#3311/CH6/EX6.32/Ex6_32.sce#S##113361 +6#Phase Controlled Convertors#6.30#Compute the average generator voltage#Ex6_30.sce#3311/CH6/EX6.30/Ex6_30.sce#S##113360 +6#Phase Controlled Convertors#6.3#Determine various parameters#Ex6_3.sce#3311/CH6/EX6.3/Ex6_3.sce#S##113338 +6#Phase Controlled Convertors#6.29#Compute the average load voltage#Ex6_29.sce#3311/CH6/EX6.29/Ex6_29.sce#S##113359 +6#Phase Controlled Convertors#6.28#Compute source inductance load resistance and overlap angle#Ex6_28.sce#3311/CH6/EX6.28/Ex6_28.sce#S##113358 +6#Phase Controlled Convertors#6.27#Find the mean voltage at the load#Ex6_27.sce#3311/CH6/EX6.27/Ex6_27.sce#S##113357 +6#Phase Controlled Convertors#6.26#Determine overlap angles#Ex6_26.sce#3311/CH6/EX6.26/Ex6_26.sce#S##113356 +6#Phase Controlled Convertors#6.25#Determine DPF DF HF and PF#Ex6_25.sce#3311/CH6/EX6.25/Ex6_25.sce#S##113355 +6#Phase Controlled Convertors#6.24#Determine various parameters#Ex6_24.sce#3311/CH6/EX6.24/Ex6_24.sce#S##113354 +6#Phase Controlled Convertors#6.23#Plot average voltage and load voltage#Ex6_23.sce#3311/CH6/EX6.23/Ex6_23.sce#S##113533 +6#Phase Controlled Convertors#6.22#Determine the minimum width of gate pulse#Ex6_22.sce#3311/CH6/EX6.22/Ex6_22.sce#S##113353 +6#Phase Controlled Convertors#6.21#Determine average voltage#Ex6_21.sce#3311/CH6/EX6.21/Ex6_21.sce#S##113532 +6#Phase Controlled Convertors#6.20#Determine fundamental and various harmonics for various angle#Ex6_20.sce#3311/CH6/EX6.20/Ex6_20.sce#S##113531 +6#Phase Controlled Convertors#6.2#Determine the heater power#Ex6_2.sce#3311/CH6/EX6.2/Ex6_2.sce#S##113337 +6#Phase Controlled Convertors#6.19#Find out SCR rating#Ex6_19.sce#3311/CH6/EX6.19/Ex6_19.sce#S##113352 +6#Phase Controlled Convertors#6.17#Calculate firing angle and supply power factor#Ex6_17.sce#3311/CH6/EX6.17/Ex6_17.sce#S##113351 +6#Phase Controlled Convertors#6.15#Determine various parameters#Ex6_15.sce#3311/CH6/EX6.15/Ex6_15.sce#S##113350 +6#Phase Controlled Convertors#6.14#Calculate thyristor current ratings#Ex6_14.sce#3311/CH6/EX6.14/Ex6_14.sce#S##113349 +6#Phase Controlled Convertors#6.13#Determine average load voltage current PIV and power dssipation#Ex6_13.sce#3311/CH6/EX6.13/Ex6_13.sce#S##113348 +6#Phase Controlled Convertors#6.12#Determine average output voltage#Ex6_12.sce#3311/CH6/EX6.12/Ex6_12.sce#S##113347 +6#Phase Controlled Convertors#6.11#Find displacement factor harmonic factor and input power factor#Ex6_11.sce#3311/CH6/EX6.11/Ex6_11.sce#S##113346 +6#Phase Controlled Convertors#6.10#Determine various parameters#Ex6_10.sce#3311/CH6/EX6.10/Ex6_10.sce#S##113345 +5#Power Semiconductor Devices#5.8#Determine avg load current and power losses#Ex5_8.sce#3311/CH5/EX5.8/Ex5_8.sce#S##113336 +5#Power Semiconductor Devices#5.7#Calculate the total power loss#Ex5_7.sce#3311/CH5/EX5.7/Ex5_7.sce#S##113335 +5#Power Semiconductor Devices#5.6#Determine power loss#Ex5_6.sce#3311/CH5/EX5.6/Ex5_6.sce#S##113334 +5#Power Semiconductor Devices#5.5#Calculate the rise time of driving waveform#Ex5_5.sce#3311/CH5/EX5.5/Ex5_5.sce#S##113333 +5#Power Semiconductor Devices#5.4#Determine the power dissipated by each MOSFET#Ex5_4.sce#3311/CH5/EX5.4/Ex5_4.sce#S##113332 +5#Power Semiconductor Devices#5.3#Determine series resistance and safe highest frequency#Ex5_3.sce#3311/CH5/EX5.3/Ex5_3.sce#S##113331 +5#Power Semiconductor Devices#5.2#Compute the drain current and differnces in current sharing#Ex5_2.sce#3311/CH5/EX5.2/Ex5_2.sce#S##113330 +5#Power Semiconductor Devices#5.1#What will be the maximum and minimum firing angle#Ex5_1.sce#3311/CH5/EX5.1/Ex5_1.sce#S##113329 +4#Series and Parallel Operation of Thyristors#4.5#Determine the current taken by each SCR and value of equal resistors#Ex4_5.sce#3311/CH4/EX4.5/Ex4_5.sce#S##113444 +4#Series and Parallel Operation of Thyristors#4.4#Calculate the number of thyristors#Ex4_4.sce#3311/CH4/EX4.4/Ex4_4.sce#S##113328 +4#Series and Parallel Operation of Thyristors#4.3#Calculate the number of thyristors and value of resistance and capacitance#Ex4_3.sce#3311/CH4/EX4.3/Ex4_3.sce#S##113327 +4#Series and Parallel Operation of Thyristors#4.2#Calculate the series resistance#Ex4_2.sce#3311/CH4/EX4.2/Ex4_2.sce#S##113326 +4#Series and Parallel Operation of Thyristors#4.1#Calculate the value of R and C#Ex4_1.sce#3311/CH4/EX4.1/Ex4_1.sce#S##113325 +3#Gate Triggering Circuits#3.5#Design free running UJT relaxation oscillator#Ex3_5.sce#3311/CH3/EX3.5/Ex3_5.sce#S##113324 +3#Gate Triggering Circuits#3.3#Design UJT relaxation oscillator#Ex3_3.sce#3311/CH3/EX3.3/Ex3_3.sce#S##113323 +3#Gate Triggering Circuits#3.2#Determine the value of Vee#Ex3_2.sce#3311/CH3/EX3.2/Ex3_2.sce#S##113322 +3#Gate Triggering Circuits#3.1#Determine the trigger angle#Ex3_1.sce#3311/CH3/EX3.1/Ex3_1.sce#S##113321 +2#Thyristors Principles and Characteristics#2.9#Calculate the value of commutating capacitance#Ex2_9.sce#3311/CH2/EX2.9/Ex2_9.sce#S##113317 +2#Thyristors Principles and Characteristics#2.8#Calculate the resistance gate power dissipation and maximum triggering frequency#Ex2_8.sce#3311/CH2/EX2.8/Ex2_8.sce#S##113316 +2#Thyristors Principles and Characteristics#2.7# Compute the peak inverse voltage#Ex2_7.sce#3311/CH2/EX2.7/Ex2_7.sce#S##113315 +2#Thyristors Principles and Characteristics#2.6#Calculate the mean power loss#Ex2_6.sce#3311/CH2/EX2.6/Ex2_6.sce#S##113314 +2#Thyristors Principles and Characteristics#2.5#Calculate the required gate resistance source#Ex2_5.sce#3311/CH2/EX2.5/Ex2_5.sce#S##113313 +2#Thyristors Principles and Characteristics#2.4#Find the value of series resistor and average power#Ex2_4.sce#3311/CH2/EX2.4/Ex2_4.sce#S##113443 +2#Thyristors Principles and Characteristics#2.3#Compute average power loss#Ex2_3.sce#3311/CH2/EX2.3/Ex2_3.sce#S##113312 +2#Thyristors Principles and Characteristics#2.2#Obtain the minimum gating pulse#Ex2_2.sce#3311/CH2/EX2.2/Ex2_2.sce#S##113311 +2#Thyristors Principles and Characteristics#2.12#Calculate one cycle surge current rating#Ex2_12.sce#3311/CH2/EX2.12/Ex2_12.sce#S##113320 +2#Thyristors Principles and Characteristics#2.11#Calculate shortest fault clearance time#Ex2_11.sce#3311/CH2/EX2.11/Ex2_11.sce#S##113319 +2#Thyristors Principles and Characteristics#2.10#Compute the value of commutating capacitance and inductance#Ex2_10.sce#3311/CH2/EX2.10/Ex2_10.sce#S##113318 +2#Thyristors Principles and Characteristics#2.1#Will the thyristor get fired#Ex2_1.sce#3311/CH2/EX2.1/Ex2_1.sce#S##113442 diff --git a/latex/tmp_3369_contributor.txt b/latex/tmp_3369_contributor.txt index 63da16830..69740b9fb 100644 --- a/latex/tmp_3369_contributor.txt +++ b/latex/tmp_3369_contributor.txt @@ -1 +1 @@ -Divya Nayak#Project Associate#Civil Engineering#Indian Institute of Technology#None#Bhavani Jalkrish +Divya Nayak#Project Associate#Civil Engineering#Indian Institute of Technology, bombay#None#Bhavani Jalkrish diff --git a/latex/tmp_3411_data.txt b/latex/tmp_3411_data.txt index e69de29bb..ec483cb13 100644 --- a/latex/tmp_3411_data.txt +++ b/latex/tmp_3411_data.txt @@ -0,0 +1,162 @@ +15#SEMICONDUCTORS#7.5.u2#To find the hall voltage#Ex7_5_u2.txt#3411/CH15/EX7.5.u2/Ex7_5_u2.txt#R##119141 +15#SEMICONDUCTORS#7.5.u2#To find the hall voltage#Ex7_5_u2.sce#3411/CH15/EX7.5.u2/Ex7_5_u2.sce#S##119140 +15#SEMICONDUCTORS#7.4.u2#To find the charge in the minority carrier concentration#Ex7_4_u2.txt#3411/CH15/EX7.4.u2/Ex7_4_u2.txt#R##119139 +15#SEMICONDUCTORS#7.4.u2#To find the charge in the minority carrier concentration#Ex7_4_u2.sce#3411/CH15/EX7.4.u2/Ex7_4_u2.sce#S##119138 +15#SEMICONDUCTORS#7.3.u2#To find the drift velocity and diffusivity#Ex7_3_u2.txt#3411/CH15/EX7.3.u2/Ex7_3_u2.txt#R##119137 +15#SEMICONDUCTORS#7.3.u2#To find the drift velocity and diffusivity#Ex7_3_u2.sce#3411/CH15/EX7.3.u2/Ex7_3_u2.sce#S##119136 +15#SEMICONDUCTORS#7.2.u2#To calculate the diffusion current density#Ex7_2_u2.txt#3411/CH15/EX7.2.u2/Ex7_2_u2.txt#R##119135 +15#SEMICONDUCTORS#7.2.u2#To calculate the diffusion current density#Ex7_2_u2.sce#3411/CH15/EX7.2.u2/Ex7_2_u2.sce#S##119134 +15#SEMICONDUCTORS#7.1.u2#To calculate the mean free path and mean free time#Ex7_1_u2.sce#3411/CH15/EX7.1.u2/Ex7_1_u2.sce#S##119132 +15#SEMICONDUCTORS#7.1.u2#To calculate the mean free path and mean free time#Ex7_1_u2.txt#3411/CH15/EX7.1.u2/Ex7_1_u2.txt#R##119133 +14#DIELECTRIC PROPERTIES#6.2.u2#To calculate the atomic polarizability#Ex6_2_u2.txt#3411/CH14/EX6.2.u2/Ex6_2_u2.txt#R##119131 +14#DIELECTRIC PROPERTIES#6.2.u2#To calculate the atomic polarizability#Ex6_2_u2.sce#3411/CH14/EX6.2.u2/Ex6_2_u2.sce#S##119130 +14#DIELECTRIC PROPERTIES#6.1.u2#To calculate the dielectric constant#Ex6_1_u2.sce#3411/CH14/EX6.1.u2/Ex6_1_u2.sce#S##119128 +14#DIELECTRIC PROPERTIES#6.1.u2#To calculate the dielectric constant#Ex6_1_u2.txt#3411/CH14/EX6.1.u2/Ex6_1_u2.txt#R##119129 +13#SUPERCONDUCTIVITY#5.4.u2#To calculate its critical temprature#Ex5_4_u2.sce#3411/CH13/EX5.4.u2/Ex5_4_u2.sce#S##118048 +13#SUPERCONDUCTIVITY#5.4.u2#To calculate its critical temprature#Ex5_4_u2.txt#3411/CH13/EX5.4.u2/Ex5_4_u2.txt#R##118049 +13#SUPERCONDUCTIVITY#5.3.u2#To calculate the transition temprature and critical field#Ex5_3_u2.sce#3411/CH13/EX5.3.u2/Ex5_3_u2.sce#S##119126 +13#SUPERCONDUCTIVITY#5.3.u2#To calculate the transition temprature and critical field#Ex5_3_u2.txt#3411/CH13/EX5.3.u2/Ex5_3_u2.txt#R##119127 +13#SUPERCONDUCTIVITY#5.2.u2#To calculate the maximum current density#Ex5_2_u2.sce#3411/CH13/EX5.2.u2/Ex5_2_u2.sce#S##119124 +13#SUPERCONDUCTIVITY#5.2.u2#To calculate the maximum current density#Ex5_2_u2.txt#3411/CH13/EX5.2.u2/Ex5_2_u2.txt#R##119125 +13#SUPERCONDUCTIVITY#5.1.u2#To find the temprature where would be the critical field#Ex5_1_u2.txt#3411/CH13/EX5.1.u2/Ex5_1_u2.txt#R##118041 +13#SUPERCONDUCTIVITY#5.1.u2#To find the temprature where would be the critical field#Ex5_1_u2.sce#3411/CH13/EX5.1.u2/Ex5_1_u2.sce#S##118040 +10#ELECTRON THEORY OF METALS#2.9.u2#To calculate the fermi energy and fermi factor#Ex2_9_u2.txt#3411/CH10/EX2.9.u2/Ex2_9_u2.txt#R##119123 +10#ELECTRON THEORY OF METALS#2.9.u2#To calculate the fermi energy and fermi factor#Ex2_9_u2.sce#3411/CH10/EX2.9.u2/Ex2_9_u2.sce#S##119122 +10#ELECTRON THEORY OF METALS#2.8.u2#TO Find the energy at which probability of occupancy is point9 and density of states and the population density#Ex2_8_u2.sce#3411/CH10/EX2.8.u2/Ex2_8_u2.sce#S##119120 +10#ELECTRON THEORY OF METALS#2.8.u2#TO Find the energy at which probability of occupancy is point9 and density of states and the population density#Ex2_8_u2.txt#3411/CH10/EX2.8.u2/Ex2_8_u2.txt#R##119121 +10#ELECTRON THEORY OF METALS#2.7.u2#To calculate the probability for a state #Ex2_7_u2.txt#3411/CH10/EX2.7.u2/Ex2_7_u2.txt#R##119119 +10#ELECTRON THEORY OF METALS#2.7.u2#To calculate the probability for a state #Ex2_7_u2.sce#3411/CH10/EX2.7.u2/Ex2_7_u2.sce#S##119118 +10#ELECTRON THEORY OF METALS#2.6.u2#To calculate the fermi energy level#Ex2_6_u2.sce#3411/CH10/EX2.6.u2/Ex2_6_u2.sce#S##119116 +10#ELECTRON THEORY OF METALS#2.6.u2#To calculate the fermi energy level#Ex2_6_u2.txt#3411/CH10/EX2.6.u2/Ex2_6_u2.txt#R##119117 +10#ELECTRON THEORY OF METALS#2.5.u2#To calculate the no of states for conduction electrons and the average energy interval #Ex2_5_u2.txt#3411/CH10/EX2.5.u2/Ex2_5_u2.txt#R##119115 +10#ELECTRON THEORY OF METALS#2.5.u2#To calculate the no of states for conduction electrons and the average energy interval #Ex2_5_u2.sce#3411/CH10/EX2.5.u2/Ex2_5_u2.sce#S##119114 +10#ELECTRON THEORY OF METALS#2.4.u2#To calculate the current density in each wire and drift speed of electrons #Ex2_4_u2.txt#3411/CH10/EX2.4.u2/Ex2_4_u2.txt#R##119113 +10#ELECTRON THEORY OF METALS#2.4.u2#To calculate the current density in each wire and drift speed of electrons #Ex2_4_u2.sce#3411/CH10/EX2.4.u2/Ex2_4_u2.sce#S##119112 +10#ELECTRON THEORY OF METALS#2.3.u2#To calculate the drift velocity and their mobility#Ex2_3_u2.txt#3411/CH10/EX2.3.u2/Ex2_3_u2.txt#R##119111 +10#ELECTRON THEORY OF METALS#2.3.u2#To calculate the drift velocity and their mobility#Ex2_3_u2.sce#3411/CH10/EX2.3.u2/Ex2_3_u2.sce#S##119110 +10#ELECTRON THEORY OF METALS#2.2.u2#To corresponding mean free path and compare with experimental value#Ex2_2_u2.txt#3411/CH10/EX2.2.u2/Ex2_2_u2.txt#R##119109 +10#ELECTRON THEORY OF METALS#2.2.u2#To corresponding mean free path and compare with experimental value#Ex2_2_u2.sce#3411/CH10/EX2.2.u2/Ex2_2_u2.sce#S##119108 +10#ELECTRON THEORY OF METALS#2.1.u2#To calculate the density of electrons and mobility of electrons in silver#Ex2_1_u2.txt#3411/CH10/EX2.1.u2/Ex2_1_u2.txt#R##119107 +10#ELECTRON THEORY OF METALS#2.1.u2#To calculate the density of electrons and mobility of electrons in silver#Ex2_1_u2.sce#3411/CH10/EX2.1.u2/Ex2_1_u2.sce#S##119106 +9#QUANTUM MECHANICS AND QUANTUM COMPUTING#1.4.u2#To find out the no of states that can accomodate#Ex1_4_u2.txt#3411/CH9/EX1.4.u2/Ex1_4_u2.txt#R##119105 +9#QUANTUM MECHANICS AND QUANTUM COMPUTING#1.4.u2#To find out the no of states that can accomodate#Ex1_4_u2.sce#3411/CH9/EX1.4.u2/Ex1_4_u2.sce#S##119104 +9#QUANTUM MECHANICS AND QUANTUM COMPUTING#1.3.u2#To calculate the uncertenity in momentum#Ex1_3_u2.txt#3411/CH9/EX1.3.u2/Ex1_3_u2.txt#R##119103 +9#QUANTUM MECHANICS AND QUANTUM COMPUTING#1.3.u2#To calculate the uncertenity in momentum#Ex1_3_u2.sce#3411/CH9/EX1.3.u2/Ex1_3_u2.sce#S##119102 +9#QUANTUM MECHANICS AND QUANTUM COMPUTING#1.2.u2#To calculate the wavelength of the radiation emitted#Ex1_2_u2.txt#3411/CH9/EX1.2.u2/Ex1_2_u2.txt#R##119101 +9#QUANTUM MECHANICS AND QUANTUM COMPUTING#1.2.u2#To calculate the wavelength of the radiation emitted#Ex1_2_u2.sce#3411/CH9/EX1.2.u2/Ex1_2_u2.sce#S##119100 +9#QUANTUM MECHANICS AND QUANTUM COMPUTING#1.1.u2#To calculate energy momentum and the probability of of finding the particle#Ex1_1_u2.txt#3411/CH9/EX1.1.u2/Ex1_1_u2.txt#R##119099 +9#QUANTUM MECHANICS AND QUANTUM COMPUTING#1.1.u2#To calculate energy momentum and the probability of of finding the particle#Ex1_1_u2.sce#3411/CH9/EX1.1.u2/Ex1_1_u2.sce#S##119098 +7#FIBER OPTICS#7.7.u1#To calculate the fiber length#Ex7_7_u1.txt#3411/CH7/EX7.7.u1/Ex7_7_u1.txt#R##117999 +7#FIBER OPTICS#7.7.u1#To calculate the fiber length#Ex7_7_u1.sce#3411/CH7/EX7.7.u1/Ex7_7_u1.sce#S##117998 +7#FIBER OPTICS#7.6.u1#To calculate the numerical aperture acceptance angle critical angle velocity of the light in core and cladding#Ex7_6_u1.txt#3411/CH7/EX7.6.u1/Ex7_6_u1.txt#R##117996 +7#FIBER OPTICS#7.6.u1#To calculate the numerical aperture acceptance angle critical angle velocity of the light in core and cladding#Ex7_6_u1.sce#3411/CH7/EX7.6.u1/Ex7_6_u1.sce#S##117995 +7#FIBER OPTICS#7.5.u1#To find the loss specification of a fiber#Ex7_5_u1.sce#3411/CH7/EX7.5.u1/Ex7_5_u1.sce#S##117992 +7#FIBER OPTICS#7.5.u1#To find the loss specification of a fiber#Ex7_5_u1.txt#3411/CH7/EX7.5.u1/Ex7_5_u1.txt#R##117993 +7#FIBER OPTICS#7.4.u1#To calculate the numerical apperture and angle of acceptance#Ex7_4_u1.sce#3411/CH7/EX7.4.u1/Ex7_4_u1.sce#S##117989 +7#FIBER OPTICS#7.4.u1#To calculate the numerical apperture and angle of acceptance#Ex7_4_u1.txt#3411/CH7/EX7.4.u1/Ex7_4_u1.txt#R##117990 +7#FIBER OPTICS#7.3.u1#To calculate the numerical apperture and angle of acceptance#Ex7_3_u1.sce#3411/CH7/EX7.3.u1/Ex7_3_u1.sce#S##117987 +7#FIBER OPTICS#7.3.u1#To calculate the numerical apperture and angle of acceptance#Ex7_3_u1.txt#3411/CH7/EX7.3.u1/Ex7_3_u1.txt#R##117988 +7#FIBER OPTICS#7.2.u1#To find the fraction of initial intensity#Ex7_2_u1.sce#3411/CH7/EX7.2.u1/Ex7_2_u1.sce#S##119094 +7#FIBER OPTICS#7.2.u1#To find the fraction of initial intensity#Ex7_2_u1.txt#3411/CH7/EX7.2.u1/Ex7_2_u1.txt#R##119095 +7#FIBER OPTICS#7.1.u1#To determine the no of modes propogating in the fiber#Ex7_1_u1.sce#3411/CH7/EX7.1.u1/Ex7_1_u1.sce#S##117982 +7#FIBER OPTICS#7.1.u1#To determine the no of modes propogating in the fiber#Ex7_1_u1.txt#3411/CH7/EX7.1.u1/Ex7_1_u1.txt#R##117983 +6#LASER#6.7.u1#To calculate the no of photons emitted by the ruby laser#Ex6_7_u1.txt#3411/CH6/EX6.7.u1/Ex6_7_u1.txt#R##119093 +6#LASER#6.7.u1#To calculate the no of photons emitted by the ruby laser#Ex6_7_u1.sce#3411/CH6/EX6.7.u1/Ex6_7_u1.sce#S##119092 +6#LASER#6.6.u1#To calculate the ratio of stimulated emission to Spontaneous emission#Ex6_6_u1.txt#3411/CH6/EX6.6.u1/Ex6_6_u1.txt#R##119091 +6#LASER#6.6.u1#To calculate the ratio of stimulated emission to Spontaneous emission#Ex6_6_u1.sce#3411/CH6/EX6.6.u1/Ex6_6_u1.sce#S##119090 +6#LASER#6.5.u1#To find the wavelength of the radiation emitted#Ex6_5_u1.sce#3411/CH6/EX6.5.u1/Ex6_5_u1.sce#S##119088 +6#LASER#6.5.u1#To find the wavelength of the radiation emitted#Ex6_5_u1.txt#3411/CH6/EX6.5.u1/Ex6_5_u1.txt#R##119089 +6#LASER#6.4.u1#To calculate the ratio of populations of two energy levels#Ex6_4_u1.sce#3411/CH6/EX6.4.u1/Ex6_4_u1.sce#S##119086 +6#LASER#6.4.u1#To calculate the ratio of populations of two energy levels#Ex6_4_u1.txt#3411/CH6/EX6.4.u1/Ex6_4_u1.txt#R##119087 +6#LASER#6.3.u1#To calculate the electric field intensity a a point#Ex6_3_u1.sce#3411/CH6/EX6.3.u1/Ex6_3_u1.sce#S##119084 +6#LASER#6.3.u1#To calculate the electric field intensity a a point#Ex6_3_u1.txt#3411/CH6/EX6.3.u1/Ex6_3_u1.txt#R##119085 +6#LASER#6.2.u1#To calculate the Electric field of a bulb#Ex6_2_u1.sce#3411/CH6/EX6.2.u1/Ex6_2_u1.sce#S##119082 +6#LASER#6.2.u1#To calculate the Electric field of a bulb#Ex6_2_u1.txt#3411/CH6/EX6.2.u1/Ex6_2_u1.txt#R##119083 +6#LASER#6.1.u1#To calculate the Electric field of a laser beam#Ex6_1_u1.txt#3411/CH6/EX6.1.u1/Ex6_1_u1.txt#R##119081 +6#LASER#6.1.u1#To calculate the Electric field of a laser beam#Ex6_1_u1.sce#3411/CH6/EX6.1.u1/Ex6_1_u1.sce#S##119080 +5#X RAY DIFFRACTION#5.9.u1#To determine the interplanar spacing#Ex5_9_u1.txt#3411/CH5/EX5.9.u1/Ex5_9_u1.txt#R##119063 +5#X RAY DIFFRACTION#5.9.u1#To determine the interplanar spacing#Ex5_9_u1.sce#3411/CH5/EX5.9.u1/Ex5_9_u1.sce#S##119062 +5#X RAY DIFFRACTION#5.8.u1#To calculate the Bragg angle and the wavelength of X rays#Ex5_8_u1.txt#3411/CH5/EX5.8.u1/Ex5_8_u1.txt#R##117921 +5#X RAY DIFFRACTION#5.8.u1#To calculate the Bragg angle and the wavelength of X rays#Ex5_8_u1.sce#3411/CH5/EX5.8.u1/Ex5_8_u1.sce#S##117920 +5#X RAY DIFFRACTION#5.7.u1#To find the wavelength whenthese planes give rise to maximum density in reflection#Ex5_7_u1.txt#3411/CH5/EX5.7.u1/Ex5_7_u1.txt#R##117918 +5#X RAY DIFFRACTION#5.7.u1#To find the wavelength whenthese planes give rise to maximum density in reflection#Ex5_7_u1.sce#3411/CH5/EX5.7.u1/Ex5_7_u1.sce#S##117917 +5#X RAY DIFFRACTION#5.6.u1#To calculate the interplanar spacing and wavelength#Ex5_6_u1.sce#3411/CH5/EX5.6.u1/Ex5_6_u1.sce#S##117915 +5#X RAY DIFFRACTION#5.6.u1#To calculate the interplanar spacing and wavelength#Ex5_6_u1.txt#3411/CH5/EX5.6.u1/Ex5_6_u1.txt#R##117916 +5#X RAY DIFFRACTION#5.5.u1#To find out the interplanar spacing of the reflecting planes of the crystal#Ex5_5_u1.sce#3411/CH5/EX5.5.u1/Ex5_5_u1.sce#S##117913 +5#X RAY DIFFRACTION#5.5.u1#To find out the interplanar spacing of the reflecting planes of the crystal#Ex5_5_u1.txt#3411/CH5/EX5.5.u1/Ex5_5_u1.txt#R##117914 +5#X RAY DIFFRACTION#5.4.u1#To calculate the inter planar distance#Ex5_4_u1.txt#3411/CH5/EX5.4.u1/Ex5_4_u1.txt#R##117912 +5#X RAY DIFFRACTION#5.4.u1#To calculate the inter planar distance#Ex5_4_u1.sce#3411/CH5/EX5.4.u1/Ex5_4_u1.sce#S##117911 +5#X RAY DIFFRACTION#5.3.u1#To find the intercepts along the Y and Z axes#Ex5_3_u1.sce#3411/CH5/EX5.3.u1/Ex5_3_u1.sce#S##117909 +5#X RAY DIFFRACTION#5.3.u1#To find the intercepts along the Y and Z axes#Ex5_3_u1.txt#3411/CH5/EX5.3.u1/Ex5_3_u1.txt#R##117910 +5#X RAY DIFFRACTION#5.2.u1#To determine the miller indices of the plane#Ex5_2_u1.txt#3411/CH5/EX5.2.u1/Ex5_2_u1.txt#R##117908 +5#X RAY DIFFRACTION#5.2.u1#To determine the miller indices of the plane#Ex5_2_u1.sce#3411/CH5/EX5.2.u1/Ex5_2_u1.sce#S##117907 +5#X RAY DIFFRACTION#5.18.u1#To find out the planes which gives reflection #Ex5_18_u1.sce#3411/CH5/EX5.18.u1/Ex5_18_u1.sce#S##117944 +5#X RAY DIFFRACTION#5.18.u1#To find out the planes which gives reflection #Ex5_18_u1.txt#3411/CH5/EX5.18.u1/Ex5_18_u1.txt#R##117945 +5#X RAY DIFFRACTION#5.17.u1#To find the type of crystal and lattice parameter and atomic diameter #Ex5_17_u1.sce#3411/CH5/EX5.17.u1/Ex5_17_u1.sce#S##117963 +5#X RAY DIFFRACTION#5.17.u1#To find the type of crystal and lattice parameter and atomic diameter #Ex5_17_u1.txt#3411/CH5/EX5.17.u1/Ex5_17_u1.txt#R##117964 +5#X RAY DIFFRACTION#5.16.u1#To calculate the difference between the samples#Ex5_16_u1.sce#3411/CH5/EX5.16.u1/Ex5_16_u1.sce#S##119078 +5#X RAY DIFFRACTION#5.16.u1#To calculate the difference between the samples#Ex5_16_u1.txt#3411/CH5/EX5.16.u1/Ex5_16_u1.txt#R##119079 +5#X RAY DIFFRACTION#5.15.u1#To calculate the Braggs angle #Ex5_15_u1.sce#3411/CH5/EX5.15.u1/Ex5_15_u1.sce#S##119074 +5#X RAY DIFFRACTION#5.15.u1#To calculate the Braggs angle #Ex5_15_u1.txt#3411/CH5/EX5.15.u1/Ex5_15_u1.txt#R##119075 +5#X RAY DIFFRACTION#5.14.u1#To calculate the effective temprature of neutrons#Ex5_14_u1.sce#3411/CH5/EX5.14.u1/Ex5_14_u1.sce#S##119072 +5#X RAY DIFFRACTION#5.14.u1#To calculate the effective temprature of neutrons#Ex5_14_u1.txt#3411/CH5/EX5.14.u1/Ex5_14_u1.txt#R##119073 +5#X RAY DIFFRACTION#5.13.u1#To determine the crystal structure and indices of plane and lattice parameter of the material#Ex5_13_u1.sce#3411/CH5/EX5.13.u1/Ex5_13_u1.sce#S##119444 +5#X RAY DIFFRACTION#5.13.u1#To determine the crystal structure and indices of plane and lattice parameter of the material#Ex5_13_u1.txt#3411/CH5/EX5.13.u1/Ex5_13_u1.txt#R##119445 +5#X RAY DIFFRACTION#5.12.u1#To determine the cubic structure of element and lattice constant and to identify element#Ex5_12_u1.sce#3411/CH5/EX5.12.u1/Ex5_12_u1.sce#S##119442 +5#X RAY DIFFRACTION#5.12.u1#To determine the cubic structure of element and lattice constant and to identify element#Ex5_12_u1.txt#3411/CH5/EX5.12.u1/Ex5_12_u1.txt#R##119443 +5#X RAY DIFFRACTION#5.11.u1#To determine the unitcell and its dimensions#Ex5_11_u1.sce#3411/CH5/EX5.11.u1/Ex5_11_u1.sce#S##119440 +5#X RAY DIFFRACTION#5.11.u1#To determine the unitcell and its dimensions#Ex5_11_u1.txt#3411/CH5/EX5.11.u1/Ex5_11_u1.txt#R##119441 +5#X RAY DIFFRACTION#5.10.u1#To calculate the lattice constant#Ex5_10_u1.txt#3411/CH5/EX5.10.u1/Ex5_10_u1.txt#R##119065 +5#X RAY DIFFRACTION#5.10.u1#To calculate the lattice constant#Ex5_10_u1.sce#3411/CH5/EX5.10.u1/Ex5_10_u1.sce#S##119064 +5#X RAY DIFFRACTION#5.1.u1#To determine the miller indices of the plane#Ex5_1_u1.sce#3411/CH5/EX5.1.u1/Ex5_1_u1.sce#S##117905 +5#X RAY DIFFRACTION#5.1.u1#To determine the miller indices of the plane#Ex5_1_u1.txt#3411/CH5/EX5.1.u1/Ex5_1_u1.txt#R##117906 +3#POLARIZATION OF LIGHT#3.4.u1#To calculate the thickness of the plate#Ex3_4_u1.sce#3411/CH3/EX3.4.u1/Ex3_4_u1.sce#S##117903 +3#POLARIZATION OF LIGHT#3.4.u1#To calculate the thickness of the plate#Ex3_4_u1.txt#3411/CH3/EX3.4.u1/Ex3_4_u1.txt#R##117904 +3#POLARIZATION OF LIGHT#3.3.u1#To calculate the wavelength#Ex3_3_u1.txt#3411/CH3/EX3.3.u1/Ex3_3_u1.txt#R##117902 +3#POLARIZATION OF LIGHT#3.3.u1#To calculate the wavelength#Ex3_3_u1.sce#3411/CH3/EX3.3.u1/Ex3_3_u1.sce#S##117901 +3#POLARIZATION OF LIGHT#3.2.u1#To calculate the thickness of quarter wave plate#Ex3_2_u1.txt#3411/CH3/EX3.2.u1/Ex3_2_u1.txt#R##117900 +3#POLARIZATION OF LIGHT#3.2.u1#To calculate the thickness of quarter wave plate#Ex3_2_u1.sce#3411/CH3/EX3.2.u1/Ex3_2_u1.sce#S##117899 +3#POLARIZATION OF LIGHT#3.1.u1#To calculate the polarising angle#Ex3_1_u1.txt#3411/CH3/EX3.1.u1/Ex3_1_u1.txt#R##117898 +3#POLARIZATION OF LIGHT#3.1.u1#To calculate the polarising angle#Ex3_1_u1.sce#3411/CH3/EX3.1.u1/Ex3_1_u1.sce#S##117897 +2#DIFFRACTION#2.9.u1#To calculate resolving power in second order#Ex2_9_u1.sce#3411/CH2/EX2.9.u1/Ex2_9_u1.sce#S##117895 +2#DIFFRACTION#2.9.u1#To calculate resolving power in second order#Ex2_9_u1.txt#3411/CH2/EX2.9.u1/Ex2_9_u1.txt#R##117896 +2#DIFFRACTION#2.8.u1#To calculate the wavelength#Ex2_8_u1.sce#3411/CH2/EX2.8.u1/Ex2_8_u1.sce#S##117893 +2#DIFFRACTION#2.8.u1#To calculate the wavelength#Ex2_8_u1.txt#3411/CH2/EX2.8.u1/Ex2_8_u1.txt#R##117894 +2#DIFFRACTION#2.7.u1#To Calculate highest power of spectrum seen with mono chromaic light#Ex2_7_u1.txt#3411/CH2/EX2.7.u1/Ex2_7_u1.txt#R##117892 +2#DIFFRACTION#2.7.u1#To Calculate highest power of spectrum seen with mono chromaic light#Ex2_7_u1.sce#3411/CH2/EX2.7.u1/Ex2_7_u1.sce#S##117891 +2#DIFFRACTION#2.6.u1#To Calculate the dispersive power of the grating#Ex2_6_u1.txt#3411/CH2/EX2.6.u1/Ex2_6_u1.txt#R##117890 +2#DIFFRACTION#2.6.u1#To Calculate the dispersive power of the grating#Ex2_6_u1.sce#3411/CH2/EX2.6.u1/Ex2_6_u1.sce#S##117889 +2#DIFFRACTION#2.5.u1#To find the angle of separation#Ex2_5_u1.txt#3411/CH2/EX2.5.u1/Ex2_5_u1.txt#R##117888 +2#DIFFRACTION#2.5.u1#To find the angle of separation#Ex2_5_u1.sce#3411/CH2/EX2.5.u1/Ex2_5_u1.sce#S##117887 +2#DIFFRACTION#2.4.u1#To examine two spectral lines are clearly resolved in first order and second order#Ex2_4_u1.txt#3411/CH2/EX2.4.u1/Ex2_4_u1.txt#R##117886 +2#DIFFRACTION#2.4.u1#To examine two spectral lines are clearly resolved in first order and second order#Ex2_4_u1.sce#3411/CH2/EX2.4.u1/Ex2_4_u1.sce#S##117885 +2#DIFFRACTION#2.3.u1#To calculate minimum no of lines per centimeter#Ex2_3_u1.txt#3411/CH2/EX2.3.u1/Ex2_3_u1.txt#R##117884 +2#DIFFRACTION#2.3.u1#To calculate minimum no of lines per centimeter#Ex2_3_u1.sce#3411/CH2/EX2.3.u1/Ex2_3_u1.sce#S##117883 +2#DIFFRACTION#2.2.u1#To Find the difference in angles of deviation in first and third order spectra#Ex2_2_u1.txt#3411/CH2/EX2.2.u1/Ex2_2_u1.txt#R##117882 +2#DIFFRACTION#2.2.u1#To Find the difference in angles of deviation in first and third order spectra#Ex2_2_u1.sce#3411/CH2/EX2.2.u1/Ex2_2_u1.sce#S##117881 +2#DIFFRACTION#2.1.u1#To calculate the no of lines in one cm of grating surface#Ex2_1_u1.sce#3411/CH2/EX2.1.u1/Ex2_1_u1.sce#S##117879 +2#DIFFRACTION#2.1.u1#To calculate the no of lines in one cm of grating surface#Ex2_1_u1.txt#3411/CH2/EX2.1.u1/Ex2_1_u1.txt#R##117880 +1#INTERFERENCE#1.9.u1#To calculate diameter of the fifth bright ring#Ex1_9_u1.txt#3411/CH1/EX1.9.u1/Ex1_9_u1.txt#R##117872 +1#INTERFERENCE#1.9.u1#To calculate diameter of the fifth bright ring#Ex1_9_u1.sce#3411/CH1/EX1.9.u1/Ex1_9_u1.sce#S##117871 +1#INTERFERENCE#1.8.u1#To calculate the distance from the edge of wedge #Ex1_8_u1.txt#3411/CH1/EX1.8.u1/Ex1_8_u1.txt#R##117870 +1#INTERFERENCE#1.8.u1#To calculate the distance from the edge of wedge #Ex1_8_u1.sce#3411/CH1/EX1.8.u1/Ex1_8_u1.sce#S##117869 +1#INTERFERENCE#1.7.u1#To calculate the fring width#Ex1_7_u1.txt#3411/CH1/EX1.7.u1/Ex1_7_u1.txt#R##117868 +1#INTERFERENCE#1.7.u1#To calculate the fring width#Ex1_7_u1.sce#3411/CH1/EX1.7.u1/Ex1_7_u1.sce#S##117867 +1#INTERFERENCE#1.6.U1#Calculate the wavelengths of light in visible spectrum#Ex1_6_u1.sce#3411/CH1/EX1.6.U1/Ex1_6_u1.sce#S##117865 +1#INTERFERENCE#1.6.U1#Calculate the wavelengths of light in visible spectrum#Ex1_6_u1.txt#3411/CH1/EX1.6.U1/Ex1_6_u1.txt#R##117866 +1#INTERFERENCE#1.5.u1#To find the refractive index of coil#Ex1_5_u1.sce#3411/CH1/EX1.5.u1/Ex1_5_u1.sce#S##117863 +1#INTERFERENCE#1.5.u1#To find the refractive index of coil#Ex1_5_u1.txt#3411/CH1/EX1.5.u1/Ex1_5_u1.txt#R##117864 +1#INTERFERENCE#1.4.u1#To calculate thickness of plate#Ex1_4_u1.sce#3411/CH1/EX1.4.u1/Ex1_4_u1.sce#S##117861 +1#INTERFERENCE#1.4.u1#To calculate thickness of plate#Ex1_4_u1.txt#3411/CH1/EX1.4.u1/Ex1_4_u1.txt#R##117862 +1#INTERFERENCE#1.3.u1#To compare the intensity at a point distance 1mm from the center to that at its center and to find minimum dist from center of point #Ex1_3_u1.sce#3411/CH1/EX1.3.u1/Ex1_3_u1.sce#S##117859 +1#INTERFERENCE#1.3.u1#To compare the intensity at a point distance 1mm from the center to that at its center and to find minimum dist from center of point #Ex1_3_u1.txt#3411/CH1/EX1.3.u1/Ex1_3_u1.txt#R##117860 +1#INTERFERENCE#1.2.u1#To calculate the wavelength#Ex1_2_u1.sce#3411/CH1/EX1.2.u1/Ex1_2_u1.sce#S##117857 +1#INTERFERENCE#1.2.u1#To calculate the wavelength#Ex1_2_u1.txt#3411/CH1/EX1.2.u1/Ex1_2_u1.txt#R##117858 +1#INTERFERENCE#1.12.u1#To calculate the wavelength of the light used#Ex1_12_u1.txt#3411/CH1/EX1.12.u1/Ex1_12_u1.txt#R##117878 +1#INTERFERENCE#1.12.u1#To calculate the wavelength of the light used#Ex1_12_u1.sce#3411/CH1/EX1.12.u1/Ex1_12_u1.sce#S##117877 +1#INTERFERENCE#1.11.u1#To calculate refractive Index of liquid#Ex1_11_u1.txt#3411/CH1/EX1.11.u1/Ex1_11_u1.txt#R##117876 +1#INTERFERENCE#1.11.u1#To calculate refractive Index of liquid#Ex1_11_u1.sce#3411/CH1/EX1.11.u1/Ex1_11_u1.sce#S##117875 +1#INTERFERENCE#1.10.u1#To find the diameter of the 20th dark ring#Ex1_10_u1.txt#3411/CH1/EX1.10.u1/Ex1_10_u1.txt#R##117874 +1#INTERFERENCE#1.10.u1#To find the diameter of the 20th dark ring#Ex1_10_u1.sce#3411/CH1/EX1.10.u1/Ex1_10_u1.sce#S##117873 +1#INTERFERENCE#1.1.u1#To calculate the location of screen from slits#Ex1_1_u1.sce#3411/CH1/EX1.1.u1/Ex1_1_u1.sce#S##117855 +1#INTERFERENCE#1.1.u1#To calculate the location of screen from slits#Ex1_1_u1.txt#3411/CH1/EX1.1.u1/Ex1_1_u1.txt#R##117856 diff --git a/latex/tmp_3415_data.txt b/latex/tmp_3415_data.txt index e69de29bb..ae21deab0 100644 --- a/latex/tmp_3415_data.txt +++ b/latex/tmp_3415_data.txt @@ -0,0 +1,140 @@ +12#System Design#12.2#2#Ex12_2.sce#3415/CH12/EX12.2/Ex12_2.sce#S##115643 +12#System Design#12.2#2#Ex12_2.JPG#3415/CH12/EX12.2/Ex12_2.JPG#R##115644 +12#System Design#12.1#1#EX12_1.sce#3415/CH12/EX12.1/EX12_1.sce#S##117168 +12#System Design#12.1#1#Ex12_1.JPG#3415/CH12/EX12.1/Ex12_1.JPG#R##115642 +11#Noise and Detection#11.9#9#Ex11_9.sce#3415/CH11/EX11.9/Ex11_9.sce#S##115637 +11#Noise and Detection#11.9#9#Ex11_9.JPG#3415/CH11/EX11.9/Ex11_9.JPG#R##115638 +11#Noise and Detection#11.8#8#Ex11_8.sce#3415/CH11/EX11.8/Ex11_8.sce#S##115635 +11#Noise and Detection#11.8#8#Ex11_8.JPG#3415/CH11/EX11.8/Ex11_8.JPG#R##115636 +11#Noise and Detection#11.7#7#Ex11_7.sce#3415/CH11/EX11.7/Ex11_7.sce#S##115633 +11#Noise and Detection#11.7#7#Ex11_7.JPG#3415/CH11/EX11.7/Ex11_7.JPG#R##115634 +11#Noise and Detection#11.6#6#Ex11_6.sce#3415/CH11/EX11.6/Ex11_6.sce#S##115631 +11#Noise and Detection#11.6#6#Ex11_6.JPG#3415/CH11/EX11.6/Ex11_6.JPG#R##115632 +11#Noise and Detection#11.5#5#EX11_5.sce#3415/CH11/EX11.5/EX11_5.sce#S##115629 +11#Noise and Detection#11.5#5#Ex11_5.JPG#3415/CH11/EX11.5/Ex11_5.JPG#R##115630 +11#Noise and Detection#11.4#4#Ex11_4.sce#3415/CH11/EX11.4/Ex11_4.sce#S##115626 +11#Noise and Detection#11.4#4#Ex11_4a.jpeg#3415/CH11/EX11.4/Ex11_4a.jpeg#R##115627 +11#Noise and Detection#11.4#4#Ex11_4b.JPG#3415/CH11/EX11.4/Ex11_4b.JPG#R##115628 +11#Noise and Detection#11.3#3#Ex11_3.sce#3415/CH11/EX11.3/Ex11_3.sce#S##117167 +11#Noise and Detection#11.3#3#Ex11_3.JPG#3415/CH11/EX11.3/Ex11_3.JPG#R##115625 +11#Noise and Detection#11.2#2#Ex11_2.sce#3415/CH11/EX11.2/Ex11_2.sce#S##115622 +11#Noise and Detection#11.2#2#Ex11_2.JPG#3415/CH11/EX11.2/Ex11_2.JPG#R##115623 +11#Noise and