diff options
Diffstat (limited to '911')
334 files changed, 2531 insertions, 0 deletions
diff --git a/911/CH1/EX1.1.a/ex_1_1_a.pdf b/911/CH1/EX1.1.a/ex_1_1_a.pdf Binary files differnew file mode 100644 index 000000000..f68317b02 --- /dev/null +++ b/911/CH1/EX1.1.a/ex_1_1_a.pdf diff --git a/911/CH1/EX1.1.a/ex_1_1_a.sce b/911/CH1/EX1.1.a/ex_1_1_a.sce new file mode 100644 index 000000000..cb6b1c771 --- /dev/null +++ b/911/CH1/EX1.1.a/ex_1_1_a.sce @@ -0,0 +1,6 @@ +//example 1.1//
+//radix of a proposed no//
+clc
+clear
+disp('the radix of the proposed number system is 3')
+//result//
\ No newline at end of file diff --git a/911/CH1/EX1.1.b/ex_1_1_b.pdf b/911/CH1/EX1.1.b/ex_1_1_b.pdf Binary files differnew file mode 100644 index 000000000..f9fcd6aff --- /dev/null +++ b/911/CH1/EX1.1.b/ex_1_1_b.pdf diff --git a/911/CH1/EX1.1.b/ex_1_1_b.sce b/911/CH1/EX1.1.b/ex_1_1_b.sce new file mode 100644 index 000000000..f444623b5 --- /dev/null +++ b/911/CH1/EX1.1.b/ex_1_1_b.sce @@ -0,0 +1,6 @@ +//example 1.1(b)//
+//first 10 numbers in this number system//
+clc
+clear
+disp('the first 10 numbers in this number system would be 0,1,X,10,11,1X,X0,X1,XX and 100')
+//result//
\ No newline at end of file diff --git a/911/CH1/EX1.10.a/ex_1_10_a.pdf b/911/CH1/EX1.10.a/ex_1_10_a.pdf Binary files differnew file mode 100644 index 000000000..78ea17032 --- /dev/null +++ b/911/CH1/EX1.10.a/ex_1_10_a.pdf diff --git a/911/CH1/EX1.10.a/ex_1_10_a.sce b/911/CH1/EX1.10.a/ex_1_10_a.sce new file mode 100644 index 000000000..c0071f7f3 --- /dev/null +++ b/911/CH1/EX1.10.a/ex_1_10_a.sce @@ -0,0 +1,14 @@ +//example 1.10(a)//
+clc
+//clears the screen//
+clear
+//clears already existing variables//
+a=5264;
+//given 7's compliment//
+b=7777-5264;
+//no in octal form//
+d=oct2dec('2513');
+//decimal conversion//
+disp('binary conversion of given 7''s compliment is :')
+e=dec2bin(d)
+disp(e)
\ No newline at end of file diff --git a/911/CH1/EX1.10.b/ex_1_10_b.pdf b/911/CH1/EX1.10.b/ex_1_10_b.pdf Binary files differnew file mode 100644 index 000000000..558e03e96 --- /dev/null +++ b/911/CH1/EX1.10.b/ex_1_10_b.pdf diff --git a/911/CH1/EX1.10.b/ex_1_10_b.sce b/911/CH1/EX1.10.b/ex_1_10_b.sce new file mode 100644 index 000000000..f60b44e75 --- /dev/null +++ b/911/CH1/EX1.10.b/ex_1_10_b.sce @@ -0,0 +1,14 @@ +//example 1.10(b)//
+clc
+//clears the screen//
+clear
+//clears already existing variables//
+a=5264;
+//given 7's compliment//
+b=7777-5264;
+//no in octal form//
+d=oct2dec('2513');
+//decimal conversion//
+disp('hexadecimal conversion of given 7''s compliment is:')
+e=dec2hex(d);
+disp(e);
\ No newline at end of file diff --git a/911/CH1/EX1.11/ex_1_11.pdf b/911/CH1/EX1.11/ex_1_11.pdf Binary files differnew file mode 100644 index 000000000..929df0aa3 --- /dev/null +++ b/911/CH1/EX1.11/ex_1_11.pdf diff --git a/911/CH1/EX1.11/ex_1_11.sce b/911/CH1/EX1.11/ex_1_11.sce new file mode 100644 index 000000000..ba7a5a7a1 --- /dev/null +++ b/911/CH1/EX1.11/ex_1_11.sce @@ -0,0 +1,27 @@ +//example 1.11//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+a=-142;
+//given number//
+b=a*-1;
+c=dec2bin(b);
+//converting it to binary number//
+c1=10001110;
+d=c1/(10000000);
+m=(d-1)*(10^23);
+//mantissa//
+e=dec2bin(7,8)
+//exponent//
+f=bin2dec('01111111')
+g=7+f;
+be=dec2bin(g)
+//biased exponent//
+be2=10000110
+be1=be2*(10^23);
+s=1*(10^31);
+n=s+be1+m;
+//result//
+disp('Thus -142 = ')
+disp(n);
\ No newline at end of file diff --git a/911/CH1/EX1.13.a/ex_1_13_a.pdf b/911/CH1/EX1.13.a/ex_1_13_a.pdf Binary files differnew file mode 100644 index 000000000..19a72e1b0 --- /dev/null +++ b/911/CH1/EX1.13.a/ex_1_13_a.pdf diff --git a/911/CH1/EX1.13.a/ex_1_13_a.sce b/911/CH1/EX1.13.a/ex_1_13_a.sce new file mode 100644 index 000000000..14241fe34 --- /dev/null +++ b/911/CH1/EX1.13.a/ex_1_13_a.sce @@ -0,0 +1,12 @@ +//example 1.13.a//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+t=9999+1;
+//total numbers//
+x=log2(t);
+//taking out power//
+y=round(x)+1;
+//no of bits required for straight binary encoding//
+disp(y,'no of bits required for straight binary encoding = ')
\ No newline at end of file diff --git a/911/CH1/EX1.13.b/ex_1_13_b.pdf b/911/CH1/EX1.13.b/ex_1_13_b.pdf Binary files differnew file mode 100644 index 000000000..c944d28f6 --- /dev/null +++ b/911/CH1/EX1.13.b/ex_1_13_b.pdf diff --git a/911/CH1/EX1.13.b/ex_1_13_b.sce b/911/CH1/EX1.13.b/ex_1_13_b.sce new file mode 100644 index 000000000..dae548319 --- /dev/null +++ b/911/CH1/EX1.13.b/ex_1_13_b.sce @@ -0,0 +1,12 @@ +//example 1.13.b//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+t=9999+1;
+//total numbers//
+x=log2(t);
+//taking out power//
+y=round(x)+3;
+//no of bits required for BCD encoding//
+disp(y,'no of bits required for BCD encoding = ')
\ No newline at end of file diff --git a/911/CH1/EX1.13.c/ex_1_13_c.pdf b/911/CH1/EX1.13.c/ex_1_13_c.pdf Binary files differnew file mode 100644 index 000000000..ecd1237c8 --- /dev/null +++ b/911/CH1/EX1.13.c/ex_1_13_c.pdf diff --git a/911/CH1/EX1.13.c/ex_1_13_c.sce b/911/CH1/EX1.13.c/ex_1_13_c.sce new file mode 100644 index 000000000..f11f53436 --- /dev/null +++ b/911/CH1/EX1.13.c/ex_1_13_c.sce @@ -0,0 +1,9 @@ +//example 1.13.c//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+a=dec2bin(2,12)
+b=dec2bin(7,4)
+d=100000+0111
+disp(d,'BCD equivalent of 27 =')
\ No newline at end of file diff --git a/911/CH1/EX1.14.a/ex_1_14_a.pdf b/911/CH1/EX1.14.a/ex_1_14_a.pdf Binary files differnew file mode 100644 index 000000000..ec726bd13 --- /dev/null +++ b/911/CH1/EX1.14.a/ex_1_14_a.pdf diff --git a/911/CH1/EX1.14.a/ex_1_14_a.sce b/911/CH1/EX1.14.a/ex_1_14_a.sce new file mode 100644 index 000000000..3ce00abcd --- /dev/null +++ b/911/CH1/EX1.14.a/ex_1_14_a.sce @@ -0,0 +1,13 @@ +//example 1.14.a//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+a=237.75
+//for integral part//
+//put binary equivalents of 5(2+3), 6(3+3) and 10(7+3)//
+i=010101101010
+//for fractional part//
+//put binary equivalents of 10(7+3) and 8(5+3)//
+f=10101000
+disp('010101101010.10101000','excess 3 equivalent of 237 =')
\ No newline at end of file diff --git a/911/CH1/EX1.14.b/ex_1_14_b.pdf b/911/CH1/EX1.14.b/ex_1_14_b.pdf Binary files differnew file mode 100644 index 000000000..5742c8fcc --- /dev/null +++ b/911/CH1/EX1.14.b/ex_1_14_b.pdf diff --git a/911/CH1/EX1.14.b/ex_1_14_b.sce b/911/CH1/EX1.14.b/ex_1_14_b.sce new file mode 100644 index 000000000..b2b472b47 --- /dev/null +++ b/911/CH1/EX1.14.b/ex_1_14_b.sce @@ -0,0 +1,15 @@ +//example 1.14.b//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+a=110010100011.01110101
+//for integral part//
+//put decimal equivalents of 1100(12), 1010(10) and 0011(3)//
+//subtract 3 for excess 3 so, 9(12-3), 7(10-3) and 0(3-3)//
+i=970
+//for fractional part//
+//put decimal equivalents of 0111(7) and 0101(5)//
+//subtract 3 for excess 3 so, 4(7-3), 2(5-3)//
+f=42
+disp('970.42','decimal equivalent of excess 3 number 110010100011.01110101 =')
\ No newline at end of file diff --git a/911/CH1/EX1.15.a/ex_1_15.sce b/911/CH1/EX1.15.a/ex_1_15.sce new file mode 100644 index 000000000..ecdc90383 --- /dev/null +++ b/911/CH1/EX1.15.a/ex_1_15.sce @@ -0,0 +1,9 @@ +//example 1.15.a//
+//decimal to gray numbers//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+a=dec2bin(13)
+//for binary to gray, first no (MSB) remains the same, second number is addition of first and second of binary ignoring the carry and so on.//
+disp('gray equivalent of decimal no 13 =1011')
\ No newline at end of file diff --git a/911/CH1/EX1.15.a/ex_1_15_a.pdf b/911/CH1/EX1.15.a/ex_1_15_a.pdf Binary files differnew file mode 100644 index 000000000..adc4541fb --- /dev/null +++ b/911/CH1/EX1.15.a/ex_1_15_a.pdf diff --git a/911/CH1/EX1.15.b/ex_1_15_b.pdf b/911/CH1/EX1.15.b/ex_1_15_b.pdf Binary files differnew file mode 100644 index 000000000..f57a33fa2 --- /dev/null +++ b/911/CH1/EX1.15.b/ex_1_15_b.pdf diff --git a/911/CH1/EX1.15.b/ex_1_15_b.sce b/911/CH1/EX1.15.b/ex_1_15_b.sce new file mode 100644 index 000000000..4f44db8df --- /dev/null +++ b/911/CH1/EX1.15.b/ex_1_15_b.sce @@ -0,0 +1,9 @@ +//example 1.15.b//
+//sequence of gray numbers//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+a=1111;
+//for gray to binary, first no (MSB) remains the same, second number is addition of first and second of binary ignoring the carry and so on.//
+disp('gray to binary of 1111 =1011')
\ No newline at end of file diff --git a/911/CH1/EX1.16/ex_1_16.pdf b/911/CH1/EX1.16/ex_1_16.pdf Binary files differnew file mode 100644 index 000000000..9b884ff74 --- /dev/null +++ b/911/CH1/EX1.16/ex_1_16.pdf diff --git a/911/CH1/EX1.16/ex_1_16.sce b/911/CH1/EX1.16/ex_1_16.sce new file mode 100644 index 000000000..9a8d556ef --- /dev/null +++ b/911/CH1/EX1.16/ex_1_16.sce @@ -0,0 +1,9 @@ +//example 1.16//
+//sequence of gray numbers//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+f=0101;
+disp(f,'The first no of the gray sequence is ')
+disp('Numbers following it are 0100, 1100 and 1101.')
\ No newline at end of file diff --git a/911/CH1/EX1.2/ex_1_2.pdf b/911/CH1/EX1.2/ex_1_2.pdf Binary files differnew file mode 100644 index 000000000..1c162bdda --- /dev/null +++ b/911/CH1/EX1.2/ex_1_2.pdf diff --git a/911/CH1/EX1.2/ex_1_2.sce b/911/CH1/EX1.2/ex_1_2.sce new file mode 100644 index 000000000..4fd4408e2 --- /dev/null +++ b/911/CH1/EX1.2/ex_1_2.sce @@ -0,0 +1,9 @@ +//example 1.2 //
+// decimal to binary conversion //
+clc
+clear
+disp('decimal equivalent of 00001110 is')
+ans = bin2dec ('00001110')
+// decimal equivalent of binary number //
+disp (ans)
+// answer in decimal form//
\ No newline at end of file diff --git a/911/CH1/EX1.3/ex_1_3.pdf b/911/CH1/EX1.3/ex_1_3.pdf Binary files differnew file mode 100644 index 000000000..eb41a497a --- /dev/null +++ b/911/CH1/EX1.3/ex_1_3.pdf diff --git a/911/CH1/EX1.3/ex_1_3.sce b/911/CH1/EX1.3/ex_1_3.sce new file mode 100644 index 000000000..7915f24b6 --- /dev/null +++ b/911/CH1/EX1.3/ex_1_3.sce @@ -0,0 +1,36 @@ +// example 1.3//
+clc
+//clears the command window//
+clear
+//clears all the variables//
+q =0;
+b =0;
+s =0;
+// a=input (Enter the decimal no to be converted to its binary equivalent :) ;
+//accepting the decimal input from user//
+a =13.375;
+d =modulo (a ,1) ;
+//separating the decimal part and the integer part//
+a = floor(a);
+//removing the decimal part //
+while (a>0)
+//taking integer part into a matrix and convert to equivalent binary//
+x=modulo (a ,2) ;
+b=b +(10^q)*x ;
+a = a/2;
+a = floor(a) ;
+q = q+1;
+end
+for i =1:10
+// For values after decimal point converting to binary //
+d = d *2;
+q = floor ( d ) ;
+s = s + q /(10^ i ) ;
+if d >=1 then
+d =d -1;
+end
+end
+k=b+s;
+disp('The binary equivalent of the give decimal number is');
+disp (k);
+//displaying the final result//
\ No newline at end of file diff --git a/911/CH1/EX1.4/ex_1_4.pdf b/911/CH1/EX1.4/ex_1_4.pdf Binary files differnew file mode 100644 index 000000000..98d94c4ad --- /dev/null +++ b/911/CH1/EX1.4/ex_1_4.pdf diff --git a/911/CH1/EX1.4/ex_1_4.sce b/911/CH1/EX1.4/ex_1_4.sce new file mode 100644 index 000000000..8bcec0e92 --- /dev/null +++ b/911/CH1/EX1.4/ex_1_4.sce @@ -0,0 +1,15 @@ +//Example 1.4//
+//decimal to octal//
+clc
+//clears the command window//
+clear
+// clears the variables//
+q =0;
+b =0;
+a= 73.75
+// Enter the decimal number//
+format ( 'v' ,18)
+//increasing the precision to 18
+a= floor (a);
+h= dec2oct (a);
+printf ("The hexadecimal equivalent is = %s" ,h)
\ No newline at end of file diff --git a/911/CH1/EX1.5/ex_1_5.pdf b/911/CH1/EX1.5/ex_1_5.pdf Binary files differnew file mode 100644 index 000000000..e5290b2a0 --- /dev/null +++ b/911/CH1/EX1.5/ex_1_5.pdf diff --git a/911/CH1/EX1.5/ex_1_5.sce b/911/CH1/EX1.5/ex_1_5.sce new file mode 100644 index 000000000..c86b4a42f --- /dev/null +++ b/911/CH1/EX1.5/ex_1_5.sce @@ -0,0 +1,17 @@ +// example 1.5/ /
+// decimal to hexadecimal conversion//
+clc
+// clears the screen //
+clear
+//clears already existing variables //
+q =0;
+b =0;
+a= 82.25
+// Enter the decimal number//
+format ( 'v' ,18)
+//increasing the precision to 18
+a= floor (a);
+h= dec2hex (a);
+// decimal to hexadecimal conversion //
+disp ('conversion of decimal given no to its hexadecimal form is :' )
+disp (h)
\ No newline at end of file diff --git a/911/CH1/EX1.6.a/ex_1_6_a.pdf b/911/CH1/EX1.6.a/ex_1_6_a.pdf Binary files differnew file mode 100644 index 000000000..c5ab7a7b1 --- /dev/null +++ b/911/CH1/EX1.6.a/ex_1_6_a.pdf diff --git a/911/CH1/EX1.6.a/ex_1_6_a.sce b/911/CH1/EX1.6.a/ex_1_6_a.sce new file mode 100644 index 000000000..8bf0d8234 --- /dev/null +++ b/911/CH1/EX1.6.a/ex_1_6_a.sce @@ -0,0 +1,14 @@ +// example 1.6 (a) / /
+//conversion of octal to binary//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+a=374.26;
+b=floor(a);
+t=oct2dec('374');
+z = dec2bin (t);
+disp ('binary conversion of given no is : ' )
+// conversion of octal number to binary //
+disp (z)
+// answer in binary form//
\ No newline at end of file diff --git a/911/CH1/EX1.6.b/ex_1_6_b.pdf b/911/CH1/EX1.6.b/ex_1_6_b.pdf Binary files differnew file mode 100644 index 000000000..55d8c47f0 --- /dev/null +++ b/911/CH1/EX1.6.b/ex_1_6_b.pdf diff --git a/911/CH1/EX1.6.b/ex_1_6_b.sce b/911/CH1/EX1.6.b/ex_1_6_b.sce new file mode 100644 index 000000000..d8ad68285 --- /dev/null +++ b/911/CH1/EX1.6.b/ex_1_6_b.sce @@ -0,0 +1,13 @@ +// example 1.6(b) / /
+clc
+//clears the screen //
+clear
+//clears already existing variables //
+// binary to octal conversion //
+y= bin2dec ('1110100')
+//binary to decimal conversion//
+a= dec2oct (y)
+//decimal to octal conversion //
+disp ('octal representation of given no is : ' )
+disp (a)
+// answer in octal form//
\ No newline at end of file diff --git a/911/CH1/EX1.7.a/ex_1_7_a.pdf b/911/CH1/EX1.7.a/ex_1_7_a.pdf Binary files differnew file mode 100644 index 000000000..124d4c71e --- /dev/null +++ b/911/CH1/EX1.7.a/ex_1_7_a.pdf diff --git a/911/CH1/EX1.7.a/ex_1_7_a.sce b/911/CH1/EX1.7.a/ex_1_7_a.sce new file mode 100644 index 000000000..2c105ea4f --- /dev/null +++ b/911/CH1/EX1.7.a/ex_1_7_a.sce @@ -0,0 +1,13 @@ +// example 1.7(a) / /
+// hexadecimal to binary conversion //
+clc
+// clears the screen //
+clear
+// clears already existing variables //
+x= hex2dec ('17E')
+//hexadecimal to decimal conversion //
+a= dec2bin (x)
+//decimal to binary conversion //
+disp ('conversion of hexadecimal given no to its binary form is : ')
+disp (a)
+// answer in binary form//
\ No newline at end of file diff --git a/911/CH1/EX1.7.b/ex_1_7_b.pdf b/911/CH1/EX1.7.b/ex_1_7_b.pdf Binary files differnew file mode 100644 index 000000000..b566f569f --- /dev/null +++ b/911/CH1/EX1.7.b/ex_1_7_b.pdf diff --git a/911/CH1/EX1.7.b/ex_1_7_b.sce b/911/CH1/EX1.7.b/ex_1_7_b.sce new file mode 100644 index 000000000..30eaf0661 --- /dev/null +++ b/911/CH1/EX1.7.b/ex_1_7_b.sce @@ -0,0 +1,13 @@ +// example 1.7(b) //
+//conversion of binary to hexadecimal //
+clc
+//clears the screen //
+clear
+//clears already existing variables //
+x= bin2dec ('1011001110' )
+// binary to decimal conversion //
+a= dec2hex (x)
+//decimal to hexadecimal conversion //
+disp ('conversion of given binary number to its hexadecimal form is : ')
+disp (a)
+// answer in hexadecimal form//
\ No newline at end of file diff --git a/911/CH1/EX1.8.a/ex_1_8_a.pdf b/911/CH1/EX1.8.a/ex_1_8_a.pdf Binary files differnew file mode 100644 index 000000000..42926b243 --- /dev/null +++ b/911/CH1/EX1.8.a/ex_1_8_a.pdf diff --git a/911/CH1/EX1.8.a/ex_1_8_a.sce b/911/CH1/EX1.8.a/ex_1_8_a.sce new file mode 100644 index 000000000..4418bc2b9 --- /dev/null +++ b/911/CH1/EX1.8.a/ex_1_8_a.sce @@ -0,0 +1,13 @@ +// example 1.8(a)//
+//conversion hexadecimal number to octal number //
+clc
+//clears the screen //
+clear
+// clears already existing variables //
+x= hex2dec ('2F')