Detection#11.10#10#Ex11_10.sce#3415/CH11/EX11.10/Ex11_10.sce#S##115639 +11#Noise and Detection#11.10#10#Ex11_10.JPG#3415/CH11/EX11.10/Ex11_10.JPG#R##115640 +11#Noise and Detection#11.1#1#Ex11_1.sce#3415/CH11/EX11.1/Ex11_1.sce#S##115620 +11#Noise and Detection#11.1#1#Ex11_1.JPG#3415/CH11/EX11.1/Ex11_1.JPG#R##115621 +10#Modulation#10.5#5#Ex10_5.JPG#3415/CH10/EX10.5/Ex10_5.JPG#R##115619 +10#Modulation#10.5#5#Ex10_5.sce#3415/CH10/EX10.5/Ex10_5.sce#S##115618 +10#Modulation#10.4#4#Ex10_4.sce#3415/CH10/EX10.4/Ex10_4.sce#S##115616 +10#Modulation#10.4#4#Ex10_4.JPG#3415/CH10/EX10.4/Ex10_4.JPG#R##115617 +10#Modulation#10.3#3#Ex10_3.sce#3415/CH10/EX10.3/Ex10_3.sce#S##115614 +10#Modulation#10.3#3#Ex10_3.JPG#3415/CH10/EX10.3/Ex10_3.JPG#R##115615 +10#Modulation#10.2#2#Ex10_2.sce#3415/CH10/EX10.2/Ex10_2.sce#S##115612 +10#Modulation#10.2#2#Ex10_2.JPG#3415/CH10/EX10.2/Ex10_2.JPG#R##115613 +10#Modulation#10.1#1#Ex10_1.JPG#3415/CH10/EX10.1/Ex10_1.JPG#R##115611 +10#Modulation#10.1#1#Ex10_1.sce#3415/CH10/EX10.1/Ex10_1.sce#S##115610 +9#Distribution networks and Fiber components#9.3#3#Ex9_3.sce#3415/CH9/EX9.3/Ex9_3.sce#S##115399 +9#Distribution networks and Fiber components#9.3#3#Ex9_3.JPG#3415/CH9/EX9.3/Ex9_3.JPG#R##115400 +9#Distribution networks and Fiber components#9.2#2#Ex9_2.sce#3415/CH9/EX9.2/Ex9_2.sce#S##115397 +9#Distribution networks and Fiber components#9.2#2#Ex9_2.JPG#3415/CH9/EX9.2/Ex9_2.JPG#R##115398 +9#Distribution networks and Fiber components#9.1#1#Ex9_1.sce#3415/CH9/EX9.1/Ex9_1.sce#S##115395 +9#Distribution networks and Fiber components#9.1#1#Ex9_1.JPG#3415/CH9/EX9.1/Ex9_1.JPG#R##115396 +8#Couplers and connectors#8.7#7#Ex8_7.sce#3415/CH8/EX8.7/Ex8_7.sce#S##115393 +8#Couplers and connectors#8.7#7#Ex8_7.JPG#3415/CH8/EX8.7/Ex8_7.JPG#R##115394 +8#Couplers and connectors#8.6#6#Ex8_6.sce#3415/CH8/EX8.6/Ex8_6.sce#S##115391 +8#Couplers and connectors#8.6#6#Ex8_6.JPG#3415/CH8/EX8.6/Ex8_6.JPG#R##115392 +8#Couplers and connectors#8.5#5#Ex8_5.sce#3415/CH8/EX8.5/Ex8_5.sce#S##115389 +8#Couplers and connectors#8.5#5#Ex8_5.JPG#3415/CH8/EX8.5/Ex8_5.JPG#R##115390 +8#Couplers and connectors#8.4#4#Ex8_4.sce#3415/CH8/EX8.4/Ex8_4.sce#S##115387 +8#Couplers and connectors#8.4#4#Ex8_4.JPG#3415/CH8/EX8.4/Ex8_4.JPG#R##115388 +8#Couplers and connectors#8.3#3#Ex8_3.sce#3415/CH8/EX8.3/Ex8_3.sce#S##115385 +8#Couplers and connectors#8.3#3#Ex8_3.JPG#3415/CH8/EX8.3/Ex8_3.JPG#R##115386 +8#Couplers and connectors#8.2#2#Ex8_2.sce#3415/CH8/EX8.2/Ex8_2.sce#S##115383 +8#Couplers and connectors#8.2#2#Ex8_2.jpeg#3415/CH8/EX8.2/Ex8_2.jpeg#R##115384 +8#Couplers and connectors#8.1#1#Ex8_1.sce#3415/CH8/EX8.1/Ex8_1.sce#S##115381 +8#Couplers and connectors#8.1#1#Ex8_1.JPG#3415/CH8/EX8.1/Ex8_1.JPG#R##115382 +7#Light Detectors#7.8#8#Ex7_8.sce#3415/CH7/EX7.8/Ex7_8.sce#S##115379 +7#Light Detectors#7.8#8#Ex7_8.JPG#3415/CH7/EX7.8/Ex7_8.JPG#R##115380 +7#Light Detectors#7.7#7#Ex7_7.sce#3415/CH7/EX7.7/Ex7_7.sce#S##115377 +7#Light Detectors#7.7#7#Ex7_7.JPG#3415/CH7/EX7.7/Ex7_7.JPG#R##115378 +7#Light Detectors#7.6#6#Ex7_6.sce#3415/CH7/EX7.6/Ex7_6.sce#S##115375 +7#Light Detectors#7.6#6#Ex7_6.JPG#3415/CH7/EX7.6/Ex7_6.JPG#R##115376 +7#Light Detectors#7.5#5#Ex7_5.sce#3415/CH7/EX7.5/Ex7_5.sce#S##115373 +7#Light Detectors#7.5#5#Ex7_5.JPG#3415/CH7/EX7.5/Ex7_5.JPG#R##115374 +7#Light Detectors#7.4#4#Ex7_4.sce#3415/CH7/EX7.4/Ex7_4.sce#S##115371 +7#Light Detectors#7.4#4#Ex7_4.JPG#3415/CH7/EX7.4/Ex7_4.JPG#R##115372 +7#Light Detectors#7.3#3#Ex7_3.sce#3415/CH7/EX7.3/Ex7_3.sce#S##115369 +7#Light Detectors#7.3#3#Ex7_3.JPG#3415/CH7/EX7.3/Ex7_3.JPG#R##115370 +7#Light Detectors#7.2#2#Ex7_2.sce#3415/CH7/EX7.2/Ex7_2.sce#S##115367 +7#Light Detectors#7.2#2#Ex7_2.JPG#3415/CH7/EX7.2/Ex7_2.JPG#R##115368 +7#Light Detectors#7.1#1#EX7_1.sce#3415/CH7/EX7.1/EX7_1.sce#S##115365 +7#Light Detectors#7.1#1#Ex7_1.JPG#3415/CH7/EX7.1/Ex7_1.JPG#R##115366 +6#Light Sources#6.3#3#Ex6_3.sce#3415/CH6/EX6.3/Ex6_3.sce#S##115363 +6#Light Sources#6.3#3#Ex6_3.JPG#3415/CH6/EX6.3/Ex6_3.JPG#R##115364 +6#Light Sources#6.2#2#Ex6_2.sce#3415/CH6/EX6.2/Ex6_2.sce#S##115361 +6#Light Sources#6.2#2#Ex6_2.JPG#3415/CH6/EX6.2/Ex6_2.JPG#R##115362 +6#Light Sources#6.1#1#Ex6_1.sce#3415/CH6/EX6.1/Ex6_1.sce#S##115359 +6#Light Sources#6.1#1#Ex6_1.JPG#3415/CH6/EX6.1/Ex6_1.JPG#R##115360 +5#Optic fiber waveguides#5.8#8#Ex5_8.sce#3415/CH5/EX5.8/Ex5_8.sce#S##115351 +5#Optic fiber waveguides#5.8#8#Ex5_8.jpeg#3415/CH5/EX5.8/Ex5_8.jpeg#R##115352 +5#Optic fiber waveguides#5.7#7#Ex5_7.sce#3415/CH5/EX5.7/Ex5_7.sce#S##115349 +5#Optic fiber waveguides#5.7#7#Ex5_7.JPG#3415/CH5/EX5.7/Ex5_7.JPG#R##115350 +5#Optic fiber waveguides#5.6#6#Ex5_6.sce#3415/CH5/EX5.6/Ex5_6.sce#S##115347 +5#Optic fiber waveguides#5.6#6#Ex5_6.JPG#3415/CH5/EX5.6/Ex5_6.JPG#R##115348 +5#Optic fiber waveguides#5.5#5#Ex5_5.sce#3415/CH5/EX5.5/Ex5_5.sce#S##115345 +5#Optic fiber waveguides#5.5#5#Ex5_5.JPG#3415/CH5/EX5.5/Ex5_5.JPG#R##115346 +5#Optic fiber waveguides#5.4#4#Ex5_4.sce#3415/CH5/EX5.4/Ex5_4.sce#S##115343 +5#Optic fiber waveguides#5.4#4#Ex5_4.JPG#3415/CH5/EX5.4/Ex5_4.JPG#R##115344 +5#Optic fiber waveguides#5.3#3#Ex5_3.sce#3415/CH5/EX5.3/Ex5_3.sce#S##115341 +5#Optic fiber waveguides#5.3#3#Ex5_3.JPG#3415/CH5/EX5.3/Ex5_3.JPG#R##115342 +5#Optic fiber waveguides#5.2#2#Ex5_2.sce#3415/CH5/EX5.2/Ex5_2.sce#S##115339 +5#Optic fiber waveguides#5.2#2#Ex5_2.JPG#3415/CH5/EX5.2/Ex5_2.JPG#R##115340 +5#Optic fiber waveguides#5.1#1#Ex5_1.sce#3415/CH5/EX5.1/Ex5_1.sce#S##115334 +5#Optic fiber waveguides#5.1#1#Ex5_1.JPG#3415/CH5/EX5.1/Ex5_1.JPG#R##115335 +4#Integrated Optic waveguides#4.3#3#Ex4_3.sce#3415/CH4/EX4.3/Ex4_3.sce#S##115332 +4#Integrated Optic waveguides#4.3#3#Ex4_3.JPG#3415/CH4/EX4.3/Ex4_3.JPG#R##115333 +4#Integrated Optic waveguides#4.2#2#Ex4_2.sce#3415/CH4/EX4.2/Ex4_2.sce#S##115329 +4#Integrated Optic waveguides#4.2#2#Ex4_2.JPG#3415/CH4/EX4.2/Ex4_2.JPG#R##115330 +4#Integrated Optic waveguides#4.1#1#Ex4_1.sce#3415/CH4/EX4.1/Ex4_1.sce#S##115327 +4#Integrated Optic waveguides#4.1#1#Ex4_1.JPG#3415/CH4/EX4.1/Ex4_1.JPG#R##115328 +3#Lightwave fundamentals#3.9#9#Ex3_9.sce#3415/CH3/EX3.9/Ex3_9.sce#S##115323 +3#Lightwave fundamentals#3.9#9#Ex3_9.JPG#3415/CH3/EX3.9/Ex3_9.JPG#R##115324 +3#Lightwave fundamentals#3.8#8#Ex3_8.sce#3415/CH3/EX3.8/Ex3_8.sce#S##115321 +3#Lightwave fundamentals#3.8#8#Ex3_8.JPG#3415/CH3/EX3.8/Ex3_8.JPG#R##115322 +3#Lightwave fundamentals#3.7#7#Ex3_7.sce#3415/CH3/EX3.7/Ex3_7.sce#S##115319 +3#Lightwave fundamentals#3.7#7#Ex3_7.JPG#3415/CH3/EX3.7/Ex3_7.JPG#R##115320 +3#Lightwave fundamentals#3.6#6#Ex3_6.sce#3415/CH3/EX3.6/Ex3_6.sce#S##115317 +3#Lightwave fundamentals#3.6#6#Ex3_6.JPG#3415/CH3/EX3.6/Ex3_6.JPG#R##115318 +3#Lightwave fundamentals#3.5#5#Ex3_5.sce#3415/CH3/EX3.5/Ex3_5.sce#S##115315 +3#Lightwave fundamentals#3.5#5#Ex3_5.JPG#3415/CH3/EX3.5/Ex3_5.JPG#R##115316 +3#Lightwave fundamentals#3.4#4#Ex3_4.sce#3415/CH3/EX3.4/Ex3_4.sce#S##115313 +3#Lightwave fundamentals#3.4#4#Ex3_4.JPG#3415/CH3/EX3.4/Ex3_4.JPG#R##115314 +3#Lightwave fundamentals#3.3#3#Ex3_3.sce#3415/CH3/EX3.3/Ex3_3.sce#S##115311 +3#Lightwave fundamentals#3.3#3#Ex3_3.JPG#3415/CH3/EX3.3/Ex3_3.JPG#R##115312 +3#Lightwave fundamentals#3.2#2#Ex3_2.sce#3415/CH3/EX3.2/Ex3_2.sce#S##115309 +3#Lightwave fundamentals#3.2#2#Ex3_2.JPG#3415/CH3/EX3.2/Ex3_2.JPG#R##115310 +3#Lightwave fundamentals#3.10#10#Ex3_10.sce#3415/CH3/EX3.10/Ex3_10.sce#S##115325 +3#Lightwave fundamentals#3.10#10#Ex3_10.JPG#3415/CH3/EX3.10/Ex3_10.JPG#R##115326 +3#Lightwave fundamentals#3.1#1#Ex3_1.sce#3415/CH3/EX3.1/Ex3_1.sce#S##115307 +3#Lightwave fundamentals#3.1#1#Ex3_1.JPG#3415/CH3/EX3.1/Ex3_1.JPG#R##115308 +2#Optics Review#2.6#6#Ex_2_6.sce#3415/CH2/EX2.6/Ex_2_6.sce#S##117166 +2#Optics Review#2.6#6#Ex2_6.JPG#3415/CH2/EX2.6/Ex2_6.JPG#R##115306 +2#Optics Review#2.5#5#Ex2_5.sce#3415/CH2/EX2.5/Ex2_5.sce#S##115303 +2#Optics Review#2.5#5#Ex2_5.JPG#3415/CH2/EX2.5/Ex2_5.JPG#R##115304 +2#Optics Review#2.4#4#Ex2_4.sce#3415/CH2/EX2.4/Ex2_4.sce#S##115284 +2#Optics Review#2.4#4#Ex2_4.JPG#3415/CH2/EX2.4/Ex2_4.JPG#R##115285 +2#Optics Review#2.3#3#Ex2_3.sce#3415/CH2/EX2.3/Ex2_3.sce#S##115281 +2#Optics Review#2.3#3#Ex2_3_1.jpeg#3415/CH2/EX2.3/Ex2_3_1.jpeg#R##115282 +2#Optics Review#2.3#3#Ex2_3_2.JPG#3415/CH2/EX2.3/Ex2_3_2.JPG#R##115283 +2#Optics Review#2.2#2#Ex2_2.sce#3415/CH2/EX2.2/Ex2_2.sce#S##115276 +2#Optics Review#2.2#2#Ex2_2.JPG#3415/CH2/EX2.2/Ex2_2.JPG#R##115277 +2#Optics Review#2.1#1#EX2_1.sce#3415/CH2/EX2.1/EX2_1.sce#S##115269 +2#Optics Review#2.1#1#Ex2_1.JPG#3415/CH2/EX2.1/Ex2_1.JPG#R##115270 +1#Fiber optic communications systems#1.4#4#EX1_4.sce#3415/CH1/EX1.4/EX1_4.sce#S##115267 +1#Fiber optic communications systems#1.4#4#EX1_4.JPG#3415/CH1/EX1.4/EX1_4.JPG#R##115268 +1#Fiber optic communications systems#1.3#3#Ex1_3.sce#3415/CH1/EX1.3/Ex1_3.sce#S##115264 +1#Fiber optic communications systems#1.3#3#EX1_3.JPG#3415/CH1/EX1.3/EX1_3.JPG#R##115265 +1#Fiber optic communications systems#1.2#2#Ex1_2.sce#3415/CH1/EX1.2/Ex1_2.sce#S##115261 +1#Fiber optic communications systems#1.2#2#EX1_2.JPG#3415/CH1/EX1.2/EX1_2.JPG#R##115262 +1#Fiber optic communications systems#1.1#1#EX1_1.JPG#3415/CH1/EX1.1/EX1_1.JPG#R##115248 +1#Fiber optic communications systems#1.1#1#EX1_1.sce#3415/CH1/EX1.1/EX1_1.sce#S##115247 diff --git a/latex/tmp_3417_contributor.txt b/latex/tmp_3417_contributor.txt index a0e8c3b0e..b0bd15524 100644 --- a/latex/tmp_3417_contributor.txt +++ b/latex/tmp_3417_contributor.txt @@ -1 +1 @@ -Mohammed Touqeer Mohammed Toufique Khan#B.E#Electronics Engineering#Anjuman i islam Kalsekar Techanical Campus#None#Chaya Ravindra +Mohammed Touqeer Mohammed Toufique Khan#B.E#Electronics Engineering#Anjuman i islam Kalsekar Technical Campus#None#Chaya Ravindra diff --git a/latex/tmp_3432_contributor.txt b/latex/tmp_3432_contributor.txt index 80f3b626f..bb13c83fb 100644 --- a/latex/tmp_3432_contributor.txt +++ b/latex/tmp_3432_contributor.txt @@ -1 +1 @@ -Mrs. Deepti Khimani#Feeback Control System, Control System Design#Instrumentation Engineering#Mumbai University#None#None +Mrs. Deepti Khimani#Feeback Control System, Control System Design#Instrumentation Engineering#Mumbai University#None#Spandana diff --git a/latex/tmp_3432_data.txt b/latex/tmp_3432_data.txt index e69de29bb..5ccf37955 100644 --- a/latex/tmp_3432_data.txt +++ b/latex/tmp_3432_data.txt @@ -0,0 +1,295 @@ +9#Nonlinear Systems#9.9#Describing Function for a saturation nonlinearity#Ex9_9_model.xcos#3432/CH9/EX9.9/Ex9_9_model.xcos#X##118675 +9#Nonlinear Systems#9.9#Describing Function for a saturation nonlinearity#Ex9_9_f1.pdf#3432/CH9/EX9.9/Ex9_9_f1.pdf#R##118674 +9#Nonlinear Systems#9.9#Describing Function for a saturation nonlinearity#Ex9_9_f0.pdf#3432/CH9/EX9.9/Ex9_9_f0.pdf#R##118673 +9#Nonlinear Systems#9.9#Describing Function for a saturation nonlinearity#Ex9_9.sce#3432/CH9/EX9.9/Ex9_9.sce#S##118672 +9#Nonlinear Systems#9.9#Describing Function for a saturation nonlinearity#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +9#Nonlinear Systems#9.8#Antiwindup compensation for a PI controller#Ex9_8_model.xcos#3432/CH9/EX9.8/Ex9_8_model.xcos#X##118667 +9#Nonlinear Systems#9.8#Antiwindup compensation for a PI controller#Ex9_8_f1.pdf#3432/CH9/EX9.8/Ex9_8_f1.pdf#R##118666 +9#Nonlinear Systems#9.8#Antiwindup compensation for a PI controller#Ex9_8_f0.pdf#3432/CH9/EX9.8/Ex9_8_f0.pdf#R##118665 +9#Nonlinear Systems#9.8#Antiwindup compensation for a PI controller#Ex9_8.sce#3432/CH9/EX9.8/Ex9_8.sce#S##118664 +9#Nonlinear Systems#9.8#Antiwindup compensation for a PI controller#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +9#Nonlinear Systems#9.7#Analysis and design of the system with limit cycle using the root locus#Ex9_7_model_notch.xcos#3432/CH9/EX9.7/Ex9_7_model_notch.xcos#X##118663 +9#Nonlinear Systems#9.7#Analysis and design of the system with limit cycle using the root locus#Ex9_7_model.xcos#3432/CH9/EX9.7/Ex9_7_model.xcos#X##118662 +9#Nonlinear Systems#9.7#Analysis and design of the system with limit cycle using the root locus#Ex9_7_f3.pdf#3432/CH9/EX9.7/Ex9_7_f3.pdf#R##118661 +9#Nonlinear Systems#9.7#Analysis and design of the system with limit cycle using the root locus#Ex9_7_f1.pdf#3432/CH9/EX9.7/Ex9_7_f1.pdf#R##118660 +9#Nonlinear Systems#9.7#Analysis and design of the system with limit cycle using the root locus#Ex9_7.sce#3432/CH9/EX9.7/Ex9_7.sce#S##118659 +9#Nonlinear Systems#9.7#Analysis and design of the system with limit cycle using the root locus#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +9#Nonlinear Systems#9.6#Stability of conditionally stable system using root locus#Ex9_6.sce#3432/CH9/EX9.6/Ex9_6.sce#S##118648 +9#Nonlinear Systems#9.6#Stability of conditionally stable system using root locus#Ex9_6_f0.pdf#3432/CH9/EX9.6/Ex9_6_f0.pdf#R##118649 +9#Nonlinear Systems#9.6#Stability of conditionally stable system using root locus#Ex9_6_f1.pdf#3432/CH9/EX9.6/Ex9_6_f1.pdf#R##118650 +9#Nonlinear Systems#9.6#Stability of conditionally stable system using root locus#Ex9_6_model.xcos#3432/CH9/EX9.6/Ex9_6_model.xcos#X##118651 +9#Nonlinear Systems#9.6#Stability of conditionally stable system using root locus#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +9#Nonlinear Systems#9.5#Changing Overshoot and Saturation nonlinearity#Ex9_5_f1.pdf#3432/CH9/EX9.5/Ex9_5_f1.pdf#R##118641 +9#Nonlinear Systems#9.5#Changing Overshoot and Saturation nonlinearity#Ex9_5_f0.pdf#3432/CH9/EX9.5/Ex9_5_f0.pdf#R##118640 +9#Nonlinear Systems#9.5#Changing Overshoot and Saturation nonlinearity#Ex9_5_model.xcos#3432/CH9/EX9.5/Ex9_5_model.xcos#X##118642 +9#Nonlinear Systems#9.5#Changing Overshoot and Saturation nonlinearity#Ex9_5.sce#3432/CH9/EX9.5/Ex9_5.sce#S##118639 +9#Nonlinear Systems#9.5#Changing Overshoot and Saturation nonlinearity#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +9#Nonlinear Systems#9.13#Determination of stability with a hysteresis nonlinearity#Ex9_13_model.xcos#3432/CH9/EX9.13/Ex9_13_model.xcos#X##118695 +9#Nonlinear Systems#9.13#Determination of stability with a hysteresis nonlinearity#Ex9_13_f1.pdf#3432/CH9/EX9.13/Ex9_13_f1.pdf#R##118694 +9#Nonlinear Systems#9.13#Determination of stability with a hysteresis nonlinearity#Ex9_13_f0.pdf#3432/CH9/EX9.13/Ex9_13_f0.pdf#R##118693 +9#Nonlinear Systems#9.13#Determination of stability with a hysteresis nonlinearity#Ex9_13.sce#3432/CH9/EX9.13/Ex9_13.sce#S##118692 +9#Nonlinear Systems#9.13#Determination of stability with a hysteresis nonlinearity#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +9#Nonlinear Systems#9.12#Conditionally stable system#Ex9_12_f1.pdf#3432/CH9/EX9.12/Ex9_12_f1.pdf#R##118690 +9#Nonlinear Systems#9.12#Conditionally stable system#Ex9_12_f0.pdf#3432/CH9/EX9.12/Ex9_12_f0.pdf#R##118689 +9#Nonlinear Systems#9.12#Conditionally stable system#Ex9_12.sce#3432/CH9/EX9.12/Ex9_12.sce#S##118688 +9#Nonlinear Systems#9.12#Conditionally stable system#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +9#Nonlinear Systems#9.11#Describing Function for a relay with hysteresis non linearity#Ex9_11_f0.pdf#3432/CH9/EX9.11/Ex9_11_f0.pdf#R##118680 +9#Nonlinear Systems#9.11#Describing Function for a relay with hysteresis non linearity#Ex9_11_f1.pdf#3432/CH9/EX9.11/Ex9_11_f1.pdf#R##118681 +9#Nonlinear Systems#9.11#Describing Function for a relay with hysteresis non linearity#Ex9_11_model.xcos#3432/CH9/EX9.11/Ex9_11_model.xcos#X##118682 +9#Nonlinear Systems#9.11#Describing Function for a relay with hysteresis non linearity#Ex9_11.sce#3432/CH9/EX9.11/Ex9_11.sce#S##118679 +9#Nonlinear Systems#9.11#Describing Function for a relay with hysteresis non linearity#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +8#Digital Control#8.2#Design of a Space Station Attitude Digital Controller using Discrete Equivalents#Ex8_2_model.xcos#3432/CH8/EX8.2/Ex8_2_model.xcos#X##118634 +8#Digital Control#8.2#Design of a Space Station Attitude Digital Controller using Discrete Equivalents#Ex8_2_f1.pdf#3432/CH8/EX8.2/Ex8_2_f1.pdf#R##118633 +8#Digital Control#8.2#Design of a Space Station Attitude Digital Controller using Discrete Equivalents#Ex8_2_f0.pdf#3432/CH8/EX8.2/Ex8_2_f0.pdf#R##118632 +8#Digital Control#8.2#Design of a Space Station Attitude Digital Controller using Discrete Equivalents#Ex8_2.sce#3432/CH8/EX8.2/Ex8_2.sce#S##118631 +8#Digital Control#8.2#Design of a Space Station Attitude Digital Controller using Discrete Equivalents#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +8#Digital Control#8.1#Digital Controller using tustin approximation#Ex8_1_model.xcos#3432/CH8/EX8.1/Ex8_1_model.xcos#X##118629 +8#Digital Control#8.1#Digital Controller using tustin approximation#Ex8_1_f1.pdf#3432/CH8/EX8.1/Ex8_1_f1.pdf#R##118628 +8#Digital Control#8.1#Digital Controller using tustin approximation#Ex8_1_f0.pdf#3432/CH8/EX8.1/Ex8_1_f0.pdf#R##118627 +8#Digital Control#8.1#Digital Controller using tustin approximation#Ex8_1.sce#3432/CH8/EX8.1/Ex8_1.sce#S##118626 +8#Digital Control#8.1#Digital Controller using tustin approximation#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +7#State Space Design#7.9#State Equations in Modal Canonical Form#Ex7_9.sce#3432/CH7/EX7.9/Ex7_9.sce#S##118789 +7#State Space Design#7.8#Time scaling an oscillator#Ex7_8.sce#3432/CH7/EX7.8/Ex7_8.sce#S##120575 +7#State Space Design#7.7#Analog computer Implementation#Ex7_7.sce#3432/CH7/EX7.7/Ex7_7.sce#S##118787 +7#State Space Design#7.35#Integral Control of a Motor Speed System#Ex7_35_model.xcos#3432/CH7/EX7.35/Ex7_35_model.xcos#X##118843 +7#State Space Design#7.35#Integral Control of a Motor Speed System#Ex7_35_f1.pdf#3432/CH7/EX7.35/Ex7_35_f1.pdf#R##118842 +7#State Space Design#7.35#Integral Control of a Motor Speed System#Ex7_35_f0.pdf#3432/CH7/EX7.35/Ex7_35_f0.pdf#R##118841 +7#State Space Design#7.35#Integral Control of a Motor Speed System#Ex7_35.sce#3432/CH7/EX7.35/Ex7_35.sce#S##118840 +7#State Space Design#7.35#Integral Control of a Motor Speed System#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +7#State Space Design#7.34#Servomechanism increasing the velocity constant through zero assignment#Ex7_34_model.xcos#3432/CH7/EX7.34/Ex7_34_model.xcos#X##118839 +7#State Space Design#7.34#Servomechanism increasing the velocity constant through zero assignment#Ex7_34_f4.pdf#3432/CH7/EX7.34/Ex7_34_f4.pdf#R##118838 +7#State Space Design#7.34#Servomechanism increasing the velocity constant through zero assignment#Ex7_34_f0.pdf#3432/CH7/EX7.34/Ex7_34_f0.pdf#R##118837 +7#State Space Design#7.34#Servomechanism increasing the velocity constant through zero assignment#Ex7_34.sce#3432/CH7/EX7.34/Ex7_34.sce#S##118836 +7#State Space Design#7.34#Servomechanism increasing the velocity constant through zero assignment#acker_dk.sci#3432/DEPENDENCIES/acker_dk.sci#D#State feedback gain matrix computation#1187 +7#State Space Design#7.34#Servomechanism increasing the velocity constant through zero assignment#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +7#State Space Design#7.33#DC servo system redesign with modified with dominant second order pole locations#Ex7_33.sce#3432/CH7/EX7.33/Ex7_33.sce#S##118835 +7#State Space Design#7.33#DC servo system redesign with modified with dominant second order pole locations#acker_dk.sci#3432/DEPENDENCIES/acker_dk.sci#D#State feedback gain matrix computation#1187 +7#State Space Design#7.33#DC servo system redesign with modified with dominant second order pole locations#zpk_dk.sci#3432/DEPENDENCIES/zpk_dk.sci#D#ZPK computation#1188 +7#State Space Design#7.32#Redesign of the Dc servo compensator using SRL#Ex7_32_model.xcos#3432/CH7/EX7.32/Ex7_32_model.xcos#X##118834 +7#State Space Design#7.32#Redesign of the Dc servo compensator using SRL#Ex7_32_f2.pdf#3432/CH7/EX7.32/Ex7_32_f2.pdf#R##118833 +7#State Space Design#7.32#Redesign of the Dc servo compensator using SRL#Ex7_32_f0.pdf#3432/CH7/EX7.32/Ex7_32_f0.pdf#R##118832 +7#State Space Design#7.32#Redesign of the Dc servo compensator using SRL#Ex7_32.sce#3432/CH7/EX7.32/Ex7_32.sce#S##118831 +7#State Space Design#7.32#Redesign of the Dc servo compensator using SRL#zpk_dk.sci#3432/DEPENDENCIES/zpk_dk.sci#D#ZPK computation#1188 +7#State Space Design#7.32#Redesign of the Dc servo compensator using SRL#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +7#State Space Design#7.32#Redesign of the Dc servo compensator using SRL#acker_dk.sci#3432/DEPENDENCIES/acker_dk.sci#D#State feedback gain matrix computation#1187 +7#State Space Design#7.31#Reduced Order Estimatortor Design for DC Servo#Ex7_31.sce#3432/CH7/EX7.31/Ex7_31.sce#S##118896 +7#State Space Design#7.31#Reduced Order Estimatortor Design for DC Servo#Ex7_31_f0.pdf#3432/CH7/EX7.31/Ex7_31_f0.pdf#R##118830 +7#State Space Design#7.31#Reduced Order Estimatortor Design for DC Servo#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +7#State Space Design#7.30#Full Order Compensator Design for DC Servo#Ex7_30_f0.pdf#3432/CH7/EX7.30/Ex7_30_f0.pdf#R##118828 +7#State Space Design#7.30#Full Order Compensator Design for DC Servo#Ex7_30.sce#3432/CH7/EX7.30/Ex7_30.sce#S##120576 +7#State Space Design#7.30#Full Order Compensator Design for DC Servo#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +7#State Space Design#7.30#Full Order Compensator Design for DC Servo#zpk_dk.sci#3432/DEPENDENCIES/zpk_dk.sci#D#ZPK computation#1188 +7#State Space Design#7.29#A reduced order compensator design for a satellite attitude control#Ex7_29_f1.pdf#3432/CH7/EX7.29/Ex7_29_f1.pdf#R##118847 +7#State Space Design#7.29#A reduced order compensator design for a satellite attitude control#Ex7_29.sce#3432/CH7/EX7.29/Ex7_29.sce#S##118845 +7#State Space Design#7.29#A reduced order compensator design for a satellite attitude control#Ex7_29_f0.pdf#3432/CH7/EX7.29/Ex7_29_f0.pdf#R##118846 +7#State Space Design#7.29#A reduced order compensator design for a satellite attitude control#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +7#State Space Design#7.29#A reduced order compensator design for a satellite attitude control#zpk_dk.sci#3432/DEPENDENCIES/zpk_dk.sci#D#ZPK computation#1188 +7#State Space Design#7.28#Full order compensator design for satellite attitude control#Ex7_28_f1.pdf#3432/CH7/EX7.28/Ex7_28_f1.pdf#R##118823 +7#State Space Design#7.28#Full order compensator design for satellite attitude control#Ex7_28_f0.pdf#3432/CH7/EX7.28/Ex7_28_f0.pdf#R##118822 +7#State Space Design#7.28#Full order compensator design for satellite attitude control#Ex7_28.sce#3432/CH7/EX7.28/Ex7_28.sce#S##118821 +7#State Space Design#7.28#Full order compensator design for satellite attitude control#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +7#State Space Design#7.28#Full order compensator design for satellite attitude control#zpk_dk.sci#3432/DEPENDENCIES/zpk_dk.sci#D#ZPK computation#1188 +7#State Space Design#7.27#SRL estimator design for a simple pendulum#Ex7_27_f0.pdf#3432/CH7/EX7.27/Ex7_27_f0.pdf#R##118820 +7#State Space Design#7.27#SRL estimator design for a simple pendulum#Ex7_27.sce#3432/CH7/EX7.27/Ex7_27.sce#S##118819 +7#State Space Design#7.27#SRL estimator design for a simple pendulum#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +7#State Space Design#7.26#A reduced order estimator design for pendulum#Ex7_26_f0.pdf#3432/CH7/EX7.26/Ex7_26_f0.pdf#R##118818 +7#State Space Design#7.26#A reduced order estimator design for pendulum#Ex7_26.sce#3432/CH7/EX7.26/Ex7_26.sce#S##118817 +7#State Space Design#7.26#A reduced order estimator design for pendulum#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +7#State Space Design#7.25#An estimator design for a simple pendulum#Ex7_25_f0.pdf#3432/CH7/EX7.25/Ex7_25_f0.pdf#R##118816 +7#State Space Design#7.25#An estimator design for a simple pendulum#Ex7_25.sce#3432/CH7/EX7.25/Ex7_25.sce#S##118815 +7#State Space Design#7.25#An estimator design for a simple pendulum#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +7#State Space Design#7.24#LQR Design for a Tape Drive#Ex7_24_f0.pdf#3432/CH7/EX7.24/Ex7_24_f0.pdf#R##118814 +7#State Space Design#7.24#LQR Design for a Tape Drive#Ex7_24.sce#3432/CH7/EX7.24/Ex7_24.sce#S##118813 +7#State Space Design#7.24#LQR Design for a Tape Drive#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +7#State Space Design#7.23#SRL design for an inverted pendulum#Ex7_23_f1.pdf#3432/CH7/EX7.23/Ex7_23_f1.pdf#R##118812 +7#State Space Design#7.23#SRL design for an inverted pendulum#Ex7_23_f0.pdf#3432/CH7/EX7.23/Ex7_23_f0.pdf#R##118811 +7#State Space Design#7.23#SRL design for an inverted pendulum#Ex7_23.sce#3432/CH7/EX7.23/Ex7_23.sce#S##118810 +7#State Space Design#7.23#SRL design for an inverted pendulum#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +7#State Space Design#7.23#SRL design for an inverted pendulum#acker_dk.sci#3432/DEPENDENCIES/acker_dk.sci#D#State feedback gain matrix computation#1187 +7#State Space Design#7.22#SRL design for satellite attitude control#Ex7_22_f0.pdf#3432/CH7/EX7.22/Ex7_22_f0.pdf#R##118809 +7#State Space Design#7.22#SRL design for satellite attitude control#Ex7_22.sce#3432/CH7/EX7.22/Ex7_22.sce#S##118808 +7#State Space Design#7.22#SRL design for satellite attitude control#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +7#State Space Design#7.22#SRL design for satellite attitude control#acker_dk.sci#3432/DEPENDENCIES/acker_dk.sci#D#State feedback gain matrix 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Dominant Second Order System#acker_dk.sci#3432/DEPENDENCIES/acker_dk.sci#D#State feedback gain matrix computation#1187 +7#State Space Design#7.2.b#Cruise control system step response#Ex7_2.sce#3432/CH7/EX7.2.b/Ex7_2.sce#S##118786 +7#State Space Design#7.2.b#Cruise control system step response#Ex7_2_f0.pdf#3432/CH7/EX7.2.b/Ex7_2_f0.pdf#R##118785 +7#State Space Design#7.2.b#Cruise control system step response#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +7#State Space Design#7.19#Reference input to Type1 control system DC Motor#Ex7_19_f0.pdf#3432/CH7/EX7.19/Ex7_19_f0.pdf#R##118802 +7#State Space Design#7.19#Reference input to Type1 control system DC Motor#Ex7_19.sce#3432/CH7/EX7.19/Ex7_19.sce#S##118801 +7#State Space Design#7.19#Reference input to Type1 control system DC Motor#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +7#State Space Design#7.19#Reference input to Type1 control system DC Motor#acker_dk.sci#3432/DEPENDENCIES/acker_dk.sci#D#State feedback gain matrix computation#1187 +7#State Space Design#7.18#Introducing the reference input#Ex7_18_f0.pdf#3432/CH7/EX7.18/Ex7_18_f0.pdf#R##118800 +7#State Space Design#7.18#Introducing the reference input#Ex7_18.sce#3432/CH7/EX7.18/Ex7_18.sce#S##118799 +7#State Space Design#7.18#Introducing the reference input#acker_dk.sci#3432/DEPENDENCIES/acker_dk.sci#D#State feedback gain matrix computation#1187 +7#State Space Design#7.18#Introducing the reference input#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +7#State Space Design#7.17#How zero location affect control law#Ex7_17.sce#3432/CH7/EX7.17/Ex7_17.sce#S##118798 +7#State Space Design#7.17#How zero location affect control law#acker_dk.sci#3432/DEPENDENCIES/acker_dk.sci#D#State feedback gain matrix computation#1187 +7#State Space Design#7.16#Ackermanns formula for undamped oscillator#Ex7_16.sce#3432/CH7/EX7.16/Ex7_16.sce#S##118797 +7#State Space Design#7.16#Ackermanns formula for undamped oscillator#acker_dk.sci#3432/DEPENDENCIES/acker_dk.sci#D#State feedback gain matrix computation#1187 +7#State Space Design#7.15#Control law for a pendulum#Ex7_15_f0.pdf#3432/CH7/EX7.15/Ex7_15_f0.pdf#R##118796 +7#State Space Design#7.15#Control law for a pendulum#Ex7_15.sce#3432/CH7/EX7.15/Ex7_15.sce#S##118795 +7#State Space Design#7.15#Control law for a pendulum#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +7#State Space Design#7.14#Analysis of state equations of Tape Drive#Ex7_14.sce#3432/CH7/EX7.14/Ex7_14.sce#S##118794 +7#State Space Design#7.13#Zeros for the Thermal System from a State Description#Ex7_13.sce#3432/CH7/EX7.13/Ex7_13.sce#S##118793 +7#State Space Design#7.12#Transformation of Thermal System from state description#Ex7_12.sce#3432/CH7/EX7.12/Ex7_12.sce#S##118792 +7#State Space Design#7.11#Poles and Zeros of Tape Drive System#Ex7_11.sce#3432/CH7/EX7.11/Ex7_11.sce#S##118791 +7#State Space 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System#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +6#The Frequency Response Design Method#6.16#Lead compensation for Servomechanism System#Ex6_16_f0.pdf#3432/CH6/EX6.16/Ex6_16_f0.pdf#R##118774 +6#The Frequency Response Design Method#6.16#Lead compensation for Servomechanism System#Ex6_16.sce#3432/CH6/EX6.16/Ex6_16.sce#S##118773 +6#The Frequency Response Design Method#6.16#Lead compensation for Servomechanism System#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +6#The Frequency Response Design Method#6.15#Lead compensation for Temperature Control System#Ex6_15_f0.pdf#3432/CH6/EX6.15/Ex6_15_f0.pdf#R##118771 +6#The Frequency Response Design Method#6.15#Lead compensation for Temperature Control System#Ex6_15.sce#3432/CH6/EX6.15/Ex6_15.sce#S##118770 +6#The Frequency Response Design Method#6.15#Lead compensation for Temperature Control System#Ex6_15_f1.pdf#3432/CH6/EX6.15/Ex6_15_f1.pdf#R##118772 +6#The Frequency Response Design Method#6.15#Lead compensation for Temperature Control System#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +6#The Frequency Response Design Method#6.14#Lead compensation for DC motor#Ex6_14_model.xcos#3432/CH6/EX6.14/Ex6_14_model.xcos#X##118769 +6#The Frequency Response Design Method#6.14#Lead compensation for DC motor#Ex6_14_f2.pdf#3432/CH6/EX6.14/Ex6_14_f2.pdf#R##118768 +6#The Frequency Response Design Method#6.14#Lead compensation for DC motor#Ex6_14_f1.pdf#3432/CH6/EX6.14/Ex6_14_f1.pdf#R##118767 +6#The Frequency Response Design Method#6.14#Lead compensation for DC motor#Ex6_14.sce#3432/CH6/EX6.14/Ex6_14.sce#S##118766 +6#The Frequency Response Design Method#6.14#Lead compensation for DC motor#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +6#The Frequency Response Design Method#6.13#Use of simple design criterion for spacecraft attitude control#Ex6_13_f3.pdf#3432/CH6/EX6.13/Ex6_13_f3.pdf#R##118765 +6#The Frequency Response Design Method#6.13#Use of simple design criterion for spacecraft attitude control#Ex6_13_f0.pdf#3432/CH6/EX6.13/Ex6_13_f0.pdf#R##118764 +6#The Frequency Response Design Method#6.13#Use of simple design criterion for spacecraft attitude control#Ex6_13.sce#3432/CH6/EX6.13/Ex6_13.sce#S##118763 +6#The Frequency Response Design Method#6.13#Use of simple design criterion for spacecraft attitude control#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +6#The Frequency Response Design Method#6.12#Nyquist plot for a system with Multiple Crossover frequencies#Ex6_12.sce#3432/CH6/EX6.12/Ex6_12.sce#S##118760 +6#The Frequency Response Design Method#6.12#Nyquist plot for a system with Multiple Crossover frequencies#Ex6_12_f1.pdf#3432/CH6/EX6.12/Ex6_12_f1.pdf#R##118762 +6#The Frequency Response Design Method#6.12#Nyquist plot for a system with Multiple Crossover frequencies#Ex6_12_f0.pdf#3432/CH6/EX6.12/Ex6_12_f0.pdf#R##118761 +6#The Frequency Response Design Method#6.12#Nyquist plot for a system with Multiple Crossover frequencies#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +6#The Frequency Response Design Method#6.11#Stability properties for a conditionally stable system#Ex6_11_f1.pdf#3432/CH6/EX6.11/Ex6_11_f1.pdf#R##118741 +6#The Frequency Response Design Method#6.11#Stability properties for a conditionally stable system#Ex6_11_f0.pdf#3432/CH6/EX6.11/Ex6_11_f0.pdf#R##118740 +6#The Frequency Response Design Method#6.11#Stability properties for a conditionally stable system#Ex6_11.sce#3432/CH6/EX6.11/Ex6_11.sce#S##118739 +6#The Frequency Response Design Method#6.11#Stability properties for a conditionally stable system#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +6#The Frequency Response Design Method#6.10#Nyquist plot for an Open loop unstable system#Ex6_10_f1.pdf#3432/CH6/EX6.10/Ex6_10_f1.pdf#R##118736 +6#The Frequency Response Design Method#6.10#Nyquist plot for an Open loop unstable system#Ex6_10_f0.pdf#3432/CH6/EX6.10/Ex6_10_f0.pdf#R##118735 +6#The Frequency Response Design Method#6.10#Nyquist plot for an Open loop unstable system#Ex6_10.sce#3432/CH6/EX6.10/Ex6_10.sce#S##118734 +6#The Frequency Response Design Method#6.10#Nyquist plot for an Open loop unstable system#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +5#The Root Locus Design method#5.9#Root locus for the system having complex multiple roots#Ex5_9_f1.pdf#3432/CH5/EX5.9/Ex5_9_f1.pdf#R##118618 +5#The Root Locus Design method#5.9#Root locus for the system having complex multiple roots#Ex5_9_f0.pdf#3432/CH5/EX5.9/Ex5_9_f0.pdf#R##118617 +5#The Root Locus Design method#5.9#Root locus for the system having complex multiple roots#Ex5_9.sce#3432/CH5/EX5.9/Ex5_9.sce#S##118616 +5#The Root Locus Design method#5.9#Root locus for the system having complex multiple roots#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +5#The Root Locus Design method#5.8#Root locus for noncollocated case#Ex5_8_f1.pdf#3432/CH5/EX5.8/Ex5_8_f1.pdf#R##118615 +5#The Root Locus Design method#5.8#Root locus for noncollocated case#Ex5_8_f0.pdf#3432/CH5/EX5.8/Ex5_8_f0.pdf#R##118614 +5#The Root Locus Design method#5.8#Root locus for noncollocated case#Ex5_8.sce#3432/CH5/EX5.8/Ex5_8.sce#S##118613 +5#The Root Locus Design method#5.8#Root locus for noncollocated case#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +5#The Root Locus Design method#5.7#Root locus for satellite control with a Collocated Flexibility#Ex5_7_f1.pdf#3432/CH5/EX5.7/Ex5_7_f1.pdf#R##118612 +5#The Root Locus Design method#5.7#Root locus for satellite control with a Collocated Flexibility#Ex5_7_f0.pdf#3432/CH5/EX5.7/Ex5_7_f0.pdf#R##118611 +5#The Root Locus Design method#5.7#Root locus for satellite control with a Collocated Flexibility#Ex5_7.sce#3432/CH5/EX5.7/Ex5_7.sce#S##118610 +5#The Root Locus Design method#5.7#Root locus for satellite control with a Collocated Flexibility#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +5#The Root Locus Design method#5.6#Root locus for satellite attitude control with a Transition value for the pole#Ex5_6_f0.pdf#3432/CH5/EX5.6/Ex5_6_f0.pdf#R##118609 +5#The Root Locus Design method#5.6#Root locus for satellite attitude control with a Transition value for the pole#Ex5_6.sce#3432/CH5/EX5.6/Ex5_6.sce#S##118608 +5#The Root Locus Design method#5.6#Root locus for satellite attitude control with a Transition value for the pole#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +5#The Root Locus Design method#5.5#Root locus for satellite control with Lead compensator#Ex5_5_f0.pdf#3432/CH5/EX5.5/Ex5_5_f0.pdf#R##118607 +5#The Root Locus Design method#5.5#Root locus for satellite control with Lead compensator#Ex5_5.sce#3432/CH5/EX5.5/Ex5_5.sce#S##118606 +5#The Root Locus Design method#5.5#Root locus for satellite control with Lead compensator#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +5#The Root Locus Design method#5.4#Root locus for satellite attitude control with modified PD control or Lead compensator#Ex5_4_f0.pdf#3432/CH5/EX5.4/Ex5_4_f0.pdf#R##118605 +5#The Root Locus Design method#5.4#Root locus for satellite attitude control with modified PD control or Lead compensator#Ex5_4.sce#3432/CH5/EX5.4/Ex5_4.sce#S##118604 +5#The Root Locus Design method#5.4#Root locus for satellite attitude control with modified PD control or Lead compensator#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +5#The Root Locus Design method#5.3#Root locus for satellite attitude control with PD control#Ex5_3_f0.pdf#3432/CH5/EX5.3/Ex5_3_f0.pdf#R##118603 +5#The Root Locus Design method#5.3#Root locus for satellite attitude control with PD control#Ex5_3.sce#3432/CH5/EX5.3/Ex5_3.sce#S##118602 +5#The Root Locus Design method#5.3#Root locus for satellite attitude control with PD control#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +5#The Root Locus Design method#5.2#Root locus with respect to a plant open loop pole#Ex5_2_f0.pdf#3432/CH5/EX5.2/Ex5_2_f0.pdf#R##118601 +5#The Root Locus Design method#5.2#Root locus with respect to a plant open loop pole#Ex5_2.sce#3432/CH5/EX5.2/Ex5_2.sce#S##118600 +5#The Root Locus Design method#5.2#Root locus with respect to a plant open loop pole#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +5#The Root Locus Design method#5.12#Negative root Locus for an Airplane#Ex5_12_f0.pdf#3432/CH5/EX5.12/Ex5_12_f0.pdf#R##118844 +5#The Root Locus Design method#5.12#Negative root Locus for an Airplane#Ex5_12.sce#3432/CH5/EX5.12/Ex5_12.sce#S##118625 +5#The Root Locus Design method#5.12#Negative root Locus for an Airplane#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +5#The Root Locus Design method#5.11#A second Lead compensation 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locus of a Motor Position Control#Ex5_1_f0.pdf#3432/CH5/EX5.1/Ex5_1_f0.pdf#R##118599 +5#The Root Locus Design method#5.1#Root locus of a Motor Position Control#Ex5_1.sce#3432/CH5/EX5.1/Ex5_1.sce#S##118598 +5#The Root Locus Design method#5.1#Root locus of a Motor Position Control#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +4#Basic properties of feedback#4.8#Equivalent discrete controller for DC motor speed control#Ex4_8_f1.pdf#3432/CH4/EX4.8/Ex4_8_f1.pdf#R##118597 +4#Basic properties of feedback#4.8#Equivalent discrete controller for DC motor speed control#Ex4_8_f0.pdf#3432/CH4/EX4.8/Ex4_8_f0.pdf#R##118596 +4#Basic properties of feedback#4.8#Equivalent discrete controller for DC motor speed control#Ex4_8.sce#3432/CH4/EX4.8/Ex4_8.sce#S##118595 +4#Basic properties of feedback#4.8#Equivalent discrete controller for DC motor speed control#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +4#Basic properties of feedback#4.7#Discrete Equivalent#Ex4_7.sce#3432/CH4/EX4.7/Ex4_7.sce#S##118594 +4#Basic properties of feedback#4.7#Discrete Equivalent#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +4#Basic properties of feedback#4.6#PID Control of DC Motor Speed#Ex4_6_f1.pdf#3432/CH4/EX4.6/Ex4_6_f1.pdf#R##118593 +4#Basic properties of feedback#4.6#PID Control of DC Motor Speed#Ex4_6_f0.pdf#3432/CH4/EX4.6/Ex4_6_f0.pdf#R##118592 +4#Basic properties of feedback#4.6#PID Control of DC Motor Speed#Ex4_6.sce#3432/CH4/EX4.6/Ex4_6.sce#S##120572 +3#Dynamic Responses#3.9#Final value theorem#Ex3_9.sce#3432/CH3/EX3.9/Ex3_9.sce#S##118569 +3#Dynamic Responses#3.8#Partial fraction expansion for distinct real roots#Ex3_8.sce#3432/CH3/EX3.8/Ex3_8.sce#S##118568 +3#Dynamic Responses#3.4#Frequency response#Ex3_4_f1.pdf#3432/CH3/EX3.4/Ex3_4_f1.pdf#R##118567 +3#Dynamic Responses#3.4#Frequency response#Ex3_4_f0.pdf#3432/CH3/EX3.4/Ex3_4_f0.pdf#R##118566 +3#Dynamic Responses#3.4#Frequency response#Ex3_4.sce#3432/CH3/EX3.4/Ex3_4.sce#S##118565 +3#Dynamic Responses#3.4#Frequency response#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +3#Dynamic Responses#3.30#Stability versus two parameter ranges#Ex3_30_f0.pdf#3432/CH3/EX3.30/Ex3_30_f0.pdf#R##118590 +3#Dynamic Responses#3.30#Stability versus two parameter ranges#Ex3_30.sce#3432/CH3/EX3.30/Ex3_30.sce#S##118589 +3#Dynamic Responses#3.30#Stability versus two parameter ranges#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +3#Dynamic Responses#3.29#Stability versus parameter range#Ex3_29.sce#3432/CH3/EX3.29/Ex3_29.sce#S##118587 +3#Dynamic Responses#3.29#Stability versus parameter range#Ex3_29_f0.pdf#3432/CH3/EX3.29/Ex3_29_f0.pdf#R##118588 +3#Dynamic Responses#3.29#Stability versus parameter range#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +3#Dynamic Responses#3.25#Aircraft Response#Ex3_25_f0.pdf#3432/CH3/EX3.25/Ex3_25_f0.pdf#R##118586 +3#Dynamic Responses#3.25#Aircraft Response#Ex3_25.sce#3432/CH3/EX3.25/Ex3_25.sce#S##118585 +3#Dynamic Responses#3.25#Aircraft Response#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +3#Dynamic Responses#3.23#Oscillatory Time Response#Ex3_23_f0.pdf#3432/CH3/EX3.23/Ex3_23_f0.pdf#R##118584 +3#Dynamic Responses#3.23#Oscillatory Time Response#Ex3_23.sce#3432/CH3/EX3.23/Ex3_23.sce#S##118583 +3#Dynamic Responses#3.23#Oscillatory Time Response#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +3#Dynamic Responses#3.22#Response Versus Pole Locations Real Roots#Ex3_22_f0.pdf#3432/CH3/EX3.22/Ex3_22_f0.pdf#R##118582 +3#Dynamic Responses#3.22#Response Versus Pole Locations Real Roots#Ex3_22.sce#3432/CH3/EX3.22/Ex3_22.sce#S##118581 +3#Dynamic Responses#3.22#Response Versus Pole Locations Real Roots#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +3#Dynamic Responses#3.21#Transfer function of a simple system#Ex3_21.sce#3432/CH3/EX3.21/Ex3_21.sce#S##118580 +3#Dynamic Responses#3.18#Satellite Transfer Function#Ex3_18_f3.pdf#3432/CH3/EX3.18/Ex3_18_f3.pdf#R##118849 +3#Dynamic Responses#3.18#Satellite Transfer Function#Ex3_18_f1.pdf#3432/CH3/EX3.18/Ex3_18_f1.pdf#R##118578 +3#Dynamic Responses#3.18#Satellite Transfer Function#Ex3_18.sce#3432/CH3/EX3.18/Ex3_18.sce#S##120571 +3#Dynamic Responses#3.17#Transformations#Ex3_17.sce#3432/CH3/EX3.17/Ex3_17.sce#S##118576 +3#Dynamic Responses#3.16#DC Motor Transfer Function#Ex3_16_f0.pdf#3432/CH3/EX3.16/Ex3_16_f0.pdf#R##118575 +3#Dynamic Responses#3.16#DC Motor Transfer Function#Ex3_16.sce#3432/CH3/EX3.16/Ex3_16.sce#S##118574 +3#Dynamic Responses#3.16#DC Motor Transfer Function#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +3#Dynamic Responses#3.15# Cruise Control Transfer Function#Ex3_15.sce#3432/CH3/EX3.15/Ex3_15.sce#S##118573 +3#Dynamic Responses#3.14#Partial fraction expansion for distinct real roots#Ex3_14.sce#3432/CH3/EX3.14/Ex3_14.sce#S##118572 +3#Dynamic Responses#3.11#DC gain of the system#Ex3_11.sce#3432/CH3/EX3.11/Ex3_11.sce#S##118571 +3#Dynamic Responses#3.10#Incorrect use of final value theorem#Ex3_10.sce#3432/CH3/EX3.10/Ex3_10.sce#S##118570 +2#Dynamic Models#2.5.b#step response of pendulum#Ex2_5_f0.pdf#3432/CH2/EX2.5.b/Ex2_5_f0.pdf#R##118564 +2#Dynamic Models#2.5.b#step response of pendulum#Ex2_5.sce#3432/CH2/EX2.5.b/Ex2_5.sce#S##118563 +2#Dynamic Models#2.5.b#step response of pendulum#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 +2#Dynamic Models#2.1.b#step response of Cruise control system#Ex2_1.sce#3432/CH2/EX2.1.b/Ex2_1.sce#S##118561 +2#Dynamic Models#2.1.b#step response of Cruise control system#Ex2_1_f0.pdf#3432/CH2/EX2.1.b/Ex2_1_f0.pdf#R##118562 +2#Dynamic Models#2.1.b#step response of Cruise control system#fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#D#figure setting file#1186 diff --git a/latex/tmp_3432_dep_data.txt b/latex/tmp_3432_dep_data.txt index e69de29bb..882f57eb2 100644 --- a/latex/tmp_3432_dep_data.txt +++ b/latex/tmp_3432_dep_data.txt @@ -0,0 +1,3 @@ +fig_settings.sci#3432/DEPENDENCIES/fig_settings.sci#figure setting file#1186 +acker_dk.sci#3432/DEPENDENCIES/acker_dk.sci#State feedback gain matrix computation#1187 +zpk_dk.sci#3432/DEPENDENCIES/zpk_dk.sci#ZPK computation#1188 diff --git a/latex/tmp_3446_contributor.txt b/latex/tmp_3446_contributor.txt index c907fb447..06244b263 100644 --- a/latex/tmp_3446_contributor.txt +++ b/latex/tmp_3446_contributor.txt @@ -1 +1 @@ -Vishal Changlani#Electronics and telecommunication engineering#Electronics Engineering#Mumbai University, VESIT.#None#None +Vishal Changlani#Electronics and telecommunication engineering#Electronics Engineering#VESIT#None#Spandana diff --git a/latex/tmp_3446_data.txt b/latex/tmp_3446_data.txt index e69de29bb..78a2d88da 100644 --- a/latex/tmp_3446_data.txt +++ b/latex/tmp_3446_data.txt @@ -0,0 +1,104 @@ +24#Spreading Codes used in CDMA#24.2#To generate second m sequence#Ex_D2.sce#3446/CH24/EX24.2/Ex_D2.sce#S##119028 +24#Spreading Codes used in CDMA#24.1#To generate m sequence and demonstrate its properties#Ex_D1.sce#3446/CH24/EX24.1/Ex_D1.sce#S##119027 +21#Wireless Local Area Network#21.9#To calculate Rmax for given interference scenarios#Ex21_9.sce#3446/CH21/EX21.9/Ex21_9.sce#S##119025 +21#Wireless Local Area Network#21.8#To calculate min SIR and using this SIR and other data calculate Rmax#Ex21_8.sce#3446/CH21/EX21.8/Ex21_8.sce#S##119024 +21#Wireless Local Area Network#21.7#To determine the collision probability of a FH packet#Ex21_7.sce#3446/CH21/EX21.7/Ex21_7.sce#S##119023 +21#Wireless Local Area Network#21.6#To find user data rate for HIPERLAN 2#Ex21_6.sce#3446/CH21/EX21.6/Ex21_6.sce#S##119022 +21#Wireless Local Area Network#21.5#To calculate coded symbol and bit transmission rate per subscriber of the two modes#Ex21_5.sce#3446/CH21/EX21.5/Ex21_5.sce#S##119021 +21#Wireless Local Area Network#21.4#To find coverage of the AP#Ex21_4.sce#3446/CH21/EX21.4/Ex21_4.sce#S##119020 +21#Wireless Local Area Network#21.3#To find bandwidth of a subchannel and various other parameters of a OFDM WLAN system#Ex21_3.sce#3446/CH21/EX21.3/Ex21_3.sce#S##119019 +21#Wireless Local Area Network#21.2#To find hopping bandwidth and various other parameters for FH MFSK WLAN system #Ex21_2.sce#3446/CH21/EX21.2/Ex21_2.sce#S##119018 +21#Wireless Local Area Network#21.10#To calculate Rmax for IEEE 802 11 FH and DS devices#Ex21_10.sce#3446/CH21/EX21.10/Ex21_10.sce#S##119026 +21#Wireless Local Area Network#21.1#To find number of users supported by WLAN and its bandwidth efficiency#EX21_1.sce#3446/CH21/EX21.1/EX21_1.sce#S##119017 +19#Wireless Personal Area Network Bluetooth#19.2#To find the associated data rate of a symmetric 1soot DM1#Ex19_2.sce#3446/CH19/EX19.2/Ex19_2.sce#S##119016 +19#Wireless Personal Area Network Bluetooth#19.1#To find hopping rate and various other parameters of Bluetooth#Ex19_1.sce#3446/CH19/EX19.1/Ex19_1.sce#S##119015 +17#Planning and Design of a Wireless Network#17.9#To develop a radio link budget for uplink and downlink#Ex17_9.sce#3446/CH17/EX17.9/Ex17_9.sce#S##119008 +17#Planning and Design of a Wireless Network#17.8#To determine minimum signal power and maximum allowable path loss#Ex17_8.sce#3446/CH17/EX17.8/Ex17_8.sce#S##119007 +17#Planning and Design of a Wireless Network#17.7#To calculate downlink cell load factor and number of voice users per cell#Ex17_7.sce#3446/CH17/EX17.7/Ex17_7.sce#S##119006 +17#Planning and Design of a Wireless Network#17.6#To calculate uplink throughput for WCDMA data service #Ex17_6.sce#3446/CH17/EX17.6/Ex17_6.sce#S##119005 +17#Planning and Design of a Wireless Network#17.5#To calculate Uplink cell load factor and pole capacity#Ex17_5.sce#3446/CH17/EX17.5/Ex17_5.sce#S##119004 +17#Planning and Design of a Wireless Network#17.4#To develop downlink and uplink cell budget and calculate cell radius#Ex17_4.sce#3446/CH17/EX17.4/Ex17_4.sce#S##119003 +17#Planning and Design of a Wireless Network#17.3#To calculate data Erlangs along with TS utilization and capacity#Ex17_3.sce#3446/CH17/EX17.3/Ex17_3.sce#S##119002 +17#Planning and Design of a Wireless Network#17.2#To estimate the data and voice traffic per subscriber and per cell#Ex17_2.sce#3446/CH17/EX17.2/Ex17_2.sce#S##119001 +17#Planning and Design of a Wireless Network#17.15#To find the required RNCs#Ex17_15.sce#3446/CH17/EX17.15/Ex17_15.sce#S##119014 +17#Planning and Design of a Wireless Network#17.14#To find bandwidth of a Iub interface#Ex17_14.sce#3446/CH17/EX17.14/Ex17_14.sce#S##119013 +17#Planning and Design of a Wireless Network#17.13#To estimate average SINR of a HSDPA#Ex17_13.sce#3446/CH17/EX17.13/Ex17_13.sce#S##119012 +17#Planning and Design of a Wireless Network#17.12#TO find the allowable throughput of a reverse link of a CDMA 2000#Ex17_12.sce#3446/CH17/EX17.12/Ex17_12.sce#S##119011 +17#Planning and Design of a Wireless Network#17.11#find the average throughput for various cases#Ex17_11.sce#3446/CH17/EX17.11/Ex17_11.sce#S##119010 +17#Planning and Design of a Wireless Network#17.10#To find the number of users supported on the downlink of a WCDMA Network#Ex17_10.sce#3446/CH17/EX17.10/Ex17_10.sce#S##119009 +17#Planning and Design of a Wireless Network#17.1#To calculate various parameters for GSM 1800 network#Ex17_1.sce#3446/CH17/EX17.1/Ex17_1.sce#S##119000 +14#Mobile Network and Transport Layer#14.2#To calculate upper bound of the throughput for TP connection and throughput with retransmission due to errors#Ex14_2.sce#3446/CH14/EX14.2/Ex14_2.sce#S##118999 +14#Mobile Network and Transport Layer#14.1#To determine minimum possible latency and window size to achieve this latency#Ex14_1.sce#3446/CH14/EX14.1/Ex14_1.sce#S##118998 +13#Security in Wireless Systems#13.2#To determine the secret encrypting key K using DH key exchange algorithm#Ex13_2.sce#3446/CH13/EX13.2/Ex13_2.sce#S##118997 +13#Security in Wireless Systems#13.1#To generate public and private keys for RSA algorithm#Ex13_1.sce#3446/CH13/EX13.1/Ex13_1.sce#S##118996 +12#Mobility Management in Wireless Networks#12.1#To evaluate the impact of LUs on the radio resource and calculate MSC or VLR transaction load#Ex12_1.sce#3446/CH12/EX12.1/Ex12_1.sce#S##118995 +11#Spread Spectrum and CDMA Systems #11.8#To determine the possible pair of soft slope and add intercept values#Ex11_8.sce#3446/CH11/EX11.8/Ex11_8.sce#S##118994 +11#Spread Spectrum and CDMA Systems #11.7#To calculate the time required by mobile to make the required change#Ex11_7.sce#3446/CH11/EX11.7/Ex11_7.sce#S##118993 +11#Spread Spectrum and CDMA Systems #11.6#To show how mobile1 will detect its information using a two path rake receiver#Ex11_6.sce#3446/CH11/EX11.6/Ex11_6.sce#S##118992 +11#Spread Spectrum and CDMA Systems #11.5#To consider various parameters of FHSS systems#Ex11_5.sce#3446/CH11/EX11.5/Ex11_5.sce#S##118991 +11#Spread Spectrum and CDMA Systems #11.4#To calculate data symbol transmitted per hop and number of non overlapping hop frequencies#Ex11_4.sce#3446/CH11/EX11.4/Ex11_4.sce#S##118990 +11#Spread Spectrum and CDMA Systems #11.3#Minimum number of PN chips required for each frequency symbol#Ex11_3.sce#3446/CH11/EX11.3/Ex11_3.sce#S##118989 +11#Spread Spectrum and CDMA Systems #11.2#Show that the transmitted signals to mobiles 1 2 and 3 are recovered at the mobile receivers by despreading the resultant signal z#Ex11_2.sce#3446/CH11/EX11.2/Ex11_2.sce#S##118988 +11#Spread Spectrum and CDMA Systems #11.1#To calculate processing gain and improvemet in information rate achieved#Ex11_1.sce#3446/CH11/EX11.1/Ex11_1.sce#S##118987 +10#Antennas Diversity and Link Analysis#10.7#To calculate minimum delay difference to successfully resolve multipath components#Ex10_7.sce#3446/CH10/EX10.7/Ex10_7.sce#S##118986 +10#Antennas Diversity and Link Analysis#10.6#To find probability that SNR will drop below 10dB and compare result with a case of without diversity#Ex10_6.sce#3446/CH10/EX10.6/Ex10_6.sce#S##118985 +10#Antennas Diversity and Link Analysis#10.5#To calculate various parameters of helical antenna#Ex10_5.sce#3446/CH10/EX10.5/Ex10_5.sce#S##118984 +10#Antennas Diversity and Link Analysis#10.4#To determine 3dB beam width of an antenna#Ex10_4.sce#3446/CH10/EX10.4/Ex10_4.sce#S##118983 +10#Antennas Diversity and Link Analysis#10.3#To calculate gain of antenna#Ex10_3.sce#3446/CH10/EX10.3/Ex10_3.sce#S##118982 +10#Antennas Diversity and Link Analysis#10.2#To find received signal power and SNR of antenna#Ex10_2.sce#3446/CH10/EX10.2/Ex10_2.sce#S##118980 +10#Antennas Diversity and Link Analysis#10.1#To find received signal power and SNR of antenna#Ex10_1.sce#3446/CH10/EX10.1/Ex10_1.sce#S##118981 +9#Modulation Schemes#9.9#To find total bandwitdth and its efficiency along with required Eb by No and carried bits per symbol#Ex9_9.sce#3446/CH9/EX9.9/Ex9_9.sce#S##118979 +9#Modulation Schemes#9.8#Compare the performance of 16PSK with 16QAM#Ex9_8.sce#3446/CH9/EX9.8/Ex9_8.sce#S##118978 +9#Modulation Schemes#9.7#To determine the modulation scheme to be used along with required Eb by No#Ex9_7.sce#3446/CH9/EX9.7/Ex9_7.sce#S##118977 +9#Modulation Schemes#9.6#To calculate bit rate of modulator#Ex9_6.sce#3446/CH9/EX9.6/Ex9_6.sce#S##118976 +9#Modulation Schemes#9.5#To calculate bit error probability for GMSK#Ex9_5.sce#3446/CH9/EX9.5/Ex9_5.sce#S##118975 +9#Modulation Schemes#9.4#To calculate frequency shift along with transmitted frequencies and bandwidth efficiency#Ex9_4.sce#3446/CH9/EX9.4/Ex9_4.sce#S##118974 +9#Modulation Schemes#9.3#To calculate final phase for given bitstream for given modulation method#Ex9_3.sce#3446/CH9/EX9.3/Ex9_3.sce#S##118973 +9#Modulation Schemes#9.2#To calculate amplitude A of the carrier signal#Ex9_2.sce#3446/CH9/EX9.2/Ex9_2.sce#S##118972 +9#Modulation Schemes#9.1#To find Eb by No in dB#Ex9_1.sce#3446/CH9/EX9.1/Ex9_1.sce#S##118971 +8#Speech Coding and Channel Coding#8.3#To demonstrate operations of converting burst errors into bit errors#Ex8_3.sce#3446/CH8/EX8.3/Ex8_3.sce#S##118970 +8#Speech Coding and Channel Coding#8.2#To calculate output of convolution encoder#Ex8_2.sce#3446/CH8/EX8.2/Ex8_2.sce#S##118969 +8#Speech Coding and Channel Coding#8.1#To calculate the gain in the link budget in dB#Ex8_1.sce#3446/CH8/EX8.1/Ex8_1.sce#S##118968 +6#Multiple Access Techniques#6.9#To find normalized throughput for different CSMA protocols#Ex6_9.sce#3446/CH6/EX6.9/Ex6_9.sce#S##118966 +6#Multiple Access Techniques#6.8#To calculate minimum number of PN chips per frequency word#Ex6_8.sce#3446/CH6/EX6.8/Ex6_8.sce#S##118965 +6#Multiple Access Techniques#6.7#Compare DS CDMA and TDMA omnidirectional cell#Ex6_7.sce#3446/CH6/EX6.7/Ex6_7.sce#S##118964 +6#Multiple Access Techniques#6.6#To calculate capacity and spectral efficiency of the DSCDMA system#Ex6_6.sce#3446/CH6/EX6.6/Ex6_6.sce#S##118963 +6#Multiple Access Techniques#6.5#To calculate the frame efficiency and the number of channels per frame#Ex6_5.sce#3446/CH6/EX6.5/Ex6_5.sce#S##118962 +6#Multiple Access Techniques#6.4#To calculate the capacity and spectral efficiency of TDMA system#Ex6_4.sce#3446/CH6/EX6.4/Ex6_4.sce#S##118961 +6#Multiple Access Techniques#6.3#To find multiple access spectral efficiency of the TDMA system#Ex6_3.sce#3446/CH6/EX6.3/Ex6_3.sce#S##118959 +6#Multiple Access Techniques#6.2#To find multiple access spectral efficiency for FDMA#EX6_2.sce#3446/CH6/EX6.2/EX6_2.sce#S##118960 +6#Multiple Access Techniques#6.10#To find data link protocol efficiency with different protocols#Ex6_10.sce#3446/CH6/EX6.10/Ex6_10.sce#S##118967 +6#Multiple Access Techniques#6.1#To calculate spectral efficiency of modulation#Ex6_1.sce#3446/CH6/EX6.1/Ex6_1.sce#S##118957 +5#Fundamentals of Cellular Communications#5.5#To calculate calls per hour per cellsite and mean S by I and spectral efficiency#Ex5_5.sce#3446/CH5/EX5.5/Ex5_5.sce#S##118956 +5#Fundamentals of Cellular Communications#5.4#To calculate the number of calls per hour per cellsite#Ex5_4.sce#3446/CH5/EX5.4/Ex5_4.sce#S##118955 +5#Fundamentals of Cellular Communications#5.3#To calculate call capacity of cell and Mean S by I for N as 4 and 7 and 12#Ex5_3.sce#3446/CH5/EX5.3/Ex5_3.sce#S##118954 +5#Fundamentals of Cellular Communications#5.2#To find reuse factor for AMPS and GSM#Ex5_2.sce#3446/CH5/EX5.2/Ex5_2.sce#S##118953 +5#Fundamentals of Cellular Communications#5.1#To find system capacity#Ex5_1.sce#3446/CH5/EX5.1/Ex5_1.sce#S##118952 +4#An Overview of Digital Communication and Transmission#4.6#To find choice of modulation scheme without error correcting coding#Ex4_6.sce#3446/CH4/EX4.6/Ex4_6.sce#S##118951 +4#An Overview of Digital Communication and Transmission#4.5#To determine choice of modulation scheme#Ex4_5.sce#3446/CH4/EX4.5/Ex4_5.sce#S##118950 +4#An Overview of Digital Communication and Transmission#4.4#To calculate bits per PCM word sampling rate resultant and symbol transmission rate#Ex4_4.sce#3446/CH4/EX4.4/Ex4_4.sce#S##118949 +4#An Overview of Digital Communication and Transmission#4.3#To calculate spacing between successive pulses of multiplexed signal#Ex4_3.sce#3446/CH4/EX4.3/Ex4_3.sce#S##118948 +4#An Overview of Digital Communication and Transmission#4.2#To determine the SNR#Ex4_2.sce#3446/CH4/EX4.2/Ex4_2.sce#S##118947 +4#An Overview of Digital Communication and Transmission#4.1#To determine the sampling rates#Ex4_1.sce#3446/CH4/EX4.1/Ex4_1.sce#S##118946 +3#Radio Propagation and Propagation PathLoss Models#3.9#To calculate probability of exceeding signal strength beyond receiver sensitivity#Ex3_9.sce#3446/CH3/EX3.9/Ex3_9.sce#S##118944 +3#Radio Propagation and Propagation PathLoss Models#3.8#To determine coverage radius of an access point#Ex3_8.sce#3446/CH3/EX3.8/Ex3_8.sce#S##118943 +3#Radio Propagation and Propagation PathLoss Models#3.7#To determine L50 pathloss #EX3_7.sce#3446/CH3/EX3.7/EX3_7.sce#S##118942 +3#Radio Propagation and Propagation PathLoss Models#3.6#To determine number of fades per second and maximum velocity of mobile#Ex3_6.sce#3446/CH3/EX3.6/Ex3_6.sce#S##118941 +3#Radio Propagation and Propagation PathLoss Models#3.5#To determine type of fading and symbol distortion#EX3_5.sce#3446/CH3/EX3.5/EX3_5.sce#S##118906 +3#Radio Propagation and Propagation PathLoss Models#3.4#To find the distance between transmitter and receiver#Ex3_4.sce#3446/CH3/EX3.4/Ex3_4.sce#S##118905 +3#Radio Propagation and Propagation PathLoss Models#3.3#To find the allowable path loss#Ex3_3.sce#3446/CH3/EX3.3/Ex3_3.sce#S##118904 +3#Radio Propagation and Propagation PathLoss Models#3.2#To find received signal power and SNR#Ex3_2.sce#3446/CH3/EX3.2/Ex3_2.sce#S##118903 +3#Radio Propagation and Propagation PathLoss Models#3.10#To find required transmitter power in watts#Ex3_10.sce#3446/CH3/EX3.10/Ex3_10.sce#S##118945 +3#Radio Propagation and Propagation PathLoss Models#3.1#To find free space and reflected surface attenuations#Ex3_1.sce#3446/CH3/EX3.1/Ex3_1.sce#S##118902 +2#Multiple Access Techniques#2.9#To calculate total traffic and number of MSCs required#Ex2_9.sce#3446/CH2/EX2.9/Ex2_9.sce#S##118898 +2#Multiple Access Techniques#2.8#To find average number of BHCAs#Ex2_8.sce#3446/CH2/EX2.8/Ex2_8.sce#S##118897 +2#Multiple Access Techniques#2.7#To find traffic per subscriber per BH in Erlangs#Ex2_7.sce#3446/CH2/EX2.7/Ex2_7.sce#S##118895 +2#Multiple Access Techniques#2.6#To find traffic intensity in Erlangs and CCS during eight hour period and busy hour#Ex2_6.sce#3446/CH2/EX2.6/Ex2_6.sce#S##118856 +2#Multiple Access Techniques#2.5#To find traffic intensity#Ex2_5.sce#3446/CH2/EX2.5/Ex2_5.sce#S##118855 +2#Multiple Access Techniques#2.4#To find traffic intensity#Ex2_4.sce#3446/CH2/EX2.4/Ex2_4.sce#S##118854 +2#Multiple Access Techniques#2.3#To find offered load#Ex2_3.sce#3446/CH2/EX2.3/Ex2_3.sce#S##118853 +2#Multiple Access Techniques#2.2#To find usage in CCS and Erlangs#Ex2_2.sce#3446/CH2/EX2.2/Ex2_2.sce#S##118852 +2#Multiple Access Techniques#2.12#To find the number of supported mobile subscribers #Ex2_12.sce#3446/CH2/EX2.12/Ex2_12.sce#S##118901 +2#Multiple Access Techniques#2.11#To find number of service channels required to handle the load#Ex2_11.sce#3446/CH2/EX2.11/Ex2_11.sce#S##118900 +2#Multiple Access Techniques#2.10#To find the designed cell capacity for the switch and design Erlangs#Ex2_10.sce#3446/CH2/EX2.10/Ex2_10.sce#S##118899 +2#Multiple Access Techniques#2.1#To get Gos during Busy Hour#Ex2_1.sce#3446/CH2/EX2.1/Ex2_1.sce#S##118851 diff --git a/latex/tmp_3472_book.txt b/latex/tmp_3472_book.txt index 6db25192c..8043d2458 100644 --- a/latex/tmp_3472_book.txt +++ b/latex/tmp_3472_book.txt @@ -1 +1 @@ -Power System Engineering#S. Chakraborthy, Gupta And Bhatnagar#978-8177000207#D. Rai And Co.