+//hexadecimal to decimal conversion //
+a= dec2oct (x)
+//decimal to octal conversion //
+disp ('conversion of given hexadecimal no to its octal form results in :' )
+disp (a)
+//answer in octal form//
\ No newline at end of file diff --git a/911/CH1/EX1.8.b/ex_1_8_b.pdf b/911/CH1/EX1.8.b/ex_1_8_b.pdf Binary files differnew file mode 100644 index 000000000..636881008 --- /dev/null +++ b/911/CH1/EX1.8.b/ex_1_8_b.pdf diff --git a/911/CH1/EX1.8.b/ex_1_8_b.sce b/911/CH1/EX1.8.b/ex_1_8_b.sce new file mode 100644 index 000000000..562d090cf --- /dev/null +++ b/911/CH1/EX1.8.b/ex_1_8_b.sce @@ -0,0 +1,13 @@ +// example 1.8(b)//
+//conversion octal number to hexadecimal number //
+clc
+//clears the screen //
+clear
+// clears already existing variables //
+x= oct2dec ('762')
+//octal to decimal conversion //
+a= dec2hex (x)
+//decimal to hexadecimal conversion //
+disp ('conversion of given octal no to its hexadecimal form results in :' )
+disp (a)
+//answer in hexadecimal form//
\ No newline at end of file diff --git a/911/CH10/EX10.1.A/ex_10_1_a.pdf b/911/CH10/EX10.1.A/ex_10_1_a.pdf Binary files differnew file mode 100644 index 000000000..d16f2dde0 --- /dev/null +++ b/911/CH10/EX10.1.A/ex_10_1_a.pdf diff --git a/911/CH10/EX10.1.A/ex_10_1_a.sce b/911/CH10/EX10.1.A/ex_10_1_a.sce new file mode 100644 index 000000000..e867e9871 --- /dev/null +++ b/911/CH10/EX10.1.A/ex_10_1_a.sce @@ -0,0 +1,13 @@ +//example 10.1(a)//
+clc
+//clears the screen//
+clear
+//clears all variables//
+g=2^8;
+//for easier calculation//
+V=20*(10^-3)*g;
+//voltage corresponding to logic 1//
+fs=(g-1)/g*V;
+//full scale output formula//
+disp(fs,'Full scale output (in V) =')
+//in volts//
\ No newline at end of file diff --git a/911/CH10/EX10.1.b/ex_10_1_b.pdf b/911/CH10/EX10.1.b/ex_10_1_b.pdf Binary files differnew file mode 100644 index 000000000..511242ad0 --- /dev/null +++ b/911/CH10/EX10.1.b/ex_10_1_b.pdf diff --git a/911/CH10/EX10.1.b/ex_10_1_b.sce b/911/CH10/EX10.1.b/ex_10_1_b.sce new file mode 100644 index 000000000..abcadbfb6 --- /dev/null +++ b/911/CH10/EX10.1.b/ex_10_1_b.sce @@ -0,0 +1,9 @@ +//example 10.1(b)//
+clc
+//clears the screen//
+clear
+//clears all variables//
+g=2^8;
+pr=1/(g-1)*100;
+//percentage resolution//
+disp(pr,'Percentage resolution = ')
\ No newline at end of file diff --git a/911/CH10/EX10.10.a/ex_10_10_a.pdf b/911/CH10/EX10.10.a/ex_10_10_a.pdf Binary files differnew file mode 100644 index 000000000..00933cb59 --- /dev/null +++ b/911/CH10/EX10.10.a/ex_10_10_a.pdf diff --git a/911/CH10/EX10.10.a/ex_10_10_a.sce b/911/CH10/EX10.10.a/ex_10_10_a.sce new file mode 100644 index 000000000..0883567f2 --- /dev/null +++ b/911/CH10/EX10.10.a/ex_10_10_a.sce @@ -0,0 +1,10 @@ +//exmaple 10.10(a)//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+ctp=1/(10*10^6);
+//clock time period in seconds//
+act=(2^8-1)/2*ctp*10^6;
+//Average conversion time in case of counter type A/D converter//
+disp(act, 'Average conversion time in case of counter type A/D converter (in micro sec) =')
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+clc
+//clears the screen//
+clear
+//clears all existing variables//
+ctp=1/(10*10^6);
+//clock time period in seconds//
+ct=8*ctp*10^6;
+//conversion time//
+disp(ct, 'conversion time in micro seconds = ')
\ No newline at end of file diff --git a/911/CH10/EX10.2/ex_10_2.pdf b/911/CH10/EX10.2/ex_10_2.pdf Binary files differnew file mode 100644 index 000000000..062d568c6 --- /dev/null +++ b/911/CH10/EX10.2/ex_10_2.pdf diff --git a/911/CH10/EX10.2/ex_10_2.sce b/911/CH10/EX10.2/ex_10_2.sce new file mode 100644 index 000000000..a5c258dab --- /dev/null +++ b/911/CH10/EX10.2/ex_10_2.sce @@ -0,0 +1,28 @@ +//example 10.2//
+clc
+//clears the screen//
+clear
+//clears all variables//
+a=6.25
+//LSD A(0) in mV//
+b=a*2;
+//LSD B(0) in mV//
+c=a*4;
+//LSD C(0) in mV//
+d=a*8;
+//LSD D(0) in mV//
+a1=a*10;
+b1=a1*2;
+c1=a1*4;
+d1=a1*8;
+a2=a*100;
+//MSD A(2) in mV//
+b2=a2*2;
+//MSD B(2) in mV//
+c2=a2*4;
+//MSD C(2) in mV//
+d2=a2*8;
+//MSD D(2) in mV//
+fs=(a+d+a1+d1+a2+d2)/1000;
+//Full scale analog output in volts//
+disp(fs,'Full scale analog output in volts = ')
\ No newline at end of file diff --git a/911/CH10/EX10.3/ex_10_3.pdf b/911/CH10/EX10.3/ex_10_3.pdf Binary files differnew file mode 100644 index 000000000..217791700 --- /dev/null +++ b/911/CH10/EX10.3/ex_10_3.pdf diff --git a/911/CH10/EX10.3/ex_10_3.sce b/911/CH10/EX10.3/ex_10_3.sce new file mode 100644 index 000000000..7283ae102 --- /dev/null +++ b/911/CH10/EX10.3/ex_10_3.sce @@ -0,0 +1,23 @@ +//example 10.3//
+clc
+//clears the screen//
+clear
+//clears all variables//
+f=5/1000;
+//full scale output in Amperes//
+g=2^8;
+//random value for use//
+s=f/(g-1);
+//step size = full scale output/ number of steps//
+d=bin2dec('10000010')
+//binary to decimal conversion//
+ao=d*s;
+//analog output of system//
+e=.25*f/100;
+//error =+-e//
+r0=(ao-e)*1000;
+//lower range of analog output//
+r1=(ao+e)*1000;
+//upper range of analog output//
+disp(r0, 'lower range of analog output (in mA) is =');
+disp(r1, 'upper range of analog output (in mA) is = ');
\ No newline at end of file diff --git a/911/CH10/EX10.4/ex_10_4.pdf b/911/CH10/EX10.4/ex_10_4.pdf Binary files differnew file mode 100644 index 000000000..df6a7c4c7 --- /dev/null +++ b/911/CH10/EX10.4/ex_10_4.pdf diff --git a/911/CH10/EX10.4/ex_10_4.sce b/911/CH10/EX10.4/ex_10_4.sce new file mode 100644 index 000000000..48a782b11 --- /dev/null +++ b/911/CH10/EX10.4/ex_10_4.sce @@ -0,0 +1,6 @@ +//example 10.4//
+clc
+//clears the screen//
+clear
+//clears all variables//
+disp('The correct staircase waveform would be generated at the output of the D/A converter if the counter outputs Q0 (LSB), Q1, Q2, and Q3 (MSB) are connected to the corresponding inputs of the D/A converter in the same order. If we carefully examine the given staircase waveform and recall the sequence in which the counter will advance, it can be visualised that the given staircase waveform would result if the interconnections of LSB and the next adjacent higher bit of the counter output and the corresponding inputs of the D/A converter were interchanged. While in one complete cycle the counter counts as 0000, 0001, 0010, 0011, 0100, 0101, 0110, 0111, 1000, 1001, 1010, 1011, 1100, 1101, 1110, 1111. The corresponding analogue, the D/A converter, owing to interchanged connections gets input as 0000, 0010, 0001, 0011, 0100, 0110, 0101, 0111, 1000, 1010, 1001, 1011, 1100, 1110, 1101, and 1111. the corresponding analouge outputs are 0,2,1,3,4,6,5,7,8,10,9,11,12,14,13 and 15 v, as shown.')
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+//resolution//
+clc
+//clears the screen//
+clear
+//clears all variables//
+a=2^12;
+resolution=5000/(a-1);
+disp(resolution, 'Resolution of 12 bit A/D converter (in mV)=')
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+clc
+//clears the screen//
+clear
+//clears all variables//
+fs=0.02*5000/100;
+//full scale error//
+disp(fs, 'full scale error (in mV) = ')
+e=19.607+fs;
+//total possible error//
+disp(e, 'total possible error (in mV) = ')
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+clc
+//clears the screen//
+clear
+//clears all variables//
+q=5000/(2^8-1);
+//quantiztion error//
+disp(q,'quantization error (mV) =')
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+clc
+//clears the screen//
+clear
+//clears all existing variables//
+t=2^12-1;
+//cycles of clock input//
+ctp=1;
+//conversion time period (in micro sec)//
+mct=t*ctp/1000;
+//maximum conversion time//
+act=mct/2;
+//average conversion time//
+disp(act, ' average conversion time (in ms) = ')
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+clc
+//clears the screen//
+clear
+//clears all existing variables//
+vt=.001;
+//voltage threshold in V//
+aiv=4.012;
+//analog input voltage in V//
+qe=10/2/1000;
+//quantization error = 1/2LSB in (V)//
+aiv2=aiv+vt;
+//analog input voltage at other input//
+o=aiv2-qe;
+//D/A converter voltage//
+n=o/(10*10^-3);
+//number of steps//
+n1=round(n);
+//rounding off for number of steps//
+dob=dec2bin(n1);
+//digital output in binary equivalent//
+disp(dob,'Digital output in digital form =')
\ No newline at end of file diff --git a/911/CH10/EX10.9/ex_10_9.pdf b/911/CH10/EX10.9/ex_10_9.pdf Binary files differnew file mode 100644 index 000000000..31ce78c77 --- /dev/null +++ b/911/CH10/EX10.9/ex_10_9.pdf diff --git a/911/CH10/EX10.9/ex_10_9.sce b/911/CH10/EX10.9/ex_10_9.sce new file mode 100644 index 000000000..c0db252ad --- /dev/null +++ b/911/CH10/EX10.9/ex_10_9.sce @@ -0,0 +1,17 @@ +//example 10.9//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+aiv=4.365;
+//analog input voltage in V//
+r=10*10^-3;
+//resolution//
+s=aiv/r;
+//no of steps//
+sr=round(s);
+//rounding off//
+fi=sr-1;
+//in case of successive approximation type A/D converter, the final analouge output of its D/A converter portion always settles at a value below the analogue input voltage to be digitized within the resolution of the converter//
+d=dec2bin(fi)
+disp(d,'Digital output for an analog input = ')
\ No newline at end of file diff --git a/911/CH11/EX11.1.a/ex_11_1_a.pdf b/911/CH11/EX11.1.a/ex_11_1_a.pdf Binary files differnew file mode 100644 index 000000000..fbfe2b3b4 --- /dev/null +++ b/911/CH11/EX11.1.a/ex_11_1_a.pdf diff --git a/911/CH11/EX11.1.a/ex_11_1_a.sce b/911/CH11/EX11.1.a/ex_11_1_a.sce new file mode 100644 index 000000000..c8c7e960e --- /dev/null +++ b/911/CH11/EX11.1.a/ex_11_1_a.sce @@ -0,0 +1,10 @@ +//example 11.1(a)//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+a=2*4;
+//given no of inputs//
+s=2^8*8;
+//size of prom//
+disp(s,'size of PROM =')
\ No newline at end of file diff --git a/911/CH11/EX11.1.b/ex_11_1_b.pdf b/911/CH11/EX11.1.b/ex_11_1_b.pdf Binary files differnew file mode 100644 index 000000000..5163e4732 --- /dev/null +++ b/911/CH11/EX11.1.b/ex_11_1_b.pdf diff --git a/911/CH11/EX11.1.b/ex_11_1_b.sce b/911/CH11/EX11.1.b/ex_11_1_b.sce new file mode 100644 index 000000000..d56f98abb --- /dev/null +++ b/911/CH11/EX11.1.b/ex_11_1_b.sce @@ -0,0 +1,12 @@ +//example 11.1(b)//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+a=8+8+3;
+//given no of inputs//
+o=2;
+//given no of outputs//
+s=2^a*o;
+//size of prom//
+disp(s,'size of PROM =')
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+clc
+//clears the screen//
+clear
+//clears all existing variables//
+a=4+4+1+1;
+//given no of inputs//
+o=4+1;
+//given no of outputs//
+s=2^a*o;
+//size of prom//
+disp(s,'size of PROM =')
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+clc
+//clears the screen//
+clear
+//clears all existing variables//
+disp('From the given function table, we can write the boolean expressions for the four output as follows:')
+disp('P=A''BC''D+A''BCD''+A''BCD+AB''C''D''+AB''C''D')
+disp('Q=A''BC''D''+A''BC''D')
+disp('R=A''B''CD''+A''B''CD+A''BC''D''+A''BC''D+A''BCD''+A''BCD')
+disp('S=A''B''C''D+A''B''CD''+A''BCD+AB''C''D''')
+disp(' minimizing them we get, P= BD + BD + A, Q= BC'', R= B+C AND S= A''B''C''D + BCD + AD''+ B''CD''')
\ No newline at end of file diff --git a/911/CH13/EX13.1/ex_13_1.pdf b/911/CH13/EX13.1/ex_13_1.pdf Binary files differnew file mode 100644 index 000000000..4f699c83f --- /dev/null +++ b/911/CH13/EX13.1/ex_13_1.pdf diff --git a/911/CH13/EX13.1/ex_13_1.sce b/911/CH13/EX13.1/ex_13_1.sce new file mode 100644 index 000000000..1e73b909b --- /dev/null +++ b/911/CH13/EX13.1/ex_13_1.sce @@ -0,0 +1,15 @@ +//exmaple 13.1//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+a=31;
+//rising edge//
+b=241;
+//falling edge//
+c=8;
+//in MHz//
+t=1/c;
+pw=(b-a)*t;
+//pulse width//
+disp(pw,'pulse width measured by microcontroller(in microsec) is :')
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+clc
+//clears the screen//
+clear
+//clears all existing variables//
+mi=125;
+//minimum time period in ns//
+ma=100
+//maximum time period in ms//
+f=1000/mi;
+//frequency in MHz//
+disp(f,'frequency of microcontroller (in MHz) = ')
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+clc
+//clears the screen//
+clear
+//clears all existing variables//
+r=16*1024;
+//given rom capacity//
+row=sqrt(r)
+disp(row,' no of registers in each row = ')
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+clc
+//clears the screen//
+clear
+//clears all existing variables//
+r=16*1024;
+//given rom capacity//
+column=sqrt(r)
+disp(column,' no of registers in each column = ')
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+clc
+//clears the screen//
+clear
+//clears all existing variables//
+r=16*1024;
+//given rom capacity//
+c=log2(r)
+disp(c,' total number of address inputs = ')
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+clc
+//clears the screen//
+clear
+//clears all existing variables//
+disp('type of row decoder is 1 to 7 decoder')
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+clc
+//clears the screen//
+clear
+//clears all existing variables//
+disp('type of column decoder is 1 to 7 decoder')
\ No newline at end of file diff --git a/911/CH14/EX14.2/ex_14_2.pdf b/911/CH14/EX14.2/ex_14_2.pdf Binary files differnew file mode 100644 index 000000000..aa60dceb3 --- /dev/null +++ b/911/CH14/EX14.2/ex_14_2.pdf diff --git a/911/CH14/EX14.2/ex_14_2.sce b/911/CH14/EX14.2/ex_14_2.sce new file mode 100644 index 000000000..ab344326b --- /dev/null +++ b/911/CH14/EX14.2/ex_14_2.sce @@ -0,0 +1,6 @@ +//example 14.2//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+disp('We know that MSB of straight binary number is same as MSB of the Gray code equivalent. This can be passed on as such to the output. In that case, each memory location of the ROM needs to store only a three bit data as the fourth bit is available as such from the input. The required size of ROM is therefore 16*3. The three bit data to be programmed into 16 different memory locations of the ROM corresponding to address inputs of 0000 to 1111 in the same order would be 000, 001, 011, 010, 110, 111, 101, 100, 101, 111, 110, 010, 011, 001, and 000.')
\ No newline at end of file diff --git a/911/CH14/EX14.3/ex_14_3.pdf b/911/CH14/EX14.3/ex_14_3.pdf Binary files differnew file mode 100644 index 000000000..f19ca51a1 --- /dev/null +++ b/911/CH14/EX14.3/ex_14_3.pdf diff --git a/911/CH14/EX14.3/ex_14_3.sce b/911/CH14/EX14.3/ex_14_3.sce new file mode 100644 index 000000000..0a96b0177 --- /dev/null +++ b/911/CH14/EX14.3/ex_14_3.sce @@ -0,0 +1,6 @@ +//example 14.3//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+disp('Since the overall RAM capacity is 32 MB, it will have 25 address inputs(AB0-AB24) as 32M=2^25. For address inputs hex (0000000) to (0FFFFFF), which account for 16M=(2^24) memory locations, RAM-1 is enabled and 16 M locations of RAM 1 are available. RAM-2 is deselected for these address inputs. For address inputs (1000000)hex to (1FFFFFF)hex, the total no of addresses in this group again being equal to 16M, RAM-2 is selected and RAM-1 is deselected. 16M locations of RAM-2 are available. Thus out of 32 MB, 16 MB is stored in RAM-1 and 16 MB is stored in RAM-2.')
\ No newline at end of file diff --git a/911/CH14/EX14.4/ex_14_4.pdf b/911/CH14/EX14.4/ex_14_4.pdf Binary files differnew file mode 100644 index 000000000..e40d9e00c --- /dev/null +++ b/911/CH14/EX14.4/ex_14_4.pdf diff --git a/911/CH14/EX14.4/ex_14_4.sce b/911/CH14/EX14.4/ex_14_4.sce new file mode 100644 index 000000000..71938ee4a --- /dev/null +++ b/911/CH14/EX14.4/ex_14_4.sce @@ -0,0 +1,6 @@ +//example 14.4//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+disp('The address bit AB10 is low for the first 1024 address inputs (from 00000000000 to 01111111111) and ROM - 1 is selected. For the remaining 1024 address inputs (from 10000000000 to 11111111111), AB10 bit is HIGH thus enabling ROM-2.')