#2#2013 +Power System Engineering#S. Chakraborthy, Gupta and Bhatnagar#978-8177000207#D. Rai#2#2013 diff --git a/latex/tmp_3472_contributor.txt b/latex/tmp_3472_contributor.txt index febfe7e18..6c7002939 100644 --- a/latex/tmp_3472_contributor.txt +++ b/latex/tmp_3472_contributor.txt @@ -1 +1 @@ -Kavan A B#B.E#Electrical Engineering#SRI JAYACHAMARAJENDRA COLLEGE OF ENGINEERING#None#None +Kavan A B#B.E#Electrical Engineering#SRI JAYACHAMARAJENDRA COLLEGE OF ENGINEERING#None#Reshma diff --git a/latex/tmp_3472_data.txt b/latex/tmp_3472_data.txt index e69de29bb..8193607d9 100644 --- a/latex/tmp_3472_data.txt +++ b/latex/tmp_3472_data.txt @@ -0,0 +1,347 @@ +47#ELECTRIC TRACTION SYSTEMS AND POWER SUPPLY#47.2#Maximum sag and Length of wire required#Example47_2.sce#3472/CH47/EX47.2/Example47_2.sce#S##120899 +47#ELECTRIC TRACTION SYSTEMS AND POWER SUPPLY#47.1#Maximum potential difference between any two points of the rails and Rating of the booster#Example47_1.sce#3472/CH47/EX47.1/Example47_1.sce#S##120898 +46#BRAKING#46.5#Braking effect and Rate of retardation produced by this braking effect#Example46_5.sce#3472/CH46/EX46.5/Example46_5.sce#S##120897 +46#BRAKING#46.4#Energy returned to the line#Example46_4.sce#3472/CH46/EX46.4/Example46_4.sce#S##120896 +46#BRAKING#46.3#Energy returned to lines#Example46_3.sce#3472/CH46/EX46.3/Example46_3.sce#S##120895 +46#BRAKING#46.2#Current delivered when motor works as generator#Example46_2.sce#3472/CH46/EX46.2/Example46_2.sce#S##120894 +46#BRAKING#46.1#Braking torque#Example46_1.sce#3472/CH46/EX46.1/Example46_1.sce#S##120893 +45#CONTROL OF MOTORS#45.3#Duration of starting period Speed of train at transition Rheostatic losses during series and Parallel steps of starting#Example45_3.sce#3472/CH45/EX45.3/Example45_3.sce#S##120892 +45#CONTROL OF MOTORS#45.2#Energy supplied during the starting period Energy lost in the starting resistance and Useful energy supplied to the train#Example45_2.sce#3472/CH45/EX45.2/Example45_2.sce#S##120891 +45#CONTROL OF MOTORS#45.1#Approximate loss of energy in starting rheostats#Example45_1.sce#3472/CH45/EX45.1/Example45_1.sce#S##120890 +44#MOTORS FOR ELECTRIC TRACTION#44.5#New characteristics of motor#Example44_5.sce#3472/CH44/EX44.5/Example44_5.sce#S##120889 +44#MOTORS FOR ELECTRIC TRACTION#44.4#HP delivered by the locomotive when dc series motor and Induction motor is used#Example44_4.sce#3472/CH44/EX44.4/Example44_4.sce#S##120888 +44#MOTORS FOR ELECTRIC TRACTION#44.3#Speed of motors when connected in series#Example44_3.sce#3472/CH44/EX44.3/Example44_3.sce#S##120887 +44#MOTORS FOR ELECTRIC TRACTION#44.2#Speed torque for motor#Example44_2.sce#3472/CH44/EX44.2/Example44_2.sce#S##120886 +44#MOTORS FOR ELECTRIC TRACTION#44.1#Speed current of the motor#Example44_1.sce#3472/CH44/EX44.1/Example44_1.sce#S##120885 +43#ELECTRIC TRACTION SPEED TIME CURVES AND MECHANICS OF TRAIN MOVEMENT#43.9#Acceleration Coasting retardation and Scheduled speed#Example43_9.sce#3472/CH43/EX43.9/Example43_9.sce#S##120881 +43#ELECTRIC TRACTION SPEED TIME CURVES AND MECHANICS OF TRAIN MOVEMENT#43.8#Speed Time curve for the run and Energy consumption at the axles of train#Example43_8.sce#3472/CH43/EX43.8/Example43_8.sce#S##120879 +43#ELECTRIC TRACTION SPEED TIME CURVES AND MECHANICS OF TRAIN MOVEMENT#43.8#Speed Time curve for the run and Energy consumption at the axles of train#Ex43_8.png#3472/CH43/EX43.8/Ex43_8.png#R##120880 +43#ELECTRIC TRACTION SPEED TIME CURVES AND MECHANICS OF TRAIN MOVEMENT#43.7#Time taken by train to attain speed#Example43_7.sce#3472/CH43/EX43.7/Example43_7.sce#S##120878 +43#ELECTRIC TRACTION SPEED TIME CURVES AND MECHANICS OF TRAIN MOVEMENT#43.6#Torque developed by each motor#Example43_6.sce#3472/CH43/EX43.6/Example43_6.sce#S##120877 +43#ELECTRIC TRACTION SPEED TIME CURVES AND MECHANICS OF TRAIN MOVEMENT#43.5#Tractive resistance#Example43_5.sce#3472/CH43/EX43.5/Example43_5.sce#S##120876 +43#ELECTRIC TRACTION SPEED TIME CURVES AND MECHANICS OF TRAIN MOVEMENT#43.4#Duration of acceleration Coasting and Braking periods#Example43_4.sce#3472/CH43/EX43.4/Example43_4.sce#S##120875 +43#ELECTRIC TRACTION SPEED TIME CURVES AND MECHANICS OF TRAIN MOVEMENT#43.3#Rate of acceleration required to operate service#Example43_3.sce#3472/CH43/EX43.3/Example43_3.sce#S##120874 +43#ELECTRIC TRACTION SPEED TIME CURVES AND MECHANICS OF TRAIN MOVEMENT#43.2#Value of retardation#Example43_2.sce#3472/CH43/EX43.2/Example43_2.sce#S##120873 +43#ELECTRIC TRACTION SPEED TIME CURVES AND MECHANICS OF TRAIN MOVEMENT#43.12#Minimum adhesive weight of a locomotive#Example43_12.sce#3472/CH43/EX43.12/Example43_12.sce#S##120884 +43#ELECTRIC TRACTION SPEED TIME CURVES AND MECHANICS OF TRAIN MOVEMENT#43.11#Energy usefully employed in attaining speed and Specific energy consumption at steady state speed#Example43_11.sce#3472/CH43/EX43.11/Example43_11.sce#S##120883 +43#ELECTRIC TRACTION SPEED TIME CURVES AND MECHANICS OF TRAIN MOVEMENT#43.10#Minimum adhesive weight of the locomotive#Example43_10.sce#3472/CH43/EX43.10/Example43_10.sce#S##120882 +43#ELECTRIC TRACTION SPEED TIME CURVES AND MECHANICS OF TRAIN MOVEMENT#43.1#Maximum speed over the run#Example43_1.sce#3472/CH43/EX43.1/Example43_1.sce#S##120871 +42#ILLUMINATION#42.9#Suitable scheme of illumination and Saving in power consumption#Example42_9.sce#3472/CH42/EX42.9/Example42_9.sce#S##120870 +42#ILLUMINATION#42.8#Illumination on the working plane#Example42_8.sce#3472/CH42/EX42.8/Example42_8.sce#S##120869 +42#ILLUMINATION#42.7#Maximum and Minimum illumination on the floor along the centre line#Example42_7.sce#3472/CH42/EX42.7/Example42_7.sce#S##120868 +42#ILLUMINATION#42.6#Curve showing illumination on a horizontal line below lamp#Example42_6.sce#3472/CH42/EX42.6/Example42_6.sce#S##120867 +42#ILLUMINATION#42.6#Curve showing illumination on a horizontal line below lamp#Ex42_6.png#3472/CH42/EX42.6/Ex42_6.png#R##120872 +42#ILLUMINATION#42.5#cp of the globe and Percentage of light emitted by lamp that is absorbed by the globe#Example42_5.sce#3472/CH42/EX42.5/Example42_5.sce#S##120866 +42#ILLUMINATION#42.3#Illumination at the centre Edge of surface with and Without reflector and Average illumination over the area without reflector#Example42_3.sce#3472/CH42/EX42.3/Example42_3.sce#S##120865 +42#ILLUMINATION#42.2#mscp of lamp Illumination on the surface when it is normal Inclined to 45 degree and Parallel to rays#Example42_2.sce#3472/CH42/EX42.2/Example42_2.sce#S##120864 +41#ELECTROLYTIC AND ELECTRO METALLURGICAL PROCESSES#41.3#Weight of aluminium produced from aluminium oxide#Example41_3.sce#3472/CH41/EX41.3/Example41_3.sce#S##120863 +41#ELECTROLYTIC AND ELECTRO METALLURGICAL PROCESSES#41.2#Annual output of refined copper and Energy consumption#Example41_2.sce#3472/CH41/EX41.2/Example41_2.sce#S##120862 +41#ELECTROLYTIC AND ELECTRO METALLURGICAL PROCESSES#41.1#Quantity of electricity and Time taken for the process#Example41_1.sce#3472/CH41/EX41.1/Example41_1.sce#S##120861 +40#HEATING AND WELDING#40.8#Time taken to melt Power factor and Electrical efficiency of the furnace#Example40_8.sce#3472/CH40/EX40.8/Example40_8.sce#S##120860 +40#HEATING AND WELDING#40.7#Voltage applied across electrodes and Current through the material#Example40_7.sce#3472/CH40/EX40.7/Example40_7.sce#S##120859 +40#HEATING AND WELDING#40.6#Voltage necessary for heating and Current flowing in the material#Example40_6.sce#3472/CH40/EX40.6/Example40_6.sce#S##120858 +40#HEATING AND WELDING#40.5#Height up to which the crucible should be filled to obtain maximum heating effect#Example40_5.sce#3472/CH40/EX40.5/Example40_5.sce#S##120857 +40#HEATING AND WELDING#40.4#Amount of energy required to melt brass#Example40_4.sce#3472/CH40/EX40.4/Example40_4.sce#S##120856 +40#HEATING AND WELDING#40.3#Power drawn under various connections#Example40_3.sce#3472/CH40/EX40.3/Example40_3.sce#S##120855 +40#HEATING AND WELDING#40.2#Width and Length of nickel chrome strip#Example40_2.sce#3472/CH40/EX40.2/Example40_2.sce#S##120854 +40#HEATING AND WELDING#40.1#Diameter Length and Temperature of the wire#Example40_1.sce#3472/CH40/EX40.1/Example40_1.sce#S##120853 +39#INDUSTRIAL APPLICATIONS OF ELECTRIC MOTORS#39.9#Speed and Current when field winding is shunted by a diverter#Example39_9.sce#3472/CH39/EX39.9/Example39_9.sce#S##120827 +39#INDUSTRIAL APPLICATIONS OF ELECTRIC MOTORS#39.7#Resistance to be placed in series with shunt field#Example39_7.sce#3472/CH39/EX39.7/Example39_7.sce#S##120826 +39#INDUSTRIAL APPLICATIONS OF ELECTRIC MOTORS#39.6#Ratio of starting current to full load current#Example39_6.sce#3472/CH39/EX39.6/Example39_6.sce#S##120825 +39#INDUSTRIAL APPLICATIONS OF ELECTRIC MOTORS#39.5#Motor current per phase Current from the supply Starting torque Voltage to be applied and Line current#Example39_5.sce#3472/CH39/EX39.5/Example39_5.sce#S##120824 +39#INDUSTRIAL APPLICATIONS OF ELECTRIC MOTORS#39.4#Starting torque and Starting current if motor started by Direct switching Star delta starter Star connected auto transformer and Series parallel switch#Example39_4.sce#3472/CH39/EX39.4/Example39_4.sce#S##120823 +39#INDUSTRIAL APPLICATIONS OF ELECTRIC MOTORS#39.34#Moment of inertia of the flywheel#Example39_34.sce#3472/CH39/EX39.34/Example39_34.sce#S##120852 +39#INDUSTRIAL APPLICATIONS OF ELECTRIC MOTORS#39.33#Inertia of flywheel required#Example39_33.sce#3472/CH39/EX39.33/Example39_33.sce#S##120851 +39#INDUSTRIAL APPLICATIONS OF ELECTRIC MOTORS#39.32#Time taken and Number of revolutions made to come to standstill by Plugging and Rheostatic braking#Example39_32.sce#3472/CH39/EX39.32/Example39_32.sce#S##120850 +39#INDUSTRIAL APPLICATIONS OF ELECTRIC MOTORS#39.31#Time taken for dc shunt motor to fall in speed with constant excitation and Time for the same fall if frictional torque exists#Example39_31.sce#3472/CH39/EX39.31/Example39_31.sce#S##120849 +39#INDUSTRIAL APPLICATIONS OF ELECTRIC MOTORS#39.30#Time taken to accelerate a fly wheel#Example39_30.sce#3472/CH39/EX39.30/Example39_30.sce#S##120848 +39#INDUSTRIAL APPLICATIONS OF ELECTRIC MOTORS#39.3#Tapping to be provided on an auto transformer Starting torque in terms of full load torque and with Resistor used#Example39_3.sce#3472/CH39/EX39.3/Example39_3.sce#S##120822 +39#INDUSTRIAL APPLICATIONS OF ELECTRIC MOTORS#39.29#Time taken to accelerate the motor to rated speed#Example39_29.sce#3472/CH39/EX39.29/Example39_29.sce#S##120847 +39#INDUSTRIAL APPLICATIONS OF ELECTRIC MOTORS#39.28#Time taken to accelerate the motor to rated speed against full load torque#Example39_28.sce#3472/CH39/EX39.28/Example39_28.sce#S##120846 +39#INDUSTRIAL APPLICATIONS OF ELECTRIC MOTORS#39.27#Suitable size of the motor#Example39_27.sce#3472/CH39/EX39.27/Example39_27.sce#S##120845 +39#INDUSTRIAL APPLICATIONS OF ELECTRIC MOTORS#39.26#Required size of continuously rated motor#Example39_26.sce#3472/CH39/EX39.26/Example39_26.sce#S##120844 +39#INDUSTRIAL APPLICATIONS OF ELECTRIC MOTORS#39.25#Maximum overload that can be carried by the motor#Example39_25.sce#3472/CH39/EX39.25/Example39_25.sce#S##120843 +39#INDUSTRIAL APPLICATIONS OF ELECTRIC MOTORS#39.24#Time for which the motor can run at twice the continuously rated output without overheating#Example39_24.sce#3472/CH39/EX39.24/Example39_24.sce#S##120842 +39#INDUSTRIAL APPLICATIONS OF ELECTRIC MOTORS#39.23#Half hour rating of motor#Example39_23.sce#3472/CH39/EX39.23/Example39_23.sce#S##120841 +39#INDUSTRIAL APPLICATIONS OF ELECTRIC MOTORS#39.22#Final temperature rise and Thermal time constant of the motor#Example39_22.sce#3472/CH39/EX39.22/Example39_22.sce#S##120840 +39#INDUSTRIAL APPLICATIONS OF ELECTRIC MOTORS#39.21#One hour rating of motor#Example39_21.sce#3472/CH39/EX39.21/Example39_21.sce#S##120839 +39#INDUSTRIAL APPLICATIONS OF ELECTRIC MOTORS#39.20#Current drawn by the motor from supply and Resistance required in the armature circuit for rheostatic braking#Example39_20.sce#3472/CH39/EX39.20/Example39_20.sce#S##120838 +39#INDUSTRIAL APPLICATIONS OF ELECTRIC MOTORS#39.2#Starting torque in terms of full load torque with star delta starter and with Auto transformer starter#Example39_2.sce#3472/CH39/EX39.2/Example39_2.sce#S##120821 +39#INDUSTRIAL APPLICATIONS OF ELECTRIC MOTORS#39.19#Value of resistance to be connected in motor circuit#Example39_19.sce#3472/CH39/EX39.19/Example39_19.sce#S##120837 +39#INDUSTRIAL APPLICATIONS OF ELECTRIC MOTORS#39.18#Initial plugging torque and Torque at standstill#Example39_18.sce#3472/CH39/EX39.18/Example39_18.sce#S##120836 +39#INDUSTRIAL APPLICATIONS OF ELECTRIC MOTORS#39.17#Braking torque and Torque when motor speed has fallen#Example39_17.sce#3472/CH39/EX39.17/Example39_17.sce#S##120835 +39#INDUSTRIAL APPLICATIONS OF ELECTRIC MOTORS#39.16#External resistance per phase added in rotor circuit to reduce speed#Example39_16.sce#3472/CH39/EX39.16/Example39_16.sce#S##120834 +39#INDUSTRIAL APPLICATIONS OF ELECTRIC MOTORS#39.15#Ohmic value of resistor connected in the armature circuit#Example39_15.sce#3472/CH39/EX39.15/Example39_15.sce#S##120833 +39#INDUSTRIAL APPLICATIONS OF ELECTRIC MOTORS#39.14#Resistance to be connected in series with armature to reduce speed#Example39_14.sce#3472/CH39/EX39.14/Example39_14.sce#S##120832 +39#INDUSTRIAL APPLICATIONS OF ELECTRIC MOTORS#39.13#Additional resistance to be placed in the armature circuit#Example39_13.sce#3472/CH39/EX39.13/Example39_13.sce#S##120831 +39#INDUSTRIAL APPLICATIONS OF ELECTRIC MOTORS#39.12#Diverter resistance as a percentage of field resistance#Example39_12.sce#3472/CH39/EX39.12/Example39_12.sce#S##120830 +39#INDUSTRIAL APPLICATIONS OF ELECTRIC MOTORS#39.11#Speed of motor with a diverter connected in parallel with series field#Example39_11.sce#3472/CH39/EX39.11/Example39_11.sce#S##120829 +39#INDUSTRIAL APPLICATIONS OF ELECTRIC MOTORS#39.10#Additional resistance to be inserted in the field circuit to raise the speed#Example39_10.sce#3472/CH39/EX39.10/Example39_10.sce#S##120828 +39#INDUSTRIAL APPLICATIONS OF ELECTRIC MOTORS#39.1#Total annual cost of group drive and Individual drive#Example39_1.sce#3472/CH39/EX39.1/Example39_1.sce#S##120820 +36#PROTECTION OF TRANSMISSION LINE SHUNT INDUCTORS AND CAPACITORS#36.2#Impedance seen by relay and Relay setting for high speed backup protection#Example36_2.sce#3472/CH36/EX36.2/Example36_2.sce#S##120819 +36#PROTECTION OF TRANSMISSION LINE SHUNT INDUCTORS AND CAPACITORS#36.1#First Second and Third zone relay setting Without infeed and With infeed#Example36_1.sce#3472/CH36/EX36.1/Example36_1.sce#S##120818 +35#PROTECTION OF TRANSFORMERS#35.6#Suitable CT ratios#Example35_6.sce#3472/CH35/EX35.6/Example35_6.sce#S##120817 +35#PROTECTION OF TRANSFORMERS#35.5#CT ratios on high voltage side#Example35_5.sce#3472/CH35/EX35.5/Example35_5.sce#S##120816 +35#PROTECTION OF TRANSFORMERS#35.4#Ratio of protective CTs#Example35_4.sce#3472/CH35/EX35.4/Example35_4.sce#S##120815 +35#PROTECTION OF TRANSFORMERS#35.3#Ratio of CTs on high voltage side#Example35_3.sce#3472/CH35/EX35.3/Example35_3.sce#S##120814 +35#PROTECTION OF TRANSFORMERS#35.2#Ratio of CTs#Example35_2.sce#3472/CH35/EX35.2/Example35_2.sce#S##120813 +34#PROTECTION OF ALTERNATORS AND AC MOTORS#34.8#Magnitude of neutral earthing resistance#Example34_8.sce#3472/CH34/EX34.8/Example34_8.sce#S##120812 +34#PROTECTION OF ALTERNATORS AND AC MOTORS#34.7#Percentage of winding that is protected against earth faults#Example34_7.sce#3472/CH34/EX34.7/Example34_7.sce#S##120811 +34#PROTECTION OF ALTERNATORS AND AC MOTORS#34.6#Portion of winding unprotected#Example34_6.sce#3472/CH34/EX34.6/Example34_6.sce#S##120810 +34#PROTECTION OF ALTERNATORS AND AC MOTORS#34.5#Winding of each phase unprotected against earth when machine operates at nominal voltage#Example34_5.sce#3472/CH34/EX34.5/Example34_5.sce#S##120809 +34#PROTECTION OF ALTERNATORS AND AC MOTORS#34.4#Will the relay trip the generator CB#Example34_4.sce#3472/CH34/EX34.4/Example34_4.sce#S##120808 +34#PROTECTION OF ALTERNATORS AND AC MOTORS#34.3#Portion of alternator winding unprotected#Example34_3.sce#3472/CH34/EX34.3/Example34_3.sce#S##120807 +34#PROTECTION OF ALTERNATORS AND AC MOTORS#34.2#Unprotected portion of each phase of the stator winding against earth fault and Effect of varying neutral earthing resistance#Example34_2.sce#3472/CH34/EX34.2/Example34_2.sce#S##120806 +34#PROTECTION OF ALTERNATORS AND AC MOTORS#34.1#Neutral earthing reactance#Example34_1.sce#3472/CH34/EX34.1/Example34_1.sce#S##120805 +33#PROTECTIVE RELAYS#33.6#Will the relay operate the trip of the breaker#Example33_6.sce#3472/CH33/EX33.6/Example33_6.sce#S##120804 +33#PROTECTIVE RELAYS#33.4#Time of operation of the two relays#Example33_4.sce#3472/CH33/EX33.4/Example33_4.sce#S##120803 +33#PROTECTIVE RELAYS#33.3#Operating time of feeder relay Minimum plug setting of transformer relay and Time setting of transformer#Example33_3.sce#3472/CH33/EX33.3/Example33_3.sce#S##120802 +33#PROTECTIVE RELAYS#33.2#Time of operation of the relay#Example33_2.sce#3472/CH33/EX33.2/Example33_2.sce#S##120801 +33#PROTECTIVE RELAYS#33.1#Time of operation of the relay#Example33_1.sce#3472/CH33/EX33.1/Example33_1.sce#S##120800 +32#CIRCUIT BREAKER#32.8#Sustained short circuit Initial symmetrical rms current Maximum possible dc component of the short circuit Momentary current rating Current to be interrupted and Interrupting kVA#Example32_8.sce#3472/CH32/EX32.8/Example32_8.sce#S##120799 +32#CIRCUIT BREAKER#32.6#Rated normal current Breaking current Making current and Short time rating#Example32_6.sce#3472/CH32/EX32.6/Example32_6.sce#S##120798 +32#CIRCUIT BREAKER#32.5#Voltage across the pole of a CB and Resistance to be used across the contacts#Example32_5.sce#3472/CH32/EX32.5/Example32_5.sce#S##120797 +32#CIRCUIT BREAKER#32.3#Rate of rise of restriking voltage#Example32_3.sce#3472/CH32/EX32.3/Example32_3.sce#S##120796 +32#CIRCUIT BREAKER#32.1#Maximum restriking voltage Frequency of transient oscillation and Average rate of rise of voltage upto first peak of oscillation#Example32_1.sce#3472/CH32/EX32.1/Example32_1.sce#S##120795 +30#UNSYMMETRICAL FAULTS IN POWER SYSTEMS#30.9#Fault currents in the lines#Example30_9.sce#3472/CH30/EX30.9/Example30_9.sce#S##120789 +30#UNSYMMETRICAL FAULTS IN POWER SYSTEMS#30.8#Fault current when a single phase to earth fault occurs#Example30_8.sce#3472/CH30/EX30.8/Example30_8.sce#S##120788 +30#UNSYMMETRICAL FAULTS IN POWER SYSTEMS#30.7#Fault current for a LG fault at C#Example30_7.sce#3472/CH30/EX30.7/Example30_7.sce#S##120787 +30#UNSYMMETRICAL FAULTS IN POWER SYSTEMS#30.6#Fault current for line fault and Line to ground fault#Example30_6.sce#3472/CH30/EX30.6/Example30_6.sce#S##120786 +30#UNSYMMETRICAL FAULTS IN POWER SYSTEMS#30.5#Fault currents#Example30_5.sce#3472/CH30/EX30.5/Example30_5.sce#S##120785 +30#UNSYMMETRICAL FAULTS IN POWER SYSTEMS#30.4#Fault currents in each line and Potential above earth attained by the alternator neutrals#Example30_4.sce#3472/CH30/EX30.4/Example30_4.sce#S##120784 +30#UNSYMMETRICAL FAULTS IN POWER SYSTEMS#30.3#Fault current Sequence component of current and Voltages of the sound line to earth at fault#Example30_3.sce#3472/CH30/EX30.3/Example30_3.sce#S##120783 +30#UNSYMMETRICAL FAULTS IN POWER SYSTEMS#30.2#Current in the line with two lines short circuited#Example30_2.sce#3472/CH30/EX30.2/Example30_2.sce#S##120782 +30#UNSYMMETRICAL FAULTS IN POWER SYSTEMS#30.14#Initial symmetrical rms current in all phases of generator#Example30_14.sce#3472/CH30/EX30.14/Example30_14.sce#S##120794 +30#UNSYMMETRICAL FAULTS IN POWER SYSTEMS#30.13#Sub transient current in the faulty phase#Example30_13.sce#3472/CH30/EX30.13/Example30_13.sce#S##120793 +30#UNSYMMETRICAL FAULTS IN POWER SYSTEMS#30.12#Fault current if all 3 phases short circuited If single line is grounded and Short circuit between two lines#Example30_12.sce#3472/CH30/EX30.12/Example30_12.sce#S##120792 +30#UNSYMMETRICAL FAULTS IN POWER SYSTEMS#30.11#Fault currents#Example30_11.sce#3472/CH30/EX30.11/Example30_11.sce#S##120791 +30#UNSYMMETRICAL FAULTS IN POWER SYSTEMS#30.10#Currents in the faulted phase Current through ground and Voltage of healthy phase to neutral#Example30_10.sce#3472/CH30/EX30.10/Example30_10.sce#S##120790 +30#UNSYMMETRICAL FAULTS IN POWER SYSTEMS#30.1#Initial symmetrical rms line currents Ground wire currents and Line to neutral voltages involving ground and Solidly grounded fault#Example30_1.sce#3472/CH30/EX30.1/Example30_1.sce#S##120781 +29#SYMMETRICAL COMPONENTS ANALYSIS#29.9#Currents in all the lines and their symmetrical components#Example29_9.sce#3472/CH29/EX29.9/Example29_9.sce#S##120778 +29#SYMMETRICAL COMPONENTS ANALYSIS#29.8#Positive Negative and Zero sequence components of currents for all phases#Example29_8.sce#3472/CH29/EX29.8/Example29_8.sce#S##120777 +29#SYMMETRICAL COMPONENTS ANALYSIS#29.7#Symmetrical components of line current if phase 3 is only switched off#Example29_7.sce#3472/CH29/EX29.7/Example29_7.sce#S##120776 +29#SYMMETRICAL COMPONENTS ANALYSIS#29.6#Current in each line by the method of symmetrical components#Example29_6.sce#3472/CH29/EX29.6/Example29_6.sce#S##120775 +29#SYMMETRICAL COMPONENTS ANALYSIS#29.5#Magnitude of positive and Negative sequence components of the delta and Star voltages#Example29_5.sce#3472/CH29/EX29.5/Example29_5.sce#S##120774 +29#SYMMETRICAL COMPONENTS ANALYSIS#29.4#Sequence components of currents in the resistors and Supply lines#Example29_4.sce#3472/CH29/EX29.4/Example29_4.sce#S##120773 +29#SYMMETRICAL COMPONENTS ANALYSIS#29.11#Three line currents and Wattmeter reading#Example29_11.sce#3472/CH29/EX29.11/Example29_11.sce#S##120780 +29#SYMMETRICAL COMPONENTS ANALYSIS#29.10#Radius of voltmeter connected to the yellow line and Current through the voltmeter#Example29_10.sce#3472/CH29/EX29.10/Example29_10.sce#S##120779 +29#SYMMETRICAL COMPONENTS ANALYSIS#29.1#Positive Negative and Zero sequence currents#Example29_1.sce#3472/CH29/EX29.1/Example29_1.sce#S##120772 +28#FAULT LIMITING REACTORS#28.5#Instantaneous symmetrical short circuit MVA for a fault at X#Example28_5.sce#3472/CH28/EX28.5/Example28_5.sce#S##120771 +28#FAULT LIMITING REACTORS#28.4#Reactance of each reactor#Example28_4.sce#3472/CH28/EX28.4/Example28_4.sce#S##120770 +28#FAULT LIMITING REACTORS#28.2#kVA developed under short circuit when reactors are in circuit and Short circuited#Example28_2.sce#3472/CH28/EX28.2/Example28_2.sce#S##120769 +28#FAULT LIMITING REACTORS#28.1#Reactance necessary to protect the switchgear#Example28_1.sce#3472/CH28/EX28.1/Example28_1.sce#S##120751 +27#SYMMETRICAL SHORT CIRCUIT CAPACITY CALCULATIONS#27.9#Initial symmetrical rms current in the hv side and lv side#Example27_9.sce#3472/CH27/EX27.9/Example27_9.sce#S##120747 +27#SYMMETRICAL SHORT CIRCUIT CAPACITY CALCULATIONS#27.8#Voltage behind the respective reactances#Example27_8.sce#3472/CH27/EX27.8/Example27_8.sce#S##120746 +27#SYMMETRICAL SHORT CIRCUIT CAPACITY CALCULATIONS#27.7#Sub transient fault current#Example27_7.sce#3472/CH27/EX27.7/Example27_7.sce#S##120745 +27#SYMMETRICAL SHORT CIRCUIT CAPACITY CALCULATIONS#27.6#Actual fault current using per unit method#Example27_6.sce#3472/CH27/EX27.6/Example27_6.sce#S##120744 +27#SYMMETRICAL SHORT CIRCUIT CAPACITY CALCULATIONS#27.5#Per unit values of the single line diagram#Example27_5.sce#3472/CH27/EX27.5/Example27_5.sce#S##120743 +27#SYMMETRICAL SHORT CIRCUIT CAPACITY CALCULATIONS#27.4#Current in the short circuit#Example27_4.sce#3472/CH27/EX27.4/Example27_4.sce#S##120742 +27#SYMMETRICAL SHORT CIRCUIT CAPACITY CALCULATIONS#27.3#Transient short circuit current and Sustained short circuit current at X#Example27_3.sce#3472/CH27/EX27.3/Example27_3.sce#S##120741 +27#SYMMETRICAL SHORT CIRCUIT CAPACITY CALCULATIONS#27.2#kVA at a short circuit fault between phases at the HV terminal of transformers and Load end of transmission line#Example27_2.sce#3472/CH27/EX27.2/Example27_2.sce#S##120740 +27#SYMMETRICAL SHORT CIRCUIT CAPACITY CALCULATIONS#27.12#Sub transient fault current Fault current rating of generator breaker and Each motor breaker#Example27_12.sce#3472/CH27/EX27.12/Example27_12.sce#S##120750 +27#SYMMETRICAL SHORT CIRCUIT CAPACITY CALCULATIONS#27.11#Sub transient current in the fault in generator and Motor#Example27_11.sce#3472/CH27/EX27.11/Example27_11.sce#S##120749 +27#SYMMETRICAL SHORT CIRCUIT CAPACITY CALCULATIONS#27.10#Initial symmetrical rms current at the generator terminal#Example27_10.sce#3472/CH27/EX27.10/Example27_10.sce#S##120748 +27#SYMMETRICAL SHORT CIRCUIT CAPACITY CALCULATIONS#27.1#Per unit current#Example27_1.sce#3472/CH27/EX27.1/Example27_1.sce#S##120739 +25#POWER DISTRIBUTION SYSTEMS#25.9#Currents in various sections and Voltage at load point C#Example25_9.sce#3472/CH25/EX25.9/Example25_9.sce#S##120738 +25#POWER DISTRIBUTION SYSTEMS#25.8#Load on the main generators and On each balancer machine#Example25_8.sce#3472/CH25/EX25.8/Example25_8.sce#S##120737 +25#POWER DISTRIBUTION SYSTEMS#25.7#Potential difference at each load point#Example25_7.sce#3472/CH25/EX25.7/Example25_7.sce#S##120736 +25#POWER DISTRIBUTION SYSTEMS#25.6#Ratio of weight of copper with and without interconnector#Example25_6.sce#3472/CH25/EX25.6/Example25_6.sce#S##120735 +25#POWER DISTRIBUTION SYSTEMS#25.4#Point of minimum potential and its Potential#Example25_4.sce#3472/CH25/EX25.4/Example25_4.sce#S##120900 +25#POWER DISTRIBUTION SYSTEMS#25.3#Position of lowest run lamp and its Voltage#Example25_3.sce#3472/CH25/EX25.3/Example25_3.sce#S##120733 +25#POWER DISTRIBUTION SYSTEMS#25.2#Point of minimum potential along the track and Currents supplied by two substations#Example25_2.sce#3472/CH25/EX25.2/Example25_2.sce#S##120732 +25#POWER DISTRIBUTION SYSTEMS#25.1#Potential of O and Current leaving each supply point#Example25_1.sce#3472/CH25/EX25.1/Example25_1.sce#S##120731 +24#ELECTRIC POWER SUPPLY SYSTEMS#24.9#Most economical cross section of the conductor#Example24_9.sce#3472/CH24/EX24.9/Example24_9.sce#S##120730 +24#ELECTRIC POWER SUPPLY SYSTEMS#24.8#Most economical current density for the transmission line#Example24_8.sce#3472/CH24/EX24.8/Example24_8.sce#S##120729 +24#ELECTRIC POWER SUPPLY SYSTEMS#24.7#Most economical cross section#Example24_7.sce#3472/CH24/EX24.7/Example24_7.sce#S##120728 +24#ELECTRIC POWER SUPPLY SYSTEMS#24.6#Economical cross section of a 3 core distributor cable#Example24_6.sce#3472/CH24/EX24.6/Example24_6.sce#S##120727 +24#ELECTRIC POWER SUPPLY SYSTEMS#24.5#Weight of copper required and Reduction of weight of copper possible#Example24_5.sce#3472/CH24/EX24.5/Example24_5.sce#S##120726 +24#ELECTRIC POWER SUPPLY SYSTEMS#24.4#Amount of copper required for 3 phase 4 wire system with that needed for 2 wire dc system#Example24_4.sce#3472/CH24/EX24.4/Example24_4.sce#S##120725 +24#ELECTRIC POWER SUPPLY SYSTEMS#24.3#Percentage additional balanced load#Example24_3.sce#3472/CH24/EX24.3/Example24_3.sce#S##120724 +24#ELECTRIC POWER SUPPLY SYSTEMS#24.2#Percentage increase in power transmitted#Example24_2.sce#3472/CH24/EX24.2/Example24_2.sce#S##120723 +24#ELECTRIC POWER SUPPLY SYSTEMS#24.1#Weight of copper required for a three phase transmission system and DC transmission system#Example24_1.sce#3472/CH24/EX24.1/Example24_1.sce#S##120722 +23#POWER SYSTEM GROUNDING#23.1#Inductance and Rating of arc suppression coil#Example23_1.sce#3472/CH23/EX23.1/Example23_1.sce#S##120721 +22#INSULATION COORDINATION#22.2#Rating of LA and Location with respect to transformer#Example22_2.sce#3472/CH22/EX22.2/Example22_2.sce#S##120720 +22#INSULATION COORDINATION#22.1#Highest voltage to which the transformer is subjected#Example22_1.sce#3472/CH22/EX22.1/Example22_1.sce#S##120719 +21#LIGHTNING AND PROTECTION AGAINST OVERVOLTAGES DUE TO LIGHTNING#21.2#Choosing suitable arrester rating#Example21_2.sce#3472/CH21/EX21.2/Example21_2.sce#S##120718 +21#LIGHTNING AND PROTECTION AGAINST OVERVOLTAGES DUE TO LIGHTNING#21.1#Ratio of voltages appearing at the end of a line when line is open circuited and Terminated by arrester#Example21_1.sce#3472/CH21/EX21.1/Example21_1.sce#S##120717 +20#WAVE PROPAGATION ON TRANSMISSION LINES#20.6#Voltage and Current in the cable and Open wire lines#Example20_6.sce#3472/CH20/EX20.6/Example20_6.sce#S##120716 +20#WAVE PROPAGATION ON TRANSMISSION LINES#20.5#First and Second voltages impressed on C#Example20_5.sce#3472/CH20/EX20.5/Example20_5.sce#S##120715 +20#WAVE PROPAGATION ON TRANSMISSION LINES#20.4#Reflected and Transmitted wave of Voltage and Current at the junction#Example20_4.sce#3472/CH20/EX20.4/Example20_4.sce#S##120714 +18#LOAD FREQUENCY CONTROL AND LOAD SHARING OF POWER GENERATING SOURCES#18.9#Station power factors and Phase angle between two busbar voltages#Example18_9.sce#3472/CH18/EX18.9/Example18_9.sce#S##120709 +18#LOAD FREQUENCY CONTROL AND LOAD SHARING OF POWER GENERATING SOURCES#18.8#Percentage increase in voltage and Phase angle difference between the two busbar voltages#Example18_8.sce#3472/CH18/EX18.8/Example18_8.sce#S##120708 +18#LOAD FREQUENCY CONTROL AND LOAD SHARING OF POWER GENERATING SOURCES#18.7#Load received Power factor and Phase difference between voltage#Example18_7.sce#3472/CH18/EX18.7/Example18_7.sce#S##120707 +18#LOAD FREQUENCY CONTROL AND LOAD SHARING OF POWER GENERATING SOURCES#18.6#Voltage and Power factor at this latter station#Example18_6.sce#3472/CH18/EX18.6/Example18_6.sce#S##120706 +18#LOAD FREQUENCY CONTROL AND LOAD SHARING OF POWER GENERATING SOURCES#18.5#Phase angle between busbar sections#Example18_5.sce#3472/CH18/EX18.5/Example18_5.sce#S##120705 +18#LOAD FREQUENCY CONTROL AND LOAD SHARING OF POWER GENERATING SOURCES#18.4#New value of machine current and PF Power output Current and PF corresponding to maximum load#Example18_4.sce#3472/CH18/EX18.4/Example18_4.sce#S##120704 +18#LOAD FREQUENCY CONTROL AND LOAD SHARING OF POWER GENERATING SOURCES#18.3#Armature current EMF and PF of the other alternator#Example18_3.sce#3472/CH18/EX18.3/Example18_3.sce#S##120703 +18#LOAD FREQUENCY CONTROL AND LOAD SHARING OF POWER GENERATING SOURCES#18.2#Synchronizing power and Synchronizing torque for no load and full load#Example18_2.sce#3472/CH18/EX18.2/Example18_2.sce#S##120702 +18#LOAD FREQUENCY CONTROL AND LOAD SHARING OF POWER GENERATING SOURCES#18.13#Loss in the interconnector as a percentage of power received and Required voltage of the booster#Example18_13.sce#3472/CH18/EX18.13/Example18_13.sce#S##120713 +18#LOAD FREQUENCY CONTROL AND LOAD SHARING OF POWER GENERATING SOURCES#18.12#Load on C at two different conditions of load in A and B#Example18_12.sce#3472/CH18/EX18.12/Example18_12.sce#S##120712 +18#LOAD FREQUENCY CONTROL AND LOAD SHARING OF POWER GENERATING SOURCES#18.11#Necessary booster voltages#Example18_11.sce#3472/CH18/EX18.11/Example18_11.sce#S##120711 +18#LOAD FREQUENCY CONTROL AND LOAD SHARING OF POWER GENERATING SOURCES#18.10#Constants of the second feeder#Example18_10.sce#3472/CH18/EX18.10/Example18_10.sce#S##120710 +18#LOAD FREQUENCY CONTROL AND LOAD SHARING OF POWER GENERATING SOURCES#18.1#Load shared by two machines and Load at which one machine ceases to supply any portion of load#Example18_1.sce#3472/CH18/EX18.1/Example18_1.sce#S##120701 +17#POWER SYSTEM STABILITY#17.9#Maximum steady state power that can be transmitted over the line#Example17_9.sce#3472/CH17/EX17.9/Example17_9.sce#S##120680 +17#POWER SYSTEM STABILITY#17.8#Power angle diagram Maximum power the line is capable of transmitting and Power transmitted with equal voltage at both ends#Example17_8.sce#3472/CH17/EX17.8/Example17_8.sce#S##120679 +17#POWER SYSTEM STABILITY#17.8#Power angle diagram Maximum power the line is capable of transmitting and Power transmitted with equal voltage at both ends#Ex17_8.png#3472/CH17/EX17.8/Ex17_8.png#R##120681 +17#POWER SYSTEM STABILITY#17.6#Steady state stability limit with two terminal voltages constant and If shunt admittance is zero and series resistance neglected#Example17_6.sce#3472/CH17/EX17.6/Example17_6.sce#S##120678 +17#POWER SYSTEM STABILITY#17.5#QgB Phase angle of VB and What happens if QgB is made zero#Example17_5.sce#3472/CH17/EX17.5/Example17_5.sce#S##120677 +17#POWER SYSTEM STABILITY#17.4#Maximum power transfer and Stability margin#Example17_4.sce#3472/CH17/EX17.4/Example17_4.sce#S##120676 +17#POWER SYSTEM STABILITY#17.30#Power angle and Swing curve data#Example17_30.sce#3472/CH17/EX17.30/Example17_30.sce#S##120699 +17#POWER SYSTEM STABILITY#17.3#Maximum power transfer if shunt inductor and Shunt capacitor is connected at bus 2#Example17_3.sce#3472/CH17/EX17.3/Example17_3.sce#S##120675 +17#POWER SYSTEM STABILITY#17.28#Critical clearing angle#Example17_28.sce#3472/CH17/EX17.28/Example17_28.sce#S##120698 +17#POWER SYSTEM STABILITY#17.27#Critical angle using equal area criterion#Example17_27.sce#3472/CH17/EX17.27/Example17_27.sce#S##120697 +17#POWER SYSTEM STABILITY#17.26#Critical clearing angle#Example17_26.sce#3472/CH17/EX17.26/Example17_26.sce#S##120700 +17#POWER SYSTEM STABILITY#17.24#Swing equation#Example17_24.sce#3472/CH17/EX17.24/Example17_24.sce#S##120695 +17#POWER SYSTEM STABILITY#17.23#Accelerating torque at the time of fault occurrence#Example17_23.sce#3472/CH17/EX17.23/Example17_23.sce#S##120694 +17#POWER SYSTEM STABILITY#17.22#Change in torque angle and Speed in rpm at the end of 10 cycles#Example17_22.sce#3472/CH17/EX17.22/Example17_22.sce#S##120693 +17#POWER SYSTEM STABILITY#17.21#Kinetic energy stored by rotor at synchronous speed and Acceleration in #Example17_21.sce#3472/CH17/EX17.21/Example17_21.sce#S##120692 +17#POWER SYSTEM