\ No newline at end of file diff --git a/911/CH14/EX14.5/ex_14_5.pdf b/911/CH14/EX14.5/ex_14_5.pdf Binary files differnew file mode 100644 index 000000000..100450bf0 --- /dev/null +++ b/911/CH14/EX14.5/ex_14_5.pdf diff --git a/911/CH14/EX14.5/ex_14_5.sce b/911/CH14/EX14.5/ex_14_5.sce new file mode 100644 index 000000000..169f83101 --- /dev/null +++ b/911/CH14/EX14.5/ex_14_5.sce @@ -0,0 +1,6 @@ +//example 14.5//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+disp('For address inputs (00000000)2 to (00001111)2, RAM-1 and RAM-2 are selected. RAM-1 stores higher four bits and RAM-2 stores lower 4 bits of data words corresponding to 16 address inputs mentioned above. This gives us a capacity of 16*8. Now for address inputs (00010000) to (00011111), RAM# and RAM4 are selected. Similarily, RAM3 and RAM 4, respectively store upper and lower four bits of data words corresponding to these address inputs. This again gives a capacity of 16*8. Thus overall capacity is 32*8. The word size is 8. For an address input of 00001101, RAM-1 and RAM-2 will be selected. The address input range for which RAM-1 and RAM-2 are active is (00000000) to (00001111)')
\ No newline at end of file diff --git a/911/CH2/EX2.1.a/ex_2_1_a.pdf b/911/CH2/EX2.1.a/ex_2_1_a.pdf Binary files differnew file mode 100644 index 000000000..6fe5f60f8 --- /dev/null +++ b/911/CH2/EX2.1.a/ex_2_1_a.pdf diff --git a/911/CH2/EX2.1.a/ex_2_1_a.sce b/911/CH2/EX2.1.a/ex_2_1_a.sce new file mode 100644 index 000000000..dbb21dd4e --- /dev/null +++ b/911/CH2/EX2.1.a/ex_2_1_a.sce @@ -0,0 +1,10 @@ +//example 2.1(a)//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+a=275.75;
+//numbers in decimal form//
+b=37.875;
+c=a+b;
+disp(c,'Addition of given two numbers = ')
\ No newline at end of file diff --git a/911/CH2/EX2.1.b/ex_2_1_b.pdf b/911/CH2/EX2.1.b/ex_2_1_b.pdf Binary files differnew file mode 100644 index 000000000..6f3408864 --- /dev/null +++ b/911/CH2/EX2.1.b/ex_2_1_b.pdf diff --git a/911/CH2/EX2.1.b/ex_2_1_b.sce b/911/CH2/EX2.1.b/ex_2_1_b.sce new file mode 100644 index 000000000..50c9b0187 --- /dev/null +++ b/911/CH2/EX2.1.b/ex_2_1_b.sce @@ -0,0 +1,13 @@ +//example 2.1(b)//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+a=hex2dec('AF1')
+b=hex2dec('FFF')
+c=a+b;
+d=dec2bin(c);
+e=dec2hex(c);
+disp(c, ' addition of given numbers in decimal form = ')
+disp(d, ' addition of given numbers in binary form = ')
+disp(e, ' addition of given numbers in hexadecimal form = ')
\ No newline at end of file diff --git a/911/CH2/EX2.10/ex_2_10.pdf b/911/CH2/EX2.10/ex_2_10.pdf Binary files differnew file mode 100644 index 000000000..d81f66400 --- /dev/null +++ b/911/CH2/EX2.10/ex_2_10.pdf diff --git a/911/CH2/EX2.10/ex_2_10.sce b/911/CH2/EX2.10/ex_2_10.sce new file mode 100644 index 000000000..f667a06f5 --- /dev/null +++ b/911/CH2/EX2.10/ex_2_10.sce @@ -0,0 +1,19 @@ +// example 2.10//
+//division in hexadecimal//
+clc
+//clears the window//
+clear
+//clears already existing variables //
+x=hex2dec('AF')
+// x i s the first number //
+// hexadecimal to decimal conversion //
+y=hex2dec('09')
+//y is the second number w/c is to be divided//
+s=x/y;
+//division//
+disp (s,'the division of given numbers results in decimal form : ')
+a=round(s)
+a1=dec2hex(a)
+// decimal to hexadecimal conversion//
+disp (a1,'the division of given numbers results in hexadecimal form : ' )
+// answer in binary form//
\ No newline at end of file diff --git a/911/CH2/EX2.12.a/ex_2_12_a.pdf b/911/CH2/EX2.12.a/ex_2_12_a.pdf Binary files differnew file mode 100644 index 000000000..82771f89d --- /dev/null +++ b/911/CH2/EX2.12.a/ex_2_12_a.pdf diff --git a/911/CH2/EX2.12.a/ex_2_12_a.sce b/911/CH2/EX2.12.a/ex_2_12_a.sce new file mode 100644 index 000000000..2f07c9fa7 --- /dev/null +++ b/911/CH2/EX2.12.a/ex_2_12_a.sce @@ -0,0 +1,10 @@ +//example 2.12(a)//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+a=39;
+//numbers in decimal form//
+b=19;
+c=a+b;
+disp(c,'Addition of given two numbers = ')
\ No newline at end of file diff --git a/911/CH2/EX2.12.b/ex_2_12_b.pdf b/911/CH2/EX2.12.b/ex_2_12_b.pdf Binary files differnew file mode 100644 index 000000000..9849a3ec7 --- /dev/null +++ b/911/CH2/EX2.12.b/ex_2_12_b.pdf diff --git a/911/CH2/EX2.12.b/ex_2_12_b.sce b/911/CH2/EX2.12.b/ex_2_12_b.sce new file mode 100644 index 000000000..89d3b95e7 --- /dev/null +++ b/911/CH2/EX2.12.b/ex_2_12_b.sce @@ -0,0 +1,13 @@ +//example 2.1(b)//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+a=hex2dec('1E')
+b=hex2dec('F3')
+c=a+b;
+d=dec2bin(c);
+e=dec2hex(c);
+disp(c, ' addition of given numbers in decimal form = ')
+disp(d, ' addition of given numbers in binary form = ')
+disp(e, ' addition of given numbers in hexadecimal form = ')
\ No newline at end of file diff --git a/911/CH2/EX2.13/ex_2_13.pdf b/911/CH2/EX2.13/ex_2_13.pdf Binary files differnew file mode 100644 index 000000000..a2a2b6c45 --- /dev/null +++ b/911/CH2/EX2.13/ex_2_13.pdf diff --git a/911/CH2/EX2.13/ex_2_13.sce b/911/CH2/EX2.13/ex_2_13.sce new file mode 100644 index 000000000..494084fa5 --- /dev/null +++ b/911/CH2/EX2.13/ex_2_13.sce @@ -0,0 +1,15 @@ +// example 2.13//
+//octal subtracttion//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+a=oct2dec('17');
+//given numbers//
+b=oct2dec('21');
+c=b-a;
+d=dec2bin(c,8)
+e=dec2oct(c)
+disp(c,'subtraction of given numbers in decimal form = ')
+disp(d,'subtraction of given numbers in binary form = ')
+disp(e,'subtraction of given numbers in octal form = ')
\ No newline at end of file diff --git a/911/CH2/EX2.14/ex_2_14.pdf b/911/CH2/EX2.14/ex_2_14.pdf Binary files differnew file mode 100644 index 000000000..d7b0d8af5 --- /dev/null +++ b/911/CH2/EX2.14/ex_2_14.pdf diff --git a/911/CH2/EX2.14/ex_2_14.sce b/911/CH2/EX2.14/ex_2_14.sce new file mode 100644 index 000000000..7702ca919 --- /dev/null +++ b/911/CH2/EX2.14/ex_2_14.sce @@ -0,0 +1,18 @@ +//example 2.14//
+//multiplication in binary form//
+clc
+//clears the screen //
+clear
+//clears all the existing variables //
+x=37
+//first number to be multiplied is x //
+//binary to decima l conversion //
+y= 10
+//second number to be multiplied is y //
+z=x*y
+//multiplication//
+a= dec2bin (z)
+//decimal to binary conversion //
+disp (a,'the multiplication of given numbers results in binary form = : ' )
+disp (z, 'the multiplication of given numbers results in decimal form =: ' )
+// answer in binary number //
\ No newline at end of file diff --git a/911/CH2/EX2.15/ex_2_15.pdf b/911/CH2/EX2.15/ex_2_15.pdf Binary files differnew file mode 100644 index 000000000..d2f900fe2 --- /dev/null +++ b/911/CH2/EX2.15/ex_2_15.pdf diff --git a/911/CH2/EX2.15/ex_2_15.sce b/911/CH2/EX2.15/ex_2_15.sce new file mode 100644 index 000000000..fb5c00581 --- /dev/null +++ b/911/CH2/EX2.15/ex_2_15.sce @@ -0,0 +1,19 @@ +// example 2.15//
+//division in hexadecimal//
+clc
+//clears the window//
+clear
+//clears already existing variables //
+x=hex2dec('E3B')
+// x i s the first number //
+// hexadecimal to decimal conversion //
+y=hex2dec('1A')
+//y is the second number w/c is to be divided//
+s=x/y;
+//division//
+disp (s,'the division of given numbers results in decimal form : ')
+a=round(s)
+a1=dec2hex(a)
+// decimal to hexadecimal conversion//
+disp (a1,'the division of given numbers results in hexadecimal form : ' )
+// answer in binary form//
\ No newline at end of file diff --git a/911/CH2/EX2.2/ex_2_2.pdf b/911/CH2/EX2.2/ex_2_2.pdf Binary files differnew file mode 100644 index 000000000..9c69a68c6 --- /dev/null +++ b/911/CH2/EX2.2/ex_2_2.pdf diff --git a/911/CH2/EX2.2/ex_2_2.sce b/911/CH2/EX2.2/ex_2_2.sce new file mode 100644 index 000000000..2016599fe --- /dev/null +++ b/911/CH2/EX2.2/ex_2_2.sce @@ -0,0 +1,13 @@ +//example 2.2//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+a=14276;
+b=18490;
+c=a+b;
+if c<32767 then
+ disp('Yes 16 bit arithmetic operation can be used to add given numbers')
+ else
+ disp('NO 16 bit arithmetic operation can be used to add given numbers')
+end
\ No newline at end of file diff --git a/911/CH2/EX2.3/ex_2_3.pdf b/911/CH2/EX2.3/ex_2_3.pdf Binary files differnew file mode 100644 index 000000000..a16623d3d --- /dev/null +++ b/911/CH2/EX2.3/ex_2_3.pdf diff --git a/911/CH2/EX2.3/ex_2_3_a.sce b/911/CH2/EX2.3/ex_2_3_a.sce new file mode 100644 index 000000000..75544c240 --- /dev/null +++ b/911/CH2/EX2.3/ex_2_3_a.sce @@ -0,0 +1,117 @@ +// example 2.3.a//
+clc
+clear
+format('v',18);
+//bb=input ('enter the first number (in decimal):')//
+// aaa=input('enter the second number (negative):') ;
+aaa =-118
+bb =32;
+aa = -1* aaa ;
+a =0;
+q =0;
+while (aa >0)
+ //finding the binary equivalents//
+x= modulo (aa ,2) ;
+a= a + (10^ q)*x;
+aa=aa /2;
+aa= floor (aa);
+q=q+1;
+end
+r =0;
+b =0;
+while (bb >0)
+x= modulo (bb ,2) ;
+b= b + (10^ r)*x;
+bb=bb /2;
+bb= floor (bb);
+r=r+1;
+end
+m=b
+for i =1:16
+a1(i)= modulo (a ,10) ;
+a=a /10;
+a= round (a);
+p1(i) =0;
+b1(i)= modulo (b ,10) ;
+b=b /10;
+b= round (b);
+end
+p1 (1) =1;
+for i =1:16
+ //finding the 2's compliment of second number//
+a1(i)= bitcmp (a1(i) ,1);
+end
+car (1) =0;
+for i =1:16
+c1(i)= car (i)+a1(i)+ p1(i);
+if c1(i)== 2 then
+car (i +1) = 1;
+c1(i) =0;
+elseif c1(i)==3 then
+car (i +1)= 1;
+c1(i) =1;
+else
+car (i +1) =0;
+end ;
+end ;
+re =0;
+for i =1:16
+re=re +( c1(i) *(10^(i -1) ))
+end ;
+printf ( ' The binary representation of first number is ' );
+disp (m);
+printf ('The 2''s compliment of second number is ' );
+disp (re);
+a1=c1;
+ar (1) =0;
+for i =1:8
+c1(i)=ar(i)+a1(i)+ b1(i);
+// addin both the nmbers ( binary addition )
+if c1(i)== 2 then
+ // lower byte
+ar(i+1)= 1;
+c1(i) =0;
+elseif c1(i)==3 then
+ar(i+1)= 1;
+c1(i) =1;
+else
+ar(i+1) =0;
+end
+end
+c1 (9)=ar (9)
+re =0;
+format('v',18);
+for i =1:8
+re=re +( c1(i) *(10^(i -1) ))
+end
+printf ( ' The sum of lower bytes of two binary numbers is %d' ,re );
+printf ( ' with a carry is %d' ,ar (9));
+for i =9:16
+c1(i)=ar(i)+a1(i)+ b1(i);
+// upper byte//
+if c1(i)== 2 then
+ar(i+1)= 1;
+c1(i) =0;
+elseif c1(i)==3 then
+ar(i+1)= 1;
+c1(i) =1;
+else
+ar(i+1) =0;
+end
+end
+c1 (17) =ar (17) ;
+format ('v',25);
+ree =0;
+for i =9:16
+ree = ree +( c1(i) *(10^(i -9) ));
+end
+for i =9:16
+re=re +( c1(i) *(10^(i -1) ))
+end
+printf ( ' The sum of upper bytes of the given numbers is %d' ,ree);
+printf ( ' with a carry is %d ' ,ar (17) );
+//displaying results//
+printf (' The total sum is ' );
+disp (re);
+printf ( ' with a carry %d ' ,ar (17) );
+disp('when we were using 8 bit we were getting error as number crosses its limit. While in 16 bit we get our result in 2''s complement form which comes out to be -150')
\ No newline at end of file diff --git a/911/CH2/EX2.4/ex_2_4.pdf b/911/CH2/EX2.4/ex_2_4.pdf Binary files differnew file mode 100644 index 000000000..264ca0db5 --- /dev/null +++ b/911/CH2/EX2.4/ex_2_4.pdf diff --git a/911/CH2/EX2.4/ex_2_4.sce b/911/CH2/EX2.4/ex_2_4.sce new file mode 100644 index 000000000..f43f3eef7 --- /dev/null +++ b/911/CH2/EX2.4/ex_2_4.sce @@ -0,0 +1,12 @@ +// example 2.4//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+a=bin2dec('1110');
+//given numbers//
+b=bin2dec('11011');
+c=b-a;
+d=dec2bin(c,8)
+disp(c,'subtraction of given numbers in decimal form = ')
+disp(d,'subtraction of given numbers in binary form = ')
\ No newline at end of file diff --git a/911/CH2/EX2.5.a/ex_2_5_a.pdf b/911/CH2/EX2.5.a/ex_2_5_a.pdf Binary files differnew file mode 100644 index 000000000..8d7a15908 --- /dev/null +++ b/911/CH2/EX2.5.a/ex_2_5_a.pdf diff --git a/911/CH2/EX2.5.a/ex_2_5_a.sce b/911/CH2/EX2.5.a/ex_2_5_a.sce new file mode 100644 index 000000000..1e567f70d --- /dev/null +++ b/911/CH2/EX2.5.a/ex_2_5_a.sce @@ -0,0 +1,12 @@ +// example 2.5.a//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+a=-64;
+//given numbers//
+b=32;
+c=b-a;
+d=dec2bin(c,8)
+disp(c,'subtraction of given numbers in decimal form = ')
+disp(d,'subtraction of given numbers in binary form = ')
\ No newline at end of file diff --git a/911/CH2/EX2.5.b/ex_2_5_b.pdf b/911/CH2/EX2.5.b/ex_2_5_b.pdf Binary files differnew file mode 100644 index 000000000..b50176925 --- /dev/null +++ b/911/CH2/EX2.5.b/ex_2_5_b.pdf diff --git a/911/CH2/EX2.5.b/ex_2_5_b.sce b/911/CH2/EX2.5.b/ex_2_5_b.sce new file mode 100644 index 000000000..96dbff5bb --- /dev/null +++ b/911/CH2/EX2.5.b/ex_2_5_b.sce @@ -0,0 +1,14 @@ +// example 2.5.b//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+a=hex2dec('29');
+//given numbers//
+b=hex2dec('4F');
+c=b-a;
+d=dec2bin(c,8)
+e=dec2hex(c)
+disp(c,'subtraction of given numbers in decimal form = ')
+disp(d,'subtraction of given numbers in binary form = ')
+disp(e,'subtraction of given numbers in hexadecimal form = ')
\ No newline at end of file diff --git a/911/CH2/EX2.7/ex_2_7.pdf b/911/CH2/EX2.7/ex_2_7.pdf Binary files differnew file mode 100644 index 000000000..37cc08214 --- /dev/null +++ b/911/CH2/EX2.7/ex_2_7.pdf diff --git a/911/CH2/EX2.7/ex_2_7.sce b/911/CH2/EX2.7/ex_2_7.sce new file mode 100644 index 000000000..fbbbbc8f8 --- /dev/null +++ b/911/CH2/EX2.7/ex_2_7.sce @@ -0,0 +1,12 @@ +// example 2.7//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+a=8;
+//given numbers//
+b=185;
+c=b-a;
+d=dec2bin(c,12)
+disp(c,'subtraction of given numbers in decimal form = ')
+disp(d,'subtraction of given numbers in binary form = ')
\ No newline at end of file diff --git a/911/CH2/EX2.8.a/ex_2_8.pdf b/911/CH2/EX2.8.a/ex_2_8.pdf Binary files differnew file mode 100644 index 000000000..9a0c69c97 --- /dev/null +++ b/911/CH2/EX2.8.a/ex_2_8.pdf diff --git a/911/CH2/EX2.8.a/ex_2_8.sce b/911/CH2/EX2.8.a/ex_2_8.sce new file mode 100644 index 000000000..40353579d --- /dev/null +++ b/911/CH2/EX2.8.a/ex_2_8.sce @@ -0,0 +1,18 @@ +//example 2.8//
+//multiplication in binary form//
+clc
+//clears the screen //
+clear
+//clears all the existing variables //
+x=bin2dec('100')
+//first number to be multiplied is x //
+//binary to decima l conversion //
+y= bin2dec ('10' )
+//second number to be multiplied is y //
+z=x*y
+//multiplication//
+a= dec2bin (z)
+//decimal to binary conversion //
+disp (a,'the multiplication of given numbers results in binary form = : ' )
+disp (z, 'the multiplication of given numbers results in decimal form =: ' )
+// answer in binary number //
\ No newline at end of file diff --git a/911/CH2/EX2.8.b/ex_2_8_b.pdf b/911/CH2/EX2.8.b/ex_2_8_b.pdf Binary files differnew file mode 100644 index 000000000..d1138f998 --- /dev/null +++ b/911/CH2/EX2.8.b/ex_2_8_b.pdf diff --git a/911/CH2/EX2.8.b/ex_2_8_b.sce b/911/CH2/EX2.8.b/ex_2_8_b.sce new file mode 100644 index 000000000..d9b29fadd --- /dev/null +++ b/911/CH2/EX2.8.b/ex_2_8_b.sce @@ -0,0 +1,18 @@ +//example 2.8//
+//multiplication in hexadecimal form//
+clc
+//clears the screen //
+clear
+//clears all the existing variables //
+x=hex2dec('2B')
+//first number to be multiplied is x //
+//hexadecimal to decima l conversion //
+y=hex2dec ('3' )
+//second number to be multiplied is y //
+z=x*y
+//multiplication//
+a= dec2hex(z)
+//decimal to hexadecimal conversion //
+disp (a,'the multiplication of given numbers results in hexadecimal form = : ' )
+disp (z, 'the multiplication of given numbers results in decimal form =: ' )
+// answer in binary number //
\ No newline at end of file diff --git a/911/CH2/EX2.9/ex_2_9.pdf b/911/CH2/EX2.9/ex_2_9.pdf Binary files differnew file mode 100644 index 000000000..8eee41d56 --- /dev/null +++ b/911/CH2/EX2.9/ex_2_9.pdf diff --git a/911/CH2/EX2.9/ex_2_9.sce b/911/CH2/EX2.9/ex_2_9.sce new file mode 100644 index 000000000..e6aaba6ea --- /dev/null +++ b/911/CH2/EX2.9/ex_2_9.sce @@ -0,0 +1,11 @@ +//example 2.9//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+a=bin2dec('110101')
+//binary to decimal conversion//
+b=bin2dec('1011')
+c=a/b;
+//division//
+disp(c,'division of given numbers =')
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\ No newline at end of file diff --git a/911/CH3/EX3.10/ex_3_10.pdf b/911/CH3/EX3.10/ex_3_10.pdf Binary files differnew file mode 100644 index 000000000..015e8cc09 --- /dev/null +++ b/911/CH3/EX3.10/ex_3_10.pdf diff --git a/911/CH3/EX3.10/ex_3_10.sce b/911/CH3/EX3.10/ex_3_10.sce new file mode 100644 index 000000000..bcc3f60ae --- /dev/null +++ b/911/CH3/EX3.10/ex_3_10.sce @@ -0,0 +1,7 @@ +//example 3.10//
+clc
+//refreshes all variables//
+clear
+//clears the screen//
+disp('The ouput will always be at logic 1 level as two of the inputs of the logic gate, which is a NAND are permanently tied to logic 0.')
+//result//
\ No newline at end of file diff --git a/911/CH3/EX3.10/ex_3_10.xcos b/911/CH3/EX3.10/ex_3_10.xcos new file mode 100644 index 000000000..68ac60d72 --- /dev/null +++ b/911/CH3/EX3.10/ex_3_10.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" title="ex_3_10"><mxGraphModel as="model"><root><mxCell id="27e9a6ac:13e572af46a:-7fff"/><mxCell id="27e9a6ac:13e572af46a:-8000" parent="27e9a6ac:13e572af46a:-7fff"/><ConstBlock blockType="d" id="27e9a6ac:13e572af46a:-7fc8" parent="27e9a6ac:13e572af46a:-8000" simulationFunctionType="C_OR_FORTRAN" style="CONST_m;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data 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\ No newline at end of file diff --git a/911/CH3/EX3.13/ex_3_13.pdf b/911/CH3/EX3.13/ex_3_13.pdf Binary files differnew file mode 100644 index 000000000..ee8854cb6 --- /dev/null +++ b/911/CH3/EX3.13/ex_3_13.pdf diff --git a/911/CH3/EX3.13/ex_3_13.sce b/911/CH3/EX3.13/ex_3_13.sce new file mode 100644 index 000000000..885332378 --- /dev/null +++ b/911/CH3/EX3.13/ex_3_13.sce @@ -0,0 +1,6 @@ +//example 3.13//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+disp('The NAND gates are used in the circuit are open collector gates. Paralleling of the two NAND gates at the input leads to a WIRE AND connection. Therefore the logic expression at the point where the two outputs combine is given by the equation (AB)''.(CD)''. Using Demorgan''s theorem (AB)''.(CD)''=(AB+CD)''. The third NAND is wired as an inverter. Therefore the final output can be written as : Y = AB + CD')
\ No newline at end of file diff --git a/911/CH3/EX3.14.a/ex_3_14_a.pdf b/911/CH3/EX3.14.a/ex_3_14_a.pdf Binary files differnew file mode 100644 index 000000000..75ceba590 --- /dev/null +++ b/911/CH3/EX3.14.a/ex_3_14_a.pdf diff --git a/911/CH3/EX3.14.a/ex_3_14_a.sce b/911/CH3/EX3.14.a/ex_3_14_a.sce new file mode 100644 index 000000000..ceec47a7b --- /dev/null +++ b/911/CH3/EX3.14.a/ex_3_14_a.sce @@ -0,0 +1,15 @@ +//example 3.14//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+moh=10^-3;
+//maximum output HIGH state current//
+mol=20*10^-3;
+//maximum output LOW state current//
+mih=50*10^-6;
+//maximum input HIGH state current//
+mil=2*10^-3;
+//maximum input LOW state current//
+h=moh/mih;
+disp(h,'the HIGH state fan out =')
\ No newline at end of file diff --git a/911/CH3/EX3.14.b/ex_3_14_b.pdf b/911/CH3/EX3.14.b/ex_3_14_b.pdf Binary files differnew file mode 100644 index 000000000..139cf98d5 --- /dev/null +++ b/911/CH3/EX3.14.b/ex_3_14_b.pdf diff --git a/911/CH3/EX3.14.b/ex_3_14_b.sce b/911/CH3/EX3.14.b/ex_3_14_b.sce new file mode 100644 index 000000000..757eee948 --- /dev/null +++ b/911/CH3/EX3.14.b/ex_3_14_b.sce @@ -0,0 +1,15 @@ +//example 3.14//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+moh=10^-3;
+//maximum output HIGH state current//
+mol=20*10^-3;
+//maximum output LOW state current//
+mih=50*10^-6;
+//maximum input HIGH state current//
+mil=2*10^-3;
+//maximum input LOW state current//
+h=mol/mil;
+disp(h,'the LOW state fan out =')
\ No newline at end of file diff --git a/911/CH3/EX3.14.c/ex_3_14_c.pdf b/911/CH3/EX3.14.c/ex_3_14_c.pdf Binary files differnew file mode 100644 index 000000000..5e332a9b0 --- /dev/null +++ b/911/CH3/EX3.14.c/ex_3_14_c.pdf diff --git a/911/CH3/EX3.14.c/ex_3_14_c.sce b/911/CH3/EX3.14.c/ex_3_14_c.sce new file mode 100644 index 000000000..c3134651f --- /dev/null +++ b/911/CH3/EX3.14.c/ex_3_14_c.sce @@ -0,0 +1,17 @@ +//example 3.14//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+moh=10^-3;
+//maximum output HIGH state current//
+mol=20*10^-3;
+//maximum output LOW state current//
+mih=50*10^-6;
+//maximum input HIGH state current//
+mil=2*10^-3;
+//maximum input LOW state current//
+a=mol/mil;
+b=moh/mih;
+h=min(a,b)
+disp(h,'Maximum number of flip flops =')
\ No newline at end of file diff --git a/911/CH3/EX3.3/ex_3_3.pdf b/911/CH3/EX3.3/ex_3_3.pdf Binary files differnew file mode 100644 index 000000000..f6b9962ef --- /dev/null +++ b/911/CH3/EX3.3/ex_3_3.pdf diff --git a/911/CH3/EX3.3/ex_3_3.sce b/911/CH3/EX3.3/ex_3_3.sce new file mode 100644 index 000000000..93b09102a --- /dev/null +++ b/911/CH3/EX3.3/ex_3_3.sce @@ -0,0 +1,7 @@ +//example 3.3//
+clc
+//refreshes all variables//
+clear
+//clears the screen//
+disp('in the figure output of first gate is AB and output of second gate is CD output from the third gate is multiplication of output of earlier two gates which come out to be ABCD where A B C and D are inputs to the system')
+//result//
\ No newline at end of file diff --git a/911/CH3/EX3.3/ex_3_3.xcos b/911/CH3/EX3.3/ex_3_3.xcos new file mode 100644 index 000000000..5e87aa63e --- /dev/null +++ b/911/CH3/EX3.3/ex_3_3.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" title="ex_3_3"><mxGraphModel as="model"><root><mxCell id="1ef32c16:13e510b008a:-7fff"/><mxCell id="1ef32c16:13e510b008a:-8000" parent="1ef32c16:13e510b008a:-7fff"/><BasicBlock angle="270" blockType="h" id="1ef32c16:13e510b008a:-7fa7" interfaceFunctionName="ANDBLK" parent="1ef32c16:13e510b008a:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="ANDBLK;flip=false;mirror=false;rotation=270"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="3"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/></ScilabString><Array 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\ No newline at end of file diff --git a/911/CH3/EX3.4.a/ex_3_4_a.pdf b/911/CH3/EX3.4.a/ex_3_4_a.pdf Binary files differnew file mode 100644 index 000000000..2b0250d32 --- /dev/null +++ b/911/CH3/EX3.4.a/ex_3_4_a.pdf diff --git a/911/CH3/EX3.4.a/ex_3_4_a.sce b/911/CH3/EX3.4.a/ex_3_4_a.sce new file mode 100644 index 000000000..2190d0659 --- /dev/null +++ b/911/CH3/EX3.4.a/ex_3_4_a.sce @@ -0,0 +1,6 @@ +//example 3.4//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+disp('In case of OR gate. Y=A + A'', this will always result in output as 1.')
\ No newline at end of file diff --git a/911/CH3/EX3.4.a/ex_3_4_a.xcos b/911/CH3/EX3.4.a/ex_3_4_a.xcos new file mode 100644 index 000000000..fc8ce996f --- /dev/null +++ b/911/CH3/EX3.4.a/ex_3_4_a.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" title="ex_3_4_a"><mxGraphModel as="model"><root><mxCell id="1ef32c16:13e510b008a:-7f76"/><mxCell id="1ef32c16:13e510b008a:-7f77" parent="1ef32c16:13e510b008a:-7f76"/><BasicBlock dependsOnU="1" id="1ef32c16:13e510b008a:-7f5c" interfaceFunctionName="LOGICAL_OP" parent="1ef32c16:13e510b008a:-7f77" simulationFunctionName="logicalop" simulationFunctionType="C_OR_FORTRAN" style="LOGICAL_OP;shadow=false;flip=false;mirror=false" value="NOT"><ScilabString as="exprs" height="4" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="5"/><data column="0" line="2" value="1"/><data column="0" line="3" value="0"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble 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\ No newline at end of file diff --git a/911/CH3/EX3.4.b/ex_3_4_b.pdf b/911/CH3/EX3.4.b/ex_3_4_b.pdf Binary files differnew file mode 100644 index 000000000..cc28f0db7 --- /dev/null +++ b/911/CH3/EX3.4.b/ex_3_4_b.pdf diff --git a/911/CH3/EX3.4.b/ex_3_4_b.sce b/911/CH3/EX3.4.b/ex_3_4_b.sce new file mode 100644 index 000000000..b24ee95b5 --- /dev/null +++ b/911/CH3/EX3.4.b/ex_3_4_b.sce @@ -0,0 +1,6 @@ +//example 3.4//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+disp('In case of AND gate. Y=A*A'', this will always result in output as 0.')
\ No newline at end of file diff --git a/911/CH3/EX3.4.b/ex_3_4_b.xcos b/911/CH3/EX3.4.b/ex_3_4_b.xcos new file mode 100644 index 000000000..511e02131 --- /dev/null +++ b/911/CH3/EX3.4.b/ex_3_4_b.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" title="ex_3_4_b"><mxGraphModel as="model"><root><mxCell id="1ef32c16:13e510b008a:-7f76"/><mxCell id="1ef32c16:13e510b008a:-7f77" parent="1ef32c16:13e510b008a:-7f76"/><BasicBlock dependsOnU="1" id="1ef32c16:13e510b008a:-7f5c" interfaceFunctionName="LOGICAL_OP" parent="1ef32c16:13e510b008a:-7f77" simulationFunctionName="logicalop" simulationFunctionType="C_OR_FORTRAN" style="LOGICAL_OP;shadow=false;flip=false;mirror=false" value="NOT"><ScilabString as="exprs" height="4" width="1"><data column="0" line="0" value="1"/><data column="0" line="1" value="5"/><data column="0" line="2" value="1"/><data column="0" line="3" value="0"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble 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\ No newline at end of file diff --git a/911/CH3/EX3.5.a/ex_3_5_a.pdf b/911/CH3/EX3.5.a/ex_3_5_a.pdf Binary files differnew file mode 100644 index 000000000..b81870d8f --- /dev/null +++ b/911/CH3/EX3.5.a/ex_3_5_a.pdf diff --git a/911/CH3/EX3.5.a/ex_3_5_a.sce b/911/CH3/EX3.5.a/ex_3_5_a.sce new file mode 100644 index 000000000..71c7b69eb --- /dev/null +++ b/911/CH3/EX3.5.a/ex_3_5_a.sce @@ -0,0 +1,8 @@ +//example 3.5(a)//
+//3 input to exor//
+clc
+//refreshes all variables//
+clear
+//clears the screen//
+disp('in the figure output of first gate is exor of A and B. output of second gate is exor output of earlier two gates where A B C are inputs to the system')
+//result//
\ No newline at end of file diff --git a/911/CH3/EX3.5.a/ex_3_5_a.xcos b/911/CH3/EX3.5.a/ex_3_5_a.xcos new file mode 100644 index 000000000..64cebcbaf --- /dev/null +++ b/911/CH3/EX3.5.a/ex_3_5_a.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" title="ex_3_5_a"><mxGraphModel as="model"><root><mxCell id="1ef32c16:13e510b008a:-7f05"/><mxCell id="1ef32c16:13e510b008a:-7f06" parent="1ef32c16:13e510b008a:-7f05"/><BasicBlock dependsOnU="1" id="1ef32c16:13e510b008a:-7ee5" interfaceFunctionName="LOGICAL_OP" parent="1ef32c16:13e510b008a:-7f06" simulationFunctionName="logicalop" simulationFunctionType="C_OR_FORTRAN" style="LOGICAL_OP;flip=false;mirror=false"><ScilabString as="exprs" height="4" width="1"><data column="0" line="0" value="2"/><data column="0" line="1" value="4"/><data column="0" line="2" value="1"/><data column="0" line="3" value="0"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" 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\ No newline at end of file diff --git a/911/CH3/EX3.6/ex_3_6.pdf b/911/CH3/EX3.6/ex_3_6.pdf Binary files differnew file mode 100644 index 000000000..c7133144c --- /dev/null +++ b/911/CH3/EX3.6/ex_3_6.pdf diff --git a/911/CH3/EX3.6/ex_3_6.sce b/911/CH3/EX3.6/ex_3_6.sce new file mode 100644 index 000000000..b9c824f79 --- /dev/null +++ b/911/CH3/EX3.6/ex_3_6.sce @@ -0,0 +1,7 @@ +//example 3.6//
+//how to convert exor gate to not//
+clc
+//clears all variables//
+clear
+//clears the screen//
+disp('here if we look at truth table of ex-or gate we notice that if one of its input is tied to logic 1 then the reult is that of a not gate')
\ No newline at end of file diff --git a/911/CH3/EX3.7.a/ex_3_7_a.pdf b/911/CH3/EX3.7.a/ex_3_7_a.pdf Binary files differnew file mode 100644 index 000000000..00c8c521d --- /dev/null +++ b/911/CH3/EX3.7.a/ex_3_7_a.pdf diff --git a/911/CH3/EX3.7.a/ex_3_7_a.sce b/911/CH3/EX3.7.a/ex_3_7_a.sce new file mode 100644 index 000000000..c0fdf603f --- /dev/null +++ b/911/CH3/EX3.7.a/ex_3_7_a.sce @@ -0,0 +1,8 @@ +//example 3.7//
+//4 input nand gate using and and not//
+clc
+//refreshes all variables//
+clear
+//clears the screen//
+disp('in the figure output of first gate is given to input of second gate with the other input C. output of second gate is input to the third gate and finally a not gate is applied to third output.')
+//result//
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\ No newline at end of file diff --git a/911/CH3/EX3.7.b/ex_3_7_b.pdf b/911/CH3/EX3.7.b/ex_3_7_b.pdf Binary files differnew file mode 100644 index 000000000..8cb0ba075 --- /dev/null +++ b/911/CH3/EX3.7.b/ex_3_7_b.pdf diff --git a/911/CH3/EX3.7.b/ex_3_7_b.sce b/911/CH3/EX3.7.b/ex_3_7_b.sce new file mode 100644 index 000000000..9dfd74e04 --- /dev/null +++ b/911/CH3/EX3.7.b/ex_3_7_b.sce @@ -0,0 +1,8 @@ +//example 3.7//
+//4 input nand gate using and and not//
+clc
+//refreshes all variables//
+clear
+//clears the screen//
+disp('in the figure output of first gate is given to input of second gate on both input. output of second gate is input to the third gate. and the output is (ABC)''')
+//result//
\ No newline at end of file diff --git a/911/CH3/EX3.7.b/ex_3_7_b.xcos b/911/CH3/EX3.7.b/ex_3_7_b.xcos new file mode 100644 index 000000000..ccd2120c7 --- /dev/null +++ b/911/CH3/EX3.7.b/ex_3_7_b.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" title="ex_3_7_b"><mxGraphModel as="model"><root><mxCell id="-7ffbda51:13e55eb2bce:-7fff"/><mxCell id="-7ffbda51:13e55eb2bce:-8000" parent="-7ffbda51:13e55eb2bce:-7fff"/><BasicBlock dependsOnU="1" id="-7ffbda51:13e55eb2bce:-7fd8" interfaceFunctionName="LOGICAL_OP" parent="-7ffbda51:13e55eb2bce:-8000" simulationFunctionName="logicalop" simulationFunctionType="C_OR_FORTRAN" style="LOGICAL_OP;flip=false;mirror=false"><ScilabString as="exprs" height="4" width="1"><data column="0" line="0" value="2"/><data column="0" line="1" value="0"/><data column="0" line="2" value="1"/><data column="0" line="3" value="0"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble 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\ No newline at end of file diff --git a/911/CH3/EX3.7.c/ex_3_7_c.pdf b/911/CH3/EX3.7.c/ex_3_7_c.pdf Binary files differnew file mode 100644 index 000000000..3b081ce43 --- /dev/null +++ b/911/CH3/EX3.7.c/ex_3_7_c.pdf diff --git a/911/CH3/EX3.7.c/ex_3_7_c.sce b/911/CH3/EX3.7.c/ex_3_7_c.sce new file mode 100644 index 000000000..a5c1fbd0c --- /dev/null +++ b/911/CH3/EX3.7.c/ex_3_7_c.sce @@ -0,0 +1,8 @@ +//example 3.7//
+//not using nand//
+clc
+//refreshes all variables//
+clear
+//clears the screen//
+disp('in the figure same input is given to NAND gate on both ends.')
+//result//
\ No newline at end of file diff --git a/911/CH3/EX3.7.c/ex_3_7_c.xcos b/911/CH3/EX3.7.c/ex_3_7_c.xcos new file mode 100644 index 000000000..86e49d747 --- /dev/null +++ b/911/CH3/EX3.7.c/ex_3_7_c.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" title="ex_3_7_b"><mxGraphModel as="model"><root><mxCell id="-7ffbda51:13e55eb2bce:-7fff"/><mxCell id="-7ffbda51:13e55eb2bce:-8000" parent="-7ffbda51:13e55eb2bce:-7fff"/><BasicBlock dependsOnU="1" id="-7ffbda51:13e55eb2bce:-7fdc" interfaceFunctionName="LOGICAL_OP" parent="-7ffbda51:13e55eb2bce:-8000" simulationFunctionName="logicalop" simulationFunctionType="C_OR_FORTRAN" style="LOGICAL_OP"><ScilabString as="exprs" height="4" width="1"><data column="0" line="0" value="2"/><data column="0" line="1" value="0"/><data column="0" line="2" value="1"/><data column="0" line="3" value="0"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="90.0" x="300.0" y="110.0"/></BasicBlock><ExplicitOutputPort dataType="REAL_MATRIX" id="-7ffbda51:13e55eb2bce:-7f4e" ordering="1" parent="-7ffbda51:13e55eb2bce:-7fdc" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="90.0" y="26.0"/></ExplicitOutputPort><ExplicitInputPort connectable="0" dataType="REAL_MATRIX" id="-7ffbda51:13e55eb2bce:-7f50" ordering="1" parent="-7ffbda51:13e55eb2bce:-7fdc" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitInputPort connectable="0" dataType="REAL_MATRIX" id="-7ffbda51:13e55eb2bce:-7f4f" ordering="2" parent="-7ffbda51:13e55eb2bce:-7fdc" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="36.0"/></ExplicitInputPort><ConstBlock blockType="d" id="-7ffbda51:13e55eb2bce:-7fc5" parent="-7ffbda51:13e55eb2bce:-8000" simulationFunctionType="C_OR_FORTRAN" value="A"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="150.0" y="110.0"/></ConstBlock><ExplicitOutputPort connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-7ffbda51:13e55eb2bce:-7fc4" ordering="1" parent="-7ffbda51:13e55eb2bce:-7fc5" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><TextBlock id="-7ffbda51:13e55eb2bce:-7fa1" parent="-7ffbda51:13e55eb2bce:-8000" simulationFunctionType="DEFAULT" value="<html> <head> <style type="text/css"> <!-- body { font-size: 11 pt; color: black; font-family: Arial,Helvetica } --> </style> </head> <body> lOGICAL NAND GATE </body> </html> "><mxGeometry as="geometry" height="40.0" width="110.0" x="270.0" y="40.0"/></TextBlock><SplitBlock id="-7ffbda51:13e55eb2bce:-7f47" parent="-7ffbda51:13e55eb2bce:-8000" simulationFunctionType="DEFAULT"><mxGeometry as="geometry" height="7.0" width="7.0" x="247.0" y="127.0"/></SplitBlock><ExplicitInputPort connectable="0" dataType="UNKNOW_TYPE" id="-7ffbda51:13e55eb2bce:-7f46" ordering="1" parent="-7ffbda51:13e55eb2bce:-7f47" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort><ExplicitOutputPort connectable="0" dataType="UNKNOW_TYPE" id="-7ffbda51:13e55eb2bce:-7f45" ordering="1" parent="-7ffbda51:13e55eb2bce:-7f47" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitOutputPort connectable="0" dataType="UNKNOW_TYPE" id="-7ffbda51:13e55eb2bce:-7f44" ordering="2" parent="-7ffbda51:13e55eb2bce:-7f47" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitLink id="-7ffbda51:13e55eb2bce:-7f43"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass=""/></mxGeometry><mxCell as="parent" id="-7ffbda51:13e55eb2bce:-8000" parent="-7ffbda51:13e55eb2bce:-7fff"/><ExplicitOutputPort as="source" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-7ffbda51:13e55eb2bce:-7fc4" ordering="1" parent="-7ffbda51:13e55eb2bce:-7fc5" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" dataType="UNKNOW_TYPE" id="-7ffbda51:13e55eb2bce:-7f46" ordering="1" parent="-7ffbda51:13e55eb2bce:-7f47" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;rotation=0;spacingLeft=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="-4.0"/></ExplicitInputPort></ExplicitLink><ExplicitLink id="-7ffbda51:13e55eb2bce:-7f42"><mxGeometry as="geometry" height="80.0" width="80.0"><Array as="points" scilabClass=""><mxPoint x="250.0" y="130.0"/><mxPoint x="300.0" y="130.0"/></Array></mxGeometry><mxCell as="parent" id="-7ffbda51:13e55eb2bce:-8000" parent="-7ffbda51:13e55eb2bce:-7fff"/><ExplicitOutputPort as="source" connectable="0" dataType="UNKNOW_TYPE" id="-7ffbda51:13e55eb2bce:-7f45" ordering="1" parent="-7ffbda51:13e55eb2bce:-7f47" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" dataType="REAL_MATRIX" id="-7ffbda51:13e55eb2bce:-7f50" ordering="1" parent="-7ffbda51:13e55eb2bce:-7fdc" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort></ExplicitLink><ExplicitLink id="-7ffbda51:13e55eb2bce:-7f48"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="249.0" y="130.5"/><mxPoint as="targetPoint" x="300.0" y="150.0"/><Array as="points" scilabClass=""><mxPoint x="250.0" y="150.0"/><mxPoint x="300.0" y="150.0"/></Array></mxGeometry><mxCell as="parent" id="-7ffbda51:13e55eb2bce:-8000" parent="-7ffbda51:13e55eb2bce:-7fff"/><ExplicitOutputPort as="source" connectable="0" dataType="UNKNOW_TYPE" id="-7ffbda51:13e55eb2bce:-7f44" ordering="2" parent="-7ffbda51:13e55eb2bce:-7f47" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0" visible="0"><mxGeometry as="geometry" height="8.0" width="8.0" x="7.0" y="-4.0"/></ExplicitOutputPort><ExplicitInputPort as="target" connectable="0" dataType="REAL_MATRIX" id="-7ffbda51:13e55eb2bce:-7f4f" ordering="2" parent="-7ffbda51:13e55eb2bce:-7fdc" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="36.0"/></ExplicitInputPort></ExplicitLink></root></mxGraphModel><mxCell as="defaultParent" id="-7ffbda51:13e55eb2bce:-8000" parent="-7ffbda51:13e55eb2bce:-7fff"/></XcosDiagram>
\ No newline at end of file diff --git a/911/CH3/EX3.7.d/ex_3_7_d.pdf b/911/CH3/EX3.7.d/ex_3_7_d.pdf Binary files differnew file mode 100644 index 000000000..b3c7b155f --- /dev/null +++ b/911/CH3/EX3.7.d/ex_3_7_d.pdf diff --git a/911/CH3/EX3.7.d/ex_3_7_d.sce b/911/CH3/EX3.7.d/ex_3_7_d.sce new file mode 100644 index 000000000..729c68e01 --- /dev/null +++ b/911/CH3/EX3.7.d/ex_3_7_d.sce @@ -0,0 +1,8 @@ +//example 3.7//
+//not using nor//
+clc
+//refreshes all variables//
+clear
+//clears the screen//
+disp('in the figure same input is given to NOR gate on both ends.')