STABILITY#17.20#Accelerating power and New power angle after 10 cycles#Example17_20.sce#3472/CH17/EX17.20/Example17_20.sce#S##120691 +17#POWER SYSTEM STABILITY#17.2#Minimum value of E and VL Maximum power limit and Steady state stability margin#Example17_2.sce#3472/CH17/EX17.2/Example17_2.sce#S##120674 +17#POWER SYSTEM STABILITY#17.19#Acceleration of the rotor#Example17_19.sce#3472/CH17/EX17.19/Example17_19.sce#S##120690 +17#POWER SYSTEM STABILITY#17.18#Energy stored in the rotor at the rated speed Value of H and Angular momentum#Example17_18.sce#3472/CH17/EX17.18/Example17_18.sce#S##120689 +17#POWER SYSTEM STABILITY#17.17#Equivalent H for the two to common 100 MVA base#Example17_17.sce#3472/CH17/EX17.17/Example17_17.sce#S##120688 +17#POWER SYSTEM STABILITY#17.16#Value of H and in 100 MVA base#Example17_16.sce#3472/CH17/EX17.16/Example17_16.sce#S##120687 +17#POWER SYSTEM STABILITY#17.14#Accelerating torque at the time the fault occurs#Example17_14.sce#3472/CH17/EX17.14/Example17_14.sce#S##120686 +17#POWER SYSTEM STABILITY#17.13#Change in torque angle in that period and RPM at the end of 10 cycles#Example17_13.sce#3472/CH17/EX17.13/Example17_13.sce#S##120685 +17#POWER SYSTEM STABILITY#17.12#Kinetic energy stored in the rotor at synchronous speed and Acceleration#Example17_12.sce#3472/CH17/EX17.12/Example17_12.sce#S##120684 +17#POWER SYSTEM STABILITY#17.11#Kinetic energy stored in the rotor at synchronous speed and Acceleration#Example17_11.sce#3472/CH17/EX17.11/Example17_11.sce#S##120683 +17#POWER SYSTEM STABILITY#17.10#Maximum steady state power Value of P and Q if static capacitor is connected and Replaced by an inductive reactor#Example17_10.sce#3472/CH17/EX17.10/Example17_10.sce#S##120682 +17#POWER SYSTEM STABILITY#17.1#Operating power angle and Magnitude of P0#Example17_1.sce#3472/CH17/EX17.1/Example17_1.sce#S##120673 +16#LOAD FLOW STUDY USING COMPUTER TECHNIQUES#16.8#Voltage V2 by GS method#Example16_8.sce#3472/CH16/EX16.8/Example16_8.sce#S##120672 +16#LOAD FLOW STUDY USING COMPUTER TECHNIQUES#16.7#Power flow expressions#Example16_7.sce#3472/CH16/EX16.7/Example16_7.sce#S##120671 +16#LOAD FLOW STUDY USING COMPUTER TECHNIQUES#16.6#Bus impedance matrix Zbus#Example16_6.sce#3472/CH16/EX16.6/Example16_6.sce#S##120670 +16#LOAD FLOW STUDY USING COMPUTER TECHNIQUES#16.5#Bus admittance matrix V1 and V2#Example16_5.sce#3472/CH16/EX16.5/Example16_5.sce#S##120669 +16#LOAD FLOW STUDY USING COMPUTER TECHNIQUES#16.4#New bus admittance matrix Ybus#Example16_4.sce#3472/CH16/EX16.4/Example16_4.sce#S##120668 +16#LOAD FLOW STUDY USING COMPUTER TECHNIQUES#16.3#Voltage values at different buses#Example16_3.sce#3472/CH16/EX16.3/Example16_3.sce#S##120667 +16#LOAD FLOW STUDY USING COMPUTER TECHNIQUES#16.1#Bus admittance matrix Ybus#Example16_1.sce#3472/CH16/EX16.1/Example16_1.sce#S##120666 +15#CORONA#15.8#Line voltage for commencing of corona#Example15_8.sce#3472/CH15/EX15.8/Example15_8.sce#S##120662 +15#CORONA#15.7#Corona will be present in the air space or not#Example15_7.sce#3472/CH15/EX15.7/Example15_7.sce#S##120663 +15#CORONA#15.6#Disruptive critical voltage and Corona loss#Example15_6.sce#3472/CH15/EX15.6/Example15_6.sce#S##120660 +15#CORONA#15.5#Spacing between the conductors#Example15_5.sce#3472/CH15/EX15.5/Example15_5.sce#S##120659 +15#CORONA#15.4#Corona characteristics#Example15_4.sce#3472/CH15/EX15.4/Example15_4.sce#S##120658 +15#CORONA#15.3#Corona loss in fair weather and Foul weather#Example15_3.sce#3472/CH15/EX15.3/Example15_3.sce#S##120657 +15#CORONA#15.2#Critical disruptive voltage and Corona loss#Example15_2.sce#3472/CH15/EX15.2/Example15_2.sce#S##120656 +15#CORONA#15.1#Minimum spacing between conductors#Example15_1.sce#3472/CH15/EX15.1/Example15_1.sce#S##120633 +14#UNDERGROUND CABLES#14.9#Maximum stress with and without intersheath Best position and Voltage on each intersheath#Example14_9.sce#3472/CH14/EX14.9/Example14_9.sce#S##120623 +14#UNDERGROUND CABLES#14.8#Maximum and Minimum stress in the insulation#Example14_8.sce#3472/CH14/EX14.8/Example14_8.sce#S##120622 +14#UNDERGROUND CABLES#14.7#Location of intersheath and Ratio of maximum electric field strength with and without intersheath#Example14_7.sce#3472/CH14/EX14.7/Example14_7.sce#S##120621 +14#UNDERGROUND CABLES#14.6#Conductor radius and Electric field strength that must be withstood#Example14_6.sce#3472/CH14/EX14.6/Example14_6.sce#S##120620 +14#UNDERGROUND CABLES#14.4#Most economical diameter of a single core cable and Overall diameter of the insulation#Example14_4.sce#3472/CH14/EX14.4/Example14_4.sce#S##120665 +14#UNDERGROUND CABLES#14.3#Capacitance and Charging current of single core cable#Example14_3.sce#3472/CH14/EX14.3/Example14_3.sce#S##120619 +14#UNDERGROUND CABLES#14.2#Insulation thickness#Example14_2.sce#3472/CH14/EX14.2/Example14_2.sce#S##120618 +14#UNDERGROUND CABLES#14.16#Capacitance of the cable Charging current Total charging kVAR Dielectric loss per phase and Maximum stress in the cable#Example14_16.sce#3472/CH14/EX14.16/Example14_16.sce#S##120655 +14#UNDERGROUND CABLES#14.15#Charging current drawn by cable#Example14_15.sce#3472/CH14/EX14.15/Example14_15.sce#S##120654 +14#UNDERGROUND CABLES#14.14#Capacitance between any two conductors Two bounded conductors Capacitance to neutral and Charging current taken by cable#Example14_14.sce#3472/CH14/EX14.14/Example14_14.sce#S##120629 +14#UNDERGROUND CABLES#14.13#Charging current drawn by a cable with three cores#Example14_13.sce#3472/CH14/EX14.13/Example14_13.sce#S##120628 +14#UNDERGROUND CABLES#14.12#Equivalent star connected capacity and kVA required#Example14_12.sce#3472/CH14/EX14.12/Example14_12.sce#S##120627 +14#UNDERGROUND CABLES#14.11#Diameter and Voltage of intersheath Conductor and Outside diameter of graded cable and Ungraded cable#Example14_11.sce#3472/CH14/EX14.11/Example14_11.sce#S##120626 +14#UNDERGROUND CABLES#14.10#Maximum stress in the two dielectrics#Example14_10.sce#3472/CH14/EX14.10/Example14_10.sce#S##120625 +14#UNDERGROUND CABLES#14.1#Insulation resistance per km#Example14_1.sce#3472/CH14/EX14.1/Example14_1.sce#S##120617 +13#INTERFERENCE OF POWER LINES WITH NEIGHBOURING COMMUNICATION CIRCUITS#13.2#Induced voltage at fundamental frequency and Potential of telephone conductor#Example13_2.sce#3472/CH13/EX13.2/Example13_2.sce#S##120551 +13#INTERFERENCE OF POWER LINES WITH NEIGHBOURING COMMUNICATION CIRCUITS#13.1#Mutual inductance between the circuits and Voltage induced in the telephone line#Example13_1.sce#3472/CH13/EX13.1/Example13_1.sce#S##120550 +12#MECHANICAL DESIGN OF OVERHEAD LINES#12.9#Sag at erection and Tension of the line#Example12_9.sce#3472/CH12/EX12.9/Example12_9.sce#S##120614 +12#MECHANICAL DESIGN OF OVERHEAD LINES#12.8#Clearance between conductor and water at a point midway between towers#Example12_8.sce#3472/CH12/EX12.8/Example12_8.sce#S##120613 +12#MECHANICAL DESIGN OF OVERHEAD LINES#12.7#Point of minimum sag#Example12_7.sce#3472/CH12/EX12.7/Example12_7.sce#S##120612 +12#MECHANICAL DESIGN OF OVERHEAD LINES#12.6#Maximum sag of line due to weight of conductor Additional weight of ice Plus wind and Vertical sag#Example12_6.sce#3472/CH12/EX12.6/Example12_6.sce#S##120611 +12#MECHANICAL DESIGN OF OVERHEAD LINES#12.5#Permissible span between two supports#Example12_5.sce#3472/CH12/EX12.5/Example12_5.sce#S##120610 +12#MECHANICAL DESIGN OF OVERHEAD LINES#12.4#Height above ground at which the conductors should be supported#Example12_4.sce#3472/CH12/EX12.4/Example12_4.sce#S##120609 +12#MECHANICAL DESIGN OF OVERHEAD LINES#12.3#Vertical sag#Example12_3.sce#3472/CH12/EX12.3/Example12_3.sce#S##120608 +12#MECHANICAL DESIGN OF OVERHEAD LINES#12.2#Point of maximum sag at the lower support#Example12_2.sce#3472/CH12/EX12.2/Example12_2.sce#S##120607 +12#MECHANICAL DESIGN OF OVERHEAD LINES#12.11#Sag in still air Wind pressure Ice coating and Vertical sag#Example12_11.sce#3472/CH12/EX12.11/Example12_11.sce#S##120616 +12#MECHANICAL DESIGN OF OVERHEAD LINES#12.10#Sag in inclined direction and Vertical direction#Example12_10.sce#3472/CH12/EX12.10/Example12_10.sce#S##120615 +12#MECHANICAL DESIGN OF OVERHEAD LINES#12.1#Weight of conductor#Example12_1.sce#3472/CH12/EX12.1/Example12_1.sce#S##120606 +11#OVERHEAD LINE INSULATORS#11.9#Voltage on the line end unit and Value of capacitance required#Example11_9.sce#3472/CH11/EX11.9/Example11_9.sce#S##120605 +11#OVERHEAD LINE INSULATORS#11.8#Voltage across each insulator as a percentage of line voltage to earth and String efficiency#Example11_8.sce#3472/CH11/EX11.8/Example11_8.sce#S##120604 +11#OVERHEAD LINE INSULATORS#11.7#Voltage across each insulator as a percentage of line voltage to earth and String efficiency With and Without guard ring#Example11_7.sce#3472/CH11/EX11.7/Example11_7.sce#S##120603 +11#OVERHEAD LINE INSULATORS#11.6#Voltage distribution as a percentage of voltage of conductor to earth and String efficiency#Example11_6.sce#3472/CH11/EX11.6/Example11_6.sce#S##120602 +11#OVERHEAD LINE INSULATORS#11.5#Value of line to pin capacitance#Example11_5.sce#3472/CH11/EX11.5/Example11_5.sce#S##120601 +11#OVERHEAD LINE INSULATORS#11.4#Line to neutral voltage and String efficiency#Example11_4.sce#3472/CH11/EX11.4/Example11_4.sce#S##120600 +11#OVERHEAD LINE INSULATORS#11.3#Voltage distribution over a string of three suspension insulators and String efficiency#Example11_3.sce#3472/CH11/EX11.3/Example11_3.sce#S##120599 +11#OVERHEAD LINE INSULATORS#11.2#Mutual capacitance of each unit in terms of C#Example11_2.sce#3472/CH11/EX11.2/Example11_2.sce#S##120598 +11#OVERHEAD LINE INSULATORS#11.1#Ratio of capacitance Line voltage and String efficiency#Example11_1.sce#3472/CH11/EX11.1/Example11_1.sce#S##120597 +10#STEADY STATE CHARACTERISTICS AND PERFORMANCE OF TRANSMISSION LINES#10.9#Sending end voltage Current and Transmission efficiency#Example10_9.sce#3472/CH10/EX10.9/Example10_9.sce#S##120577 +10#STEADY STATE CHARACTERISTICS AND PERFORMANCE OF TRANSMISSION LINES#10.8#Voltage Current and Power factor at sending end#Example10_8.sce#3472/CH10/EX10.8/Example10_8.sce#S##120559 +10#STEADY STATE CHARACTERISTICS AND PERFORMANCE OF TRANSMISSION LINES#10.7#Nominal pi equivalent circuit parameters and Receiving end voltage#Example10_7.sce#3472/CH10/EX10.7/Example10_7.sce#S##120558 +10#STEADY STATE CHARACTERISTICS AND PERFORMANCE OF TRANSMISSION LINES#10.6#Voltage regulation Sending end voltage Line loss and Sending end power factor#Example10_6.sce#3472/CH10/EX10.6/Example10_6.sce#S##120557 +10#STEADY STATE CHARACTERISTICS AND PERFORMANCE OF TRANSMISSION LINES#10.5#Sending end voltage Voltage regulation Value of capacitors and Transmission efficiency#Example10_5.sce#3472/CH10/EX10.5/Example10_5.sce#S##120556 +10#STEADY STATE CHARACTERISTICS AND PERFORMANCE OF TRANSMISSION LINES#10.4#Distance over which load is delivered#Example10_4.sce#3472/CH10/EX10.4/Example10_4.sce#S##120555 +10#STEADY STATE CHARACTERISTICS AND PERFORMANCE OF TRANSMISSION LINES#10.3#Sending end voltage#Example10_3.sce#3472/CH10/EX10.3/Example10_3.sce#S##120554 +10#STEADY STATE CHARACTERISTICS AND PERFORMANCE OF TRANSMISSION LINES#10.26#Maximum power that can be transferred to the load#Example10_26.sce#3472/CH10/EX10.26/Example10_26.sce#S##120596 +10#STEADY STATE CHARACTERISTICS AND PERFORMANCE OF TRANSMISSION LINES#10.25#Maximum power transmitted Receiving end power factor and Total line loss#Example10_25.sce#3472/CH10/EX10.25/Example10_25.sce#S##120595 +10#STEADY STATE CHARACTERISTICS AND PERFORMANCE OF TRANSMISSION LINES#10.24#Values of constants A0 B0 C0 D0#Example10_24.sce#3472/CH10/EX10.24/Example10_24.sce#S##120594 +10#STEADY STATE CHARACTERISTICS AND PERFORMANCE OF TRANSMISSION LINES#10.23#Overall constants A B C D#Example10_23.sce#3472/CH10/EX10.23/Example10_23.sce#S##120593 +10#STEADY STATE CHARACTERISTICS AND PERFORMANCE OF TRANSMISSION LINES#10.21#Sending end voltage Current Power factor and Efficiency of transmission#Example10_21.sce#3472/CH10/EX10.21/Example10_21.sce#S##120592 +10#STEADY STATE CHARACTERISTICS AND PERFORMANCE OF TRANSMISSION LINES#10.20#Sending end voltage Voltage regulation Transmission efficiency and A B C D constants by Short line Nominal T Nominal pi and Long line approximation#Example10_20.sce#3472/CH10/EX10.20/Example10_20.sce#S##120591 +10#STEADY STATE CHARACTERISTICS AND PERFORMANCE OF TRANSMISSION LINES#10.2#Line current Receiving end voltage and Efficiency of transmission#Example10_2.sce#3472/CH10/EX10.2/Example10_2.sce#S##120553 +10#STEADY STATE CHARACTERISTICS AND PERFORMANCE OF TRANSMISSION LINES#10.19#Sending end voltage and Current using nominal pi and nominal T method#Example10_19.sce#3472/CH10/EX10.19/Example10_19.sce#S##120590 +10#STEADY STATE CHARACTERISTICS AND PERFORMANCE OF TRANSMISSION LINES#10.18#Sending end voltage and Current using convergent series method#Example10_18.sce#3472/CH10/EX10.18/Example10_18.sce#S##120589 +10#STEADY STATE CHARACTERISTICS AND PERFORMANCE OF TRANSMISSION LINES#10.17#Values of auxiliary constants A B C D#Example10_17.sce#3472/CH10/EX10.17/Example10_17.sce#S##120587 +10#STEADY STATE CHARACTERISTICS AND PERFORMANCE OF TRANSMISSION LINES#10.16#Sending end voltage Current Power factor and Efficiency#Example10_16.sce#3472/CH10/EX10.16/Example10_16.sce#S##120586 +10#STEADY STATE CHARACTERISTICS AND PERFORMANCE OF TRANSMISSION LINES#10.15#A B C D constants#Example10_15.sce#3472/CH10/EX10.15/Example10_15.sce#S##120585 +10#STEADY STATE CHARACTERISTICS AND PERFORMANCE OF TRANSMISSION LINES#10.14#Incident voltage and Reflected voltage at receiving end and 200 km from receiving end#Example10_14.sce#3472/CH10/EX10.14/Example10_14.sce#S##120584 +10#STEADY STATE CHARACTERISTICS AND PERFORMANCE OF TRANSMISSION LINES#10.13#Sending end voltage and Current#Example10_13.sce#3472/CH10/EX10.13/Example10_13.sce#S##120583 +10#STEADY STATE CHARACTERISTICS AND PERFORMANCE OF TRANSMISSION LINES#10.12#Receiving end Voltage Load and Nature of compensation required#Example10_12.sce#3472/CH10/EX10.12/Example10_12.sce#S##120582 +10#STEADY STATE CHARACTERISTICS AND PERFORMANCE OF TRANSMISSION LINES#10.11#Voltage Current Power factor at sending end Regulation and Transmission efficiency by Nominal T and Pi method#Example10_11.sce#3472/CH10/EX10.11/Example10_11.sce#S##120579 +10#STEADY STATE CHARACTERISTICS AND PERFORMANCE OF TRANSMISSION LINES#10.10#Line to line voltage and Power factor at sending end#Example10_10.sce#3472/CH10/EX10.10/Example10_10.sce#S##120578 +10#STEADY STATE CHARACTERISTICS AND PERFORMANCE OF TRANSMISSION LINES#10.1#Voltage regulation Sending end power factor and Transmission efficiency#Example10_1.sce#3472/CH10/EX10.1/Example10_1.sce#S##120552 +9#CONSTANTS OF OVERHEAD TRANSMISSION LINES#9.9#Inductance of the line per phase#Example9_9.sce#3472/CH9/EX9.9/Example9_9.sce#S##120532 +9#CONSTANTS OF OVERHEAD TRANSMISSION LINES#9.8#Geometric mean radius of the conductor and Ratio of GMR to overall conductor radius#Example9_8.sce#3472/CH9/EX9.8/Example9_8.sce#S##120531 +9#CONSTANTS OF OVERHEAD TRANSMISSION LINES#9.7#Inductance per km of the double circuit line#Example9_7.sce#3472/CH9/EX9.7/Example9_7.sce#S##120530 +9#CONSTANTS OF OVERHEAD TRANSMISSION LINES#9.6#Inductance of the line#Example9_6.sce#3472/CH9/EX9.6/Example9_6.sce#S##120529 +9#CONSTANTS OF OVERHEAD TRANSMISSION LINES#9.5#Total inductance of the line#Example9_5.sce#3472/CH9/EX9.5/Example9_5.sce#S##120528 +9#CONSTANTS OF OVERHEAD TRANSMISSION LINES#9.4#Inductance per phase of the system#Example9_4.sce#3472/CH9/EX9.4/Example9_4.sce#S##120527 +9#CONSTANTS OF OVERHEAD TRANSMISSION LINES#9.3#Loop inductance of line per km#Example9_3.sce#3472/CH9/EX9.3/Example9_3.sce#S##120526 +9#CONSTANTS OF OVERHEAD TRANSMISSION LINES#9.26#Capacitance of each line conductor#Example9_26.sce#3472/CH9/EX9.26/Example9_26.sce#S##120549 +9#CONSTANTS OF OVERHEAD TRANSMISSION LINES#9.25#Capacitance of the line#Example9_25.sce#3472/CH9/EX9.25/Example9_25.sce#S##120548 +9#CONSTANTS OF OVERHEAD TRANSMISSION LINES#9.24#Capacitance of the line and Charging current#Example9_24.sce#3472/CH9/EX9.24/Example9_24.sce#S##120547 +9#CONSTANTS OF OVERHEAD TRANSMISSION LINES#9.23#Inductive reactance Capacitance and Capacitive reactance of the line#Example9_23.sce#3472/CH9/EX9.23/Example9_23.sce#S##120546 +9#CONSTANTS OF OVERHEAD TRANSMISSION LINES#9.22#Capacitive reactance to neutral and Charging current per phase#Example9_22.sce#3472/CH9/EX9.22/Example9_22.sce#S##120545 +9#CONSTANTS OF OVERHEAD TRANSMISSION LINES#9.21#Capacitance per phase to neutral#Example9_21.sce#3472/CH9/EX9.21/Example9_21.sce#S##120544 +9#CONSTANTS OF OVERHEAD TRANSMISSION LINES#9.20#Phase to neutral capacitance#Example9_20.sce#3472/CH9/EX9.20/Example9_20.sce#S##120543 +9#CONSTANTS OF OVERHEAD TRANSMISSION LINES#9.2#Inductance per phase of the system#Example9_2.sce#3472/CH9/EX9.2/Example9_2.sce#S##120525 +9#CONSTANTS OF OVERHEAD TRANSMISSION LINES#9.19#Capacitance per phase to neutral of a line#Example9_19.sce#3472/CH9/EX9.19/Example9_19.sce#S##120542 +9#CONSTANTS OF OVERHEAD TRANSMISSION LINES#9.18#New value of capacitance#Example9_18.sce#3472/CH9/EX9.18/Example9_18.sce#S##120541 +9#CONSTANTS OF OVERHEAD TRANSMISSION LINES#9.17#Capacitance of conductor#Example9_17.sce#3472/CH9/EX9.17/Example9_17.sce#S##120540 +9#CONSTANTS OF OVERHEAD TRANSMISSION LINES#9.16#Capacitance of line neglecting and taking presence of ground#Example9_16.sce#3472/CH9/EX9.16/Example9_16.sce#S##120539 +9#CONSTANTS OF OVERHEAD TRANSMISSION LINES#9.15#Spacing between adjacent conductor to keep same inductance#Example9_15.sce#3472/CH9/EX9.15/Example9_15.sce#S##120538 +9#CONSTANTS OF OVERHEAD TRANSMISSION LINES#9.14#Inductance per phase of double circuit#Example9_14.sce#3472/CH9/EX9.14/Example9_14.sce#S##120537 +9#CONSTANTS OF OVERHEAD TRANSMISSION LINES#9.13#Inductance per phase#Example9_13.sce#3472/CH9/EX9.13/Example9_13.sce#S##120536 +9#CONSTANTS OF OVERHEAD TRANSMISSION LINES#9.12#Inductance of each conductor and Average inductance of each phase#Example9_12.sce#3472/CH9/EX9.12/Example9_12.sce#S##120535 +9#CONSTANTS OF OVERHEAD TRANSMISSION LINES#9.11#Inductance of each conductor per phase per km#Example9_11.sce#3472/CH9/EX9.11/Example9_11.sce#S##120534 +9#CONSTANTS OF OVERHEAD TRANSMISSION LINES#9.10#Inductance per km of 3 phase transmission line#Example9_10.sce#3472/CH9/EX9.10/Example9_10.sce#S##120533 +9#CONSTANTS OF OVERHEAD TRANSMISSION LINES#9.1#Loop inductance and Reactance of transmission line#Example9_1.sce#3472/CH9/EX9.1/Example9_1.sce#S##120524 +7#TARIFFS AND ECONOMIC ASPECTS IN POWER GENERATION#7.9#Size and number of generator units Reserve plant capacity Load factor Plant factor and Plant use factor#Example7_9.sce#3472/CH7/EX7.9/Example7_9.sce#S##120480 +7#TARIFFS AND ECONOMIC ASPECTS IN POWER GENERATION#7.8#Maximum demand and Connected load of each type#Example7_8.sce#3472/CH7/EX7.8/Example7_8.sce#S##120479 +7#TARIFFS AND ECONOMIC ASPECTS IN POWER GENERATION#7.7#Diversity factor and Annual load factor#Example7_7.sce#3472/CH7/EX7.7/Example7_7.sce#S##120478 +7#TARIFFS AND ECONOMIC ASPECTS IN POWER GENERATION#7.6#Annual load factor#Example7_6.sce#3472/CH7/EX7.6/Example7_6.sce#S##120477 +7#TARIFFS AND ECONOMIC ASPECTS IN POWER GENERATION#7.5#Number of units supplied annually Diversity factor and Demand factor#Example7_5.sce#3472/CH7/EX7.5/Example7_5.sce#S##120476 +7#TARIFFS AND ECONOMIC ASPECTS IN POWER GENERATION#7.4#Reserve capacity of plant#Example7_4.sce#3472/CH7/EX7.4/Example7_4.sce#S##120475 +7#TARIFFS AND ECONOMIC ASPECTS IN POWER GENERATION#7.3#Annual load factors and Capacity factors of two power stations#Example7_3.sce#3472/CH7/EX7.3/Example7_3.sce#S##120474 +7#TARIFFS AND ECONOMIC ASPECTS IN POWER GENERATION#7.26#Plot of flow duration curve Maximum power Average power developed and Capacity of proposed station#Example7_26.sce#3472/CH7/EX7.26/Example7_26.sce#S##120522 +7#TARIFFS AND ECONOMIC ASPECTS IN POWER GENERATION#7.26#Plot of flow duration curve Maximum power Average power developed and Capacity of proposed station#Ex7_26.png#3472/CH7/EX7.26/Ex7_26.png#R##120523 +7#TARIFFS AND ECONOMIC ASPECTS IN POWER GENERATION#7.25#Plot of hydrograph and Average discharge available#Example7_25.sce#3472/CH7/EX7.25/Example7_25.sce#S##120520 +7#TARIFFS AND ECONOMIC ASPECTS IN POWER GENERATION#7.25#Plot of hydrograph and Average discharge available#Ex7_25.png#3472/CH7/EX7.25/Ex7_25.png#R##120521 +7#TARIFFS AND ECONOMIC ASPECTS IN POWER GENERATION#7.24#Turbine rating Energy produced Average steam consumption Evaporation capacity Total fixed cost and variable cost and Cost per kWh generated#Example7_24.sce#3472/CH7/EX7.24/Example7_24.sce#S##120519 +7#TARIFFS AND ECONOMIC ASPECTS IN POWER GENERATION#7.23#Rating Annual energy produced Total fixed and variable cost Cost per kWh generated Overall efficiency and Quantity of cooling water required#Example7_23.sce#3472/CH7/EX7.23/Example7_23.sce#S##120518 +7#TARIFFS AND ECONOMIC ASPECTS IN POWER GENERATION#7.22#Daily energy produced Reserve capacity and Maximum energy produced at all time and fully loaded#Example7_22.sce#3472/CH7/EX7.22/Example7_22.sce#S##120517 +7#TARIFFS AND ECONOMIC ASPECTS IN POWER GENERATION#7.21#Plot of chronological load curve and Load duration curve#Example7_21.sce#3472/CH7/EX7.21/Example7_21.sce#S##120514 +7#TARIFFS AND ECONOMIC ASPECTS IN POWER GENERATION#7.21#Plot of chronological load curve and Load duration curve#Ex7_21.png#3472/CH7/EX7.21/Ex7_21.png#R##120516 +7#TARIFFS AND ECONOMIC ASPECTS IN POWER GENERATION#7.20#Type and hp ratings of two turbines for the station#Example7_20.sce#3472/CH7/EX7.20/Example7_20.sce#S##120513 +7#TARIFFS AND ECONOMIC ASPECTS IN POWER GENERATION#7.2#Total energy generated annually#Example7_2.sce#3472/CH7/EX7.2/Example7_2.sce#S##120473 +7#TARIFFS AND ECONOMIC ASPECTS IN POWER GENERATION#7.19#Valuation halfway based on Straight line Reducing balance and Sinking fund depreciation method#Example7_19.sce#3472/CH7/EX7.19/Example7_19.sce#S##120512 +7#TARIFFS AND ECONOMIC ASPECTS IN POWER GENERATION#7.18#Cheaper alternative to adopt and by how much#Example7_18.sce#3472/CH7/EX7.18/Example7_18.sce#S##120511 +7#TARIFFS AND ECONOMIC ASPECTS IN POWER GENERATION#7.17#Number of working hours per week above which the HV supply is cheaper#Example7_17.sce#3472/CH7/EX7.17/Example7_17.sce#S##120488 +7#TARIFFS AND ECONOMIC ASPECTS IN POWER GENERATION#7.16#Yearly cost per kW demand and Cost per kWh supplied at substations and Consumer premises#Example7_16.sce#3472/CH7/EX7.16/Example7_16.sce#S##120487 +7#TARIFFS AND ECONOMIC ASPECTS IN POWER GENERATION#7.15#Overall generating cost per unit at 50 and 100 percent capacity factor#Example7_15.sce#3472/CH7/EX7.15/Example7_15.sce#S##120486 +7#TARIFFS AND ECONOMIC ASPECTS IN POWER GENERATION#7.14#Generation cost in two part form#Example7_14.sce#3472/CH7/EX7.14/Example7_14.sce#S##120485 +7#TARIFFS AND ECONOMIC ASPECTS IN POWER GENERATION#7.13#Two part tariff to be charged from consumers#Example7_13.sce#3472/CH7/EX7.13/Example7_13.sce#S##120484 +7#TARIFFS AND ECONOMIC ASPECTS IN POWER GENERATION#7.12#Minimum reserve capacity of station and Cost per kWh generated#Example7_12.sce#3472/CH7/EX7.12/Example7_12.sce#S##120483 +7#TARIFFS AND ECONOMIC ASPECTS IN POWER GENERATION#7.11#Cost per unit generated#Example7_11.sce#3472/CH7/EX7.11/Example7_11.sce#S##120482 +7#TARIFFS AND ECONOMIC ASPECTS IN POWER GENERATION#7.10#Cost of generation per kWh at 100 and 50 percent load factor#Example7_10.sce#3472/CH7/EX7.10/Example7_10.sce#S##120481 +7#TARIFFS AND ECONOMIC ASPECTS IN POWER GENERATION#7.1#Demand factor and Load factor#Example7_1.sce#3472/CH7/EX7.1/Example7_1.sce#S##120472 +3#HYDRO ELECTRIC STATIONS#3.4#Minimum flow of river water to operate the plant#Example3_4.sce#3472/CH3/EX3.4/Example3_4.sce#S##120471 +3#HYDRO ELECTRIC STATIONS#3.3#Available continuous power#Example3_3.sce#3472/CH3/EX3.3/Example3_3.sce#S##120470 +3#HYDRO ELECTRIC STATIONS#3.1#Firm capacity and Yearly gross output#Example3_1.sce#3472/CH3/EX3.1/Example3_1.sce#S##120469 +2#THERMAL STATIONS#2.3#Heat balance sheet#Example2_3.sce#3472/CH2/EX2.3/Example2_3.sce#S##120468 +2#THERMAL STATIONS#2.2#Average load on power plant#Example2_2.sce#3472/CH2/EX2.2/Example2_2.sce#S##120467 +2#THERMAL STATIONS#2.1#Limiting value and Coal per hour#Example2_1.sce#3472/CH2/EX2.1/Example2_1.sce#S##120466 diff --git a/latex/tmp_3480_data.txt b/latex/tmp_3480_data.txt index e69de29bb..e1a06d341 100644 --- a/latex/tmp_3480_data.txt +++ b/latex/tmp_3480_data.txt @@ -0,0 +1,19 @@ +11#Vibrations and waves#11.2#Displacement#Ex11_2.sce#3480/CH11/EX11.2/Ex11_2.sce#S##116532 +11#Vibrations and waves#11.1#Energy in vibrations#Ex11_1.sce#3480/CH11/EX11.1/Ex11_1.sce#S##116531 +8#Ray Tracing#8.2#Double convex lens#Ex8_2.sce#3480/CH8/EX8.2/Ex8_2.sce#S##116530 +8#Ray Tracing#8.1#Convex spherical surface#Ex8_1.sce#3480/CH8/EX8.1/Ex8_1.sce#S##116529 +6#Spherical Mirrors#6.3#Focal length and principal point#Ex6_3.sce#3480/CH6/EX6.3/Ex6_3.sce#S##116527 +6#Spherical Mirrors#6.2#power of mirror and magnification#Ex6_2.sce#3480/CH6/EX6.2/Ex6_2.sce#S##116526 +6#Spherical Mirrors#6.1#focal length and position of image and lateral magnification#Ex6_1.sce#3480/CH6/EX6.1/Ex6_1.sce#S##116525 +5#Thick lenses#5.4#Power of lenses#Ex5_4.sce#3480/CH5/EX5.4/Ex5_4.sce#S##116524 +5#Thick lenses#5.3#Nodal point#Ex5_3.sce#3480/CH5/EX5.3/Ex5_3.sce#S##116523 +5#Thick lenses#5.2#Principal points#Ex5_2.sce#3480/CH5/EX5.2/Ex5_2.sce#S##116522 +5#Thick lenses#5.1#Position of final image#Ex5_1.sce#3480/CH5/EX5.1/Ex5_1.sce#S##116521 +4#Thin Lenses#4.4#Find power#Ex4_4.sce#3480/CH4/EX4.4/Ex4_4.sce#S##116520 +4#Thin Lenses#4.3#Radius of curvature#Ex4_3.sce#3480/CH4/EX4.3/Ex4_3.sce#S##116519 +4#Thin Lenses#4.2#Find the image#Ex4_2.sce#3480/CH4/EX4.2/Ex4_2.sce#S##116518 +4#Thin Lenses#4.1#Image formation#Ex4_1.sce#3480/CH4/EX4.1/Ex4_1.sce#S##116517 +3#Spherical Surfaces#3.4#Image distance#Ex3_4.sce#3480/CH3/EX3.4/Ex3_4.sce#S##116516 +3#Spherical Surfaces#3.3#Power and position of image#Ex3_3.sce#3480/CH3/EX3.3/Ex3_3.sce#S##116515 +3#Spherical Surfaces#3.2#Primary secondary and final image#Ex3_2.sce#3480/CH3/EX3.2/Ex3_2.sce#S##116514 +3#Spherical Surfaces#3.1#Position of image#Ex3_1.sce#3480/CH3/EX3.1/Ex3_1.sce#S##116513 diff --git a/latex/tmp_3506_contributor.txt b/latex/tmp_3506_contributor.txt index 3a4e627a8..fa6400f61 100644 --- a/latex/tmp_3506_contributor.txt +++ b/latex/tmp_3506_contributor.txt @@ -1 +1 @@ -Lochan Jolly#Optical communication#Electrical Engineering#Mumbai/Tcet#None#None +Lochan Jolly#Optical communication#Electrical Engineering#Tcet#None#Reshma diff --git a/latex/tmp_3506_data.txt b/latex/tmp_3506_data.txt index e69de29bb..1c03e4049 100644 --- a/latex/tmp_3506_data.txt +++ b/latex/tmp_3506_data.txt @@ -0,0 +1,82 @@ +16#Soliton Communication Systems#16.5#5#Ex_16_5.sce#3506/CH16/EX16.5/Ex_16_5.sce#S##120568 +16#Soliton Communication Systems#16.5#5#Ex_16_5.JPG#3506/CH16/EX16.5/Ex_16_5.JPG#R##120569 +16#Soliton Communication Systems#16.4#4#Ex_16_4.sce#3506/CH16/EX16.4/Ex_16_4.sce#S##120566 +16#Soliton Communication Systems#16.4#4#Ex_16_4.JPG#3506/CH16/EX16.4/Ex_16_4.JPG#R##120567 +16#Soliton Communication Systems#16.3#3#Ex_16_3.sce#3506/CH16/EX16.3/Ex_16_3.sce#S##120564 +16#Soliton Communication Systems#16.3#3#Ex_16_3.JPG#3506/CH16/EX16.3/Ex_16_3.JPG#R##120565 +16#Soliton Communication Systems#16.2#2#Ex_16_2.sce#3506/CH16/EX16.2/Ex_16_2.sce#S##120562 +16#Soliton Communication Systems#16.2#2#Ex_16_2.JPG#3506/CH16/EX16.2/Ex_16_2.JPG#R##120563 +16#Soliton Communication Systems#16.1#1#Ex_16_1.sce#3506/CH16/EX16.1/Ex_16_1.sce#S##120560 +16#Soliton Communication Systems#16.1#1#Ex_16_1.JPG#3506/CH16/EX16.1/Ex_16_1.JPG#R##120561 +14#Data Communication and LAN#14.1#1#Ex_14_1.JPG#3506/CH14/EX14.1/Ex_14_1.JPG#R##120653 +14#Data Communication and LAN#14.1#1#Ex_14_1.sce#3506/CH14/EX14.1/Ex_14_1.sce#S##120652 +13#Video Transmission#13.1#1#Ex_13_1.sce#3506/CH13/EX13.1/Ex_13_1.sce#S##120507 +13#Video Transmission#13.1#1#Ex_13_1.JPG#3506/CH13/EX13.1/Ex_13_1.JPG#R##120508 +11#Fiber Optic Communication System Design#11.2#2#Ex_11_2.sce#3506/CH11/EX11.2/Ex_11_2.sce#S##120495 +11#Fiber Optic Communication System Design#11.2#2#Ex_11_2.JPG#3506/CH11/EX11.2/Ex_11_2.JPG#R##120496 +11#Fiber Optic Communication System Design#11.1#1#Ex_11_1.sce#3506/CH11/EX11.1/Ex_11_1.sce#S##120493 +11#Fiber Optic Communication System Design#11.1#1#Ex_11_1.JPG#3506/CH11/EX11.1/Ex_11_1.JPG#R##120494 +10#Photonic Switching#10.2#2#Ex_10_2.sce#3506/CH10/EX10.2/Ex_10_2.sce#S##120505 +10#Photonic Switching#10.2#2#Ex_10_2.JPG#3506/CH10/EX10.2/Ex_10_2.JPG#R##120506 +10#Photonic Switching#10.1#1#Ex_10_1.JPG#3506/CH10/EX10.1/Ex_10_1.JPG#R##120504 +10#Photonic Switching#10.1#1#Ex_10_1.sce#3506/CH10/EX10.1/Ex_10_1.sce#S##120503 +9#Optical Amplifiers#9.3#3#Ex_9_3.JPG#3506/CH9/EX9.3/Ex_9_3.JPG#R##120502 +9#Optical Amplifiers#9.3#3#Ex_9_3.sce#3506/CH9/EX9.3/Ex_9_3.sce#S##120501 +9#Optical Amplifiers#9.2#2#Ex_9_2.JPG#3506/CH9/EX9.2/Ex_9_2.JPG#R##120500 +9#Optical Amplifiers#9.2#2#Ex_9_2.sce#3506/CH9/EX9.2/Ex_9_2.sce#S##120499 +9#Optical Amplifiers#9.1#1#Ex_9_1.JPG#3506/CH9/EX9.1/Ex_9_1.JPG#R##120498 +9#Optical Amplifiers#9.1#1#Ex_9_1.sce#3506/CH9/EX9.1/Ex_9_1.sce#S##120497 +8#Coherent Optical Communication#8.1#1#Ex_8_1.JPG#3506/CH8/EX8.1/Ex_8_1.JPG#R##119439 +8#Coherent Optical Communication#8.1#1#exp_8_1.sce#3506/CH8/EX8.1/exp_8_1.sce#S##119438 +7#Wavelength Division Multiplexing#7.1#1#Ex_7_1.JPG#3506/CH7/EX7.1/Ex_7_1.JPG#R##119437 +7#Wavelength Division Multiplexing#7.1#1#exp_7_1.sce#3506/CH7/EX7.1/exp_7_1.sce#S##119436 +6#Integrated Optics and Photonic Circuits#6.6#6#Ex_6_6.JPG#3506/CH6/EX6.6/Ex_6_6.JPG#R##119435 +6#Integrated Optics and Photonic Circuits#6.6#6#Ex_6_6.sce#3506/CH6/EX6.6/Ex_6_6.sce#S##119434 +6#Integrated Optics and Photonic Circuits#6.5#5#Ex_6_5.JPG#3506/CH6/EX6.5/Ex_6_5.JPG#R##120651 +6#Integrated Optics and Photonic Circuits#6.5#5#Ex_6_5.sce#3506/CH6/EX6.5/Ex_6_5.sce#S##120650 +6#Integrated Optics and Photonic Circuits#6.4#4#Ex_6_4.JPG#3506/CH6/EX6.4/Ex_6_4.JPG#R##119431 +6#Integrated Optics and Photonic Circuits#6.4#4#Ex_6_4.sce#3506/CH6/EX6.4/Ex_6_4.sce#S##119430 +6#Integrated Optics and Photonic Circuits#6.3#3#Ex_6_3.JPG#3506/CH6/EX6.3/Ex_6_3.JPG#R##119429 +6#Integrated Optics and Photonic Circuits#6.3#3#Ex_6_3.sce#3506/CH6/EX6.3/Ex_6_3.sce#S##119428 +6#Integrated Optics and Photonic Circuits#6.2#2#Ex_6_2.JPG#3506/CH6/EX6.2/Ex_6_2.JPG#R##119427 +6#Integrated Optics and Photonic Circuits#6.2#2#Ex_6_2.sce#3506/CH6/EX6.2/Ex_6_2.sce#S##119426 +6#Integrated Optics and Photonic Circuits#6.1#1#Ex_6_1.JPG#3506/CH6/EX6.1/Ex_6_1.JPG#R##119425 +6#Integrated Optics and Photonic Circuits#6.1#1#Ex_6_1.sce#3506/CH6/EX6.1/Ex_6_1.sce#S##119424 +5#Optical Detectors and Receivers#5.5#5#Exp_5_5.sce#3506/CH5/EX5.5/Exp_5_5.sce#S##119338 +5#Optical