+//result//
\ No newline at end of file diff --git a/911/CH3/EX3.7.d/ex_3_7_d.xcos b/911/CH3/EX3.7.d/ex_3_7_d.xcos new file mode 100644 index 000000000..0e811afde --- /dev/null +++ b/911/CH3/EX3.7.d/ex_3_7_d.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" title="ex_3_7_c"><mxGraphModel as="model"><root><mxCell id="-7ffbda51:13e55eb2bce:-7fff"/><mxCell id="-7ffbda51:13e55eb2bce:-8000" parent="-7ffbda51:13e55eb2bce:-7fff"/><BasicBlock dependsOnU="1" id="-7ffbda51:13e55eb2bce:-7fdc" interfaceFunctionName="LOGICAL_OP" parent="-7ffbda51:13e55eb2bce:-8000" simulationFunctionName="logicalop" simulationFunctionType="C_OR_FORTRAN" style="LOGICAL_OP"><ScilabString as="exprs" height="4" width="1"><data column="0" line="0" value="2"/><data column="0" line="1" value="3"/><data column="0" line="2" value="1"/><data column="0" line="3" value="0"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" realPart="3.0"/></ScilabDouble><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="60.0" width="90.0" x="300.0" y="110.0"/></BasicBlock><ExplicitOutputPort dataType="REAL_MATRIX" id="-7ffbda51:13e55eb2bce:-7f3e" ordering="1" parent="-7ffbda51:13e55eb2bce:-7fdc" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;spacingRight=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="90.0" y="26.0"/></ExplicitOutputPort><ExplicitInputPort connectable="0" dataType="REAL_MATRIX" id="-7ffbda51:13e55eb2bce:-7f40" ordering="1" parent="-7ffbda51:13e55eb2bce:-7fdc" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="16.0"/></ExplicitInputPort><ExplicitInputPort connectable="0" dataType="REAL_MATRIX" id="-7ffbda51:13e55eb2bce:-7f3f" ordering="2" parent="-7ffbda51:13e55eb2bce:-7fdc" style="ExplicitInputPort;align=center;labelPosition=right;verticalLabelPosition=middle;spacingLeft=5;rotation=0"><mxGeometry as="geometry" height="8.0" width="8.0" x="-8.0" y="36.0"/></ExplicitInputPort><ConstBlock blockType="d" id="-7ffbda51:13e55eb2bce:-7fc5" parent="-7ffbda51:13e55eb2bce:-8000" simulationFunctionType="C_OR_FORTRAN" value="A"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="1" width="1"><data column="0" line="0" realPart="1.0"/></ScilabDouble><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"/><ScilabDouble as="nbZerosCrossing" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><ScilabDouble as="nmode" height="1" width="1"><data column="0" line="0" realPart="0.0"/></ScilabDouble><Array as="oDState" scilabClass="ScilabList"/><Array as="equations" scilabClass="ScilabList"/><mxGeometry as="geometry" height="50.0" width="40.0" x="150.0" y="110.0"/></ConstBlock><ExplicitOutputPort connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="-7ffbda51:13e55eb2bce:-7fc4" ordering="1" parent="-7ffbda51:13e55eb2bce:-7fc5" style="ExplicitOutputPort;align=center;labelPosition=left;verticalLabelPosition=middle;rotation=0;spacingRight=5"><mxGeometry as="geometry" height="8.0" width="8.0" x="40.0" y="16.0"/></ExplicitOutputPort><TextBlock id="-7ffbda51:13e55eb2bce:-7fa1" parent="-7ffbda51:13e55eb2bce:-8000" simulationFunctionType="DEFAULT" value="<html> <head> <style type="text/css"> <!-- body { font-size: 11 pt; 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\ No newline at end of file diff --git a/911/CH3/EX3.7.e/ex_3_7_e.pdf b/911/CH3/EX3.7.e/ex_3_7_e.pdf Binary files differnew file mode 100644 index 000000000..224077d63 --- /dev/null +++ b/911/CH3/EX3.7.e/ex_3_7_e.pdf diff --git a/911/CH3/EX3.7.e/ex_3_7_e.sce b/911/CH3/EX3.7.e/ex_3_7_e.sce new file mode 100644 index 000000000..f8d091539 --- /dev/null +++ b/911/CH3/EX3.7.e/ex_3_7_e.sce @@ -0,0 +1,8 @@ +//example 3.7//
+//not using nor 2 different input//
+clc
+//refreshes all variables//
+clear
+//clears the screen//
+disp('in the figure one input is permanently 0 is given to NOR gate.')
+//result//
\ No newline at end of file diff --git a/911/CH3/EX3.7.e/ex_3_7_e.xcos b/911/CH3/EX3.7.e/ex_3_7_e.xcos new file mode 100644 index 000000000..237fd49d4 --- /dev/null +++ b/911/CH3/EX3.7.e/ex_3_7_e.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" title="ex_3_7_e"><mxGraphModel as="model"><root><mxCell id="-7ffbda51:13e55eb2bce:-7fff"/><mxCell id="-7ffbda51:13e55eb2bce:-8000" parent="-7ffbda51:13e55eb2bce:-7fff"/><ConstBlock blockType="d" id="-7ffbda51:13e55eb2bce:-7fc5" parent="-7ffbda51:13e55eb2bce:-8000" simulationFunctionType="C_OR_FORTRAN" style="CONST_m;flip=false;mirror=false" value="0"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="0"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" width="0"/><Array as="objectsParameters" scilabClass="ScilabList"><ScilabDouble height="1" width="1"><data column="0" line="0" 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\ No newline at end of file diff --git a/911/CH3/EX3.8/ex_3_8.pdf b/911/CH3/EX3.8/ex_3_8.pdf Binary files differnew file mode 100644 index 000000000..6e9bdc027 --- /dev/null +++ b/911/CH3/EX3.8/ex_3_8.pdf diff --git a/911/CH3/EX3.8/ex_3_8.sce b/911/CH3/EX3.8/ex_3_8.sce new file mode 100644 index 000000000..6b27f13cb --- /dev/null +++ b/911/CH3/EX3.8/ex_3_8.sce @@ -0,0 +1,8 @@ +//example 3.8//
+//not using nor 2 different input//
+clc
+//refreshes all variables//
+clear
+//clears the screen//
+disp('The first two EX-NOR gates implement a two input EX-OR gate using two input EX-NOR gates. The second EX-NOR gate here has been wired as a NOT circuit. The output of the second gate and the third input are fed to the two inputs of the third EX-NOR gates.')
+//result//
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\ No newline at end of file diff --git a/911/CH3/EX3.9/ex_3_9.pdf b/911/CH3/EX3.9/ex_3_9.pdf Binary files differnew file mode 100644 index 000000000..b5f2eb49c --- /dev/null +++ b/911/CH3/EX3.9/ex_3_9.pdf diff --git a/911/CH3/EX3.9/ex_3_9.sce b/911/CH3/EX3.9/ex_3_9.sce new file mode 100644 index 000000000..84a252f6f --- /dev/null +++ b/911/CH3/EX3.9/ex_3_9.sce @@ -0,0 +1,7 @@ +//example 3.9//
+clc
+//refreshes all variables//
+clear
+//clears the screen//
+disp('Since all the other inputs are permanently tied to logic 1 level, a logic 0 at the inhibit input would produce a logic 1 at the output and a logic 1 at the inhibit input would produce a logic 0 at the output.')
+//result//
\ No newline at end of file diff --git a/911/CH3/EX3.9/ex_3_9.xcos b/911/CH3/EX3.9/ex_3_9.xcos new file mode 100644 index 000000000..5d1f90893 --- /dev/null +++ b/911/CH3/EX3.9/ex_3_9.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1"><mxGraphModel as="model"><root><mxCell id="27e9a6ac:13e572af46a:-7fff"/><mxCell id="27e9a6ac:13e572af46a:-8000" parent="27e9a6ac:13e572af46a:-7fff"/><BasicBlock dependsOnU="1" id="27e9a6ac:13e572af46a:-7fdc" interfaceFunctionName="LOGICAL_OP" parent="27e9a6ac:13e572af46a:-8000" simulationFunctionName="logicalop" simulationFunctionType="C_OR_FORTRAN" style="LOGICAL_OP"><ScilabString as="exprs" height="4" width="1"><data column="0" line="0" value="4"/><data column="0" line="1" value="0"/><data column="0" line="2" value="1"/><data column="0" line="3" value="0"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" 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\ No newline at end of file diff --git a/911/CH4/EX4.1.a/ex_4_1_a.pdf b/911/CH4/EX4.1.a/ex_4_1_a.pdf Binary files differnew file mode 100644 index 000000000..00c517c51 --- /dev/null +++ b/911/CH4/EX4.1.a/ex_4_1_a.pdf diff --git a/911/CH4/EX4.1.a/ex_4_1_a.sce b/911/CH4/EX4.1.a/ex_4_1_a.sce new file mode 100644 index 000000000..c17cba077 --- /dev/null +++ b/911/CH4/EX4.1.a/ex_4_1_a.sce @@ -0,0 +1,35 @@ +//example 4.1(a)//
+//the average power dissipation of a single NAND gate//
+clc
+//clears the variables//
+clear
+//clears the screen//
+//given//
+a=0.4
+//I(oh)max in mA//
+b=2.7
+//V(oh) min in V//
+c=2
+//V(ih) min in V//
+d=.8
+//V(il)max in V//
+e=.4
+//V(ol) max in V//
+f=8
+//I(ol)max in mA//
+g=.4
+//I(il)max in mA//
+h=20
+//I(ih) max in micro amp//
+i=1.6
+//I(cch)max in mA//
+j=4.4
+//I(ccl)max in mA//
+t=15
+//t(pLH)=t(pHL) in mA//
+disp('average supply current = ')
+s=(i+j)/2;
+u=5*s/4;
+disp('mA',s)
+disp('average power dissipation for one gate (in mW) is: ')
+disp(u)
\ No newline at end of file diff --git a/911/CH4/EX4.1.b/ex_4_1_b.pdf b/911/CH4/EX4.1.b/ex_4_1_b.pdf Binary files differnew file mode 100644 index 000000000..d0a28f954 --- /dev/null +++ b/911/CH4/EX4.1.b/ex_4_1_b.pdf diff --git a/911/CH4/EX4.1.b/ex_4_1_b.sce b/911/CH4/EX4.1.b/ex_4_1_b.sce new file mode 100644 index 000000000..4a5e95714 --- /dev/null +++ b/911/CH4/EX4.1.b/ex_4_1_b.sce @@ -0,0 +1,31 @@ +//example 4.1(b)//
+//the maximum average propagation delay of a single gate//
+clc
+//clears the variables//
+clear
+//clears the screen//
+//given//
+a=0.4
+//I(oh)max in mA//
+b=2.7
+//V(oh) min in V//
+c=2
+//V(ih) min in V//
+d=.8
+//V(il)max in V//
+e=.4
+//V(ol) max in V//
+f=8
+//I(ol)max in mA//
+g=.4
+//I(il)max in mA//
+h=20
+//I(ih) max in micro amp//
+i=1.6
+//I(cch)max in mA//
+j=4.4
+//I(ccl)max in mA//
+t=15
+//t(pLH)=t(pHL) in ns//
+disp('the maximum average propagation delay of a single gate')
+disp('ns',t)
\ No newline at end of file diff --git a/911/CH4/EX4.1.c/ex_4_1_c.pdf b/911/CH4/EX4.1.c/ex_4_1_c.pdf Binary files differnew file mode 100644 index 000000000..16e537594 --- /dev/null +++ b/911/CH4/EX4.1.c/ex_4_1_c.pdf diff --git a/911/CH4/EX4.1.c/ex_4_1_c.sce b/911/CH4/EX4.1.c/ex_4_1_c.sce new file mode 100644 index 000000000..65f769e83 --- /dev/null +++ b/911/CH4/EX4.1.c/ex_4_1_c.sce @@ -0,0 +1,32 @@ +//example 4.1(c)//
+//The HIGH-state noise margin//
+clc
+//clears the variables//
+clear
+//clears the screen//
+//given//
+a=0.4
+//I(oh)max in mA//
+b=2.7
+//V(oh) min in V//
+c=2
+//V(ih) min in V//
+d=.8
+//V(il)max in V//
+e=.4
+//V(ol) max in V//
+f=8
+//I(ol)max in mA//
+g=.4
+//I(il)max in mA//
+h=20
+//I(ih) max in micro amp//
+i=1.6
+//I(cch)max in mA//
+j=4.4
+//I(ccl)max in mA//
+t=15
+//t(pLH)=t(pHL) in ns//
+disp('The HIGH-state noise margin = ')
+s=b-c;
+disp('V',s)
\ No newline at end of file diff --git a/911/CH4/EX4.1.d/ex_4_1_d.pdf b/911/CH4/EX4.1.d/ex_4_1_d.pdf Binary files differnew file mode 100644 index 000000000..6480e35d7 --- /dev/null +++ b/911/CH4/EX4.1.d/ex_4_1_d.pdf diff --git a/911/CH4/EX4.1.d/ex_4_1_d.sce b/911/CH4/EX4.1.d/ex_4_1_d.sce new file mode 100644 index 000000000..668b85948 --- /dev/null +++ b/911/CH4/EX4.1.d/ex_4_1_d.sce @@ -0,0 +1,32 @@ +//example 4.1(d)//
+//The LOW-state noise margin//
+clc
+//clears the variables//
+clear
+//clears the screen//
+//given//
+a=0.4
+//I(oh)max in mA//
+b=2.7
+//V(oh) min in V//
+c=2
+//V(ih) min in V//
+d=.8
+//V(il)max in V//
+e=.4
+//V(ol) max in V//
+f=8
+//I(ol)max in mA//
+g=.4
+//I(il)max in mA//
+h=20
+//I(ih) max in micro amp//
+i=1.6
+//I(cch)max in mA//
+j=4.4
+//I(ccl)max in mA//
+t=15
+//t(pLH)=t(pHL) in ns//
+disp('The LOW-state noise margin = ')
+s=d-e;
+disp('V',s)
\ No newline at end of file diff --git a/911/CH4/EX4.2/ex_4_2.pdf b/911/CH4/EX4.2/ex_4_2.pdf Binary files differnew file mode 100644 index 000000000..8c5b58f47 --- /dev/null +++ b/911/CH4/EX4.2/ex_4_2.pdf diff --git a/911/CH4/EX4.2/ex_4_2.sce b/911/CH4/EX4.2/ex_4_2.sce new file mode 100644 index 000000000..76ba5754a --- /dev/null +++ b/911/CH4/EX4.2/ex_4_2.sce @@ -0,0 +1,37 @@ +//example 4.2//
+//How many NAND gate inputs can be driven from the output of a NAND gate of this type//
+clc
+//clears the variables//
+clear
+//clears the screen//
+//given//
+a=0.4
+//I(oh)max in mA//
+b=2.7
+//V(oh) min in V//
+c=2
+//V(ih) min in V//
+d=.8
+//V(il)max in V//
+e=.4
+//V(ol) max in V//
+f=8
+//I(ol)max in mA//
+g=.4
+//I(il)max in mA//
+h=20
+//I(ih) max in micro amp//
+i=1.6
+//I(cch)max in mA//
+j=4.4
+//I(ccl)max in mA//
+t=15
+//t(pLH)=t(pHL) in ns//
+disp('This figure is given by the worst-case fan-out specification of the device')
+s=a*1000/h;
+disp(s,'the HIGH-state fan-out=')
+u=f/g;
+disp(u,'LOW-state fan-out=')
+z=min(s,u);
+disp('Therefore, the number of inputs that can be driven from a single output =')
+disp('V',z)
\ No newline at end of file diff --git a/911/CH4/EX4.3/ex_4_3.pdf b/911/CH4/EX4.3/ex_4_3.pdf Binary files differnew file mode 100644 index 000000000..feaf8af4b --- /dev/null +++ b/911/CH4/EX4.3/ex_4_3.pdf diff --git a/911/CH4/EX4.3/ex_4_3.sce b/911/CH4/EX4.3/ex_4_3.sce new file mode 100644 index 000000000..73dd8a86e --- /dev/null +++ b/911/CH4/EX4.3/ex_4_3.sce @@ -0,0 +1,22 @@ +//example 4.3//
+//Determine the fan-out of IC 74LS04//
+clc
+//clears the variables//
+clear
+//clears the screen//
+a=.5;
+//input loading factor(high state) in UL//
+b=.25;
+//input loading factor(low state) in UL//
+c=10;
+//output loading factor(high state) in UL//
+d=5;
+//output loading factor(low state) in UL//
+disp('The HIGH-state fan-out can be computed from: fan-out=output loading factor (HIGH)/input loading factor (HIGH)')
+s=c/a;
+disp(s,'=')
+disp('The LOW-state fan-out can be computed from: fan-out = output loading factor (LOW)/input loading factor (LOW)')
+u=d/b;
+disp(u,'=')
+z=min(s,u)
+disp(z,'fan-out')
\ No newline at end of file diff --git a/911/CH4/EX4.4.a/ex_4_4_a.pdf b/911/CH4/EX4.4.a/ex_4_4_a.pdf Binary files differnew file mode 100644 index 000000000..34b9eaf7c --- /dev/null +++ b/911/CH4/EX4.4.a/ex_4_4_a.pdf diff --git a/911/CH4/EX4.4.a/ex_4_4_a.sce b/911/CH4/EX4.4.a/ex_4_4_a.sce new file mode 100644 index 000000000..d4ac15a84 --- /dev/null +++ b/911/CH4/EX4.4.a/ex_4_4_a.sce @@ -0,0 +1,20 @@ +//example 4.4(a)//
+//The input loading factor (HIGH state) in TTL//
+clc
+//clears the variables//
+clear
+//clears the screen//
+a=20
+//I(ih) in micro A//
+b=.1
+//I(il) in mA//
+c=.4
+//I(oh) in mA//
+d=4
+//I(OL) in mA//
+e=1.6
+//UL (low state) in mA//
+f=40
+//UL (high state) in micro Amp//
+s=a/f;
+disp(s,'The input loading factor (HIGH state) = ')
\ No newline at end of file diff --git a/911/CH4/EX4.4.b/ex_4_4_b.pdf b/911/CH4/EX4.4.b/ex_4_4_b.pdf Binary files differnew file mode 100644 index 000000000..3958bf691 --- /dev/null +++ b/911/CH4/EX4.4.b/ex_4_4_b.pdf diff --git a/911/CH4/EX4.4.b/ex_4_4_b.sce b/911/CH4/EX4.4.b/ex_4_4_b.sce new file mode 100644 index 000000000..c127c0a6b --- /dev/null +++ b/911/CH4/EX4.4.b/ex_4_4_b.sce @@ -0,0 +1,20 @@ +//example 4.4(b)//
+//The input loading factor (LOW state) in TTL//
+clc
+//clears the variables//
+clear
+//clears the screen//
+a=20
+//I(ih) in micro A//
+b=.1
+//I(il) in mA//
+c=.4
+//I(oh) in mA//
+d=4
+//I(OL) in mA//
+e=1.6
+//UL (low state) in mA//
+f=40
+//UL (high state) in micro Amp//
+s=b/e;
+disp(s,'The input loading factor (LOW state) = ')
\ No newline at end of file diff --git a/911/CH4/EX4.4.c/ex_4_4_c.pdf b/911/CH4/EX4.4.c/ex_4_4_c.pdf Binary files differnew file mode 100644 index 000000000..021982487 --- /dev/null +++ b/911/CH4/EX4.4.c/ex_4_4_c.pdf diff --git a/911/CH4/EX4.4.c/ex_4_4_c.sce b/911/CH4/EX4.4.c/ex_4_4_c.sce new file mode 100644 index 000000000..d1f4fb166 --- /dev/null +++ b/911/CH4/EX4.4.c/ex_4_4_c.sce @@ -0,0 +1,20 @@ +//example 4.4(c)//
+//The output loading factor (HIGH state) in TTL//
+clc
+//clears the variables//
+clear
+//clears the screen//
+a=20
+//I(ih) in micro A//
+b=.1
+//I(il) in mA//
+c=.4
+//I(oh) in mA//
+d=4
+//I(OL) in mA//
+e=1.6
+//UL (low state) in mA//
+f=40
+//UL (high state) in micro Amp//
+s=c*1000/f;
+disp(s,'The output loading factor (HIGH state) = ')
\ No newline at end of file diff --git a/911/CH4/EX4.4.d/ex_4_4_d.pdf b/911/CH4/EX4.4.d/ex_4_4_d.pdf Binary files differnew file mode 100644 index 000000000..7a9c15e1e --- /dev/null +++ b/911/CH4/EX4.4.d/ex_4_4_d.pdf diff --git a/911/CH4/EX4.4.d/ex_4_4_d.sce b/911/CH4/EX4.4.d/ex_4_4_d.sce new file mode 100644 index 000000000..b61d13c9f --- /dev/null +++ b/911/CH4/EX4.4.d/ex_4_4_d.sce @@ -0,0 +1,20 @@ +//example 4.4(d)//
+//The output loading factor (LOW state) in TTL//
+clc
+//clears the variables//
+clear
+//clears the screen//
+a=20
+//I(ih) in micro A//
+b=.1
+//I(il) in mA//
+c=.4
+//I(oh) in mA//
+d=4
+//I(OL) in mA//
+e=1.6
+//UL (low state) in mA//
+f=40
+//UL (high state) in micro Amp//
+s=d/e;
+disp(s,'The output loading factor (LOW state) = ')
\ No newline at end of file diff --git a/911/CH4/EX4.5.a/ex_4_5.sce b/911/CH4/EX4.5.a/ex_4_5.sce new file mode 100644 index 000000000..ed5f76ed1 --- /dev/null +++ b/911/CH4/EX4.5.a/ex_4_5.sce @@ -0,0 +1,10 @@ +//example 4.5//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+a=40;
+//when output is HIGH, inputs of all gates draw current individually//
+i=7*a;
+//input loading factor//
+disp(i,'current being sourced when output is high (in microA) = ')
\ No newline at end of file diff --git a/911/CH4/EX4.5.a/ex_4_5_a.pdf b/911/CH4/EX4.5.a/ex_4_5_a.pdf Binary files differnew file mode 100644 index 000000000..d4363be64 --- /dev/null +++ b/911/CH4/EX4.5.a/ex_4_5_a.pdf diff --git a/911/CH4/EX4.5.b/ex_4_5.pdf b/911/CH4/EX4.5.b/ex_4_5.pdf Binary files differnew file mode 100644 index 000000000..dace59db0 --- /dev/null +++ b/911/CH4/EX4.5.b/ex_4_5.pdf diff --git a/911/CH4/EX4.5.b/ex_4_5_b.sce b/911/CH4/EX4.5.b/ex_4_5_b.sce new file mode 100644 index 000000000..418b38906 --- /dev/null +++ b/911/CH4/EX4.5.b/ex_4_5_b.sce @@ -0,0 +1,10 @@ +//example 4.5//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+a=1.6;
+//when output is LOW, inputs of all gates draw current individually//
+i=5*a;
+//input loading factor//
+disp(i,'current being sourced when output is high (in mA) = ')
\ No newline at end of file diff --git a/911/CH5/EX5.1.a/ex_5_1_a.pdf b/911/CH5/EX5.1.a/ex_5_1_a.pdf Binary files differnew file mode 100644 index 000000000..6cb7f464c --- /dev/null +++ b/911/CH5/EX5.1.a/ex_5_1_a.pdf diff --git a/911/CH5/EX5.1.a/ex_5_1_a.sce b/911/CH5/EX5.1.a/ex_5_1_a.sce new file mode 100644 index 000000000..7dfbbbb1c --- /dev/null +++ b/911/CH5/EX5.1.a/ex_5_1_a.sce @@ -0,0 +1,9 @@ +// example 5.1//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+disp("we can DUAL the given equation as : ");
+disp('X= AB''+BC''+CD''' );
+disp(' Therefore, SO X'' = (A+B'')(B+C'')(C+D'')' );
+disp('this says that output Y=X''=(A+B'')(B+C'')(C+D'')' );
\ No newline at end of file diff --git a/911/CH5/EX5.1.b/ex_5_1_b.pdf b/911/CH5/EX5.1.b/ex_5_1_b.pdf Binary files differnew file mode 100644 index 000000000..1446f8462 --- /dev/null +++ b/911/CH5/EX5.1.b/ex_5_1_b.pdf diff --git a/911/CH5/EX5.1.b/ex_5_1_b.sce b/911/CH5/EX5.1.b/ex_5_1_b.sce new file mode 100644 index 000000000..82615ef93 --- /dev/null +++ b/911/CH5/EX5.1.b/ex_5_1_b.sce @@ -0,0 +1,9 @@ +// example 5.1.B//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+disp("we can DUAL the given equation as : ");
+disp('X= [(A.B''+C'').D+E''].F' );
+disp(' Therefore, SO X'' = [(A''B).C+D''].E+F''' );
+disp('this says that output Y=[(A''B).C+D''].E+F'')' );
\ No newline at end of file diff --git a/911/CH5/EX5.11.a/ex_5_11_a.pdf b/911/CH5/EX5.11.a/ex_5_11_a.pdf Binary files differnew file mode 100644 index 000000000..b90756b00 --- /dev/null +++ b/911/CH5/EX5.11.a/ex_5_11_a.pdf diff --git a/911/CH5/EX5.11.a/ex_5_11_a1.sce b/911/CH5/EX5.11.a/ex_5_11_a1.sce new file mode 100644 index 000000000..d15c48ac0 --- /dev/null +++ b/911/CH5/EX5.11.a/ex_5_11_a1.sce @@ -0,0 +1,28 @@ +// example 5.11(a)//
+clc
+clear ;
+disp ('Given the truthtable has high output for following conditons : ' );
+a =[1 0 0 0; 1 1 0 1 ;1 1 0 0 ; 1 0 0 0 ]
+//given input conditions for which output is high//
+disp (a)
+for (i =1:4)
+if a(i ,1) ==1 then
+b(i ,1)= 'A'
+else
+b(i ,1)= 'A^ '
+end
+if a(i ,2) ==1 then
+b(i ,2)= 'B '
+else
+b(i ,2)= 'B^ '
+end
+if a(i ,3) ==1 then
+b(i ,3)= 'C '
+else
+b(i ,3)= 'C^ '
+end
+end
+disp ( 'When you OR these products you get : ' )
+//displaying sum of products
+x= strcat ([b(1 ,1) '+' b(3 ,3) ]);
+disp (x)
\ No newline at end of file diff --git a/911/CH5/EX5.11.b/ex_5_11_b.pdf b/911/CH5/EX5.11.b/ex_5_11_b.pdf Binary files differnew file mode 100644 index 000000000..f845b4550 --- /dev/null +++ b/911/CH5/EX5.11.b/ex_5_11_b.pdf diff --git a/911/CH5/EX5.11.b/ex_5_11_b.sce b/911/CH5/EX5.11.b/ex_5_11_b.sce new file mode 100644 index 000000000..fb7cfaebe --- /dev/null +++ b/911/CH5/EX5.11.b/ex_5_11_b.sce @@ -0,0 +1,30 @@ +//example 5.11(b)//
+clc ;
+clear ;
+disp ( ' Given the truthtable has high output for following conditons : ' );
+a =[1 0 0 0; 1 1 0 1 ;1 1 0 0 ; 1 0 0 0 ]
+// given truthtable//
+disp (a)
+for (i =1:3)
+ //finding the terms i n pos
+if a(i ,1) ==0 then
+b(i ,1)= 'A'
+else
+b(i ,1)= 'A^ '
+end
+if a(i ,2) ==0 then
+b(i ,2)= 'B '
+else
+b(i ,2)= 'B^ '
+end
+if a(i ,3) ==0 then
+b(i ,3)= 'C '
+else
+b(i ,3)= 'C^ '
+end
+end
+disp (b)
+disp ( 'The product of sums equation is : ' )
+//displaying the POS//
+x= strcat ([ " ( " b(1 ,1) " + " b(1 ,3) " ) " ]);
+disp (x)
\ No newline at end of file diff --git a/911/CH5/EX5.12.a/ex_5_12.sce b/911/CH5/EX5.12.a/ex_5_12.sce new file mode 100644 index 000000000..d44ce460c --- /dev/null +++ b/911/CH5/EX5.12.a/ex_5_12.sce @@ -0,0 +1,155 @@ +//3 vARIABLE KMAP//
+ clc
+ clear
+ function bi = kmap3abx (k)
+ n =4;
+ m=2
+
+ // k=[0 0 0 1 ; 0 1 1 1 ] ;
+ k(: ,: ,2)= zeros (m,n);
+ var =['x' 'A' 'B ' ];
+ // var =[ 'w' ' x ' ' y ' ' z ' ] ;
+ p1 =[ ' x ' ' ' ' x ' ];
+ p2 =[ 'A''B ''' ; 'A''B' ; 'AB' ; 'AB''' ];
+ cmn4 =4;
+ cmn2 =2;
+ temp =1;
+ // p r i n t f ( ' The minimal eXpression of the given Kmap ' ) ;
+ disp (k(: ,: ,1));
+ // disp (" i s : " ) ;
+ //printf( ' f ' ) ;
+ //printf("=") ;
+ bi = ' ' ;
+ // 8 c e l l s
+ for i =1: m
+ for j=1: n
+ if(k(i,j) ~=1 & k(i,j) ~=2)
+ temp =0;
+ break ;
+ end
+ end
+ end
+ if( temp ==1)
+ bi = strcat ([ bi " 1 " ]);
+ return ;
+ end
+ // 4 c e l l s
+ z1= ones (1 ,4);
+ z2= ones (4 ,1);
+ z3= ones (2 ,2);
+ temp1 =[ ' 0 ' ' 1 ' ];
+ temp2 =[ ' 00 ' ; ' 01 ' ; ' 11 ' ; ' 10 ' ];
+ for t =1: m
+ z=k(t ,: ,1);
+ no= noof (k(t ,: ,2));
+ if( noof0 (z) ==0 & no < cmn4 & noof (z) >0)
+ k(t ,: ,2)=z1;
+ a= strsplit ( temp1 (1,t));
+ for in =1: max ( size (a))
+ if(a(in)== ' 0 ' )
+ bi = strcat ([ bi var (in) ' ' ' ']);
+ end
+ if(a(in)== ' 1 ' )
+ bi = strcat ([ bi var (in)]);
+ end
+ end
+ bi = strcat ([ bi " + " ]);
+ end
+ end
+ for i =1:m -1
+ for j=1: n
+ t1=i+1;
+ if(j==n)
+ t2 =1;
+ else
+ t2=j+1;
+ end
+ z4 =[k(i,j ,1) k(i,t2 ,1);k(t1 ,j ,1) k(t1 ,t2,1) ];
+ z5 =[k(i,j ,2) k(i,t2 ,2);k(t1 ,j ,2) k(t1 ,t2,2) ];
+ no= noof (z5);
+ if( noof0 (z4)==0 & no < cmn4 & noof (z4) >0)
+ k(i,j ,2) =1;
+ k(i,t2 ,2) =1;
+ k(t1 ,j ,2) =1;
+ k(t1 ,t2 ,2) =1;
+ a= strsplit ( temp2 (j ,1) );
+ b= strsplit ( temp2 (t2 ,1) );
+ c= strcmp (a,b);
+ for in =1: max ( size (c))
+ if(c(in) ==0 & a(in)== ' 0 ' )
+ bi = strcat ([ bi var (1+ in) ' '' ' ]);
+ end
+ if(c(in) ==0 & a(in)== ' 1 ' )
+ bi = strcat ([ bi var (1+ in)]);
+ end
+ end
+ bi = strcat ([ bi " + " ]);
+ end
+ end
+ end
+// 2 c e l l s
+z6 =[1 1];
+ z7=z6';
+ for i =1: m
+ for j=1: n
+ t1=i+1;
+ if(j==n)
+ t2 =1;
+ else
+ t2=j+1;
+ end
+ z8 =[k(i,j ,1) k(i,t2 ,1) ];
+ z9 =[k(i,j ,2) k(i,t2 ,2) ];
+ no1 = noof (z9);
+ if( noof0 (z8)==0 & no1 < cmn2 & noof (z8) >0)
+ k(i,j ,2) =1;
+ k(i,t2 ,2) =1;
+ bi = strcat ([ bi p1(1,i)]);
+ a= strsplit ( temp2 (j ,1) );
+ b= strsplit ( temp2 (t2 ,1) );
+ c= strcmp (a,b);
+ for in =1: max ( size (c))
+ if(c(in) ==0 & a(in)== ' 0 ' )
+ bi = strcat ([ bi var (1+ in) ' '' ' ]);
+ bi = strcat ([ bi " + " ]);
+ end
+ if(c(in) ==0 & a(in)== ' 1 ' )
+ bi = strcat ([ bi var (1+ in)]);
+ bi = strcat ([ bi " + " ]);
+ end
+ end
+ end
+ end
+ end
+ for i =1:m -1
+ for j=1: n
+ t1=i+1;
+ if(j==n)
+t2 =1;
+ else
+ t2=j+1;
+ end
+z10 =[k(i,j ,1) ;k(t1 ,j ,1) ];
+ z11 =[k(i,j ,2) ;k(t1 ,j ,2) ];
+ no2 = noof ( z11 );
+if( noof0 ( z10 )==0 & no2 < cmn2 & noof ( z10 )>0) k(i,j ,2) =1;
+ k(t1 ,j ,2) =1;
+ bi = strcat ([ bi p2(j ,1) ]);
+ bi = strcat ([ bi " + " ]);
+ end
+ end
+ end
+ //single cell//
+ for i =1: m
+ for j=1: n
+ if(k(i,j ,2) ==0 & k(i,j ,1) ==1)
+ bi = strcat ([ bi p1(1,i)]);
+ bi = strcat ([ bi p2(j ,1) ]);
+ bi = strcat ([ bi " + " ]);
+ end
+ end
+ end
+ bi = strcat ([ bi " 0 " ]);
+ //disp(" ")
+endfunction
+disp('Y1=B''C''+A''C''+ABC')
\ No newline at end of file diff --git a/911/CH5/EX5.12.a/ex_5_12_a.pdf b/911/CH5/EX5.12.a/ex_5_12_a.pdf Binary files differnew file mode 100644 index 000000000..9a299f98d --- /dev/null +++ b/911/CH5/EX5.12.a/ex_5_12_a.pdf diff --git a/911/CH5/EX5.12.b/ex_5_12_B.sce b/911/CH5/EX5.12.b/ex_5_12_B.sce new file mode 100644 index 000000000..befad1852 --- /dev/null +++ b/911/CH5/EX5.12.b/ex_5_12_B.sce @@ -0,0 +1,155 @@ +//3 vARIABLE KMAP//
+ clc
+ clear
+ function bi = kmap3abx (k)
+ n =4;
+ m=2
+
+ // k=[0 0 0 1 ; 0 1 1 1 ] ;
+ k(: ,: ,2)= zeros (m,n);
+ var =['x' 'A' 'B ' ];
+ // var =[ 'w' ' x ' ' y ' ' z ' ] ;
+ p1 =[ ' x ' ' ' ' x ' ];
+ p2 =[ 'A''B ''' ; 'A''B' ; 'AB' ; 'AB''' ];
+ cmn4 =4;
+ cmn2 =2;
+ temp =1;
+ // p r i n t f ( ' The minimal eXpression of the given Kmap ' ) ;
+ disp (k(: ,: ,1));
+ // disp (" i s : " ) ;
+ //printf( ' f ' ) ;
+ //printf("=") ;
+ bi = ' ' ;
+ // 8 c e l l s
+ for i =1: m
+ for j=1: n
+ if(k(i,j) ~=1 & k(i,j) ~=2)
+ temp =0;
+ break ;
+ end
+ end
+ end
+ if( temp ==1)
+ bi = strcat ([ bi " 1 " ]);
+ return ;
+ end
+ // 4 c e l l s
+ z1= ones (1 ,4);
+ z2= ones (4 ,1);
+ z3= ones (2 ,2);
+ temp1 =[ ' 0 ' ' 1 ' ];
+ temp2 =[ ' 00 ' ; ' 01 ' ; ' 11 ' ; ' 10 ' ];
+ for t =1: m
+ z=k(t ,: ,1);
+ no= noof (k(t ,: ,2));
+ if( noof0 (z) ==0 & no < cmn4 & noof (z) >0)
+ k(t ,: ,2)=z1;
+ a= strsplit ( temp1 (1,t));
+ for in =1: max ( size (a))
+ if(a(in)== ' 0 ' )
+ bi = strcat ([ bi var (in) ' ' ' ']);
+ end
+ if(a(in)== ' 1 ' )
+ bi = strcat ([ bi var (in)]);
+ end
+ end
+ bi = strcat ([ bi " + " ]);
+ end
+ end
+ for i =1:m -1
+ for j=1: n
+ t1=i+1;
+ if(j==n)
+ t2 =1;
+ else
+ t2=j+1;
+ end
+ z4 =[k(i,j ,1) k(i,t2 ,1);k(t1 ,j ,1) k(t1 ,t2,1) ];
+ z5 =[k(i,j ,2) k(i,t2 ,2);k(t1 ,j ,2) k(t1 ,t2,2) ];
+ no= noof (z5);
+ if( noof0 (z4)==0 & no < cmn4 & noof (z4) >0)
+ k(i,j ,2) =1;
+ k(i,t2 ,2) =1;
+ k(t1 ,j ,2) =1;
+ k(t1 ,t2 ,2) =1;
+ a= strsplit ( temp2 (j ,1) );
+ b= strsplit ( temp2 (t2 ,1) );
+ c= strcmp (a,b);
+ for in =1: max ( size (c))
+ if(c(in) ==0 & a(in)== ' 0 ' )
+ bi = strcat ([ bi var (1+ in) ' '' ' ]);
+ end
+ if(c(in) ==0 & a(in)== ' 1 ' )
+ bi = strcat ([ bi var (1+ in)]);
+ end
+ end
+ bi = strcat ([ bi " + " ]);
+ end
+ end
+ end
+// 2 c e l l s
+z6 =[1 1];
+ z7=z6';
+ for i =1: m
+ for j=1: n
+ t1=i+1;
+ if(j==n)
+ t2 =1;
+ else
+ t2=j+1;
+ end
+ z8 =[k(i,j ,1) k(i,t2 ,1) ];
+ z9 =[k(i,j ,2) k(i,t2 ,2) ];
+ no1 = noof (z9);
+ if( noof0 (z8)==0 & no1 < cmn2 & noof (z8) >0)
+ k(i,j ,2) =1;
+ k(i,t2 ,2) =1;
+ bi = strcat ([ bi p1(1,i)]);
+ a= strsplit ( temp2 (j ,1) );
+ b= strsplit ( temp2 (t2 ,1) );
+ c= strcmp (a,b);
+ for in =1: max ( size (c))
+ if(c(in) ==0 & a(in)== ' 0 ' )
+ bi = strcat ([ bi var (1+ in) ' '' ' ]);
+ bi = strcat ([ bi " + " ]);
+ end
+ if(c(in) ==0 & a(in)== ' 1 ' )
+ bi = strcat ([ bi var (1+ in)]);
+ bi = strcat ([ bi " + " ]);
+ end
+ end
+ end
+ end
+ end
+ for i =1:m -1
+ for j=1: n
+ t1=i+1;
+ if(j==n)
+t2 =1;
+ else
+ t2=j+1;
+ end
+z10 =[k(i,j ,1) ;k(t1 ,j ,1) ];
+ z11 =[k(i,j ,2) ;k(t1 ,j ,2) ];
+ no2 = noof ( z11 );
+if( noof0 ( z10 )==0 & no2 < cmn2 & noof ( z10 )>0) k(i,j ,2) =1;
+ k(t1 ,j ,2) =1;
+ bi = strcat ([ bi p2(j ,1) ]);
+ bi = strcat ([ bi " + " ]);
+ end
+ end
+ end
+ //single cell//
+ for i =1: m
+ for j=1: n
+ if(k(i,j ,2) ==0 & k(i,j ,1) ==1)
+ bi = strcat ([ bi p1(1,i)]);
+ bi = strcat ([ bi p2(j ,1) ]);
+ bi = strcat ([ bi " + " ]);
+ end
+ end
+ end
+ bi = strcat ([ bi " 0 " ]);
+ //disp(" ")
+endfunction
+disp('Y1=AB+A''B''C''+B''C')
\ No newline at end of file diff --git a/911/CH5/EX5.12.b/ex_5_12_b.pdf b/911/CH5/EX5.12.b/ex_5_12_b.pdf Binary files differnew file mode 100644 index 000000000..cb78df81a --- /dev/null +++ b/911/CH5/EX5.12.b/ex_5_12_b.pdf diff --git a/911/CH5/EX5.2/ex_5_2.pdf b/911/CH5/EX5.2/ex_5_2.pdf Binary files differnew file mode 100644 index 000000000..2fe5a9f43 --- /dev/null +++ b/911/CH5/EX5.2/ex_5_2.pdf diff --git a/911/CH5/EX5.2/ex_5_2.sce b/911/CH5/EX5.2/ex_5_2.sce new file mode 100644 index 000000000..86720ee37 --- /dev/null +++ b/911/CH5/EX5.2/ex_5_2.sce @@ -0,0 +1,9 @@ +// example 5.2//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+disp("we can SIMPLIFY the given equation as : ");
+disp('LET X= (A.B+C.D) and Y = (A.B +C.D).[(A''+B'')+(C''+ D'')]' );
+disp(' Therefore, Y = X.X'' = 0' );
+disp('this says that output Y equals to 0' );
\ No newline at end of file diff --git a/911/CH5/EX5.3/ex_5_3.pdf b/911/CH5/EX5.3/ex_5_3.pdf Binary files differnew file mode 100644 index 000000000..730c28e5f --- /dev/null +++ b/911/CH5/EX5.3/ex_5_3.pdf diff --git a/911/CH5/EX5.3/ex_5_3.sce b/911/CH5/EX5.3/ex_5_3.sce new file mode 100644 index 000000000..4a4315ee0 --- /dev/null +++ b/911/CH5/EX5.3/ex_5_3.sce @@ -0,0 +1,9 @@ +// example 5.3//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+disp("we can SIMPLIFY the given equation as : ");
+disp('LET X= [1+L.M+L.M''][(L+M'')(L''.M)+L''.M''.(L+M)]' );
+disp(' Therefore, Y = 0' );
+disp('this says that output Y equals to 0' );
\ No newline at end of file diff --git a/911/CH5/EX5.4/ex_5_4.pdf b/911/CH5/EX5.4/ex_5_4.pdf Binary files differnew file mode 100644 index 000000000..b89a24acf --- /dev/null +++ b/911/CH5/EX5.4/ex_5_4.pdf diff --git a/911/CH5/EX5.4/ex_5_4.sce b/911/CH5/EX5.4/ex_5_4.sce new file mode 100644 index 000000000..c21e3e5f7 --- /dev/null +++ b/911/CH5/EX5.4/ex_5_4.sce @@ -0,0 +1,10 @@ +// example 5.4//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+disp("we can SIMPLIFY the given equation as : ");
+disp('LET X= ABCD+ ABC''D''+ABCD''+ABC''D+ABCDE+ABC''D''E''+ABC''DE' );
+disp('It can further be simplified to: X= ABCD+ ABC''D''+ABCD''+ABC''D')
+disp(' Therefore, Y = AB' )
+disp('this says that output Y equals to AB' );
\ No newline at end of file diff --git a/911/CH5/EX5.5.a/ex_5_5_a.pdf b/911/CH5/EX5.5.a/ex_5_5_a.pdf Binary files differnew file mode 100644 index 000000000..5b9b12952 --- /dev/null +++ b/911/CH5/EX5.5.a/ex_5_5_a.pdf diff --git a/911/CH5/EX5.5.a/ex_5_5_a.sce b/911/CH5/EX5.5.a/ex_5_5_a.sce new file mode 100644 index 000000000..17f427a42 --- /dev/null +++ b/911/CH5/EX5.5.a/ex_5_5_a.sce @@ -0,0 +1,9 @@ +// example 5.5//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+disp("we can SIMPLIFY the given equation as : ");
+disp('LET X= L(M+N'')+L''P''Q = (L+P''Q).(L''+M+N'')' );
+disp('LHS can further be simplified using AB+A''C=(A+C)(A''+B)')
+disp(' Therefore, PROVED ')
\ No newline at end of file diff --git a/911/CH5/EX5.6/ex_5_6.pdf b/911/CH5/EX5.6/ex_5_6.pdf Binary files differnew file mode 100644 index 000000000..b57d8bd4e --- /dev/null +++ b/911/CH5/EX5.6/ex_5_6.pdf diff --git a/911/CH5/EX5.6/ex_5_6.sce b/911/CH5/EX5.6/ex_5_6.sce new file mode 100644 index 000000000..a59b2a6b1 --- /dev/null +++ b/911/CH5/EX5.6/ex_5_6.sce @@ -0,0 +1,10 @@ +// example 5.6//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+disp("we can SIMPLIFY the given equation as : ");
+disp('A+B=(A''''+B'''')[INVOLUTION LAW]' );
+disp(' =(A''.B'')''' )
+disp('[(AA)''.(BB)'']''')
+disp('this says that output Y equals to A+B' );
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\ No newline at end of file diff --git a/911/CH5/EX5.7/ex_5_7.pdf b/911/CH5/EX5.7/ex_5_7.pdf Binary files differnew file mode 100644 index 000000000..72c9546b3 --- /dev/null +++ b/911/CH5/EX5.7/ex_5_7.pdf diff --git a/911/CH5/EX5.7/ex_5_7.sce b/911/CH5/EX5.7/ex_5_7.sce new file mode 100644 index 000000000..5ceea274e --- /dev/null +++ b/911/CH5/EX5.7/ex_5_7.sce @@ -0,0 +1,9 @@ +// example 5.7//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+disp("we can SIMPLIFY the given equation as : ");
+disp('A''B+AB''=((A''B)''''+(AB'')'''')[INVOLUTION LAW]' );
+disp(' ={(A''B)''.(AB'')''}''[DEMORGAN'' LAW]')
+disp('[{B(AB)''}''{A(AB)''}'']''')
\ No newline at end of file diff --git a/911/CH5/EX5.7/ex_5_7.xcos b/911/CH5/EX5.7/ex_5_7.xcos new file mode 100644 index 000000000..da8a81a00 --- /dev/null +++ b/911/CH5/EX5.7/ex_5_7.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1"><mxGraphModel as="model"><root><mxCell id="1aae8988:13e5a4a8e65:-7f89"/><mxCell id="1aae8988:13e5a4a8e65:-7f8a" parent="1aae8988:13e5a4a8e65:-7f89"/><BasicBlock dependsOnU="1" id="1aae8988:13e5a4a8e65:-7f6a" interfaceFunctionName="LOGICAL_OP" parent="1aae8988:13e5a4a8e65:-7f8a" simulationFunctionName="logicalop" simulationFunctionType="C_OR_FORTRAN" style="LOGICAL_OP"><ScilabString as="exprs" height="4" width="1"><data column="0" line="0" value="2"/><data column="0" line="1" value="2"/><data column="0" line="2" value="1"/><data column="0" line="3" value="0"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="1" width="1"><data column="0" line="0" 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\ No newline at end of file diff --git a/911/CH6/EX6.3/ex_6_3.pdf b/911/CH6/EX6.3/ex_6_3.pdf Binary files differnew file mode 100644 index 000000000..9413d4480 --- /dev/null +++ b/911/CH6/EX6.3/ex_6_3.pdf diff --git a/911/CH6/EX6.3/ex_6_3.sce b/911/CH6/EX6.3/ex_6_3.sce new file mode 100644 index 000000000..66e636952 --- /dev/null +++ b/911/CH6/EX6.3/ex_6_3.sce @@ -0,0 +1,7 @@ +//example 6.3//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+disp('Difference output = X''Y+XY''')
+disp('Borrow output = X''Y')
\ No newline at end of file diff --git a/911/CH6/EX6.5/ex_6_5.pdf b/911/CH6/EX6.5/ex_6_5.pdf Binary files differnew file mode 100644 index 000000000..e40edc800 --- /dev/null +++ b/911/CH6/EX6.5/ex_6_5.pdf diff --git a/911/CH6/EX6.5/ex_6_5.sce b/911/CH6/EX6.5/ex_6_5.sce new file mode 100644 index 000000000..4532c15b0 --- /dev/null +++ b/911/CH6/EX6.5/ex_6_5.sce @@ -0,0 +1,7 @@ +//example 6.5//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+disp('X=A''B+AB''')
+disp('Y = AB')
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\ No newline at end of file diff --git a/911/CH6/EX6.6/ex_6_6.pdf b/911/CH6/EX6.6/ex_6_6.pdf Binary files differnew file mode 100644 index 000000000..370d0f10e --- /dev/null +++ b/911/CH6/EX6.6/ex_6_6.pdf diff --git a/911/CH6/EX6.6/ex_6_6.sce b/911/CH6/EX6.6/ex_6_6.sce new file mode 100644 index 000000000..4461304df --- /dev/null +++ b/911/CH6/EX6.6/ex_6_6.sce @@ -0,0 +1,6 @@ +//example 6.6//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+disp('The desired BCD adder is a cascaded arrangement of two stages of the type of BCD adder discussed in the previous pages. It follows the generalised cascaded arrangement for three digit BCD adder. The BCD adder can be used to add four bit BCD equivalents of two single digit decimal numbers. A cascaded arrangement of two such stages where the output C is fed to the CARRY-IN of the second stage. In terms of IC type numbersm IC 7483 can be used for four bit binary adders as shown, IC 7408 can be used for implementing the required four two input AND gates (IC 7408 is a quad two input AND), and IC 7432 can be used to implement the required two three input OR gates. IC 7432 is a quad two-input OR. Two input OR gates can be connected in cascade to get a three-input OR gate.')