Detectors and Receivers#5.5#5#Ex_5_5.JPG#3506/CH5/EX5.5/Ex_5_5.JPG#R##119339 +5#Optical Detectors and Receivers#5.4#4#Ex_5_4.JPG#3506/CH5/EX5.4/Ex_5_4.JPG#R##119337 +5#Optical Detectors and Receivers#5.4#4#Exp_5_4.sce#3506/CH5/EX5.4/Exp_5_4.sce#S##119336 +5#Optical Detectors and Receivers#5.3#3#Ex_5_3.JPG#3506/CH5/EX5.3/Ex_5_3.JPG#R##119335 +5#Optical Detectors and Receivers#5.3#3#Exp_5_3.sce#3506/CH5/EX5.3/Exp_5_3.sce#S##119334 +5#Optical Detectors and Receivers#5.2#2#Ex_5_2.JPG#3506/CH5/EX5.2/Ex_5_2.JPG#R##119333 +5#Optical Detectors and Receivers#5.2#2#Exp_5_2.sce#3506/CH5/EX5.2/Exp_5_2.sce#S##119332 +5#Optical Detectors and Receivers#5.1#1#Ex_5_1.JPG#3506/CH5/EX5.1/Ex_5_1.JPG#R##119331 +5#Optical Detectors and Receivers#5.1#1#Exp_5_1.sce#3506/CH5/EX5.1/Exp_5_1.sce#S##119330 +4#Optical sources and transmitter circuits#4.4#4#Ex_4_4.JPG#3506/CH4/EX4.4/Ex_4_4.JPG#R##119175 +4#Optical sources and transmitter circuits#4.4#4#Ex_4_4.sce#3506/CH4/EX4.4/Ex_4_4.sce#S##119174 +4#Optical sources and transmitter circuits#4.3#3#Ex_4_3.JPG#3506/CH4/EX4.3/Ex_4_3.JPG#R##119173 +4#Optical sources and transmitter circuits#4.3#3#Ex_4_3.sce#3506/CH4/EX4.3/Ex_4_3.sce#S##119172 +4#Optical sources and transmitter circuits#4.2#2#Ex_4_2.JPG#3506/CH4/EX4.2/Ex_4_2.JPG#R##119177 +4#Optical sources and transmitter circuits#4.2#2#Ex_4_2.sce#3506/CH4/EX4.2/Ex_4_2.sce#S##119176 +4#Optical sources and transmitter circuits#4.1#1#Ex_4_1.sce#3506/CH4/EX4.1/Ex_4_1.sce#S##119162 +4#Optical sources and transmitter circuits#4.1#1#Ex_4_1.JPG#3506/CH4/EX4.1/Ex_4_1.JPG#R##119163 +3#Fiber optic technology#3.2#2#EXP_3_2.sce#3506/CH3/EX3.2/EXP_3_2.sce#S##119160 +3#Fiber optic technology#3.2#2#Ex_3_2.JPG#3506/CH3/EX3.2/Ex_3_2.JPG#R##119161 +3#Fiber optic technology#3.1#1#Ex_3_1.JPG#3506/CH3/EX3.1/Ex_3_1.JPG#R##119159 +3#Fiber optic technology#3.1#1#EXP_3_1.sce#3506/CH3/EX3.1/EXP_3_1.sce#S##119158 +2#Light propagation in optical fiber#2.9#9#EX_2_9.JPG#3506/CH2/EX2.9/EX_2_9.JPG#R##119153 +2#Light propagation in optical fiber#2.9#9#Exp_2_9.sce#3506/CH2/EX2.9/Exp_2_9.sce#S##119152 +2#Light propagation in optical fiber#2.8#8#Ex_2_8.JPG#3506/CH2/EX2.8/Ex_2_8.JPG#R##119157 +2#Light propagation in optical fiber#2.8#8#EXP_2_8.sce#3506/CH2/EX2.8/EXP_2_8.sce#S##119156 +2#Light propagation in optical fiber#2.6#6#ExP_2_6.sce#3506/CH2/EX2.6/ExP_2_6.sce#S##119150 +2#Light propagation in optical fiber#2.6#6#EX_2_6.JPG#3506/CH2/EX2.6/EX_2_6.JPG#R##119151 +2#Light propagation in optical fiber#2.4#4#Ex_2_4.sce#3506/CH2/EX2.4/Ex_2_4.sce#S##119148 +2#Light propagation in optical fiber#2.4#4#EX_2_4.JPG#3506/CH2/EX2.4/EX_2_4.JPG#R##119149 +2#Light propagation in optical fiber#2.3#3#EX_2_3.JPG#3506/CH2/EX2.3/EX_2_3.JPG#R##119147 +2#Light propagation in optical fiber#2.3#3#Ex_2_3.sce#3506/CH2/EX2.3/Ex_2_3.sce#S##119146 +2#Light propagation in optical fiber#2.2#2#EX_2_2.JPG#3506/CH2/EX2.2/EX_2_2.JPG#R##119145 +2#Light propagation in optical fiber#2.2#2#EXP_2_2.sce#3506/CH2/EX2.2/EXP_2_2.sce#S##119144 +2#Light propagation in optical fiber#2.10#10#EX_2_10.JPG#3506/CH2/EX2.10/EX_2_10.JPG#R##119155 +2#Light propagation in optical fiber#2.10#10#Exp_2_10.sce#3506/CH2/EX2.10/Exp_2_10.sce#S##119154 +2#Light propagation in optical fiber#2.1#1#Ex_2_1.JPG#3506/CH2/EX2.1/Ex_2_1.JPG#R##119143 +2#Light propagation in optical fiber#2.1#1#EXP_2_1.sce#3506/CH2/EX2.1/EXP_2_1.sce#S##119142 diff --git a/latex/tmp_3507_data.txt b/latex/tmp_3507_data.txt index e69de29bb..bdb54998f 100644 --- a/latex/tmp_3507_data.txt +++ b/latex/tmp_3507_data.txt @@ -0,0 +1,285 @@ +28#Digital electronics #28.9#Using De Morgan theore#Ex28_9.sce#3507/CH28/EX28.9/Ex28_9.sce#S##117480 +28#Digital electronics #28.8#Based on theorem 16 & 3#Ex28_8.sce#3507/CH28/EX28.8/Ex28_8.sce#S##117479 +28#Digital electronics #28.7#Apply cummulative law and theorem#Ex28_7.sce#3507/CH28/EX28.7/Ex28_7.sce#S##117478 +28#Digital electronics #28.6#factorize#Ex28_6.sce#3507/CH28/EX28.6/Ex28_6.sce#S##117477 +28#Digital electronics #28.5#page598#Ex28_5.sce#3507/CH28/EX28.5/Ex28_5.sce#S##117476 +28#Digital electronics #28.4#page598#Ex28_4.sce#3507/CH28/EX28.4/Ex28_4.sce#S##117475 +28#Digital electronics #28.3#equivalent decimal of binary 110001#Ex28_3.sce#3507/CH28/EX28.3/Ex28_3.sce#S##117474 +28#Digital electronics #28.2#binary equivalent of decimal number 23#Ex28_2.sce#3507/CH28/EX28.2/Ex28_2.sce#S##117473 +28#Digital electronics #28.13#theorem#Ex28_13.sce#3507/CH28/EX28.13/Ex28_13.sce#S##117484 +28#Digital electronics #28.12#theorem#Ex28_12.sce#3507/CH28/EX28.12/Ex28_12.sce#S##117483 +28#Digital electronics #28.11#De Morgan theorem#Ex28_11.sce#3507/CH28/EX28.11/Ex28_11.sce#S##117482 +28#Digital electronics #28.10#De Morgan theorem#Ex28_10.sce#3507/CH28/EX28.10/Ex28_10.sce#S##117481 +28#Digital electronics #28.1#binary equivalent of decimal number 37#Ex28_1.sce#3507/CH28/EX28.1/Ex28_1.sce#S##117472 +27#Hybrid parameters #27.7#micro mho#Ex27_7.sce#3507/CH27/EX27.7/Ex27_7.sce#S##117471 +27#Hybrid parameters #27.6#voltage gain#Ex27_6.sce#3507/CH27/EX27.6/Ex27_6.sce#S##117470 +27#Hybrid parameters #27.5#input impedence#Ex27_5.sce#3507/CH27/EX27.5/Ex27_5.sce#S##117469 +27#Hybrid parameters #27.4#approximate current gain#Ex27_4.sce#3507/CH27/EX27.4/Ex27_4.sce#S##117468 +27#Hybrid parameters #27.3#voltage gain of circuit#EX27_3.sce#3507/CH27/EX27.3/EX27_3.sce#S##117467 +27#Hybrid parameters #27.2#impedence #Ex27_2.sce#3507/CH27/EX27.2/Ex27_2.sce#S##117466 +27#Hybrid parameters #27.1#ratio#Ex27_1.sce#3507/CH27/EX27.1/Ex27_1.sce#S##117465 +26#Integrated circuits #26.1#regulated dc output voltage#Ex26_1.sce#3507/CH26/EX26.1/Ex26_1.sce#S##117464 +25#Electronic instruments #25.9#ratio of fv to fh#Ex25_9.sce#3507/CH25/EX25.9/Ex25_9.sce#S##117463 +25#Electronic instruments #25.8#unknown voltage#Ex25_8.sce#3507/CH25/EX25.8/Ex25_8.sce#S##117462 +25#Electronic instruments #25.7#applied voltage#Ex25_7.sce#3507/CH25/EX25.7/Ex25_7.sce#S##117461 +25#Electronic instruments #25.6#spot shift#Ex25_6.sce#3507/CH25/EX25.6/Ex25_6.sce#S##117460 +25#Electronic instruments #25.5#resistance of voltmeter#Ex25_5.sce#3507/CH25/EX25.5/Ex25_5.sce#S##117459 +25#Electronic instruments #25.4#voltage read by multimete#Ex25_4.sce#3507/CH25/EX25.4/Ex25_4.sce#S##117458 +25#Electronic instruments #25.3#voltage read by multimeter#Ex25_3.sce#3507/CH25/EX25.3/Ex25_3.sce#S##117457 +25#Electronic instruments #25.2#equivalent resistance of meter#Ex25_2.sce#3507/CH25/EX25.2/Ex25_2.sce#S##117456 +25#Electronic instruments #25.1#sensitivity#Ex25_1.sce#3507/CH25/EX25.1/Ex25_1.sce#S##117455 +24#Power electronics #24.2#voltage#Ex24_2.sce#3507/CH24/EX24.2/Ex24_2.sce#S##117454 +24#Power electronics #24.1#(RB1+RB2) = RB1/Rbb #Ex24_1.sce#3507/CH24/EX24.1/Ex24_1.sce#S##117453 +23#Silicon controlled rectifiers #23.7# voltage#Ex23_7.sce#3507/CH23/EX23.7/Ex23_7.sce#S##117452 +23#Silicon controlled rectifiers #23.6#forward breakdown voltage#Ex23_6.sce#3507/CH23/EX23.6/Ex23_6.sce#S##117451 +23#Silicon controlled rectifiers #23.5#power output#Ex23_5.sce#3507/CH23/EX23.5/Ex23_5.sce#S##117450 +23#Silicon controlled rectifiers #23.4#average current#Ex23_4.sce#3507/CH23/EX23.4/Ex23_4.sce#S##117449 +23#Silicon controlled rectifiers #23.3#maximum allowable duration of surge#Ex23_3.sce#3507/CH23/EX23.3/Ex23_3.sce#S##117448 +23#Silicon controlled rectifiers #23.2#rating#Ex23_2.sce#3507/CH23/EX23.2/Ex23_2.sce#S##117447 +23#Silicon controlled rectifiers #23.1# Breakover voltage #Ex23_1.sce#3507/CH23/EX23.1/Ex23_1.sce#S##117446 +22#Field Effect Transistors #22.9#voltage amplification of the circuit#Ex22_9.sce#3507/CH22/EX22.9/Ex22_9.sce#S##117443 +22#Field Effect Transistors #22.8#required value of Rs#Ex22_8.sce#3507/CH22/EX22.8/Ex22_8.sce#S##117442 +22#Field Effect Transistors #22.7#Kirchoff's law#Ex22_7.sce#3507/CH22/EX22.7/Ex22_7.sce#S##117441 +22#Field Effect Transistors #22.6#amplification factor#Ex22_6.sce#3507/CH22/EX22.6/Ex22_6.sce#S##117440 +22#Field Effect Transistors #22.5#transconductance #Ex22_5.sce#3507/CH22/EX22.5/Ex22_5.sce#S##117439 +22#Field Effect Transistors #22.4#gate source resistance#Ex22_4.sce#3507/CH22/EX22.4/Ex22_4.sce#S##117438 +22#Field Effect Transistors #22.3#pinch off voltage#Ex22_3.sce#3507/CH22/EX22.3/Ex22_3.sce#S##117437 +22#Field Effect Transistors #22.2#drain current #Ex22_2.sce#3507/CH22/EX22.2/Ex22_2.sce#S##117436 +22#Field Effect Transistors #22.11#dc voltage of drain#Ex22_11.sce#3507/CH22/EX22.11/Ex22_11.sce#S##117445 +22#Field Effect Transistors #22.10#Vds#Ex22_10.sce#3507/CH22/EX22.10/Ex22_10.sce#S##117444 +22#Field Effect Transistors #22.1#Id#Ex22_1.sce#3507/CH22/EX22.1/Ex22_1.sce#S##117434 +21#Solid state switching circuits #21.9#empty#Ex21_9.xcos#3507/CH21/EX21.9/Ex21_9.xcos#X##117431 +21#Solid state switching circuits #21.9#empty#Ex21_9.sce#3507/CH21/EX21.9/Ex21_9.sce#S##117430 +21#Solid state switching circuits #21.8#plotting input and output waveforms#Ex21_8.sce#3507/CH21/EX21.8/Ex21_8.sce#S##117429 +21#Solid state switching circuits #21.7#plotting input and output waveforms#Ex21_7.sce#3507/CH21/EX21.7/Ex21_7.sce#S##117428 +21#Solid state switching circuits #21.6#plotting input and output waveforms#Ex21_6.sce#3507/CH21/EX21.6/Ex21_6.sce#S##117427 +21#Solid state switching circuits #21.5#plotting input and output waveforms #Ex21_5.sce#3507/CH21/EX21.5/Ex21_5.sce#S##117425 +21#Solid state switching circuits #21.4#output voltage#Ex21_4.sce#3507/CH21/EX21.4/Ex21_4.sce#S##117426 +21#Solid state switching circuits #21.3#differentiating circuit#Ex21_3.sce#3507/CH21/EX21.3/Ex21_3.sce#S##117424 +21#Solid state switching circuits #21.2#square wave#Ex21_2.sce#3507/CH21/EX21.2/Ex21_2.sce#S##117423 +21#Solid state switching circuits #21.11#plot input and output waveforms#Ex21_11.sce#3507/CH21/EX21.11/Ex21_11.sce#S##117433 +21#Solid state switching circuits #21.10#plot input and output waveforms#Ex21_10.sce#3507/CH21/EX21.10/Ex21_10.sce#S##117432 +21#Solid state switching circuits #21.1#voltage required to saturate transistor#Ex21_1.sce#3507/CH21/EX21.1/Ex21_1.sce#S##117422 +20#Regulated dc power supply #20.9#Zener diode#Ex20_9.sce#3507/CH20/EX20.9/Ex20_9.sce#S##117418 +20#Regulated dc power supply #20.8#Zener diode#Ex20_8.sce#3507/CH20/EX20.8/Ex20_8.sce#S##117417 +20#Regulated dc power supply #20.7#load voltage & current#Ex20_7.sce#3507/CH20/EX20.7/Ex20_7.sce#S##117416 +20#Regulated dc power supply #20.6#required series resistance #Ex20_6.sce#3507/CH20/EX20.6/Ex20_6.sce#S##117415 +20#Regulated dc power supply #20.5#maximum zener current#Ex20_5.sce#3507/CH20/EX20.5/Ex20_5.sce#S##117414 +20#Regulated dc power supply #20.4#minimum load resistance#Ex20_4.sce#3507/CH20/EX20.4/Ex20_4.sce#S##117413 +20#Regulated dc power supply #20.3#regulation for power#Ex20_3.sce#3507/CH20/EX20.3/Ex20_3.sce#S##117412 +20#Regulated dc power supply #20.2#full load voltage#Ex20_2.sce#3507/CH20/EX20.2/Ex20_2.sce#S##117411 +20#Regulated dc power supply #20.12#collector current#Ex20_12.sce#3507/CH20/EX20.12/Ex20_12.sce#S##117421 +20#Regulated dc power supply #20.11#closed loop voltage gain#Ex20_11.sce#3507/CH20/EX20.11/Ex20_11.sce#S##117420 +20#Regulated dc power supply #20.10#regulated output voltage#Ex20_10.sce#3507/CH20/EX20.10/Ex20_10.sce#S##117419 +20#Regulated dc power supply #20.1#regulation#Ex20_1.sce#3507/CH20/EX20.1/Ex20_1.sce#S##117410 +19#Modulation and demodulation #19.9#modulating signal#Ex19_9.sce#3507/CH19/EX19.9/Ex19_9.sce#S##117396 +19#Modulation and demodulation #19.8#sideband power#Ex19_8.sce#3507/CH19/EX19.8/Ex19_8.sce#S##117395 +19#Modulation and demodulation #19.7#power of modulated wave#Ex19_7.sce#3507/CH19/EX19.7/Ex19_7.sce#S##117394 +19#Modulation and demodulation #19.6#amplitude of each sideband term#Ex19_6.sce#3507/CH19/EX19.6/Ex19_6.sce#S##117393 +19#Modulation and demodulation #19.5#amplitudes of components#Ex19_5.sce#3507/CH19/EX19.5/Ex19_5.sce#S##117392 +19#Modulation and demodulation #19.4#Bandwidth for RF amplifier#Ex19_4.sce#3507/CH19/EX19.4/Ex19_4.sce#S##117391 +19#Modulation and demodulation #19.3#modulation factor#Ex19_3.sce#3507/CH19/EX19.3/Ex19_3.sce#S##117390 +19#Modulation and demodulation #19.2#modulation factor#Ex19_2.sce#3507/CH19/EX19.2/Ex19_2.sce#S##117389 +19#Modulation and demodulation #19.14#AM wave#Ex19_14.sce#3507/CH19/EX19.14/Ex19_14.sce#S##117403 +19#Modulation and demodulation #19.13#modulation factor#Ex19_13.sce#3507/CH19/EX19.13/Ex19_13.sce#S##117400 +19#Modulation and demodulation #19.12#modulation factor#Ex19_12.sce#3507/CH19/EX19.12/Ex19_12.sce#S##117402 +19#Modulation and demodulation #19.11#antenna current#Ex19_11.sce#3507/CH19/EX19.11/Ex19_11.sce#S##117398 +19#Modulation and demodulation #19.10#frequencie & bandwith#Ex19_10.sce#3507/CH19/EX19.10/Ex19_10.sce#S##117397 +19#Modulation and demodulation #19.1#Vmax&Vmin#Ex19_1.sce#3507/CH19/EX19.1/Ex19_1.sce#S##117388 +18#Transistor tuned amplifiers #18.7#load#Ex18_7.sce#3507/CH18/EX18.7/Ex18_7.sce#S##117281 +18#Transistor tuned amplifiers #18.6#ac load#Ex18_6.sce#3507/CH18/EX18.6/Ex18_6.sce#S##117280 +18#Transistor tuned amplifiers #18.5#co-efficient of coupling#Ex18_5.sce#3507/CH18/EX18.5/Ex18_5.sce#S##117279 +18#Transistor tuned amplifiers #18.4#frequency#Ex18_4.sce#3507/CH18/EX18.4/Ex18_4.sce#S##117278 +18#Transistor tuned amplifiers #18.3# frequency#Ex18_3.sce#3507/CH18/EX18.3/Ex18_3.sce#S##117277 +18#Transistor tuned amplifiers #18.2#circuit#Ex18_2.sce#3507/CH18/EX18.2/Ex18_2.sce#S##117276 +18#Transistor tuned amplifiers #18.1#impedence of circuit at resonance#Ex18_1.sce#3507/CH18/EX18.1/Ex18_1.sce#S##117275 +17#Sinusoidal oscillations #17.7#resonant frequency#Ex17_7.sce#3507/CH17/EX17.7/Ex17_7.sce#S##117273 +17#Sinusoidal oscillations #17.6#thickness of crystal#Ex17_6.sce#3507/CH17/EX17.6/Ex17_6.sce#S##117272 +17#Sinusoidal oscillations #17.5#frequency of oscillations#Ex17_5.sce#3507/CH17/EX17.5/Ex17_5.sce#S##117271 +17#Sinusoidal oscillations #17.4#frequency of oscillations#Ex17_4.sce#3507/CH17/EX17.4/Ex17_4.sce#S##117274 +17#Sinusoidal oscillations #17.3#feedback function#Ex17_3.sce#3507/CH17/EX17.3/Ex17_3.sce#S##117269 +17#Sinusoidal oscillations #17.2#operating frequency#Ex17_2.sce#3507/CH17/EX17.2/Ex17_2.sce#S##117267 +17#Sinusoidal oscillations #17.1#frequency of oscillations#Ex17_1.sce#3507/CH17/EX17.1/Ex17_1.sce#S##117268 +16#Amplifiers with negative feedback#16.9#Example 9#Ex16_9.sce#3507/CH16/EX16.9/Ex16_9.sce#S##117088 +16#Amplifiers with negative feedback#16.8#voltage gain with negative feedback#Ex16_8.sce#3507/CH16/EX16.8/Ex16_8.sce#S##117087 +16#Amplifiers with negative feedback#16.7#voltage gain with negative feedback#Ex16_7.sce#3507/CH16/EX16.7/Ex16_7.sce#S##117086 +16#Amplifiers with negative feedback#16.6#percentage change in gain#Ex16_6.sce#3507/CH16/EX16.6/Ex16_6.sce#S##117085 +16#Amplifiers with negative feedback#16.5#percentage reduction in gain#Ex16_5.sce#3507/CH16/EX16.5/Ex16_5.sce#S##117084 +16#Amplifiers with negative feedback#16.4#fraction of output fed back to input #Ex16_4.sce#3507/CH16/EX16.4/Ex16_4.sce#S##117083 +16#Amplifiers with negative feedback#16.3#overall gain#Ex16_3.sce#3507/CH16/EX16.3/Ex16_3.sce#S##117082 +16#Amplifiers with negative feedback#16.20#output impedence#Ex16_20.sce#3507/CH16/EX16.20/Ex16_20.sce#S##117099 +16#Amplifiers with negative feedback#16.19#input impedence #Ex16_19.sce#3507/CH16/EX16.19/Ex16_19.sce#S##117098 +16#Amplifiers with negative feedback#16.18#voltage gain#Ex16_18.sce#3507/CH16/EX16.18/Ex16_18.sce#S##117097 +16#Amplifiers with negative feedback#16.17#voltage gain#Ex16_17.sce#3507/CH16/EX16.17/Ex16_17.sce#S##117096 +16#Amplifiers with negative feedback#16.16#voltage across#Ex16_16.sce#3507/CH16/EX16.16/Ex16_16.sce#S##117095 +16#Amplifiers with negative feedback#16.15#Bandwidth with negative feedback#Ex16_15.sce#3507/CH16/EX16.15/Ex16_15.sce#S##117094 +16#Amplifiers with negative feedback#16.14#output impedence with negative feedback#Ex16_14.sce#3507/CH16/EX16.14/Ex16_14.sce#S##117093 +16#Amplifiers with negative feedback#16.13#input impedence with negative feedback#Ex16_13.sce#3507/CH16/EX16.13/Ex16_13.sce#S##117092 +16#Amplifiers with negative feedback#16.12#effective current gain of amplifier#Ex16_12.sce#3507/CH16/EX16.12/Ex16_12.sce#S##117091 +16#Amplifiers with negative feedback#16.11# cutoff frequency with negative feedback #Ex16_11.sce#3507/CH16/EX16.11/Ex16_11.sce#S##117090 +16#Amplifiers with negative feedback#16.10#distortion of amplifier with negative feedback#Ex16_10.sce#3507/CH16/EX16.10/Ex16_10.sce#S##117089 +16#Amplifiers with negative feedback#16.1#voltge gain with negative feedback#Ex16_1.sce#3507/CH16/EX16.1/Ex16_1.sce#S##117080 +16#Amplifiers with negative feedback#12.2#fraction of output fed back to input #Ex16_2.sce#3507/CH16/EX12.2/Ex16_2.sce#S##117081 +15#Transistor audio power amplifiers#15.9#current#Ex15_9.sce#3507/CH15/EX15.9/Ex15_9.sce#S##116969 +15#Transistor audio power amplifiers#15.8#loudspeaker#Ex15_8.sce#3507/CH15/EX15.8/Ex15_8.sce#S##116968 +15#Transistor audio power amplifiers#15.7#power dissipation#Ex15_7.sce#3507/CH15/EX15.7/Ex15_7.sce#S##116967 +15#Transistor audio power amplifiers#15.6#maximum ac power output#Ex15_6.sce#3507/CH15/EX15.6/Ex15_6.sce#S##116966 +15#Transistor audio power amplifiers#15.5#collector efficiency#Ex15_5.sce#3507/CH15/EX15.5/Ex15_5.sce#S##116965 +15#Transistor audio power amplifiers#15.4#collector efficiency#Ex15_4.sce#3507/CH15/EX15.4/Ex15_4.sce#S##116964 +15#Transistor audio power amplifiers#15.3#ac output#Ex15_3.sce#3507/CH15/EX15.3/Ex15_3.sce#S##116963 +15#Transistor audio power amplifiers#15.2#maximum collector current#Ex15_2.sce#3507/CH15/EX15.2/Ex15_2.sce#S##116962 +15#Transistor audio power amplifiers#15.12#allowed collector current#Ex15_12.sce#3507/CH15/EX15.12/Ex15_12.sce#S##116972 +15#Transistor audio power amplifiers#15.11#maximum power dissipation#Ex15_11.sce#3507/CH15/EX15.11/Ex15_11.sce#S##116971 +15#Transistor audio power amplifiers#15.10#maximum ambient temperature at which transistor can be operated#Ex15_10.sce#3507/CH15/EX15.10/Ex15_10.sce#S##116970 +15#Transistor audio power amplifiers#15.1#maximum collector current#Ex15_1.sce#3507/CH15/EX15.1/Ex15_1.sce#S##116961 +14#Multistage transistor amplifiers #14.9#frequency#Ex14_9.sce#3507/CH14/EX14.9/Ex14_9.sce#S##116950 +14#Multistage transistor amplifiers #14.8#output voltage#Ex14_8.sce#3507/CH14/EX14.8/Ex14_8.sce#S##116949 +14#Multistage transistor amplifiers #14.7#minimum value of load resistance#Ex14_7.sce#3507/CH14/EX14.7/Ex14_7.sce#S##116948 +14#Multistage transistor amplifiers #14.6#output voltage#Ex14_6.sce#3507/CH14/EX14.6/Ex14_6.sce#S##116947 +14#Multistage transistor amplifiers #14.5#Example 5#Ex14_5.sce#3507/CH14/EX14.5/Ex14_5.sce#S##116946 +14#Multistage transistor amplifiers #14.4#Example 4#Ex14_4.sce#3507/CH14/EX14.4/Ex14_4.sce#S##116945 +14#Multistage transistor amplifiers #14.3#total voltage gain#Ex14_3.sce#3507/CH14/EX14.3/Ex14_3.sce#S##116944 +14#Multistage transistor amplifiers #14.2# gain#Ex14_2.sce#3507/CH14/EX14.2/Ex14_2.sce#S##116943 +14#Multistage transistor amplifiers #14.19#inductance#Ex14_19.sce#3507/CH14/EX14.19/Ex14_19.sce#S##116960 +14#Multistage transistor amplifiers #14.18#inductance#Ex14_18.sce#3507/CH14/EX14.18/Ex14_18.sce#S##116958 +14#Multistage transistor amplifiers #14.17#turn ratio for maximum power transfer#Ex14_17.sce#3507/CH14/EX14.17/Ex14_17.sce#S##116959 +14#Multistage transistor amplifiers #14.16#voltage across external load#Ex14_16.sce#3507/CH14/EX14.16/Ex14_16.sce#S##116957 +14#Multistage transistor amplifiers #14.15#transformer#Ex14_15.sce#3507/CH14/EX14.15/Ex14_15.sce#S##116956 +14#Multistage transistor amplifiers #14.14#voltage gain#Ex14_14.sce#3507/CH14/EX14.14/Ex14_14.sce#S##116955 +14#Multistage transistor amplifiers #14.13#biasing potential#Ex14_13.sce#3507/CH14/EX14.13/Ex14_13.sce#S##116954 +14#Multistage transistor amplifiers #14.12#voltage gain#Ex14_12.sce#3507/CH14/EX14.12/Ex14_12.sce#S##116953 +14#Multistage transistor amplifiers #14.11#gain#Ex14_11.sce#3507/CH14/EX14.11/Ex14_11.sce#S##116952 +14#Multistage transistor amplifiers #14.10#gain#Ex14_10.sce#3507/CH14/EX14.10/Ex14_10.sce#S##116951 +14#Multistage transistor amplifiers #14.1#gain#Ex14_1.sce#3507/CH14/EX14.1/Ex14_1.sce#S##116942 +13#Single stage transistor amplifiers #13.9#output voltage#Ex13_9.sce#3507/CH13/EX13.9/Ex13_9.sce#S##116932 +13#Single stage transistor amplifiers #13.8#input impedence#Ex13_8.sce#3507/CH13/EX13.8/Ex13_8.sce#S##116931 +13#Single stage transistor amplifiers #13.7#output voltage#Ex13_7.sce#3507/CH13/EX13.7/Ex13_7.sce#S##116930 +13#Single stage transistor amplifiers #13.6#voltage gain#Ex13_6.sce#3507/CH13/EX13.6/Ex13_6.sce#S##116929 +13#Single stage transistor amplifiers #13.5#plot#Ex13_5.sce#3507/CH13/EX13.5/Ex13_5.sce#S##116928 +13#Single stage transistor amplifiers #13.4#maximum collector#Ex13_4.sce#3507/CH13/EX13.4/Ex13_4.sce#S##116927 +13#Single stage transistor amplifiers #13.3#the operating point#Ex13_3.sce#3507/CH13/EX13.3/Ex13_3.sce#S##116926 +13#Single stage transistor amplifiers #13.18#required signal voltage#Ex13_18.sce#3507/CH13/EX13.18/Ex13_18.sce#S##116941 +13#Single stage transistor amplifiers #13.17#magnitude of output voltage #Ex13_17.sce#3507/CH13/EX13.17/Ex13_17.sce#S##116940 +13#Single stage transistor amplifiers #13.16#required input signal voltag#Ex13_16.sce#3507/CH13/EX13.16/Ex13_16.sce#S##116939 +13#Single stage transistor amplifiers #13.15#Class A#Ex13_15.sce#3507/CH13/EX13.15/Ex13_15.sce#S##116938 +13#Single stage transistor amplifiers #13.14#input impedence of amplifier circuit #Ex13_14.sce#3507/CH13/EX13.14/Ex13_14.sce#S##116937 +13#Single stage transistor amplifiers #13.13#voltage gain#Ex13_13.sce#3507/CH13/EX13.13/Ex13_13.sce#S##116936 +13#Single stage transistor amplifiers #13.12#voltage gain#Ex13_12.sce#3507/CH13/EX13.12/Ex13_12.sce#S##116935 +13#Single stage transistor amplifiers #13.11#ac emitter resistance#Ex13_11.sce#3507/CH13/EX13.11/Ex13_11.sce#S##116934 +13#Single stage transistor amplifiers #13.10#circuit#Ex13_10.sce#3507/CH13/EX13.10/Ex13_10.sce#S##116933 +13#Single stage transistor amplifiers #1.2#Thevenin circuit#Ex13_2.sce#3507/CH13/EX1.2/Ex13_2.sce#S##116925 +13#Single stage transistor amplifiers #1.1#collector current#Ex13_1.sce#3507/CH13/EX1.1/Ex13_1.sce#S##116924 +12#Transistor biasing #19.12#Example 12#Ex19_12.sce#3507/CH12/EX19.12/Ex19_12.sce#S##117399 +12#Transistor biasing #12.9#Example 9#Ex12_9.sce#3507/CH12/EX12.9/Ex12_9.sce#S##116876 +12#Transistor biasing #12.8#Example 8#Ex12_8.sce#3507/CH12/EX12.8/Ex12_8.sce#S##116875 +12#Transistor biasing #12.7#Example 7#Ex12_7.sce#3507/CH12/EX12.7/Ex12_7.sce#S##116874 +12#Transistor biasing #12.6#Example 6#Ex12_6.sce#3507/CH12/EX12.6/Ex12_6.sce#S##116873 +12#Transistor biasing #12.5#Example 5#Ex12_5.sce#3507/CH12/EX12.5/Ex12_5.sce#S##116872 +12#Transistor biasing #12.4#Example 4#Ex12_4.sce#3507/CH12/EX12.4/Ex12_4.sce#S##116871 +12#Transistor biasing #12.3#Example 3#Ex12_3.sce#3507/CH12/EX12.3/Ex12_3.sce#S##116870 +12#Transistor biasing #12.26#voltage at base#Ex12_26.sce#3507/CH12/EX12.26/Ex12_26.sce#S##116892 +12#Transistor biasing #12.25#since base voltage is zero#Ex12_25.sce#3507/CH12/EX12.25/Ex12_25.sce#S##116891 +12#Transistor biasing #12.24#base current#Ex12_24.sce#3507/CH12/EX12.24/Ex12_24.sce#S##116890 +12#Transistor biasing #12.23#collector cutoff current#Ex12_23.sce#3507/CH12/EX12.23/Ex12_23.sce#S##116889 +12#Transistor biasing #12.22#base current#Ex12_22.sce#3507/CH12/EX12.22/Ex12_22.sce#S##116888 +12#Transistor biasing #12.21#circuit is not mid-point biased#Ex12_21.sce#3507/CH12/EX12.21/Ex12_21.sce#S##116887 +12#Transistor biasing #12.20#circuit is not mid-point biased#Ex12_20.sce#3507/CH12/EX12.20/Ex12_20.sce#S##116886 +12#Transistor biasing #12.2#maximum input signal voltage#Ex12_2.sce#3507/CH12/EX12.2/Ex12_2.sce#S##116869 +12#Transistor biasing #12.19#transistor#EX12_19.sce#3507/CH12/EX12.19/EX12_19.sce#S##116893 +12#Transistor biasing #12.18#kilo ohm#Ex12_18.sce#3507/CH12/EX12.18/Ex12_18.sce#S##116885 +12#Transistor biasing #12.17#thevenin#Ex12_17.sce#3507/CH12/EX12.17/Ex12_17.sce#S##116884 +12#Transistor biasing #12.16#collector resistance#Ex12_16.sce#3507/CH12/EX12.16/Ex12_16.sce#S##116883 +12#Transistor biasing #12.15#Kirchoff voltage law#Ex12_15.sce#3507/CH12/EX12.15/Ex12_15.sce#S##116882 +12#Transistor biasing #12.14#collector emitter#Ex12_14.sce#3507/CH12/EX12.14/Ex12_14.sce#S##116881 +12#Transistor biasing #12.13#collector current#Ex12_13.sce#3507/CH12/EX12.13/Ex12_13.sce#S##116880 +12#Transistor biasing #12.12#thevenin#Ex12_12.sce#3507/CH12/EX12.12/Ex12_12.sce#S##116879 +12#Transistor biasing #12.11#voltage across#Ex12_11.sce#3507/CH12/EX12.11/Ex12_11.sce#S##116878 +12#Transistor biasing #12.10#base resistance#Ex12_10.sce#3507/CH12/EX12.10/Ex12_10.sce#S##116877 +12#Transistor biasing #12.1#circuit diagram#Ex12_1.sce#3507/CH12/EX12.1/Ex12_1.sce#S##116868 +11#Transistors #11.9#Example 9#Ex11_9.sce#3507/CH11/EX11.9/Ex11_9.sce#S##116854 +11#Transistors #11.8#Example 8#Ex11_8.sce#3507/CH11/EX11.8/Ex11_8.sce#S##116853 +11#Transistors #11.7#collector curent #Ex11_7.sce#3507/CH11/EX11.7/Ex11_7.sce#S##116852 +11#Transistors #11.6#base current#Ex11_6.sce#3507/CH11/EX11.6/Ex11_6.sce#S##116851 +11#Transistors #11.5#collector current#Ex11_5.sce#3507/CH11/EX11.5/Ex11_5.sce#S##116850 +11#Transistors #11.4#amplification factor#Ex11_4.sce#3507/CH11/EX11.4/Ex11_4.sce#S##116849 +11#Transistors #11.3#base current#Ex11_3.sce#3507/CH11/EX11.3/Ex11_3.sce#S##116848 +11#Transistors #11.21#maximum allowable collector current#Ex11_21.sce#3507/CH11/EX11.21/Ex11_21.sce#S##116867 +11#Transistors #11.20#saturation collector current#Ex11_20.sce#3507/CH11/EX11.20/Ex11_20.sce#S##116866 +11#Transistors #11.2#base current#Ex11_2.sce#3507/CH11/EX11.2/Ex11_2.sce#S##116847 +11#Transistors #11.19#voltage gain#Ex11_19.sce#3507/CH11/EX11.19/Ex11_19.sce#S##116865 +11#Transistors #11.18#output resistance#Ex11_18.sce#3507/CH11/EX11.18/Ex11_18.sce#S##116864 +11#Transistors #11.17#input resistance #Ex11_17.sce#3507/CH11/EX11.17/Ex11_17.sce#S##116863 +11#Transistors #11.16#collector load#Ex11_16.sce#3507/CH11/EX11.16/Ex11_16.sce#S##116862 +11#Transistors #11.15#Q point#Ex11_15.sce#3507/CH11/EX11.15/Ex11_15.sce#S##116861 +11#Transistors #11.14#dc load line#Ex11_14.sce#3507/CH11/EX11.14/Ex11_14.sce#S##116860 +11#Transistors #11.13#base current#Ex11_13.sce#3507/CH11/EX11.13/Ex11_13.sce#S##116858 +11#Transistors #11.12#collector emitter voltage#Ex11_12.sce#3507/CH11/EX11.12/Ex11_12.sce#S##116857 +11#Transistors #11.11#base current#Ex11_11.sce#3507/CH11/EX11.11/Ex11_11.sce#S##116859 +11#Transistors #11.10#collector current#Ex11_10.sce#3507/CH11/EX11.10/Ex11_10.sce#S##116855 +11#Transistors #11.1#voltage amplification#Ex11_1.sce#3507/CH11/EX11.1/Ex11_1.sce#S##116846 +10# Special purpose diodes #10.5#resonant frequency#Ex10_5.sce#3507/CH10/EX10.5/Ex10_5.sce#S##116845 +10# Special purpose diodes #10.4#reverse current#Ex10_4.sce#3507/CH10/EX10.4/Ex10_4.sce#S##116844 +10# Special purpose diodes #10.3#dark resistance#Ex10_3.sce#3507/CH10/EX10.3/Ex10_3.sce#S##116843 +10# Special purpose diodes #10.2#current through LED#Ex10_2.sce#3507/CH10/EX10.2/Ex10_2.sce#S##116842 +10# Special purpose diodes #10.11#base current#Ex11_11.sce#3507/CH10/EX10.11/Ex11_11.sce#S##116856 +10# Special purpose diodes #10.1#required series resistor#Ex10_1.sce#3507/CH10/EX10.1/Ex10_1.sce#S##116841 +9#Semiconductor diode #9.9#Example 9#Ex9_9.sce#3507/CH9/EX9.9/Ex9_9.sce#S##116821 +9#Semiconductor diode #9.8#Example 8#Ex9_8.sce#3507/CH9/EX9.8/Ex9_8.sce#S##116820 +9#Semiconductor diode #9.7#Example 7#Ex9_7.sce#3507/CH9/EX9.7/Ex9_7.sce#S##116819 +9#Semiconductor diode #9.6#Example 6#Ex9_6.sce#3507/CH9/EX9.6/Ex9_6.sce#S##116818 +9#Semiconductor diode #9.5#Example 5#Ex9_5.sce#3507/CH9/EX9.5/Ex9_5.sce#S##116817 +9#Semiconductor diode #9.4#Example 4#Ex9_4.sce#3507/CH9/EX9.4/Ex9_4.sce#S##116816 +9#Semiconductor diode #9.3#Example 3#Ex9_3.sce#3507/CH9/EX9.3/Ex9_3.sce#S##116815 +9#Semiconductor diode #9.28#Example 28#Ex9_28.sce#3507/CH9/EX9.28/Ex9_28.sce#S##116840 +9#Semiconductor diode #9.27#Example 27#Ex9_27.sce#3507/CH9/EX9.27/Ex9_27.sce#S##116839 +9#Semiconductor diode #9.26#Example 26#Ex9_26.sce#3507/CH9/EX9.26/Ex9_26.sce#S##116838 +9#Semiconductor diode #9.25#Example 25#Ex9_25.sce#3507/CH9/EX9.25/Ex9_25.sce#S##116837 +9#Semiconductor diode #9.24#Example 24#Ex9_24.sce#3507/CH9/EX9.24/Ex9_24.sce#S##116836 +9#Semiconductor diode #9.23#Example 23#Ex9_23.sce#3507/CH9/EX9.23/Ex9_23.sce#S##116835 +9#Semiconductor diode #9.22#Example 22#Ex9_22.sce#3507/CH9/EX9.22/Ex9_22.sce#S##116834 +9#Semiconductor diode #9.21#Example 21#Ex9_21.sce#3507/CH9/EX9.21/Ex9_21.sce#S##116833 +9#Semiconductor diode #9.20#Example 20#Ex9_20.sce#3507/CH9/EX9.20/Ex9_20.sce#S##116832 +9#Semiconductor diode #9.2#Example 2#Ex9_2.sce#3507/CH9/EX9.2/Ex9_2.sce#S##116814 +9#Semiconductor diode #9.19#Example 19#Ex9_19.sce#3507/CH9/EX9.19/Ex9_19.sce#S##116831 +9#Semiconductor diode #9.18#Example 18#Ex9_18.sce#3507/CH9/EX9.18/Ex9_18.sce#S##116830 +9#Semiconductor diode #9.17#Example 17#Ex9_17.sce#3507/CH9/EX9.17/Ex9_17.sce#S##116829 +9#Semiconductor diode #9.16#Example 16#Ex9_16.sce#3507/CH9/EX9.16/Ex9_16.sce#S##116828 +9#Semiconductor diode #9.15#Example 15#Ex9_15.sce#3507/CH9/EX9.15/Ex9_15.sce#S##116827 +9#Semiconductor diode #9.14#Example 14#Ex9_14.sce#3507/CH9/EX9.14/Ex9_14.sce#S##116826 +9#Semiconductor diode #9.13#Example 13#Ex9_13.sce#3507/CH9/EX9.13/Ex9_13.sce#S##116825 +9#Semiconductor diode #9.12#Example 12#Ex9_12.sce#3507/CH9/EX9.12/Ex9_12.sce#S##116824 +9#Semiconductor diode #9.11#Example 11#Ex9_11.sce#3507/CH9/EX9.11/Ex9_11.sce#S##116823 +9#Semiconductor diode #9.10#Example 10#Ex9_10.sce#3507/CH9/EX9.10/Ex9_10.sce#S##116822 +9#Semiconductor diode #9.1#Example 1#Ex9_1.sce#3507/CH9/EX9.1/Ex9_1.sce#S##116813 +9#Semiconductor diode #19.14#power#Ex19_14.sce#3507/CH9/EX19.14/Ex19_14.sce#S##117401 +5#Vacuum tube amplifiers #5.5#Example 5#Ex5_5.sce#3507/CH5/EX5.5/Ex5_5.sce#S##116811 +5#Vacuum tube amplifiers #5.4#Example 4#Ex5_4.sce#3507/CH5/EX5.4/Ex5_4.sce#S##116810 +5#Vacuum tube amplifiers #5.3#Example 3#Ex5_3.sce#3507/CH5/EX5.3/Ex5_3.sce#S##116809 +5#Vacuum tube amplifiers #5.2#Example 2#Ex5_2.sce#3507/CH5/EX5.2/Ex5_2.sce#S##116808 +5#Vacuum tube amplifiers #5.1#Example 1#Ex5_1.sce#3507/CH5/EX5.1/Ex5_1.sce#S##116807 +4#Vacuum tube rectifiers #4.5#Example 5#Ex4_5.sce#3507/CH4/EX4.5/Ex4_5.sce#S##116806 +4#Vacuum tube rectifiers #4.4#Example 4#Ex4_4.sce#3507/CH4/EX4.4/Ex4_4.sce#S##116805 +4#Vacuum tube rectifiers #4.3#Example 3#Ex4_3.sce#3507/CH4/EX4.3/Ex4_3.sce#S##116804 +4#Vacuum tube rectifiers #4.2#Example 2#Ex4_2.sce#3507/CH4/EX4.2/Ex4_2.sce#S##116803 +4#Vacuum tube rectifiers #4.1#Example 1#Ex4_1.sce#3507/CH4/EX4.1/Ex4_1.sce#S##116802 +4#Vacuum tube rectifiers #17.4#Example 4#Ex17_4.sce#3507/CH4/EX17.4/Ex17_4.sce#S##117270 +3#Vacuum tubes #3.5#Example 5#Ex3_5.sce#3507/CH3/EX3.5/Ex3_5.sce#S##116801 +3#Vacuum tubes #3.4#Example 4#Ex3_4.sce#3507/CH3/EX3.4/Ex3_4.sce#S##116800 +3#Vacuum tubes #3.3#Example 3#Ex3_3.sce#3507/CH3/EX3.3/Ex3_3.sce#S##116799 +3#Vacuum tubes #3.2#Example 2#Ex3_2.sce#3507/CH3/EX3.2/Ex3_2.sce#S##116798 +3#Vacuum tubes #3.1#Example 1#Ex3_1.sce#3507/CH3/EX3.1/Ex3_1.sce#S##116797 +2#Electron emission #2.2#Example 2#Ex2_2.sce#3507/CH2/EX2.2/Ex2_2.sce#S##116796 +2#Electron emission #2.1#Example 1#Ex2_1.sce#3507/CH2/EX2.1/Ex2_1.sce#S##116795 +1#Introduction #17.1#Example 1#Ex17_1.sce#3507/CH1/EX17.1/Ex17_1.sce#S##117266 +1#Introduction #1.9#Exmaple 9#Ex1_9.sce#3507/CH1/EX1.9/Ex1_9.sce#S##116791 +1#Introduction #1.8#Exmaple 8#Ex1_8.sce#3507/CH1/EX1.8/Ex1_8.sce#S##116790 +1#Introduction #1.7#Exmaple 7#Ex1_7.sce#3507/CH1/EX1.7/Ex1_7.sce#S##116789 +1#Introduction #1.6#Exmaple 6#Ex1_6.sce#3507/CH1/EX1.6/Ex1_6.sce#S##116788 +1#Introduction #1.5#Exmaple 5#Ex1_5.sce#3507/CH1/EX1.5/Ex1_5.sce#S##116787 +1#Introduction #1.4#Exmaple 4#Ex1_4.sce#3507/CH1/EX1.4/Ex1_4.sce#S##116786 +1#Introduction #1.3#Exmaple 3#Ex1_3.sce#3507/CH1/EX1.3/Ex1_3.sce#S##116785 +1#Introduction #1.2#Exmaple 2#Ex1_2.sce#3507/CH1/EX1.2/Ex1_2.sce#S##116784 +1#Introduction #1.12#Exmaple 12#Ex1_12.sce#3507/CH1/EX1.12/Ex1_12.sce#S##116794 +1#Introduction #1.11#Exmaple 11#Ex1_11.sce#3507/CH1/EX1.11/Ex1_11.sce#S##116793 +1#Introduction #1.10#Exmaple 10#Ex1_10.sce#3507/CH1/EX1.10/Ex1_10.sce#S##116792 +1#Introduction #1.1#terminal voltage#Ex1_1.sce#3507/CH1/EX1.1/Ex1_1.sce#S##116783 diff --git a/latex/tmp_3511_contributor.txt b/latex/tmp_3511_contributor.txt index a9f67285f..8e4544762 100644 --- a/latex/tmp_3511_contributor.txt +++ b/latex/tmp_3511_contributor.txt @@ -1 +1 @@ -Manikandan D#M.E.,#Others#Government College of Engineering, Salem#None#None +Manikandan D#M.E.,#Others#Government College of Engineering, Salem#None#Spandana diff --git a/latex/tmp_3511_data.txt b/latex/tmp_3511_data.txt index e69de29bb..9b8d5cfae 100644 --- a/latex/tmp_3511_data.txt +++ b/latex/tmp_3511_data.txt @@ -0,0 +1,73 @@ +11#Impulse and Reaction Turbines#11.5#Determination of gas temperature velocities and discharge angles at the blade root and tip radii#Ex11_5.sce#3511/CH11/EX11.5/Ex11_5.sce#S##119268 +11#Impulse and Reaction Turbines#11.4#Calculation of blade angle used and the mass flow rate required#Ex11_4.sce#3511/CH11/EX11.4/Ex11_4.sce#S##119267 +11#Impulse and Reaction Turbines#11.3#Estimation of the blade angle and power produced #Ex11_3.sce#3511/CH11/EX11.3/Ex11_3.sce#S##119269 +11#Impulse and Reaction Turbines#11.2#Determination of output power developed by the turbine shaft#Ex11_2.sce#3511/CH11/EX11.2/Ex11_2.sce#S##119266 +11#Impulse and Reaction Turbines#11.1#Estimation of maximum number of stages required#Ex11_1.sce#3511/CH11/EX11.1/Ex11_1.sce#S##120334 +9#Axial Flow Compressors#9.9#Determination of the stage efficiency and the work done factor of an axial flow compressor#Ex9_9.sce#3511/CH9/EX9.9/Ex9_9.sce#S##119262 +9#Axial Flow Compressors#9.8#Calculation of the stage stagnation pressure ratio and the power input#Ex9_8.sce#3511/CH9/EX9.8/Ex9_8.sce#S##119261 +9#Axial Flow Compressors#9.7#Calculation of the rotational speed and the length of the last stage#Ex9_7.sce#3511/CH9/EX9.7/Ex9_7.sce#S##119259 +9#Axial Flow Compressors#9.6#Determination of the direction of the air entry to and exit from the rotor#Ex9_6.sce#3511/CH9/EX9.6/Ex9_6.sce#S##119258 +9#Axial Flow Compressors#9.5#Calculation of pressure rise per blade ring and the power input per stage#Ex9_5.sce#3511/CH9/EX9.5/Ex9_5.sce#S##120333 +9#Axial Flow Compressors#9.4#Determination of Mach number relative to Rotor#Ex9_4.sce#3511/CH9/EX9.4/Ex9_4.sce#S##119256 +9#Axial Flow Compressors#9.3#Estimation of number of stages of the compressors#Ex9_3.sce#3511/CH9/EX9.3/Ex9_3.sce#S##119255 +9#Axial Flow Compressors#9.2#Calculation of mass flow rate and degree of reaction#Ex9_2.sce#3511/CH9/EX9.2/Ex9_2.sce#S##119254 +9#Axial Flow Compressors#9.11#Calculation of rotational speed#Ex9_11.sce#3511/CH9/EX9.11/Ex9_11.sce#S##119264 +9#Axial Flow Compressors#9.10#Determination of blade and air angle #Ex9_10.sce#3511/CH9/EX9.10/Ex9_10.sce#S##119263 +9#Axial Flow Compressors#9.1#Estimation of blade angles#Ex9_1.sce#3511/CH9/EX9.1/Ex9_1.sce#S##120332 +8#Centrifugal Compressors#8.9#Determination of number of radial impeller vanes#Ex8_9.sce#3511/CH8/EX8.9/Ex8_9.sce#S##119278 +8#Centrifugal Compressors#8.8#Calculation of slip factor#Ex8_8.sce#3511/CH8/EX8.8/Ex8_8.sce#S##119277 +8#Centrifugal Compressors#8.7#Calculation of impeller and diffuser blade angles at inlet#Ex8_7.sce#3511/CH8/EX8.7/Ex8_7.sce#S##119276 +8#Centrifugal Compressors#8.6#Calculation of the minimum possible depth of the diffuser#Ex8_6.sce#3511/CH8/EX8.6/Ex8_6.sce#S##119275 +8#Centrifugal Compressors#8.5#Calculation of impeller diameters and the width at the impeller exit#Ex8_5.sce#3511/CH8/EX8.5/Ex8_5.sce#S##119273 +8#Centrifugal Compressors#8.4#Calculation of final temperature of the gases and the work done per kg of gas#Ex8_4.sce#3511/CH8/EX8.4/Ex8_4.sce#S##119274 +8#Centrifugal Compressors#8.3#Calculation of theoretical blade angles#Ex8_3.sce#3511/CH8/EX8.3/Ex8_3.sce#S##119272 +8#Centrifugal Compressors#8.2#Estimation of the probable axial width of the impeller#Ex8_2.sce#3511/CH8/EX8.2/Ex8_2.sce#S##119271 +8#Centrifugal Compressors#8.10#Calculation of the torque power required and the head developed#Ex8_10.sce#3511/CH8/EX8.10/Ex8_10.sce#S##119279 +8#Centrifugal Compressors#8.1#Calculation of compressor efficiency#Ex8_1.sce#3511/CH8/EX8.1/Ex8_1.sce#S##119270 +7#Jet Propulsion Cycles and Their Analysis#7.9#Calculation of thrust provided by the engine and the thrust power developed#Ex7_9.sce#3511/CH7/EX7.9/Ex7_9.sce#S##119287 +7#Jet Propulsion Cycles and Their Analysis#7.8#Calculation of the take off thrust#Ex7_8.sce#3511/CH7/EX7.8/Ex7_8.sce#S##119286 +7#Jet Propulsion Cycles and Their Analysis#7.7#Determination of rate of fuel consumption#Ex7_7.sce#3511/CH7/EX7.7/Ex7_7.sce#S##119289 +7#Jet Propulsion Cycles and Their Analysis#7.6#Calculation of specific power output#Ex7_6.sce#3511/CH7/EX7.6/Ex7_6.sce#S##119285 +7#Jet Propulsion Cycles and Their Analysis#7.5#Calculation of the thrust and Specific fuel consumption#Ex7_5.sce#3511/CH7/EX7.5/Ex7_5.sce#S##119284 +7#Jet Propulsion Cycles and Their Analysis#7.4#Calculation of propulsive efficiency#Ex7_4.sce#3511/CH7/EX7.4/Ex7_4.sce#S##119283 +7#Jet Propulsion Cycles and Their Analysis#7.3#Calculation of the velocity leaving the nozzle#Ex7_3.sce#3511/CH7/EX7.3/Ex7_3.sce#S##119282 +7#Jet Propulsion Cycles and Their Analysis#7.2#Calculation of The Total Design Thrust#Ex7_2.sce#3511/CH7/EX7.2/Ex7_2.sce#S##119281 +7#Jet Propulsion Cycles and Their Analysis#7.10#Calculation of exit speed of the gases and the thrust developed#Ex7_10.sce#3511/CH7/EX7.10/Ex7_10.sce#S##119288 +7#Jet Propulsion Cycles and Their Analysis#7.1#Calculation of Thrust power and Heat Input#Ex7_1.sce#3511/CH7/EX7.1/Ex7_1.sce#S##119280 +6#Practical Cycles and their Analysis#6.9#Calculation of Isentropic efficiency of Turbine#Ex6_9.sce#3511/CH6/EX6.9/Ex6_9.sce#S##119298 +6#Practical Cycles and their Analysis#6.8#Calculation of minimum temperature ratio#Ex6_8.sce#3511/CH6/EX6.8/Ex6_8.sce#S##119296 +6#Practical Cycles and their Analysis#6.7#Calculation of suitable pressure ratio#Ex6_7.sce#3511/CH6/EX6.7/Ex6_7.sce#S##119297 +6#Practical Cycles and their Analysis#6.6#Calculation of Compressor efficiency and the temperature ratio#Ex6_6.sce#3511/CH6/EX6.6/Ex6_6.sce#S##119295 +6#Practical Cycles and their Analysis#6.5#Calculation of the thermal efficiency and air rate#Ex6_5.sce#3511/CH6/EX6.5/Ex6_5.sce#S##119294 +6#Practical Cycles and their Analysis#6.4#Calculation of net power out SFC and overall Efficiency#Ex6_4.sce#3511/CH6/EX6.4/Ex6_4.sce#S##119293 +6#Practical Cycles and their Analysis#6.3#Calculation of effect of pressure loss#Ex6_3.sce#3511/CH6/EX6.3/Ex6_3.sce#S##119292 +6#Practical Cycles and their Analysis#6.21#Calculation of cycle thermal efficiency#Ex6_21.sce#3511/CH6/EX6.21/Ex6_21.sce#S##119310 +6#Practical Cycles and their Analysis#6.20#Calculation of the Thermal efficiency#Ex6_20.sce#3511/CH6/EX6.20/Ex6_20.sce#S##119309 +6#Practical Cycles and their Analysis#6.2#Calculation of ratio of compressor to turbine work#Ex6_2.sce#3511/CH6/EX6.2/Ex6_2.sce#S##119291 +6#Practical Cycles and their Analysis#6.19#Determination of the percentage of the total air intake that passes to the turbine and the thermal efficiency of the plant#Ex6_19.sce#3511/CH6/EX6.19/Ex6_19.sce#S##120330 +6#Practical Cycles and their Analysis#6.18#Estimation of intermediate pressure and temperature between the two turbine stages#Ex6_18.sce#3511/CH6/EX6.18/Ex6_18.sce#S##119307 +6#Practical Cycles and their Analysis#6.17#Determination of necessary mass flow rate#Ex6_17.sce#3511/CH6/EX6.17/Ex6_17.sce#S##120331 +6#Practical Cycles and their Analysis#6.16#Calculation of efficiency and work ratio of modern turbines and old turbines#Ex6_16.sce#3511/CH6/EX6.16/Ex6_16.sce#S##120329 +6#Practical Cycles and their Analysis#6.15#Estimation of the temperature of the gases at entry to the turbine#Ex6_15.sce#3511/CH6/EX6.15/Ex6_15.sce#S##119304 +6#Practical Cycles and their Analysis#6.14#Calculation of pressure ratio and cycle efficiency#Ex6_14.sce#3511/CH6/EX6.14/Ex6_14.sce#S##119303 +6#Practical Cycles and their Analysis#6.13#Determination of pressure of the gas entering the low pressure turbine#Ex6_13.sce#3511/CH6/EX6.13/Ex6_13.sce#S##119302 +6#Practical Cycles and their Analysis#6.12#Calculation of the isentropic efficiency of the turbine and the mass flow of air#Ex6_12.sce#3511/CH6/EX6.12/Ex6_12.sce#S##119329 +6#Practical Cycles and their Analysis#6.11#Calculation of the power output thermal efficiency and the heat exchanger effectiveness#Ex6_11.sce#3511/CH6/EX6.11/Ex6_11.sce#S##120328 +6#Practical Cycles and their Analysis#6.10#Plotting variation of Isentropic efficiency over a range of pressure ratio#Ex6_10.sce#3511/CH6/EX6.10/Ex6_10.sce#S##119299 +6#Practical Cycles and their Analysis#6.1#Calculation of Net power and overall efficiency of installation#Ex6_1.sce#3511/CH6/EX6.1/Ex6_1.sce#S##119290 +5#Ideal Cycles and their Analysis#5.9#Estimation of thermal efficiency of the plant#Ex5_9.sce#3511/CH5/EX5.9/Ex5_9.sce#S##119317 +5#Ideal Cycles and their Analysis#5.8#Calculation of turbine pressure ratio#Ex5_8.sce#3511/CH5/EX5.8/Ex5_8.sce#S##119320 +5#Ideal Cycles and their Analysis#5.7#Calculation of temperature drop across the turbine#Ex5_7.sce#3511/CH5/EX5.7/Ex5_7.sce#S##119319 +5#Ideal Cycles and their Analysis#5.6#Calculation of Pressure ratio of compressor and turbine#Ex5_6.sce#3511/CH5/EX5.6/Ex5_6.sce#S##119316 +5#Ideal Cycles and their Analysis#5.5#Calculation of Thermal Efficiency#Ex5_5.sce#3511/CH5/EX5.5/Ex5_5.sce#S##119315 +5#Ideal Cycles and their Analysis#5.4#Calculation of Efficiency and work of compression#Ex5_4.sce#3511/CH5/EX5.4/Ex5_4.sce#S##119314 +5#Ideal Cycles and their Analysis#5.3#calculation of net power output of the cycle#Ex5_3.sce#3511/CH5/EX5.3/Ex5_3.sce#S##119313 +5#Ideal Cycles and their Analysis#5.2#Calculation of Improvement in Efficiency#Ex5_2.sce#3511/CH5/EX5.2/Ex5_2.sce#S##119312 +5#Ideal Cycles and their Analysis#5.19#Determination of Net power output#Ex5_19.sce#3511/CH5/EX5.19/Ex5_19.sce#S##119326 +5#Ideal Cycles and their Analysis#5.16#Calculation of Efficiency ratio of the power plants#Ex5_16.sce#3511/CH5/EX5.16/Ex5_16.sce#S##119325 +5#Ideal Cycles and their Analysis#5.15#Calculation of Improvement in Efficiency#Ex5_15.sce#3511/CH5/EX5.15/Ex5_15.sce#S##119324 +5#Ideal Cycles and their Analysis#5.13#Comparison of Carnot efficiency with Brayton efficiency #Ex5_13.sce#3511/CH5/EX5.13/Ex5_13.sce#S##119323 +5#Ideal Cycles and their Analysis#5.12#Comparison of basic cycle with modified cycles#Ex5_12.sce#3511/CH5/EX5.12/Ex5_12.sce#S##119322 +5#Ideal Cycles and their Analysis#5.11#Calculation of Efficiency under conditions giving maximum work#Ex5_11.sce#3511/CH5/EX5.11/Ex5_11.sce#S##119321 +5#Ideal Cycles and their Analysis#5.10#Determination of the cycle thermal efficiency#Ex5_10.sce#3511/CH5/EX5.10/Ex5_10.sce#S##119318 +5#Ideal Cycles and their Analysis#5.1#Calculation of MEP and Efficiency#Ex5_1.sce#3511/CH5/EX5.1/Ex5_1.sce#S##119311 diff --git a/latex/tmp_3515_contributor.txt b/latex/tmp_3515_contributor.txt index bedf8ec51..cebfddeab 100644 --- a/latex/tmp_3515_contributor.txt +++ b/latex/tmp_3515_contributor.txt @@ -1 +1 @@ -Ameer Azam Khan#Electronics Engineering#Electronics Engineering#Greenway#None#None +Ameer Azam Khan#Electronics Engineering#Electronics Engineering#Greenway Institute for management studies#None#Bhavani Jalkrish diff --git a/latex/tmp_3515_data.txt b/latex/tmp_3515_data.txt index e69de29bb..c08187120 100644 --- a/latex/tmp_3515_data.txt +++ b/latex/tmp_3515_data.txt @@ -0,0 +1,127 @@ +6#Oscillators#6.8#Value of fs and fp#Ex6_8.sce#3515/CH6/EX6.8/Ex6_8.sce#S##118326 +6#Oscillators#6.7#Frequency of oscillator#Ex6_7.sce#3515/CH6/EX6.7/Ex6_7.sce#S##118325 +6#Oscillators#6.6#Operating frequency#Ex6_6.sce#3515/CH6/EX6.6/Ex6_6.sce#S##118324 +6#Oscillators#6.5#Operating frequency#Ex6_5.sce#3515/CH6/EX6.5/Ex6_5.sce#S##118323 +6#Oscillators#6.4#Frequency of oscillations#Ex6_4.sce#3515/CH6/EX6.4/Ex6_4.sce#S##118322 +6#Oscillators#6.3#Wein Bridge oscillator#Ex6_3.sce#3515/CH6/EX6.3/Ex6_3.sce#S##118321 +6#Oscillators#6.2#The frequency of oscillation#Ex6_2.sce#3515/CH6/EX6.2/Ex6_2.sce#S##118320 +6#Oscillators#6.14#The range of capacitance#Ex6_14.sce#3515/CH6/EX6.14/Ex6_14.sce#S##118331 +6#Oscillators#6.12#Frequency of oscillatoin and minimum gain#Ex6_12.sce#3515/CH6/EX6.12/Ex6_12.sce#S##118330 +6#Oscillators#6.11#Value of C#Ex6_11.sce#3515/CH6/EX6.11/Ex6_11.sce#S##118328 +6#Oscillators#6.10#Frequency of oscillation#Ex6_10.sce#3515/CH6/EX6.10/Ex6_10.sce#S##118327 +6#Oscillators#6.1#Minimum gain of the amplifier to provide oscillation#Ex6_1.sce#3515/CH6/EX6.1/Ex6_1.sce#S##118319 +5#Feedback Amplifiers#5.8#Bandwidth of a feedback amplifiers#Ex5_8.sce#3515/CH5/EX5.8/Ex5_8.sce#S##118303 +5#Feedback Amplifiers#5.7#Percentage reduction in stage gain#Ex5_7.sce#3515/CH5/EX5.7/Ex5_7.sce#S##118302 +5#Feedback Amplifiers#5.6#Fraction of the output voltage feedback#Ex5_6.sce#3515/CH5/EX5.6/Ex5_6.sce#S##118301 +5#Feedback Amplifiers#5.5#Fraction of the output that is feedback to input#Ex5_5.sce#3515/CH5/EX5.5/Ex5_5.sce#S##118300 +5#Feedback Amplifiers#5.4#Value of bita and Af#Ex5_4.sce#3515/CH5/EX5.4/Ex5_4.sce#S##118299 +5#Feedback Amplifiers#5.3#Value of fL and fH#Ex5_3.sce#3515/CH5/EX5.3/Ex5_3.sce#S##118298 +5#Feedback Amplifiers#5.29#Closed loop voltage gain#Ex5_29.sce#3515/CH5/EX5.29/Ex5_29.sce#S##118316 +5#Feedback Amplifiers#5.28#Gain input resistance and output resistance of the closed loop amp#Ex5_28.sce#3515/CH5/EX5.28/Ex5_28.sce#S##118317 +5#Feedback Amplifiers#5.26#Value of alpha and bita#Ex5_26.sce#3515/CH5/EX5.26/Ex5_26.sce#S##118315 +5#Feedback Amplifiers#5.25#Value of alpha and bita#Ex5_25.sce#3515/CH5/EX5.25/Ex5_25.sce#S##118313 +5#Feedback Amplifiers#5.24#Upper and lower 3dB frequency#Ex5_24.sce#3515/CH5/EX5.24/Ex5_24.sce#S##118312 +5#Feedback Amplifiers#5.23#Gain densitivity factor#Ex5_23.sce#3515/CH5/EX5.23/Ex5_23.sce#S##118311 +5#Feedback Amplifiers#5.22#Value of AB#Ex5_22.sce#3515/CH5/EX5.22/Ex5_22.sce#S##118310 +5#Feedback Amplifiers#5.21#Open loop gain and loop gain#Ex5_21.sce#3515/CH5/EX5.21/Ex5_21.sce#S##118309 +5#Feedback Amplifiers#5.20#Percentage gain reduction#Ex5_20.sce#3515/CH5/EX5.20/Ex5_20.sce#S##118308 +5#Feedback Amplifiers#5.2#Value of alpha and Bita#Ex5_2.sce#3515/CH5/EX5.2/Ex5_2.sce#S##118297 +5#Feedback Amplifiers#5.19#Percentage change in Af#Ex5_19.sce#3515/CH5/EX5.19/Ex5_19.sce#S##118307 +5#Feedback Amplifiers#5.12#Value of D Gmf Rif and Rof#Ex5_12.sce#3515/CH5/EX5.12/Ex5_12.sce#S##118306 +5#Feedback Amplifiers#5.11#Value of Avf Rif Rof and bita#Ex5_11.sce#3515/CH5/EX5.11/Ex5_11.sce#S##118305 +5#Feedback Amplifiers#5.10#Value of Av bita Avf Ri Rif Ro and Rof#Ex5_10.sce#3515/CH5/EX5.10/Ex5_10.sce#S##118304 +5#Feedback Amplifiers#5.1#Percentage of output which is feedback to input#Ex5_1.sce#3515/CH5/EX5.1/Ex5_1.sce#S##118296 +4#Differential Amplifiers#4.9#Input differential resistance#Ex4_9.sce#3515/CH4/EX4.9/Ex4_9.sce#S##118286 +4#Differential Amplifiers#4.8#Input differential signal#Ex4_8.sce#3515/CH4/EX4.8/Ex4_8.sce#S##118285 +4#Differential Amplifiers#4.7#Value of VE VC1 and VC2#Ex4_7.sce#3515/CH4/EX4.7/Ex4_7.sce#S##118284 +4#Differential Amplifiers#4.6#CMRR#Ex4_6.sce#3515/CH4/EX4.6/Ex4_6.sce#S##118283 +4#Differential Amplifiers#4.5#Differential gain#Ex4_5.sce#3515/CH4/EX4.5/Ex4_5.sce#S##118281 +4#Differential Amplifiers#4.4#Value of VOV gm ro and Ad#Ex4_4.sce#3515/CH4/EX4.4/Ex4_4.sce#S##118280 +4#Differential Amplifiers#4.3#Required values of WbyL#Ex4_3.sce#3515/CH4/EX4.3/Ex4_3.sce#S##118279 +4#Differential Amplifiers#4.2#Value of VOV and VGS#Ex4_2.sce#3515/CH4/EX4.2/Ex4_2.sce#S##118278 +4#Differential Amplifiers#4.16#Voltage at emitter and outputs#Ex4_16.sce#3515/CH4/EX4.16/Ex4_16.sce#S##118295 +4#Differential Amplifiers#4.15#Value of VOV gm ro and Ad#Ex4_15.sce#3515/CH4/EX4.15/Ex4_15.sce#S##118293 +4#Differential Amplifiers#4.14#Ratio of W and L#Ex4_14.sce#3515/CH4/EX4.14/Ex4_14.sce#S##118292 +4#Differential Amplifiers#4.13#Value of VOV and VGS#Ex4_13.sce#3515/CH4/EX4.13/Ex4_13.sce#S##118291 +4#Differential Amplifiers#4.12#Value of Gm Ro Ad and Rid#Ex4_12.sce#3515/CH4/EX4.12/Ex4_12.sce#S##118289 +4#Differential Amplifiers#4.11#Value of Gm Ro Ad Acm and CMRR#Ex4_11.sce#3515/CH4/EX4.11/Ex4_11.sce#S##118288 +4#Differential Amplifiers#4.10#Three components of input offset voltage#Ex4_10.sce#3515/CH4/EX4.10/Ex4_10.sce#S##118287 +4#Differential Amplifiers#4.1#Value of ic1 and vce1#Ex4_1.sce#3515/CH4/EX4.1/Ex4_1.sce#S##118276 +3#Bipolar Junction Transistors#3.9#Operating point#Ex3_9.sce#3515/CH3/EX3.9/Ex3_9.sce#S##118248 +3#Bipolar Junction Transistors#3.8#Value of RB#Ex3_8.sce#3515/CH3/EX3.8/Ex3_8.sce#S##118247 +3#Bipolar Junction Transistors#3.7#Collector to base bias circuit#Ex3_7.sce#3515/CH3/EX3.7/Ex3_7.sce#S##118246 +3#Bipolar Junction Transistors#3.6#Q point values#Ex3_6.sce#3515/CH3/EX3.6/Ex3_6.sce#S##118245 +3#Bipolar Junction Transistors#3.5#Operating point#Ex3_5.sce#3515/CH3/EX3.5/Ex3_5.sce#S##118243 +3#Bipolar Junction Transistors#3.4#Design a fixed bias circuit#Ex3_4.sce#3515/CH3/EX3.4/Ex3_4.sce#S##118241 +3#Bipolar Junction Transistors#3.33#Value of alpha bita and Is#Ex3_33.sce#3515/CH3/EX3.33/Ex3_33.sce#S##118275 +3#Bipolar Junction Transistors#3.32#Input resistance and overall voltage gain#Ex3_32.sce#3515/CH3/EX3.32/Ex3_32.sce#S##118274 +3#Bipolar Junction Transistors#3.31#Input resistance and overall voltage gain#Ex3_31.sce#3515/CH3/EX3.31/Ex3_31.sce#S##118273 +3#Bipolar Junction Transistors#3.30#DC voltage and value of gm#Ex3_30.sce#3515/CH3/EX3.30/Ex3_30.sce#S##118272 +3#Bipolar Junction Transistors#3.3#Bias voltage#Ex3_3.sce#3515/CH3/EX3.3/Ex3_3.sce#S##118240 +3#Bipolar Junction Transistors#3.29#Value of VB IB IE IC VC alpha and bita#Ex3_29.sce#3515/CH3/EX3.29/Ex3_29.sce#S##118271 +3#Bipolar Junction Transistors#3.28#Value of VE and VC#Ex3_28.sce#3515/CH3/EX3.28/Ex3_28.sce#S##118270 +3#Bipolar Junction Transistors#3.27#Value of VB VC and VE#Ex3_27.sce#3515/CH3/EX3.27/Ex3_27.sce#S##118268 +3#Bipolar Junction Transistors#3.25#Voltage gain#Ex3_25.sce#3515/CH3/EX3.25/Ex3_25.sce#S##118267 +3#Bipolar Junction Transistors#3.24#Current flow#Ex3_24.sce#3515/CH3/EX3.24/Ex3_24.sce#S##118266 +3#Bipolar Junction Transistors#3.23#Value of VE VC and alpha bita#Ex3_23.sce#3515/CH3/EX3.23/Ex3_23.sce#S##118265 +3#Bipolar Junction Transistors#3.22#The emitter base and collector voltage and current#Ex3_22.sce#3515/CH3/EX3.22/Ex3_22.sce#S##118264 +3#Bipolar Junction Transistors#3.21#Value of bita and labelled voltage#Ex3_21.sce#3515/CH3/EX3.21/Ex3_21.sce#S##118263 +3#Bipolar Junction Transistors#3.20#Labelled current and voltage#Ex3_20.sce#3515/CH3/EX3.20/Ex3_20.sce#S##118262 +3#Bipolar Junction Transistors#3.2#Value of alpha and bita#Ex3_2.sce#3515/CH3/EX3.2/Ex3_2.sce#S##118239 +3#Bipolar Junction Transistors#3.19#Transistor model#Ex3_19.sce#3515/CH3/EX3.19/Ex3_19.sce#S##118261 +3#Bipolar Junction Transistors#3.18#Value of Is Ic and VBE#Ex3_18.sce#3515/CH3/EX3.18/Ex3_18.sce#S##118260 +3#Bipolar Junction Transistors#3.17#Value of Bita#Ex3_17.sce#3515/CH3/EX3.17/Ex3_17.sce#S##118257 +3#Bipolar Junction Transistors#3.16#Value of Bita#Ex3_16.sce#3515/CH3/EX3.16/Ex3_16.sce#S##118256 +3#Bipolar Junction Transistors#3.14#Region in which Q point lie#Ex3_14.sce#3515/CH3/EX3.14/Ex3_14.sce#S##118255 +3#Bipolar Junction Transistors#3.13#All node voltage and all branch current#Ex3_13.sce#3515/CH3/EX3.13/Ex3_13.sce#S##118252 +3#Bipolar Junction Transistors#3.12#All node voltage and all branch current#Ex3_12.sce#3515/CH3/EX3.12/Ex3_12.sce#S##118251 +3#Bipolar Junction Transistors#3.11#All node voltages and currents#Ex3_11.sce#3515/CH3/EX3.11/Ex3_11.sce#S##118250 +3#Bipolar Junction Transistors#3.10#Voltage gain#Ex3_10.sce#3515/CH3/EX3.10/Ex3_10.sce#S##118249 +3#Bipolar Junction Transistors#3.1#Value of IE IB IC and VC#Ex3_1.sce#3515/CH3/EX3.1/Ex3_1.sce#S##118238 +2#MOSFET#2.9#Value of ID and VDS#Ex2_9.sce#3515/CH2/EX2.9/Ex2_9.sce#S##118219 +2#MOSFET#2.8#Voltage at all nodes#Ex2_8.sce#3515/CH2/EX2.8/Ex2_8.sce#S##118218 +2#MOSFET#2.7#Effective resistance between drain and source#Ex2_7.sce#3515/CH2/EX2.7/Ex2_7.sce#S##118217 +2#MOSFET#2.6#Value of R and VD#Ex2_6.sce#3515/CH2/EX2.6/Ex2_6.sce#S##118216 +2#MOSFET#2.5#Value of required of R#Ex2_5.sce#3515/CH2/EX2.5/Ex2_5.sce#S##118215 +2#MOSFET#2.4#Value of VGS RS and RD#Ex2_4.sce#3515/CH2/EX2.4/Ex2_4.sce#S##118214 +2#MOSFET#2.3#Value of VDS#Ex2_3.sce#3515/CH2/EX2.3/Ex2_3.sce#S##118213 +2#MOSFET#2.24#Midband gain and upper 3dB frequency#Ex2_24.sce#3515/CH2/EX2.24/Ex2_24.sce#S##118236 +2#MOSFET#2.23#Value of CS#Ex2_23.sce#3515/CH2/EX2.23/Ex2_23.sce#S##118235 +2#MOSFET#2.22#Voltage gain#Ex2_22.sce#3515/CH2/EX2.22/Ex2_22.sce#S##118234 +2#MOSFET#2.20#Labelled current and voltage#Ex2_20.sce#3515/CH2/EX2.20/Ex2_20.sce#S##118233 +2#MOSFET#2.2#Drain current#Ex2_2.sce#3515/CH2/EX2.2/Ex2_2.sce#S##118212 +2#MOSFET#2.19#Value of V1 V2 V3 V4 and V5#Ex2_19.sce#3515/CH2/EX2.19/Ex2_19.sce#S##118231 +2#MOSFET#2.18#Required value of gate width#Ex2_18.sce#3515/CH2/EX2.18/Ex2_18.sce#S##118230 +2#MOSFET#2.17#Required value of R and W#Ex2_17.sce#3515/CH2/EX2.17/Ex2_17.sce#S##118229 +2#MOSFET#2.16#Value of RD and RS#Ex2_16.sce#3515/CH2/EX2.16/Ex2_16.sce#S##118228 +2#MOSFET#2.15#Required value of VGS and minimum value of VDS#Ex2_15.sce#3515/CH2/EX2.15/Ex2_15.sce#S##118227 +2#MOSFET#2.14#Resistance value#Ex2_14.sce#3515/CH2/EX2.14/Ex2_14.sce#S##118223 +2#MOSFET#2.12#Largest value of RD#Ex2_12.sce#3515/CH2/EX2.12/Ex2_12.sce#S##118222 +2#MOSFET#2.11#Bias point#Ex2_11.sce#3515/CH2/EX2.11/Ex2_11.sce#S##118221 +2#MOSFET#2.10#Desing a bias circuit#Ex2_10.sce#3515/CH2/EX2.10/Ex2_10.sce#S##118220 +2#MOSFET#2.1#Device operate region#Ex2_1.sce#3515/CH2/EX2.1/Ex2_1.sce#S##118211 +1#Operational Amplifiers#1.8#Voltage gain#Ex1_8.sce#3515/CH1/EX1.8/Ex1_8.sce#S##118193 +1#Operational Amplifiers#1.7#Output voltage#Ex1_7.sce#3515/CH1/EX1.7/Ex1_7.sce#S##118192 +1#Operational Amplifiers#1.6#Maximum and minimum closed loop gain#Ex1_6.sce#3515/CH1/EX1.6/Ex1_6.sce#S##118191 +1#Operational Amplifiers#1.5#Output voltage#Ex1_5.sce#3515/CH1/EX1.5/Ex1_5.sce#S##118190 +1#Operational Amplifiers#1.4#Inverting amplifier#Ex1_4.sce#3515/CH1/EX1.4/Ex1_4.sce#S##118189 +1#Operational Amplifiers#1.3#Inverting amplifier#Ex1_3.sce#3515/CH1/EX1.3/Ex1_3.sce#S##118188 +1#Operational Amplifiers#1.28#3dB frequency and gain#Ex1_28.sce#3515/CH1/EX1.28/Ex1_28.sce#S##118210 +1#Operational Amplifiers#1.27#Value of Ao fb fr#Ex1_27.sce#3515/CH1/EX1.27/Ex1_27.sce#S##118209 +1#Operational Amplifiers#1.26#Gain#Ex1_26.sce#3515/CH1/EX1.26/Ex1_26.sce#S##118208 +1#Operational Amplifiers#1.25#Output voltage#Ex1_25.sce#3515/CH1/EX1.25/Ex1_25.sce#S##118207 +1#Operational Amplifiers#1.24#Output voltage#Ex1_24.sce#3515/CH1/EX1.24/Ex1_24.sce#S##118206 +1#Operational Amplifiers#1.22#Inverting op amp#Ex1_22.sce#3515/CH1/EX1.22/Ex1_22.sce#S##118205 +1#Operational Amplifiers#1.20#Output voltage#Ex1_20.sce#3515/CH1/EX1.20/Ex1_20.sce#S##118204 +1#Operational Amplifiers#1.2#Output voltage#Ex1_2.sce#3515/CH1/EX1.2/Ex1_2.sce#S##118187 +1#Operational Amplifiers#1.19#Output voltage#Ex1_19.sce#3515/CH1/EX1.19/Ex1_19.sce#S##118203 +1#Operational Amplifiers#1.18#Output voltage#Ex1_18.sce#3515/CH1/EX1.18/Ex1_18.sce#S##118202 +1#Operational Amplifiers#1.17#Output voltage#Ex1_17.sce#3515/CH1/EX1.17/Ex1_17.sce#S##118201 +1#Operational Amplifiers#1.16#Output voltage#Ex1_16.sce#3515/CH1/EX1.16/Ex1_16.sce#S##118200 +1#Operational Amplifiers#1.15#Output voltage#Ex1_15.sce#3515/CH1/EX1.15/Ex1_15.sce#S##118199 +1#Operational Amplifiers#1.14#Output voltage#Ex1_14.sce#3515/CH1/EX1.14/Ex1_14.sce#S##118198 +1#Operational Amplifiers#1.13#The value of R1 and R2#Ex1_13.sce#3515/CH1/EX1.13/Ex1_13.sce#S##118197 +1#Operational Amplifiers#1.12#Range of output voltage#Ex1_12.sce#3515/CH1/EX1.12/Ex1_12.sce#S##118196 +1#Operational Amplifiers#1.11#Range of voltage gain#Ex1_11.sce#3515/CH1/EX1.11/Ex1_11.sce#S##118195 +1#Operational Amplifiers#1.10#Output voltage#Ex1_10.sce#3515/CH1/EX1.10/Ex1_10.sce#S##118194 +1#Operational Amplifiers#1.1#Value of Rf#Ex1_1.sce#3515/CH1/EX1.1/Ex1_1.sce#S##118186 diff --git a/latex/tmp_3523_book.txt b/latex/tmp_3523_book.txt index 29fb9a808..0563eb25d 100644 --- a/latex/tmp_3523_book.txt +++ b/latex/tmp_3523_book.txt @@ -1 +1 @@ -High Voltage Engineering-theory And Practice #M. A. Salam, H. Anis, A. El Morshedy and R. Radwan#0-8247-0402-9#Marcel Dekker, NY#2#2000 +High Voltage Engineering Theory and Practice #M. A. Salam, H. Anis, A. El Morshedy and R. Radwan#0-8247-0402-9#Marcel Dekker, NY#2#2000 diff --git a/latex/tmp_3523_contributor.txt b/latex/tmp_3523_contributor.txt index 330a77bf5..913e321f1 100644 --- a/latex/tmp_3523_contributor.txt +++ b/latex/tmp_3523_contributor.txt @@ -1 +1 @@ -Meenakshi Pundir#M.tech#Others#Vellore institute of Technology#None#None +Meenakshi Pundir#M.tech#Others#Vellore institute of Technology#None#Reshma Konjari diff --git a/latex/tmp_3523_data.txt b/latex/tmp_3523_data.txt index e69de29bb..280d34e81 100644 --- a/latex/tmp_3523_data.txt +++ b/latex/tmp_3523_data.txt @@ -0,0 +1,71 @@ +19#Applications of high voltage engineering in industry#19.18.9#position of the particle at the exit end of the plate#Ex19_9.sce#3523/CH19/EX19.18.9/Ex19_9.sce#S##119693 +19#Applications of high voltage engineering in industry#19.18.8#velocity of the ejected ions and propulsion force#Ex19_8.sce#3523/CH19/EX19.18.8/Ex19_8.sce#S##119692 +19#Applications of high voltage engineering in industry#19.18.7#thickness of the layer#Ex19_7.sce#3523/CH19/EX19.18.7/Ex19_7.sce#S##119691 +19#Applications of high voltage engineering in industry#19.18.6#space charge limited current density and current density at collecting electrode#Ex19_6.sce#3523/CH19/EX19.18.6/Ex19_6.sce#S##119690 +19#Applications of high voltage engineering in industry#19.18.5#electric stress and charge density on the microphone elecrtode#Ex19_5.sce#3523/CH19/EX19.18.5/Ex19_5.sce#S##119779 +19#Applications of high voltage engineering in industry#19.18.4#find vertical displacement of the drop on the print surface#Ex19_4.sce#3523/CH19/EX19.18.4/Ex19_4.sce#S##119778 +19#Applications of high voltage engineering in industry#19.18.2#cal pumping pressure#Ex19_2.sce#3523/CH19/EX19.18.2/Ex19_2.sce#S##119687 +19#Applications of high voltage engineering in industry#19.18.10#minimum voltage required to generate a charge#Ex19_10.sce#3523/CH19/EX19.18.10/Ex19_10.sce#S##119694 +19#Applications of high voltage engineering in industry#19.18.1#determine separation between the particles after falling 1m#Ex19_1.sce#3523/CH19/EX19.18.1/Ex19_1.sce#S##119777 +16#High voltage generation#16.7.9#values of wave shaping resistors and max output voltage and energy rating of the generator#Ex16_9.sce#3523/CH16/EX16.7.9/Ex16_9.sce#S##119684 +16#High voltage generation#16.7.8#wave shaping resistors R1 and R2 and also circuit efficiency#Ex16_8.sce#3523/CH16/EX16.7.8/Ex16_8.sce#S##119683 +16#High voltage generation#16.7.7#wave eq parameters and wave generated#Ex16_7.sce#3523/CH16/EX16.7.7/Ex16_7.sce#S##119785 +16#High voltage generation#16.7.6#wave eq parameters and wave generated#Ex16_6.sce#3523/CH16/EX16.7.6/Ex16_6.sce#S##119784 +16#High voltage generation#16.7.5#charging current and the potential difference between dome and the base#Ex16_5.sce#3523/CH16/EX16.7.5/Ex16_5.sce#S##119682 +16#High voltage generation#16.7.4#find the inductance and input voltage and power to the transformer#Ex16_4.sce#3523/CH16/EX16.7.4/Ex16_4.sce#S##119776 +16#High voltage generation#16.7.3#ripple voltage voltage drop avg output voltage ripple factor and optimum no of stages for min voltage drop#Ex16_3.sce#3523/CH16/EX16.7.3/Ex16_3.sce#S##119680 +16#High voltage generation#16.7.2#ripple voltage voltage drop avg output voltage and ripple factor#Ex16_2.sce#3523/CH16/EX16.7.2/Ex16_2.sce#S##119679 +16#High voltage generation#16.7.11#parameters and eq for generated impulse current#Ex16_11.sce#3523/CH16/EX16.7.11/Ex16_11.sce#S##119786 +16#High voltage generation#16.7.10#find front and tail times of the lightning impulse produced#Ex16_10.sce#3523/CH16/EX16.7.10/Ex16_10.sce#S##119685 +16#High voltage generation#16.7.1#ripple voltage voltage drop avg output voltage and ripple factor#Ex16_1.sce#3523/CH16/EX16.7.1/Ex16_1.sce#S##119678 +12#High Voltage Cables#12.17.9#find voltage at max stress and find max stress#Ex12_9.sce#3523/CH12/EX12.17.9/Ex12_9.sce#S##119780 +12#High Voltage Cables#12.17.8#max stress and best position and voltage on the intersheaths#Ex12_8.sce#3523/CH12/EX12.17.8/Ex12_8.sce#S##119675 +12#High Voltage Cables#12.17.7#induced sheath voltage per km#Ex12_7.sce#3523/CH12/EX12.17.7/Ex12_7.sce#S##119674 +12#High Voltage Cables#12.17.6#effective electrical parameters #Ex12_6.sce#3523/CH12/EX12.17.6/Ex12_6.sce#S##119673 +12#High Voltage Cables#12.17.5#capacitance per km the KVAr #Ex12_5.sce#3523/CH12/EX12.17.5/Ex12_5.sce#S##119672 +12#High Voltage Cables#12.17.4#KVAr #Ex12_4.sce#3523/CH12/EX12.17.4/Ex12_4.sce#S##119671 +12#High Voltage Cables#12.17.3#resistivity of insulating material#Ex12_3.sce#3523/CH12/EX12.17.3/Ex12_3.sce#S##119670 +12#High Voltage Cables#12.17.2#value of conductor radius optimum value of r#Ex12_2.sce#3523/CH12/EX12.17.2/Ex12_2.sce#S##119669 +12#High Voltage Cables#12.17.10#max stress in rubber and in paper#Ex12_10.sce#3523/CH12/EX12.17.10/Ex12_10.sce#S##119677 +12#High Voltage Cables#12.17.1#radial thickness and operating