\ No newline at end of file diff --git a/911/CH7/EX7.1/EX_7_1.sce b/911/CH7/EX7.1/EX_7_1.sce new file mode 100644 index 000000000..a5735c12b --- /dev/null +++ b/911/CH7/EX7.1/EX_7_1.sce @@ -0,0 +1,9 @@ +//example 7.1//
+clc
+//clears the screen//
+clear
+//clears all variables//
+close
+//closes all other window//
+disp('Given products can be identified by the MUX diagram given. Variable A and B are chosen as selection line. C is given as one of the inputs.')
+disp('Q = A''B''C'' + A''BC + AB''C'' + ABC'' + ABC')
\ No newline at end of file diff --git a/911/CH7/EX7.1/ex_7_1.pdf b/911/CH7/EX7.1/ex_7_1.pdf Binary files differnew file mode 100644 index 000000000..cbd31e3b3 --- /dev/null +++ b/911/CH7/EX7.1/ex_7_1.pdf diff --git a/911/CH7/EX7.1/ex_7_1.xcos b/911/CH7/EX7.1/ex_7_1.xcos new file mode 100644 index 000000000..ee7d1558b --- /dev/null +++ b/911/CH7/EX7.1/ex_7_1.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" title="ex_7_1"><mxGraphModel as="model"><root><mxCell id="-d80c619:13dbc37594a:-7fff"/><mxCell id="-d80c619:13dbc37594a:-8000" parent="-d80c619:13dbc37594a:-7fff"/><ConstBlock blockType="d" id="-d80c619:13dbc37594a:-7fc6" parent="-d80c619:13dbc37594a:-8000" simulationFunctionType="C_OR_FORTRAN" style="CONST_m;flip=false;mirror=false"><ScilabString as="exprs" height="1" width="1"><data column="0" line="0" value="1"/></ScilabString><ScilabDouble as="realParameters" height="0" width="0"/><ScilabDouble as="integerParameters" height="0" 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\ No newline at end of file diff --git a/911/CH7/EX7.10/ex_7_10.pdf b/911/CH7/EX7.10/ex_7_10.pdf Binary files differnew file mode 100644 index 000000000..fad030125 --- /dev/null +++ b/911/CH7/EX7.10/ex_7_10.pdf diff --git a/911/CH7/EX7.10/ex_7_10.sce b/911/CH7/EX7.10/ex_7_10.sce new file mode 100644 index 000000000..b8101d4fc --- /dev/null +++ b/911/CH7/EX7.10/ex_7_10.sce @@ -0,0 +1,7 @@ +//example 7.10//
+clc
+//clears the screen//
+clear
+//clears all variables//
+disp('When the external control input is in the logic LOW state, ABCD=1001. This means output 9 is activated. When the external logic input is in logic HIGH state, ABCD=1111, this means output line 15 is activated.')
+disp('rest is in diagram')
\ No newline at end of file diff --git a/911/CH7/EX7.10/ex_7_10.xcos b/911/CH7/EX7.10/ex_7_10.xcos new file mode 100644 index 000000000..5194cde2e --- /dev/null +++ b/911/CH7/EX7.10/ex_7_10.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" title="ex_7_10"><mxGraphModel as="model"><root><mxCell id="248bd484:13dbd133b6b:-7fff"/><mxCell id="248bd484:13dbd133b6b:-8000" parent="248bd484:13dbd133b6b:-7fff"/><ExplicitLink id="248bd484:13dbd133b6b:-7fbc"><mxGeometry as="geometry"><mxPoint as="sourcePoint" x="74.0" y="220.0"/><mxPoint as="targetPoint" x="140.0" y="220.0"/><Array as="points" scilabClass="ScilabList"><mxPoint x="130.0" y="220.0"/></Array></mxGeometry><mxCell as="parent" id="248bd484:13dbd133b6b:-8000" parent="248bd484:13dbd133b6b:-7fff"/><ExplicitOutputPort as="source" connectable="0" dataColumns="1" dataLines="1" dataType="REAL_MATRIX" id="248bd484:13dbd133b6b:-7fbf" ordering="1" parent="248bd484:13dbd133b6b:-7fc0" 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\ No newline at end of file diff --git a/911/CH7/EX7.3/ex_7_3.pdf b/911/CH7/EX7.3/ex_7_3.pdf Binary files differnew file mode 100644 index 000000000..78942bd0c --- /dev/null +++ b/911/CH7/EX7.3/ex_7_3.pdf diff --git a/911/CH7/EX7.3/ex_7_3.sce b/911/CH7/EX7.3/ex_7_3.sce new file mode 100644 index 000000000..f752cb3fb --- /dev/null +++ b/911/CH7/EX7.3/ex_7_3.sce @@ -0,0 +1,18 @@ +//example 7. 3//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+m (1) =16;
+//taking the given values//
+m (2) = log2 (m (1) )
+//making necessary calculations
+m (3) =m(2) -1;
+m (4) =m(1) /2;
+printf ('A %d-to-1 multiplexer requires ' ,m(1));
+printf( '%d select lines , The lower ',m(2));
+printf ( ' %d select lines choose ',m(3));
+printf ( ' %d-to-1multiplexer outputs. The 2 to 1 multiplexers chooses one of the output of two ' ,m(4));
+printf ( '%d-to-1 multiplexers depending on what appears in the ' ,m(4));
+printf ( ' %dth select line.', m (2) );
+//displaying the result//
\ No newline at end of file diff --git a/911/CH7/EX7.4.a/ex_7_4_a.pdf b/911/CH7/EX7.4.a/ex_7_4_a.pdf Binary files differnew file mode 100644 index 000000000..7a75032ac --- /dev/null +++ b/911/CH7/EX7.4.a/ex_7_4_a.pdf diff --git a/911/CH7/EX7.4.a/ex_7_4_a.sce b/911/CH7/EX7.4.a/ex_7_4_a.sce new file mode 100644 index 000000000..5fb691921 --- /dev/null +++ b/911/CH7/EX7.4.a/ex_7_4_a.sce @@ -0,0 +1,6 @@ +//example 7.4(a)//
+clc
+//clears the screen//
+clear
+//clears all variables//
+disp('Since all inputs are in logic 0 state, it implies that all inputs are active. Since D7 has the highest priority and all inputs and outputs are active when LOW, the output bits are A=0, B=0 and C=0')
\ No newline at end of file diff --git a/911/CH7/EX7.4.b/ex_7_4_b.pdf b/911/CH7/EX7.4.b/ex_7_4_b.pdf Binary files differnew file mode 100644 index 000000000..4347663c6 --- /dev/null +++ b/911/CH7/EX7.4.b/ex_7_4_b.pdf diff --git a/911/CH7/EX7.4.b/ex_7_4_b.sce b/911/CH7/EX7.4.b/ex_7_4_b.sce new file mode 100644 index 000000000..23d4a5ad5 --- /dev/null +++ b/911/CH7/EX7.4.b/ex_7_4_b.sce @@ -0,0 +1,6 @@ +//example 7.4(b)//
+clc
+//clears the screen//
+clear
+//clears all variables//
+disp('Inputs D5 to D7 are the ones that are active; among these, D7 has the highest priority. Therefore, the output bits are A=0, B=0 and C=0')
\ No newline at end of file diff --git a/911/CH7/EX7.4.c/ex_7_4_c.pdf b/911/CH7/EX7.4.c/ex_7_4_c.pdf Binary files differnew file mode 100644 index 000000000..2ca1c8ba1 --- /dev/null +++ b/911/CH7/EX7.4.c/ex_7_4_c.pdf diff --git a/911/CH7/EX7.4.c/ex_7_4_c.sce b/911/CH7/EX7.4.c/ex_7_4_c.sce new file mode 100644 index 000000000..032334dff --- /dev/null +++ b/911/CH7/EX7.4.c/ex_7_4_c.sce @@ -0,0 +1,6 @@ +//example 7.4(c)//
+clc
+//clears the screen//
+clear
+//clears all variables//
+disp('D7 is active. Since D7 has the highest priority, it will be encoded irrespective of the logic status of other inputs. Therefore, the output bits are A=0, B=0 and C=0')
\ No newline at end of file diff --git a/911/CH7/EX7.6/ex_7_6.pdf b/911/CH7/EX7.6/ex_7_6.pdf Binary files differnew file mode 100644 index 000000000..9b6f86f8a --- /dev/null +++ b/911/CH7/EX7.6/ex_7_6.pdf diff --git a/911/CH7/EX7.6/ex_7_6.sce b/911/CH7/EX7.6/ex_7_6.sce new file mode 100644 index 000000000..35e57a68d --- /dev/null +++ b/911/CH7/EX7.6/ex_7_6.sce @@ -0,0 +1,12 @@ +// example 7.6//
+clc
+clear
+n=input('Enter the no. of terms in your expression : ' );
+//accepting input from user//
+for i =1: n
+a(1,i)= input('Enter the term (0-9): ' );
+end
+disp ('Since at the decoder output we get all the minterms we use them to get the required boolean functions by giving the output lines numbered');
+disp(a);
+//displaying the result//
+disp('to a multi-input OR gate.' );
\ No newline at end of file diff --git a/911/CH7/EX7.9.a/ex_7_9_a.pdf b/911/CH7/EX7.9.a/ex_7_9_a.pdf Binary files differnew file mode 100644 index 000000000..7f84a7362 --- /dev/null +++ b/911/CH7/EX7.9.a/ex_7_9_a.pdf diff --git a/911/CH7/EX7.9.a/ex_7_9_a.sce b/911/CH7/EX7.9.a/ex_7_9_a.sce new file mode 100644 index 000000000..31ea71912 --- /dev/null +++ b/911/CH7/EX7.9.a/ex_7_9_a.sce @@ -0,0 +1,23 @@ +// example 7.9(a)//
+clc
+//clears the screen//
+clear
+//clears all variables//
+disp('here ABCD = 1011 and G1''=0 and G2''=0')
+r= input('Enter the value of G1'' (0 or 1) : ' );
+//accepting the inputs from the user//
+t=input('Enter the value of G2'' (0 or 1): ' );
+sel = input ('Enter the values of ABCD : ' );
+strb = bitcmp(bitand (r,t),1);
+if strb ==0 then
+ //checking whether strobe is high or low//
+if sel ==1100 then
+y= 'The two pulses are steered to the Y12 output ' ;
+else
+y= 'The output Y12 remains in the High state ';
+end
+else
+y='The output Y12 remains in the High state ' ;
+end
+disp (y)
+//displaying result//
\ No newline at end of file diff --git a/911/CH7/EX7.9.b/ex_7_9_b.pdf b/911/CH7/EX7.9.b/ex_7_9_b.pdf Binary files differnew file mode 100644 index 000000000..12b799722 --- /dev/null +++ b/911/CH7/EX7.9.b/ex_7_9_b.pdf diff --git a/911/CH7/EX7.9.b/ex_7_9_b.sce b/911/CH7/EX7.9.b/ex_7_9_b.sce new file mode 100644 index 000000000..223249024 --- /dev/null +++ b/911/CH7/EX7.9.b/ex_7_9_b.sce @@ -0,0 +1,23 @@ +// example 7.9(b)//
+clc
+//clears the screen//
+clear
+//clears all variables//
+disp('here ABCD = 1011 and G1''=1 and G2''=1')
+r= input('Enter the value of G1'' (0 or 1) : ' );
+//accepting the inputs from the user//
+t=input('Enter the value of G2'' (0 or 1): ' );
+sel = input ('Enter the values of ABCD : ' );
+strb = bitcmp(bitand (r,t),1);
+if strb ==0 then
+ //checking whether strobe is high or low//
+if sel ==1100 then
+y= 'The two pulses are steered to the Y12 output ' ;
+else
+y= 'The output Y12 remains in the High state ';
+end
+else
+y='The output Y12 remains in the High state ' ;
+end
+disp (y)
+//displaying result//
\ No newline at end of file diff --git a/911/CH7/EX7.9.c/ex_7_9_c.pdf b/911/CH7/EX7.9.c/ex_7_9_c.pdf Binary files differnew file mode 100644 index 000000000..3d8ddb5b8 --- /dev/null +++ b/911/CH7/EX7.9.c/ex_7_9_c.pdf diff --git a/911/CH7/EX7.9.c/ex_7_9_c.sce b/911/CH7/EX7.9.c/ex_7_9_c.sce new file mode 100644 index 000000000..78b45050f --- /dev/null +++ b/911/CH7/EX7.9.c/ex_7_9_c.sce @@ -0,0 +1,23 @@ +// example 7.9(c)//
+clc
+//clears the screen//
+clear
+//clears all variables//
+disp('here ABCD = 0001 and G1''=1 and G2''=1')
+r= input('Enter the value of G1'' (0 or 1) : ' );
+//accepting the inputs from the user//
+t=input('Enter the value of G2'' (0 or 1): ' );
+sel = input ('Enter the values of ABCD : ' );
+strb = bitcmp(bitand (r,t),1);
+if strb ==0 then
+ //checking whether strobe is high or low//
+if sel ==1100 then
+y= 'The two pulses are steered to the Y12 output ' ;
+else
+y= 'The output Y12 remains in the High state ';
+end
+else
+y='The output Y12 remains in the High state ' ;
+end
+disp (y)
+//displaying result//
\ No newline at end of file diff --git a/911/CH8/EX8.1.a/ex_8_1_a.pdf b/911/CH8/EX8.1.a/ex_8_1_a.pdf Binary files differnew file mode 100644 index 000000000..aa542995f --- /dev/null +++ b/911/CH8/EX8.1.a/ex_8_1_a.pdf diff --git a/911/CH8/EX8.1.a/ex_8_1_a.sce b/911/CH8/EX8.1.a/ex_8_1_a.sce new file mode 100644 index 000000000..e0eecdad9 --- /dev/null +++ b/911/CH8/EX8.1.a/ex_8_1_a.sce @@ -0,0 +1,58 @@ +//example 8.1 (a)//
+clear
+//clears the screen//
+clc
+//clears the variable//
+close
+//R =input('Enter the value of the resistance R in Kohms : ')//
+//C =input('Enter the value of the Capacitance C in micro farads : ' ) ;
+sp =input ('Enter the spacing between two input pulses in microseconds: ' );
+R =14.5;
+//taking give values//
+C =0.01;
+t= 693* R*C;
+//calculting time constant//
+tt=t*10;
+p =1;
+len =sp*60 -1;
+q =1;
+for j=1: len
+//plotin the graphs//
+lo = sp *10;
+f= modulo (j,lo);
+if f ==0 then
+inpu (j)=1;
+else
+inpu (j)=0;
+end
+inpu (1) =1;
+o(j)=2;
+end
+while q<len
+result (q) =0;
+q=q+1;
+end
+while p<len
+if inpu (p)==1 then
+for k=1: tt
+result (p+k) =1;
+end
+p=p+tt;
+else
+result (p) =0;
+p=p+1;
+end
+end
+subplot (2 ,1 ,1);
+//ploting bothe graphs in same window//
+plot (o);
+plot ( inpu );
+xlabel ( ' time X10^ô€€€7 seconds ' );
+ylabel ( 'Magnitude ' ) ;
+title ( ' input pulses ' );
+subplot (2 ,1 ,2);
+plot (o);
+plot ( result );
+xlabel ( ' t ime X10^ô€€€7 seconds' );
+ylabel ( 'Magnitude' );
+title ( ' Output ' );
\ No newline at end of file diff --git a/911/CH8/EX8.1.b/ex_8_1_b.pdf b/911/CH8/EX8.1.b/ex_8_1_b.pdf Binary files differnew file mode 100644 index 000000000..a31891ffd --- /dev/null +++ b/911/CH8/EX8.1.b/ex_8_1_b.pdf diff --git a/911/CH8/EX8.1.b/ex_8_1_b.sce b/911/CH8/EX8.1.b/ex_8_1_b.sce new file mode 100644 index 000000000..64282ffd5 --- /dev/null +++ b/911/CH8/EX8.1.b/ex_8_1_b.sce @@ -0,0 +1,11 @@ +//example 8.1(b)//
+clc
+//clears the screen//
+clear
+//clears the variable//
+disp('An astable multivibrator with a 500 Hz symmetrical waveform applied to its RESET terminal is alternatively HIGH and LOW for 1ms. Whem the reset input is low, the output is forced to low state. When the reset input is HIGH, an astable waveform appears at the output. The high period of multivibrator is determined as:')
+r=14.5*1000;
+c=0.01*(10^-6);
+h = .69*r*c;
+disp(h,'high time(s)=')
+disp('The astable output is thus a 5KHz symmetrical waveform. every time the reset terminal goes to HIGH for 1 ms, five cycles of %KHz waveform appear at the output.')