voltage#Ex12_1.sce#3523/CH12/EX12.17.1/Ex12_1.sce#S##119668 +5#The Corona Discharge#5.6.9#cal corona onset voltage at standard temperature and pressure#Ex5_9.sce#3523/CH5/EX5.6.9/Ex5_9.sce#S##119762 +5#The Corona Discharge#5.6.8#Cal positive and negative corona onset voltages#Ex5_8.sce#3523/CH5/EX5.6.8/Ex5_8.sce#S##119763 +5#The Corona Discharge#5.6.6#for gas pressure of 3 and 5 atmp cal corona onset voltage#Ex5_6.sce#3523/CH5/EX5.6.6/Ex5_6.sce#S##119783 +5#The Corona Discharge#5.6.5#cal corona onset voltage#Ex5_5.sce#3523/CH5/EX5.6.5/Ex5_5.sce#S##119782 +5#The Corona Discharge#5.6.3#repeat problem 2 for gas pressures of 3 and 5 atmospheres#Ex5_3.sce#3523/CH5/EX5.6.3/Ex5_3.sce#S##119781 +5#The Corona Discharge#5.6.2#breakdown voltage#Ex5_2.sce#3523/CH5/EX5.6.2/Ex5_2.sce#S##119775 +5#The Corona Discharge#5.6.11#cal corona onset voltage and the effective radius of the corona envelope#Ex5_11.sce#3523/CH5/EX5.6.11/Ex5_11.sce#S##119761 +5#The Corona Discharge#5.6.10#cal corona power loss and corona current#Ex5_10.sce#3523/CH5/EX5.6.10/Ex5_10.sce#S##119760 +4#Electrical Breakdown of Gases#4.10.9#distance and voltage at the transition to a self sustained discharge#Ex4_9.sce#3523/CH4/EX4.10.9/Ex4_9.sce#S##119666 +4#Electrical Breakdown of Gases#4.10.8#cal the first ionization coefficient and the sec ionization coefficient#Ex4_8.sce#3523/CH4/EX4.10.8/Ex4_8.sce#S##119773 +4#Electrical Breakdown of Gases#4.10.7#total secondary coefficient of ionization at NTP#Ex4_7.sce#3523/CH4/EX4.10.7/Ex4_7.sce#S##119772 +4#Electrical Breakdown of Gases#4.10.5#min distance measured from the cathode#Ex4_5.sce#3523/CH4/EX4.10.5/Ex4_5.sce#S##119660 +4#Electrical Breakdown of Gases#4.10.4#distance it must travel to produce an avalanche#Ex4_4.sce#3523/CH4/EX4.10.4/Ex4_4.sce#S##119659 +4#Electrical Breakdown of Gases#4.10.3#size of developed avalanche #Ex4_3.sce#3523/CH4/EX4.10.3/Ex4_3.sce#S##119658 +4#Electrical Breakdown of Gases#4.10.2#electrode spacing#Ex4_2.sce#3523/CH4/EX4.10.2/Ex4_2.sce#S##119657 +4#Electrical Breakdown of Gases#4.10.12#a travel time of positive ions b max frequency#Ex4_12.sce#3523/CH4/EX4.10.12/Ex4_12.sce#S##119667 +4#Electrical Breakdown of Gases#4.10.11#electron drift velocity and ionization coefficient#Ex4_11.sce#3523/CH4/EX4.10.11/Ex4_11.sce#S##119665 +4#Electrical Breakdown of Gases#4.10.10#breakdown voltage#Ex4_10.sce#3523/CH4/EX4.10.10/Ex4_10.sce#S##119774 +4#Electrical Breakdown of Gases#4.10.1#a alpha b no of electrons emitted from cathode per sec #Ex4_1.sce#3523/CH4/EX4.10.1/Ex4_1.sce#S##119656 +3#Ionization and Deionization Processes in gases#3.7.9#avg separation of atoms and avg vol occupied by one atom#Ex3_9.sce#3523/CH3/EX3.7.9/Ex3_9.sce#S##119647 +3#Ionization and Deionization Processes in gases#3.7.8#energy of free electrons#Ex3_8.sce#3523/CH3/EX3.7.8/Ex3_8.sce#S##119646 +3#Ionization and Deionization Processes in gases#3.7.7#mean square velocity of He atoms#Ex3_7.sce#3523/CH3/EX3.7.7/Ex3_7.sce#S##119645 +3#Ionization and Deionization Processes in gases#3.7.6#density of ions at dist equal to mfp and five times mfp#Ex3_6.sce#3523/CH3/EX3.7.6/Ex3_6.sce#S##119644 +3#Ionization and Deionization Processes in gases#3.7.5#volume of 1 kg of He#Ex3_5.sce#3523/CH3/EX3.7.5/Ex3_5.sce#S##119643 +3#Ionization and Deionization Processes in gases#3.7.4#temperature at which avg KE of He atoms in gas become 1 eV#Ex3_4.sce#3523/CH3/EX3.7.4/Ex3_4.sce#S##119768 +3#Ionization and Deionization Processes in gases#3.7.3#max pressure in chamber#Ex3_3.sce#3523/CH3/EX3.7.3/Ex3_3.sce#S##119641 +3#Ionization and Deionization Processes in gases#3.7.2#total translational KE#Ex3_2.sce#3523/CH3/EX3.7.2/Ex3_2.sce#S##119769 +3#Ionization and Deionization Processes in gases#3.7.19#a mean free path of electrons in nitrogen and b ionization potential of nitrogen#Ex3_19.sce#3523/CH3/EX3.7.19/Ex3_19.sce#S##119655 +3#Ionization and Deionization Processes in gases#3.7.18#diameter of cloud after drifting a distance of point 05#Ex3_18.sce#3523/CH3/EX3.7.18/Ex3_18.sce#S##119771 +3#Ionization and Deionization Processes in gases#3.7.17#ion density point 02 m away in both directions at 25 deg C#Ex3_17.sce#3523/CH3/EX3.7.17/Ex3_17.sce#S##119770 +3#Ionization and Deionization Processes in gases#3.7.15#mobility of electrons#Ex3_15.sce#3523/CH3/EX3.7.15/Ex3_15.sce#S##119652 +3#Ionization and Deionization Processes in gases#3.7.14#diameter of the argon atom#Ex3_14.sce#3523/CH3/EX3.7.14/Ex3_14.sce#S##119651 +3#Ionization and Deionization Processes in gases#3.7.12#binding energy of the gas#Ex3_12.sce#3523/CH3/EX3.7.12/Ex3_12.sce#S##119650 +3#Ionization and Deionization Processes in gases#3.7.11#liquid photon absorption coefficient#Ex3_11.sce#3523/CH3/EX3.7.11/Ex3_11.sce#S##119649 +3#Ionization and Deionization Processes in gases#3.7.10#KE in eV and velocity of phototelectron#Ex3_10.sce#3523/CH3/EX3.7.10/Ex3_10.sce#S##119648 +3#Ionization and Deionization Processes in gases#3.7.1#speed of air molecules#Ex3_1.sce#3523/CH3/EX3.7.1/Ex3_1.sce#S##119639 +2#Electric Fields#2.8.8#vol of insulator required for graded design#Ex2_8.sce#3523/CH2/EX2.8.8/Ex2_8.sce#S##119766 +2#Electric Fields#2.8.7#electric field induced at x equal to 1#Ex2_7.sce#3523/CH2/EX2.8.7/Ex2_7.sce#S##119765 +2#Electric Fields#2.8.6#charge on each bundle max min and avg surface fields avg max surface voltage gradient #Ex2_6.sce#3523/CH2/EX2.8.6/Ex2_6.sce#S##119764 +2#Electric Fields#2.8.5#calculate max field at sphere surface#Ex2_5.sce#3523/CH2/EX2.8.5/Ex2_5.sce#S##119634 +2#Electric Fields#2.8.11#determine potentials within the mesh#Ex2_11.sce#3523/CH2/EX2.8.11/Ex2_11.sce#S##119767 diff --git a/latex/tmp_680_data.txt b/latex/tmp_680_data.txt index e69de29bb..ab63260da 100755 --- a/latex/tmp_680_data.txt +++ b/latex/tmp_680_data.txt @@ -0,0 +1,157 @@ +19#Exergy The Concept of Quality Energy#19.04#Example 4#19_04.sce#680/CH19/EX19.04/19_04.sce#S##31376 +19#Exergy The Concept of Quality Energy#19.03#Example 3#19_03.sce#680/CH19/EX19.03/19_03.sce#S##31375 +19#Exergy The Concept of Quality Energy#19.02#Example 2#19_02.sce#680/CH19/EX19.02/19_02.sce#S##31374 +17#Other ABET Topics#17.04#Example 4#17_04.sce#680/CH17/EX17.04/17_04.sce#S##34474 +17#Other ABET Topics#17.03#Example 3#17_03.sce#680/CH17/EX17.03/17_03.sce#S##34473 +15#Economic Considerations#15.04#Example 4#15_04.sce#680/CH15/EX15.04/15_04.sce#S##67188 +15#Economic Considerations#15.04#Example 4#Ex_15_4_Fig_15_2_Heat_Exchanger_Results.jpg#680/CH15/EX15.04/Ex_15_4_Fig_15_2_Heat_Exchanger_Results.jpg#R##67189 +15#Economic Considerations#15.03#Example 3#15_03.sce#680/CH15/EX15.03/15_03.sce#S##67184 +15#Economic Considerations#15.02#Example 2#15_02.sce#680/CH15/EX15.02/15_02.sce#S##67183 +15#Economic Considerations#15.01#Example 1#15_01.sce#680/CH15/EX15.01/15_01.sce#S##31372 +14#Chemical Reaction Equilibrium Applications#14.15#Example 15#14_15.sce#680/CH14/EX14.15/14_15.sce#S##34465 +14#Chemical Reaction Equilibrium Applications#14.13#Example 13#14_13.sce#680/CH14/EX14.13/14_13.sce#S##31371 +14#Chemical Reaction Equilibrium Applications#14.12#Example 12#14_12.sce#680/CH14/EX14.12/14_12.sce#S##31367 +14#Chemical Reaction Equilibrium Applications#14.11#Example 11#14_11.sce#680/CH14/EX14.11/14_11.sce#S##34463 +14#Chemical Reaction Equilibrium Applications#14.10#Example 10#14_10.sce#680/CH14/EX14.10/14_10.sce#S##31360 +14#Chemical Reaction Equilibrium Applications#14.09#Example 9#14_09.sce#680/CH14/EX14.09/14_09.sce#S##31358 +14#Chemical Reaction Equilibrium Applications#14.08#Example 8#14_08.sce#680/CH14/EX14.08/14_08.sce#S##34462 +14#Chemical Reaction Equilibrium Applications#14.07#Example 7#14_07.sce#680/CH14/EX14.07/14_07.sce#S##31354 +14#Chemical Reaction Equilibrium Applications#14.06#Example 6#14_06.sce#680/CH14/EX14.06/14_06.sce#S##31351 +14#Chemical Reaction Equilibrium Applications#14.05#Example 5#14_05.sce#680/CH14/EX14.05/14_05.sce#S##34461 +14#Chemical Reaction Equilibrium Applications#14.04#Example 4#14_04.sce#680/CH14/EX14.04/14_04.sce#S##31350 +14#Chemical Reaction Equilibrium Applications#14.02#Example 2#14_02.sce#680/CH14/EX14.02/14_02.sce#S##34459 +13#Chemical Reaction Equilibrium Principles#13.14#Example 14#13_14.sce#680/CH13/EX13.14/13_14.sce#S##34457 +13#Chemical Reaction Equilibrium Principles#13.13#Example 13#13_13.sce#680/CH13/EX13.13/13_13.sce#S##31348 +13#Chemical Reaction Equilibrium Principles#13.12#Example 12#13_12.sce#680/CH13/EX13.12/13_12.sce#S##31347 +13#Chemical Reaction Equilibrium Principles#13.11#Example 11#13_11.sce#680/CH13/EX13.11/13_11.sce#S##34456 +13#Chemical Reaction Equilibrium Principles#13.10#Example 10#13_10.sce#680/CH13/EX13.10/13_10.sce#S##31346 +13#Chemical Reaction Equilibrium Principles#13.07#Example 7#13_07.sce#680/CH13/EX13.07/13_07.sce#S##31345 +13#Chemical Reaction Equilibrium Principles#13.06#Example 6#13_06.sce#680/CH13/EX13.06/13_06.sce#S##31344 +13#Chemical Reaction Equilibrium Principles#13.05#Example 5#13_05.sce#680/CH13/EX13.05/13_05.sce#S##31343 +13#Chemical Reaction Equilibrium Principles#13.04#Example 4#13_04.sce#680/CH13/EX13.04/13_04.sce#S##31342 +12#Vapor Liquid Equilibrium Calculations#12.16#Example 16#12_16.sce#680/CH12/EX12.16/12_16.sce#S##31341 +12#Vapor Liquid Equilibrium Calculations#12.14#example 14#12_14.sce#680/CH12/EX12.14/12_14.sce#S##63338 +12#Vapor Liquid Equilibrium Calculations#12.13#example 13#12_13.sce#680/CH12/EX12.13/12_13.sce#S##63314 +12#Vapor Liquid Equilibrium Calculations#12.12#example 12#12_12.sce#680/CH12/EX12.12/12_12.sce#S##63313 +12#Vapor Liquid Equilibrium Calculations#12.11#example 11#12_11.sce#680/CH12/EX12.11/12_11.sce#S##63312 +12#Vapor Liquid Equilibrium Calculations#12.11#example 11#Ex_12_11_image.jpg#680/CH12/EX12.11/Ex_12_11_image.jpg#R##67187 +12#Vapor Liquid Equilibrium Calculations#12.10#example 10#12_10.sce#680/CH12/EX12.10/12_10.sce#S##63311 +12#Vapor Liquid Equilibrium Calculations#12.10#example 10#Ex_12_10_Image.jpg#680/CH12/EX12.10/Ex_12_10_Image.jpg#R##67186 +12#Vapor Liquid Equilibrium Calculations#12.09#example 9#12_09.sce#680/CH12/EX12.09/12_09.sce#S##63310 +12#Vapor Liquid Equilibrium Calculations#12.08#Example 8#12_08.sce#680/CH12/EX12.08/12_08.sce#S##34449 +12#Vapor Liquid Equilibrium Calculations#12.06#Example 6#12_06.sce#680/CH12/EX12.06/12_06.sce#S##31340 +12#Vapor Liquid Equilibrium Calculations#12.02#Example 2#12_02.sce#680/CH12/EX12.02/12_02.sce#S##31339 +12#Vapor Liquid Equilibrium Calculations#12.01#Example 1#12_01.sce#680/CH12/EX12.01/12_01.sce#S##31338 +11#Phase Equilibrium Principles#11.14#Example 14#11_14.sce#680/CH11/EX11.14/11_14.sce#S##34445 +11#Phase Equilibrium Principles#11.13#Example 13#11_13.sce#680/CH11/EX11.13/11_13.sce#S##31337 +11#Phase Equilibrium Principles#11.10#Example 10#11_10.sce#680/CH11/EX11.10/11_10.sce#S##31336 +11#Phase Equilibrium Principles#11.09#Example 9#11_09.sce#680/CH11/EX11.09/11_09.sce#S##34444 +11#Phase Equilibrium Principles#11.08#Example 8#11_08.sce#680/CH11/EX11.08/11_08.sce#S##31335 +11#Phase Equilibrium Principles#11.06#Example 6#11_06.sce#680/CH11/EX11.06/11_06.sce#S##31334 +11#Phase Equilibrium Principles#11.05#Example 5#11_05.sce#680/CH11/EX11.05/11_05.sce#S##31333 +11#Phase Equilibrium Principles#11.04#Example 4#11_04.sce#680/CH11/EX11.04/11_04.sce#S##31332 +11#Phase Equilibrium Principles#11.03#Example 3#11_03.sce#680/CH11/EX11.03/11_03.sce#S##31331 +11#Phase Equilibrium Principles#11.02#Example 2#11_02.sce#680/CH11/EX11.02/11_02.sce#S##31330 +10#Chemical Reaction Enthalpy Effects#10.17#Example 17#10_17.sce#680/CH10/EX10.17/10_17.sce#S##31329 +10#Chemical Reaction Enthalpy Effects#10.16#Example 16#10_16.sce#680/CH10/EX10.16/10_16.sce#S##31328 +10#Chemical Reaction Enthalpy Effects#10.15#Example 15#10_15.sce#680/CH10/EX10.15/10_15.sce#S##31327 +10#Chemical Reaction Enthalpy Effects#10.13#Example 13#10_13.sce#680/CH10/EX10.13/10_13.sce#S##31326 +10#Chemical Reaction Enthalpy Effects#10.12#Example 12#10_12.sce#680/CH10/EX10.12/10_12.sce#S##31325 +10#Chemical Reaction Enthalpy Effects#10.11#Example 11#10_11.sce#680/CH10/EX10.11/10_11.sce#S##31324 +10#Chemical Reaction Enthalpy Effects#10.10#Example 10#10_10.sce#680/CH10/EX10.10/10_10.sce#S##34441 +10#Chemical Reaction Enthalpy Effects#10.09#Example 9#10_09.sce#680/CH10/EX10.09/10_09.sce#S##31323 +10#Chemical Reaction Enthalpy Effects#10.08#Example 8#10_08.sce#680/CH10/EX10.08/10_08.sce#S##31322 +10#Chemical Reaction Enthalpy Effects#10.07#Example 7#10_07.sce#680/CH10/EX10.07/10_07.sce#S##34440 +10#Chemical Reaction Enthalpy Effects#10.06#Example 6#10_06.sce#680/CH10/EX10.06/10_06.sce#S##34439 +10#Chemical Reaction Enthalpy Effects#10.05#Example 5#10_05.sce#680/CH10/EX10.05/10_05.sce#S##34438 +10#Chemical Reaction Enthalpy Effects#10.04#Example 4#10_04.sce#680/CH10/EX10.04/10_04.sce#S##34437 +10#Chemical Reaction Enthalpy Effects#10.03#Example 3#10_03.sce#680/CH10/EX10.03/10_03.sce#S##34436 +10#Chemical Reaction Enthalpy Effects#10.02#Example 2#10_02.sce#680/CH10/EX10.02/10_02.sce#S##31321 +10#Chemical Reaction Enthalpy Effects#10.01#Example 1#10_01.sce#680/CH10/EX10.01/10_01.sce#S##31320 +9#Enthalpy of Mixing Effects#9.09#Example 9#9_09.sce#680/CH9/EX9.09/9_09.sce#S##31319 +9#Enthalpy of Mixing Effects#9.08#Example 8#9_08.sce#680/CH9/EX9.08/9_08.sce#S##31318 +9#Enthalpy of Mixing Effects#9.07#Example 7#9_07.sce#680/CH9/EX9.07/9_07.sce#S##34434 +9#Enthalpy of Mixing Effects#9.05#Example 5#9_05.sce#680/CH9/EX9.05/9_05.sce#S##31317 +9#Enthalpy of Mixing Effects#9.04#Example 4#9_04.sce#680/CH9/EX9.04/9_04.sce#S##31316 +9#Enthalpy of Mixing Effects#9.03#Example 3#9_03.sce#680/CH9/EX9.03/9_03.sce#S##31315 +9#Enthalpy of Mixing Effects#9.02#Example 2#9_02.sce#680/CH9/EX9.02/9_02.sce#S##31314 +9#Enthalpy of Mixing Effects#9.01#Example 1#9_01.sce#680/CH9/EX9.01/9_01.sce#S##31313 +8#Latent Enthalpy Effects#8.13#Example 13#8_13.sce#680/CH8/EX8.13/8_13.sce#S##31312 +8#Latent Enthalpy Effects#8.12#Example 12#8_12.sce#680/CH8/EX8.12/8_12.sce#S##31311 +8#Latent Enthalpy Effects#8.11#Example 11#8_11.sce#680/CH8/EX8.11/8_11.sce#S##31310 +8#Latent Enthalpy Effects#8.10#Example 10#8_10.sce#680/CH8/EX8.10/8_10.sce#S##31309 +8#Latent Enthalpy Effects#8.09#Example 9#8_09.sce#680/CH8/EX8.09/8_09.sce#S##31308 +8#Latent Enthalpy Effects#8.08#Example 8#8_08.sce#680/CH8/EX8.08/8_08.sce#S##31306 +8#Latent Enthalpy Effects#8.07#Example 7#8_07.sce#680/CH8/EX8.07/8_07.sce#S##31307 +8#Latent Enthalpy Effects#8.06#Example 6#8_06.sce#680/CH8/EX8.06/8_06.sce#S##31305 +8#Latent Enthalpy Effects#8.05#Example 5#8_05.sce#680/CH8/EX8.05/8_05.sce#S##34432 +8#Latent Enthalpy Effects#8.04#Example 4#8_04.sce#680/CH8/EX8.04/8_04.sce#S##31304 +8#Latent Enthalpy Effects#8.02#Example 2#8_02.sce#680/CH8/EX8.02/8_02.sce#S##31303 +8#Latent Enthalpy Effects#8.01#Example 1#8_01.sce#680/CH8/EX8.01/8_01.sce#S##31302 +7#Sensible Enthalpy Effects#7.12#Example 12#7_12.sce#680/CH7/EX7.12/7_12.sce#S##31301 +7#Sensible Enthalpy Effects#7.11#Example 11#7_11.sce#680/CH7/EX7.11/7_11.sce#S##31300 +7#Sensible Enthalpy Effects#7.09#Example 9#7_09.sce#680/CH7/EX7.09/7_09.sce#S##31299 +7#Sensible Enthalpy Effects#7.08#Example 8#7_08.sce#680/CH7/EX7.08/7_08.sce#S##31298 +7#Sensible Enthalpy Effects#7.07#Example 7#7_07.sce#680/CH7/EX7.07/7_07.sce#S##31297 +7#Sensible Enthalpy Effects#7.06#Example 6#7_06.sce#680/CH7/EX7.06/7_06.sce#S##31296 +7#Sensible Enthalpy Effects#7.05#Example 5#7_05.sce#680/CH7/EX7.05/7_05.sce#S##34430 +7#Sensible Enthalpy Effects#7.04#Example 4#7_04.sce#680/CH7/EX7.04/7_04.sce#S##31295 +7#Sensible Enthalpy Effects#7.03#Example 3#7_03.sce#680/CH7/EX7.03/7_03.sce#S##31294 +7#Sensible Enthalpy Effects#7.02#Example 2#7_02.sce#680/CH7/EX7.02/7_02.sce#S##31293 +7#Sensible Enthalpy Effects#7.01#Example 1#7_01.sce#680/CH7/EX7.01/7_01.sce#S##31292 +6#The Second Law of Thermodynamics#6.14#Example 14#6_14.sce#680/CH6/EX6.14/6_14.sce#S##31291 +6#The Second Law of Thermodynamics#6.12#Example 12#6_12.sce#680/CH6/EX6.12/6_12.sce#S##31290 +6#The Second Law of Thermodynamics#6.11#Example 11#6_11.sce#680/CH6/EX6.11/6_11.sce#S##31289 +6#The Second Law of Thermodynamics#6.10#Example 10#6_10.sce#680/CH6/EX6.10/6_10.sce#S##31288 +6#The Second Law of Thermodynamics#6.09#Example 9#6_09.sce#680/CH6/EX6.09/6_09.sce#S##31287 +6#The Second Law of Thermodynamics#6.07#Example 7#6_07.sce#680/CH6/EX6.07/6_07.sce#S##31286 +6#The Second Law of Thermodynamics#6.06#Example 6#6_06.sce#680/CH6/EX6.06/6_06.sce#S##31285 +6#The Second Law of Thermodynamics#6.05#Example 5#6_05.sce#680/CH6/EX6.05/6_05.sce#S##31284 +6#The Second Law of Thermodynamics#6.03#Example 3#6_03.sce#680/CH6/EX6.03/6_03.sce#S##31283 +6#The Second Law of Thermodynamics#6.02#Example 2#6_02.sce#680/CH6/EX6.02/6_02.sce#S##31282 +6#The Second Law of Thermodynamics#6.01#Example 1#6_01.sce#680/CH6/EX6.01/6_01.sce#S##31281 +5#stoichimetry#5.15#Example 15#5_15.sce#680/CH5/EX5.15/5_15.sce#S##31279 +5#stoichimetry#5.14#Example 14#5_14.sce#680/CH5/EX5.14/5_14.sce#S##31280 +5#stoichimetry#5.13#Example 13#5_13.sce#680/CH5/EX5.13/5_13.sce#S##31278 +5#stoichimetry#5.11#Example 11#5_11.sce#680/CH5/EX5.11/5_11.sce#S##31277 +5#stoichimetry#5.09#Example 9#5_09.sce#680/CH5/EX5.09/5_09.sce#S##34424 +5#stoichimetry#5.08#Example 8#5_08.sce#680/CH5/EX5.08/5_08.sce#S##31276 +5#stoichimetry#5.07#Example 7#5_07.sce#680/CH5/EX5.07/5_07.sce#S##31275 +5#stoichimetry#5.06#Example 6#5_06.sce#680/CH5/EX5.06/5_06.sce#S##31274 +5#stoichimetry#5.04#Example 4#5_04.sce#680/CH5/EX5.04/5_04.sce#S##31273 +5#stoichimetry#5.03#Example 3#5_03.sce#680/CH5/EX5.03/5_03.sce#S##67232 +5#stoichimetry#5.01#Example 1#5_01.sce#680/CH5/EX5.01/5_01.sce#S##34420 +4#Conservation Laws#4.12#Example 12#4_12.sce#680/CH4/EX4.12/4_12.sce#S##31272 +4#Conservation Laws#4.11#Example 11#4_11.sce#680/CH4/EX4.11/4_11.sce#S##31271 +4#Conservation Laws#4.10#Example 10#4_10.sce#680/CH4/EX4.10/4_10.sce#S##31270 +4#Conservation Laws#4.09#Example 9#4_09.sce#680/CH4/EX4.09/4_09.sce#S##31269 +4#Conservation Laws#4.07#Example 7#4_07.sce#680/CH4/EX4.07/4_07.sce#S##31268 +4#Conservation Laws#4.06#Example 6#4_06.sce#680/CH4/EX4.06/4_06.sce#S##31267 +4#Conservation Laws#4.05#Example 5#4_05.sce#680/CH4/EX4.05/4_05.sce#S##31266 +4#Conservation Laws#4.04#Example 4#4_04.sce#680/CH4/EX4.04/4_04.sce#S##31265 +4#Conservation Laws#4.03#Example 3#4_03.sce#680/CH4/EX4.03/4_03.sce#S##31264 +4#Conservation Laws#4.02#Example 2#4_02.sce#680/CH4/EX4.02/4_02.sce#S##31263 +4#Conservation Laws#4.01#Example 1#4_01.sce#680/CH4/EX4.01/4_01.sce#S##31262 +3#Gas Laws#3.13#Example 13#3_13.sce#680/CH3/EX3.13/3_13.sce#S##34418 +3#Gas Laws#3.12#Example 12#3_12.sce#680/CH3/EX3.12/3_12.sce#S##34417 +3#Gas Laws#3.10#Example 10#3_10.sce#680/CH3/EX3.10/3_10.sce#S##34415 +3#Gas Laws#3.09#Example 9#3_09.sce#680/CH3/EX3.09/3_09.sce#S##31261 +3#Gas Laws#3.08#Example 8#3_08.sce#680/CH3/EX3.08/3_08.sce#S##31260 +3#Gas Laws#3.07#Example 7#3_07.sce#680/CH3/EX3.07/3_07.sce#S##31259 +3#Gas Laws#3.06#Example 6#3_06.sce#680/CH3/EX3.06/3_06.sce#S##31258 +3#Gas Laws#3.05#Example 5#3_05.sce#680/CH3/EX3.05/3_05.sce#S##31257 +3#Gas Laws#3.04#Example 4#3_04.sce#680/CH3/EX3.04/3_04.sce#S##31256 +3#Gas Laws#3.03#Example 3#3_03.sce#680/CH3/EX3.03/3_03.sce#S##31255 +3#Gas Laws#3.02#Example 2#3_02.sce#680/CH3/EX3.02/3_02.sce#S##31254 +3#Gas Laws#3.01#Example 1#3_01.sce#680/CH3/EX3.01/3_01.sce#S##31253 +2#Process Variables#2.11#Example 11#2_11.sce#680/CH2/EX2.11/2_11.sce#S##50538 +2#Process Variables#2.10#Example 10#2_10.sce#680/CH2/EX2.10/2_10.sce#S##50537 +2#Process Variables#2.09#Example 9#2_09.sce#680/CH2/EX2.09/2_09.sce#S##50535 +2#Process Variables#2.08#Example 8#2_08.sce#680/CH2/EX2.08/2_08.sce#S##50534 +2#Process Variables#2.07#Example 7#2_07.sce#680/CH2/EX2.07/2_07.sce#S##50533 +2#Process Variables#2.06#Example 6#2_06.sce#680/CH2/EX2.06/2_06.sce#S##50532 +2#Process Variables#2.05#Example 5#2_05.sce#680/CH2/EX2.05/2_05.sce#S##50531 +2#Process Variables#2.04#Example 4#2_04.sce#680/CH2/EX2.04/2_04.sce#S##50530 +2#Process Variables#2.03#Example 3#2_03.sce#680/CH2/EX2.03/2_03.sce#S##50529 +2#Process Variables#2.02#Example 2#2_02.sce#680/CH2/EX2.02/2_02.sce#S##50527 +1#Basic Calculations#1.01#Example 1#1_01.sce#680/CH1/EX1.01/1_01.sce#S##50526 diff --git a/latex/tmp_800_data.txt b/latex/tmp_800_data.txt index 4ef470b3a..e73f27bf2 100755 --- a/latex/tmp_800_data.txt +++ b/latex/tmp_800_data.txt @@ -48,7 +48,7 @@ 2#Conversion and Reactor Sizing#2.6#clear#2_6.sci#800/CH2/EX2.6/2_6.sci#S##29604 2#Conversion and Reactor Sizing#2.5#clear#2_5.sce#800/CH2/EX2.5/2_5.sce#S##29603 2#Conversion and Reactor Sizing#2.4#clear#2_4.sce#800/CH2/EX2.4/2_4.sce#S##29602 -2#Conversion and Reactor Sizing#2.3#clear#2_3.sce#800/CH2/EX2.3/2_3.sce#S##29601 -2#Conversion and Reactor Sizing#2.2#clear#2_2.sce#800/CH2/EX2.2/2_2.sce#S##29600 -2#Conversion and Reactor Sizing#2.1#clear#2_1.sce#800/CH2/EX2.1/2_1.sce#S##29599 -1#Mole Balances#1.3#clear#1_3.sce#800/CH1/EX1.3/1_3.sce#S##29598 +2#Conversion and Reactor Sizing#2.3#Volume#2_3.sce#800/CH2/EX2.3/2_3.sce#S##29601 +2#Conversion and Reactor Sizing#2.2#Volume#2_2.sce#800/CH2/EX2.2/2_2.sce#S##29600 +2#Conversion and Reactor Sizing#2.1#calculate mole#2_1.sce#800/CH2/EX2.1/2_1.sce#S##29599 +1#Mole Balances#1.3#Find V#1_3.sce#800/CH1/EX1.3/1_3.sce#S##29598 diff --git a/latex/tmp_980_data.txt b/latex/tmp_980_data.txt index e69de29bb..43582ecfc 100755 --- a/latex/tmp_980_data.txt +++ b/latex/tmp_980_data.txt @@ -0,0 +1,84 @@ +15#Radio Wave Propagation#15.7#the refractive index of the atmosphere#15_7.sce#980/CH15/EX15.7/15_7.sce#S##71114 +15#Radio Wave Propagation#15.6#the distance for surface wave which can be used for given frequency#15_6.sce#980/CH15/EX15.6/15_6.sce#S##71113 +15#Radio Wave Propagation#15.14#the electron density and height of the layer#15_14.sce#980/CH15/EX15.14/15_14.sce#S##71117 +15#Radio Wave Propagation#15.13#the critical frequency#15_13.sce#980/CH15/EX15.13/15_13.sce#S##71116 +15#Radio Wave Propagation#15.12#the electron density at which the wave is reflected back#15_12.sce#980/CH15/EX15.12/15_12.sce#S##71115 +15#Radio Wave Propagation#15.11#The plasma frequency#15_11.sce#980/CH15/EX15.11/15_11.sce#S##49193 +14#Introduction to Antennas#14.6#Design of uniform antenna array#14_6.sce#980/CH14/EX14.6/14_6.sce#S##71109 +14#Introduction to Antennas#14.5#The progressive phase shift and BWFN#14_5.sce#980/CH14/EX14.5/14_5.sce#S##71108 +14#Introduction to Antennas#14.4#the first sidelobe level#14_4.sce#980/CH14/EX14.4/14_4.sce#S##71107 +14#Introduction to Antennas#14.14#The directivity of the horn#14_14.sce#980/CH14/EX14.14/14_14.sce#S##71112 +14#Introduction to Antennas#14.12#The directivity and half power beam width#14_12.sce#980/CH14/EX14.12/14_12.sce#S##71111 +14#Introduction to Antennas#14.10#The flare angle#14_10.sce#980/CH14/EX14.10/14_10.sce#S##71110 +13#Radiation from Currents#13.15#The transmitted power#13_15.sce#980/CH13/EX13.15/13_15.sce#S##71106 +13#Radiation from Currents#13.14#The power received by the receiving antenna#13_14.sce#980/CH13/EX13.14/13_14.sce#S##83356 +13#Radiation from Currents#13.11#The power density radiated#13_11.sce#980/CH13/EX13.11/13_11.sce#S##71104 +12#Transmission Lines and Waveguides#12.4#distance between the conductors for two wire line#12_4.sce#980/CH12/EX12.4/12_4.sce#S##71097 +12#Transmission Lines and Waveguides#12.3#L and C for the physical tansmission lines#12_3.sce#980/CH12/EX12.3/12_3.sce#S##71094 +12#Transmission Lines and Waveguides#12.24#the resonant frequency for the TE modes#12_24.sce#980/CH12/EX12.24/12_24.sce#S##71103 +12#Transmission Lines and Waveguides#12.23#the resonent frequency for the TM modes#12_23.sce#980/CH12/EX12.23/12_23.sce#S##71102 +12#Transmission Lines and Waveguides#12.20#modes that propagate in parallel plate waveguide#12_20.sce#980/CH12/EX12.20/12_20.sce#S##49179 +12#Transmission Lines and Waveguides#12.2#attenuation factor and characteristic impedence #12_2.sce#980/CH12/EX12.2/12_2.sce#S##71093 +11#Electromagnetic Waves#11.5#magnitude of the electric and magnetic field vectors#11_5.sce#980/CH11/EX11.5/11_5.sce#S##71082 +11#Electromagnetic Waves#11.4#Uniform Plane Wave#11_4.sce#980/CH11/EX11.4/11_4.sce#S##71079 +11#Electromagnetic Waves#11.18#The Brewster angle#11_18.sce#980/CH11/EX11.18/11_18.sce#S##71090 +11#Electromagnetic Waves#11.15#maxima minima and zeros of the standing wave#11_15.sce#980/CH11/EX11.15/11_15.sce#S##71089 +11#Electromagnetic Waves#11.12#propagation constant skin depth and the wave length in high conductivity materials#11_12.sce#980/CH11/EX11.12/11_12.sce#S##71086 +11#Electromagnetic Waves#11.11#low conductivity materials#11_11.sce#980/CH11/EX11.11/11_11.sce#S##49172 +11#Electromagnetic Waves#11.10#the complex propagation constant#11_10.sce#980/CH11/EX11.10/11_10.sce#S##71083 +11#Electromagnetic Waves#11.1#the propagation constant#11_1.sce#980/CH11/EX11.1/11_1.sce#S##71078 +10#Time dependent fields#10.15#the diraction of travelling wave and its velocity #10_15.sce#980/CH10/EX10.15/10_15.sce#S##71075 +9#Magnetic forces Inductance and Magnetisation#9.7#force between two current carring parallel conductor#9_7.sce#980/CH9/EX9.7/9_7.sce#S##71064 +9#Magnetic forces Inductance and Magnetisation#9.6#force on a straight wire carrying current in a magnetic field#9_6.sce#980/CH9/EX9.6/9_6.sce#S##71063 +9#Magnetic forces Inductance and Magnetisation#9.4#Force on the moving charge in steady magnetic field #9_4.sce#980/CH9/EX9.4/9_4.sce#S##71062 +9#Magnetic forces Inductance and Magnetisation#9.2#electron moving in a steady magnetic field#9_2.sce#980/CH9/EX9.2/9_2.sce#S##71061 +9#Magnetic forces Inductance and Magnetisation#9.19#Inductance of single loop of wire#9_19.sce#980/CH9/EX9.19/9_19.sce#S##71072 +9#Magnetic forces Inductance and Magnetisation#9.17#Inductance per meter of a coaxial line#9_17.sce#980/CH9/EX9.17/9_17.sce#S##71069 +9#Magnetic forces Inductance and Magnetisation#9.14#Wheeler formula#9_14.sce#980/CH9/EX9.14/9_14.sce#S##71068 +9#Magnetic forces Inductance and Magnetisation#9.13#inductance of a coil#9_13.sce#980/CH9/EX9.13/9_13.sce#S##71065 +7#Laplace and Poisson Equations #7.7#The voltage in coaxial cylinders#7_7.sce#980/CH7/EX7.7/7_7.sce#S##71060 +6#The Electric Field and Material Media#6.8#Current density in conductor#6_8.sce#980/CH6/EX6.8/6_8.sce#S##95633 +6#The Electric Field and Material Media#6.5#Velocity of the mobile charge#6_5.sce#980/CH6/EX6.5/6_5.sce#S##71053 +6#The Electric Field and Material Media#6.4#The mobile charge density#6_4.sce#980/CH6/EX6.4/6_4.sce#S##71052 +6#The Electric Field and Material Media#6.3#The current density#6_3.sce#980/CH6/EX6.3/6_3.sce#S##71051 +6#The Electric Field and Material Media#6.2#The total charge passing a plane#6_2.sce#980/CH6/EX6.2/6_2.sce#S##71050 +6#The Electric Field and Material Media#6.19#Boundry condition for electrostatic field#6_19.sce#980/CH6/EX6.19/6_19.sce#S##71059 +6#The Electric Field and Material Media#6.16#The polarisation density in die electric#6_16.sce#980/CH6/EX6.16/6_16.sce#S##71058 +6#The Electric Field and Material Media#6.15#The conductivity of the material#6_15.sce#980/CH6/EX6.15/6_15.sce#S##71057 +6#The Electric Field and Material Media#6.11#The drift velocity and mobility of electrons#6_11.sce#980/CH6/EX6.11/6_11.sce#S##95634 +6#The Electric Field and Material Media#6.10#Relaxation time for conductors#6_10.sce#980/CH6/EX6.10/6_10.sce#S##71055 +6#The Electric Field and Material Media#6.1#The total charge passing a plane#6_1.sce#980/CH6/EX6.1/6_1.sce#S##71048 +5#Energy and Potential#5.2#Work done to move a charge#5_2.sce#980/CH5/EX5.2/5_2.sce#S##71045 +5#Energy and Potential#5.11#Motion of electron in electric field#5_11.sce#980/CH5/EX5.11/5_11.sce#S##71047 +5#Energy and Potential#5.10#Motion of electron in electric field#5_10.sce#980/CH5/EX5.10/5_10.sce#S##71046 +5#Energy and Potential#5.1#Work done to move a charge#5_1.sce#980/CH5/EX5.1/5_1.sce#S##71044 +4#The Electric Field and Gauss Law#4.8#Comparision between force of gravity and electrostatic attraction#4_8.sce#980/CH4/EX4.8/4_8.sce#S##71038 +4#The Electric Field and Gauss Law#4.7#Coulombs Law#4_7.sce#980/CH4/EX4.7/4_7.sce#S##71037 +4#The Electric Field and Gauss Law#4.6#Coulombs Law#4_6.sce#980/CH4/EX4.6/4_6.sce#S##71036 +4#The Electric Field and Gauss Law#4.5#Coulombs Law#4_5.sce#980/CH4/EX4.5/4_5.sce#S##71035 +4#The Electric Field and Gauss Law#4.3#Finding the total charge in the given region#4_3.sce#980/CH4/EX4.3/4_3.sce#S##71034 +4#The Electric Field and Gauss Law#4.23#Gauss Law Applied to a Charged Sphere #4_23.sce#980/CH4/EX4.23/4_23.sce#S##71043 +4#The Electric Field and Gauss Law#4.2#The charge density#4_2.sce#980/CH4/EX4.2/4_2.sce#S##71033 +4#The Electric Field and Gauss Law#4.12#Electric Field#4_12.sce#980/CH4/EX4.12/4_12.sce#S##71042 +4#The Electric Field and Gauss Law#4.11#Electric Field#4_11.sce#980/CH4/EX4.11/4_11.sce#S##71041 +4#The Electric Field and Gauss Law#4.10#Force due to electric field#4_10.sce#980/CH4/EX4.10/4_10.sce#S##71040 +3#Vector calculus#3.5#Line Integral#3_5.sce#980/CH3/EX3.5/3_5.sce#S##71032 +3#Vector calculus#3.4#The work done#3_4.sce#980/CH3/EX3.4/3_4.sce#S##95632 +3#Vector calculus#3.2#The length of the straight line#3_2.sce#980/CH3/EX3.2/3_2.sce#S##71031 +3#Vector calculus#3.1#The linear element#3_1.sce#980/CH3/EX3.1/3_1.sce#S##71030 +2#Coordinate Systems and Fields#2.9#Cylindrical coordinate system#2_9.sce#980/CH2/EX2.9/2_9.sce#S##71026 +2#Coordinate Systems and Fields#2.7#Equation of a plane#2_7.sce#980/CH2/EX2.7/2_7.sce#S##71025 +2#Coordinate Systems and Fields#2.6#Vector equations of a straight line#2_6.sce#980/CH2/EX2.6/2_6.sce#S##71023 +2#Coordinate Systems and Fields#2.4#Direction cosines#2_4.sce#980/CH2/EX2.4/2_4.sce#S##71021 +2#Coordinate Systems and Fields#2.12#Dot products between rectangular and cylindrical coordinate#2_12.sce#980/CH2/EX2.12/2_12.sce#S##71029 +2#Coordinate Systems and Fields#2.10#Cylindrical coordinate system#2_10.sce#980/CH2/EX2.10/2_10.sce#S##71027 +2#Coordinate Systems and Fields#2.1#The pressure at height#2_1.sce#980/CH2/EX2.1/2_1.sce#S##71020 +1#Scalars and vectors#1.8#The work done by a constant force#1_8.sce#980/CH1/EX1.8/1_8.sce#S##71017 +1#Scalars and vectors#1.7#Calculations with vector addtion#1_7.sce#980/CH1/EX1.7/1_7.sce#S##71016 +1#Scalars and vectors#1.6#Calculations with vector addtion#1_6.sce#980/CH1/EX1.6/1_6.sce#S##95631 +1#Scalars and vectors#1.5#Calculations with vector addtion#1_5.sce#980/CH1/EX1.5/1_5.sce#S##44196 +1#Scalars and vectors#1.3#Multiplication of two complex numbers#1_3.sce#980/CH1/EX1.3/1_3.sce#S##95625 +1#Scalars and vectors#1.2#Diameter of a circle#1_2.sce#980/CH1/EX1.2/1_2.sce#S##71014 +1#Scalars and vectors#1.12#Cross products in rectangular coordinates#1_12.sce#980/CH1/EX1.12/1_12.sce#S##71019 +1#Scalars and vectors#1.11#Cross products of orthogonal unit vectors#1_11.sce#980/CH1/EX1.11/1_11.sce#S##71018 +1#Scalars and vectors#1.1#The density of the material#1_1.sce#980/CH1/EX1.1/1_1.sce#S##71013 |