\ No newline at end of file diff --git a/911/CH8/EX8.1.c/ex_8_1_c.pdf b/911/CH8/EX8.1.c/ex_8_1_c.pdf Binary files differnew file mode 100644 index 000000000..80b359562 --- /dev/null +++ b/911/CH8/EX8.1.c/ex_8_1_c.pdf diff --git a/911/CH8/EX8.1.c/ex_8_1_c.sce b/911/CH8/EX8.1.c/ex_8_1_c.sce new file mode 100644 index 000000000..bb39b59f3 --- /dev/null +++ b/911/CH8/EX8.1.c/ex_8_1_c.sce @@ -0,0 +1,11 @@ +//example 8.1(c)//
+clc
+//clears the screen//
+clear
+//clears the variable//
+disp('An astable multivibrator with a 500 Hz symmetrical waveform applied to its RESET terminal is alternatively HIGH and LOW for 1ms. Whem the reset input is low, the output is forced to low state. When the reset input is HIGH, an astable waveform appears at the output. The low period of multivibrator is determined as:')
+r=14.5*1000;
+c=0.01*(10^-6);
+l = .69*r*c;
+disp(l,'low time(s)=')
+disp('The astable output is thus a 5KHz symmetrical waveform. every time the reset terminal goes to HIGH for 1 ms, five cycles of %KHz waveform appear at the output.')
\ No newline at end of file diff --git a/911/CH8/EX8.2.a/ex_8_2_a.pdf b/911/CH8/EX8.2.a/ex_8_2_a.pdf Binary files differnew file mode 100644 index 000000000..3efc33e27 --- /dev/null +++ b/911/CH8/EX8.2.a/ex_8_2_a.pdf diff --git a/911/CH8/EX8.2.a/ex_8_2_a.sce b/911/CH8/EX8.2.a/ex_8_2_a.sce new file mode 100644 index 000000000..23d2fa82d --- /dev/null +++ b/911/CH8/EX8.2.a/ex_8_2_a.sce @@ -0,0 +1,58 @@ +//example 8.2 (a)//
+clear
+//clears the screen//
+clc
+//clears the variable//
+close
+//R =input('Enter the value of the resistance R in Kohms : ')//
+//C =input('Enter the value of the Capacitance C in micro farads : ' ) ;
+sp =input ('Enter the spacing between two input pulses in microseconds: ' );
+R =10;
+//taking give values//
+C =0.01;
+t= 693* R*C;
+//calculting time constant//
+tt=t*10;
+p =1;
+len =sp*60 -1;
+q =1;
+for j=1: len
+//plotin the graphs//
+lo = sp *10;
+f= modulo (j,lo);
+if f ==0 then
+inpu (j)=1;
+else
+inpu (j)=0;
+end
+inpu (1) =1;
+o(j)=2;
+end
+while q<len
+result (q) =0;
+q=q+1;
+end
+while p<len
+if inpu (p)==1 then
+for k=1: tt
+result (p+k) =1;
+end
+p=p+tt;
+else
+result (p) =0;
+p=p+1;
+end
+end
+subplot (2 ,1 ,1);
+//ploting bothe graphs in same window//
+plot (o);
+plot ( inpu );
+xlabel ( ' time X10^ô€€€7 seconds ' );
+ylabel ( 'Magnitude ' ) ;
+title ( ' input pulses ' );
+subplot (2 ,1 ,2);
+plot (o);
+plot ( result );
+xlabel ( ' t ime X10^ô€€€7 seconds' );
+ylabel ( 'Magnitude' );
+title ( ' Output ' );
\ No newline at end of file diff --git a/911/CH8/EX8.2.b/ex_8_2_b.pdf b/911/CH8/EX8.2.b/ex_8_2_b.pdf Binary files differnew file mode 100644 index 000000000..1a5bc2c5f --- /dev/null +++ b/911/CH8/EX8.2.b/ex_8_2_b.pdf diff --git a/911/CH8/EX8.2.b/ex_8_2_b.sce b/911/CH8/EX8.2.b/ex_8_2_b.sce new file mode 100644 index 000000000..528c5a61a --- /dev/null +++ b/911/CH8/EX8.2.b/ex_8_2_b.sce @@ -0,0 +1,20 @@ +//example 8.2(b)//
+//to find frequency of output waveform//
+clc
+//clears the screen//
+clear
+//clears the variables//
+f=10*1000;
+//frequency of trigger waveform in Hertz//
+t=100*(10^-6);
+//time period b/w two successive leading or trailing edges in microseconds//
+r=10*1000;
+//resistance in Ohms//
+C=.01*(10^-6);
+//capacitance in microfarads//
+ep=1.1*r*C;
+disp('the trigger waveform is a symmetrical one; it has HIGH and LOW time periods of 50microsec each. Since the LOW state time period of trigger waveform is less than the expected output pulse width, it can succesfully trigger the monoshot on its trailing edges')
+disp(ep,'expected pulse width=')
+disp('since the time period between two successive trailing edges is 100 microsec and the expected output pulse width is 110 microsec, therefore only alternate trsiling edges of trigger waveform will trigger the monoshot')
+f0=f/2;
+disp(f0,'output frequency')
\ No newline at end of file diff --git a/911/CH8/EX8.2.c/ex_8_2_c.pdf b/911/CH8/EX8.2.c/ex_8_2_c.pdf Binary files differnew file mode 100644 index 000000000..e70a5cdb4 --- /dev/null +++ b/911/CH8/EX8.2.c/ex_8_2_c.pdf diff --git a/911/CH8/EX8.2.c/ex_8_2_c.sce b/911/CH8/EX8.2.c/ex_8_2_c.sce new file mode 100644 index 000000000..5da65386a --- /dev/null +++ b/911/CH8/EX8.2.c/ex_8_2_c.sce @@ -0,0 +1,24 @@ +//example 8.2(b)//
+//to find frequency of output waveform//
+clc
+//clears the screen//
+clear
+//clears the variables//
+f=10*1000;
+//frequency of trigger waveform in Hertz//
+t=100*(10^-6);
+//time period b/w two successive leading or trailing edges in microseconds//
+r=10*1000;
+//resistance in Ohms//
+C=.01*(10^-6);
+//capacitance in microfarads//
+ep=1.1*r*C;
+disp('the trigger waveform is a symmetrical one; it has HIGH and LOW time periods of 50microsec each. Since the LOW state time period of trigger waveform is less than the expected output pulse width, it can succesfully trigger the monoshot on its trailing edges')
+disp(ep,'expected pulse width=')
+disp('since the time period between two successive trailing edges is 100 microsec and the expected output pulse width is 110 microsec, therefore only alternate trsiling edges of trigger waveform will trigger the monoshot')
+f0=f/2;
+disp(f0,'output frequency')
+t=1/f0;
+disp(t,'time period of output waveform=')
+dc=ep/t;
+disp(dc,'duty cycle of output waveform=')
\ No newline at end of file diff --git a/911/CH8/EX8.3/ex_8_3.pdf b/911/CH8/EX8.3/ex_8_3.pdf Binary files differnew file mode 100644 index 000000000..f5f6d2689 --- /dev/null +++ b/911/CH8/EX8.3/ex_8_3.pdf diff --git a/911/CH8/EX8.3/ex_8_3.sce b/911/CH8/EX8.3/ex_8_3.sce new file mode 100644 index 000000000..96831d64d --- /dev/null +++ b/911/CH8/EX8.3/ex_8_3.sce @@ -0,0 +1,48 @@ +//EXAMPLE 8.3//
+//flip flop//
+clc
+//clears the history//
+close
+//closes all other files//
+clear
+//clears the variables//
+disp('The first three entries of the function table indicate the JK flip flop has active high PRESET and clear inputs. Referrinf to fourth and fifth entries of the function table, it has active low J and K inputs The seventh row of function table confirms this. The output responds to positive (LOW to HO+IGH) edges of clock input. Thus the flip flop represented by the given function table is presettable, clearable, positive edge triggered flip flop with active HIGH PRESET, CLEAR and aCTIVE LOW J & K inputs')
+disp ("since J=K=1 ,the flipflop simply toggles each time the clock goes low , The waveform at Q has a period twice of that of the waveform . In other words , the frequency of Q is only one-half of that of . This circuit acts as a frequency divider the output frequency divide by 2. Note that Q changes state on NTs of the clock. The waveforms are as shown in the figure");
+t =50;
+//taken time period//
+p =1;
+while p<t*10
+//taking values for ploting the graph//
+if p ==1 | modulo (p,t)==0 then
+for k=1: t/2
+cin (p+k)=0;
+end
+p=p+t/2;
+else
+cin (p)=1;
+p=p+1;
+end
+end
+t =100;
+p =1;
+while p<t*5
+if p ==1 | modulo (p,t)==0 then
+for k=1: t/2
+dout (p+k) =0;
+end
+p=p+t/2;
+else
+dout (p)=1;
+p=p+1;
+end
+end
+y =[3 3];
+subplot (2 ,1 ,1)
+//plotin both the plots in a single window//
+title ( ' input at pin C ' )
+plot (cin)
+plot (y)
+subplot (2 ,1 ,2)
+title('output at pin D' )
+plot ( dout )
+plot (y)
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\ No newline at end of file diff --git a/911/CH8/EX8.4.a/ex_8_4_a.pdf b/911/CH8/EX8.4.a/ex_8_4_a.pdf Binary files differnew file mode 100644 index 000000000..4f1c5069c --- /dev/null +++ b/911/CH8/EX8.4.a/ex_8_4_a.pdf diff --git a/911/CH8/EX8.4.a/ex_8_4_a.sce b/911/CH8/EX8.4.a/ex_8_4_a.sce new file mode 100644 index 000000000..3bb5b9150 --- /dev/null +++ b/911/CH8/EX8.4.a/ex_8_4_a.sce @@ -0,0 +1,7 @@ +//example 8.4(a)//
+clc
+//clears the screen//
+clear
+//clears the variables//
+disp('Refer to figure. Q is initially 0, this makes J and K inputs to be initially 1 and 0 respectively. With the first trailing edge of clock input, Q goes 1 state. Thus J and K acquire logic status of 0 and 1 respectively. With the next trailing edge of clock input, Q goes to logic 0. This process continues and Q alternatively becmos 1 and 0.')
+disp('The frequency of the Q output waveform in the two cases is equal to half the frequency of the clock input for obvious reasons and is therefore 50kHz')
\ No newline at end of file diff --git a/911/CH8/EX8.4.a/ex_8_4_a.xcos b/911/CH8/EX8.4.a/ex_8_4_a.xcos new file mode 100644 index 000000000..b535fbce6 --- /dev/null +++ b/911/CH8/EX8.4.a/ex_8_4_a.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1"><mxGraphModel as="model"><root><mxCell id="576f5af:13dba49a507:-7fb1"/><mxCell id="576f5af:13dba49a507:-7fb2" parent="576f5af:13dba49a507:-7fb1"/><BasicBlock blockType="h" dependsOnU="1" id="576f5af:13dba49a507:-7fa3" interfaceFunctionName="JKFLIPFLOP" parent="576f5af:13dba49a507:-7fb2" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="JKFLIPFLOP;fontSize=12"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" 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\ No newline at end of file diff --git a/911/CH8/EX8.4.b/ex_8_4_b.pdf b/911/CH8/EX8.4.b/ex_8_4_b.pdf Binary files differnew file mode 100644 index 000000000..4a7f6eebc --- /dev/null +++ b/911/CH8/EX8.4.b/ex_8_4_b.pdf diff --git a/911/CH8/EX8.4.b/ex_8_4_b.sce b/911/CH8/EX8.4.b/ex_8_4_b.sce new file mode 100644 index 000000000..18c9d8600 --- /dev/null +++ b/911/CH8/EX8.4.b/ex_8_4_b.sce @@ -0,0 +1,7 @@ +//example 8.4(a)//
+clc
+//clears the screen//
+clear
+//clears the variables//
+disp('In this case of flip flop, J and K are initially 0 & 1 respectively. Thus J is active. With the first leading edge of clock input, Q and therefore J goes to logic 1 state. The second leading edge edge forces Q to go to logic 0 state as now it is K input that is in logic 0 state and active. This circuit also behaves in the same way as the earlier one. The output goes alternatively to logic 0 and 1 state. However the transitions occur on the leading edge of clock input.')
+disp('The frequency of the Q output waveform in the two cases is equal to half the frequency of the clock input for obvious reasons and is therefore 50kHz')
\ No newline at end of file diff --git a/911/CH8/EX8.4.b/ex_8_4_b.xcos b/911/CH8/EX8.4.b/ex_8_4_b.xcos new file mode 100644 index 000000000..5796b95c3 --- /dev/null +++ b/911/CH8/EX8.4.b/ex_8_4_b.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1"><mxGraphModel as="model"><root><mxCell id="576f5af:13dba49a507:-7f8d"/><mxCell id="576f5af:13dba49a507:-7f8e" parent="576f5af:13dba49a507:-7f8d"/><BasicBlock blockType="h" dependsOnU="1" id="576f5af:13dba49a507:-7f8c" interfaceFunctionName="JKFLIPFLOP" parent="576f5af:13dba49a507:-7f8e" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="JKFLIPFLOP"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" 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\ No newline at end of file diff --git a/911/CH8/EX8.5/ex_8_5_a.pdf b/911/CH8/EX8.5/ex_8_5_a.pdf Binary files differnew file mode 100644 index 000000000..57bb853c3 --- /dev/null +++ b/911/CH8/EX8.5/ex_8_5_a.pdf diff --git a/911/CH8/EX8.5/ex_8_5_a.sce b/911/CH8/EX8.5/ex_8_5_a.sce new file mode 100644 index 000000000..b0d20eb34 --- /dev/null +++ b/911/CH8/EX8.5/ex_8_5_a.sce @@ -0,0 +1,15 @@ +//example 8.5(a)//
+clc
+//clears the screen//
+clear
+//clears the variables//
+close
+//closes all existing files other than this//
+disp('As there are two flip flops so, for first output frequency will be half of the original one while for second flip flop output frequency will be half of the first flip flop, so overall it will be one-fourth of the input frequency')
+T=10*(10^-6)
+//time period in seconds//
+fi=1/T;
+//input frequency//
+f=fi/4;
+//output frequency//
+disp(f,'output frequency(in Hz)=')
\ No newline at end of file diff --git a/911/CH8/EX8.6.b/ex_8_6_b.pdf b/911/CH8/EX8.6.b/ex_8_6_b.pdf Binary files differnew file mode 100644 index 000000000..5080be7c6 --- /dev/null +++ b/911/CH8/EX8.6.b/ex_8_6_b.pdf diff --git a/911/CH8/EX8.6.b/ex_8_6_b.sce b/911/CH8/EX8.6.b/ex_8_6_b.sce new file mode 100644 index 000000000..d09cbd817 --- /dev/null +++ b/911/CH8/EX8.6.b/ex_8_6_b.sce @@ -0,0 +1,8 @@ +//example 8.6(b)//
+clc
+//clears the screen//
+clear
+//clears all variables//
+close
+//closes all existing files//
+disp('When the ENABLE input is LOW, the upper AND gate is disabled(with its output going to logic 0) and the lower AND gate is enabled(with its output becoming the same as the Q output owing to the feedback). The NOR gate output in this case is Q'', which means that the Q output holds its state as long as the ENABLE input is LOW')
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\ No newline at end of file diff --git a/911/CH8/EX8.6/ex_8_6_a.pdf b/911/CH8/EX8.6/ex_8_6_a.pdf Binary files differnew file mode 100644 index 000000000..d728f85d8 --- /dev/null +++ b/911/CH8/EX8.6/ex_8_6_a.pdf diff --git a/911/CH8/EX8.6/ex_8_6_a.sce b/911/CH8/EX8.6/ex_8_6_a.sce new file mode 100644 index 000000000..b05f6349b --- /dev/null +++ b/911/CH8/EX8.6/ex_8_6_a.sce @@ -0,0 +1,8 @@ +//example 8.6(a)//
+clc
+//clears the screen//
+clear
+//clears all variables//
+close
+//closes all existing files//
+disp('When the ENABLE input is HIGH, the upper AND gate is enabled while the lower AND gate is disabled. The outputs of upper and lower AND gates are D and logic 0 respectively. They constitute inputs of the NOR gate whose output is D''. The Q output is therefore D')
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\ No newline at end of file diff --git a/911/CH8/EX8.7.a/ex_8_7_a.pdf b/911/CH8/EX8.7.a/ex_8_7_a.pdf Binary files differnew file mode 100644 index 000000000..0f3b389bd --- /dev/null +++ b/911/CH8/EX8.7.a/ex_8_7_a.pdf diff --git a/911/CH8/EX8.7.a/ex_8_7_a.sce b/911/CH8/EX8.7.a/ex_8_7_a.sce new file mode 100644 index 000000000..b4f2dd75a --- /dev/null +++ b/911/CH8/EX8.7.a/ex_8_7_a.sce @@ -0,0 +1,9 @@ +//example 8.7(a)//
+clc
+//clears the screen//
+clear
+//clears all variables//
+close
+//closes all existing files//
+disp('A positive edge triggered D flip flop, as shown in figure can be used for the purpose. Waveform A is applied to the D input and waveform B is applied to the clock input. If we examine the two waveforms, we will find that, on every occurence of leading edge of waveform B, waveform A is in logic 1 state. Thus, the Q output in this case will always be in a logic 1 state')
+disp('the rest is shown in diagram')
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\ No newline at end of file diff --git a/911/CH8/EX8.7.b/ex_8_7_b.pdf b/911/CH8/EX8.7.b/ex_8_7_b.pdf Binary files differnew file mode 100644 index 000000000..9fce8bb9c --- /dev/null +++ b/911/CH8/EX8.7.b/ex_8_7_b.pdf diff --git a/911/CH8/EX8.7.b/ex_8_7_b.sce b/911/CH8/EX8.7.b/ex_8_7_b.sce new file mode 100644 index 000000000..bd0a7eac7 --- /dev/null +++ b/911/CH8/EX8.7.b/ex_8_7_b.sce @@ -0,0 +1,9 @@ +//example 8.7(b)//
+clc
+//clears the screen//
+clear
+//clears all variables//
+close
+//closes all existing files//
+disp('By interchanging the connections of waveforms A and B with respect to earlier one. Q output will be at logic 0 state as long as waveform A leads waveform B in phase. In this case, on every occurence of the leading edge of waveform A(clock input), waveform B(D input) is in a logic 0 state.')
+disp('the rest is shown in diagram')
\ No newline at end of file diff --git a/911/CH8/EX8.7.b/ex_8_7_b.xcos b/911/CH8/EX8.7.b/ex_8_7_b.xcos new file mode 100644 index 000000000..4c2129e2a --- /dev/null +++ b/911/CH8/EX8.7.b/ex_8_7_b.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1" title="ex_8_7_a"><mxGraphModel as="model"><root><mxCell id="-4a9bd440:13dbbffb3fd:-7faf"/><mxCell id="-4a9bd440:13dbbffb3fd:-7fb0" parent="-4a9bd440:13dbbffb3fd:-7faf"/><BasicBlock blockType="h" dependsOnU="1" id="-4a9bd440:13dbbffb3fd:-7fa3" interfaceFunctionName="DLATCH" parent="-4a9bd440:13dbbffb3fd:-7fb0" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="DLATCH"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" 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\ No newline at end of file diff --git a/911/CH9/EX9.1/ex_9_1.pdf b/911/CH9/EX9.1/ex_9_1.pdf Binary files differnew file mode 100644 index 000000000..d735f3c3d --- /dev/null +++ b/911/CH9/EX9.1/ex_9_1.pdf diff --git a/911/CH9/EX9.1/ex_9_1.sce b/911/CH9/EX9.1/ex_9_1.sce new file mode 100644 index 000000000..3b77ad62d --- /dev/null +++ b/911/CH9/EX9.1/ex_9_1.sce @@ -0,0 +1,12 @@ +//exmaple 9.1//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+a=bin2dec('0000')
+//given initial state//
+c=bin2dec('0011')
+//given final state//
+n=input('Enter the loop no = ')
+d=(16*(n-1))+c-a;
+disp(d,'No of negative clock cycles occured till now= ')
\ No newline at end of file diff --git a/911/CH9/EX9.10.a/ex_9_10_a.pdf b/911/CH9/EX9.10.a/ex_9_10_a.pdf Binary files differnew file mode 100644 index 000000000..e896e48c8 --- /dev/null +++ b/911/CH9/EX9.10.a/ex_9_10_a.pdf diff --git a/911/CH9/EX9.10.a/ex_9_10_a.sce b/911/CH9/EX9.10.a/ex_9_10_a.sce new file mode 100644 index 000000000..148b3cbd0 --- /dev/null +++ b/911/CH9/EX9.10.a/ex_9_10_a.sce @@ -0,0 +1,6 @@ +//example 9.10(a)//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+disp('At the end of eigth LOW to HIGH clock transition, the data bits loaded into the register will be 10110010, with ''0'' on the extreme right appearing at the Q7 output. The ninth clock transition will shift this 0 out of the register and the next adjacent bit (i.e.''1'') will take its place on Q7 output. Each subsequent clock pulse will shift the bits one step towards right with the result that at the end of 11th clock transition, the Q7 output will be logic ''0''. ')
\ No newline at end of file diff --git a/911/CH9/EX9.10.b/ex_9_10_b.pdf b/911/CH9/EX9.10.b/ex_9_10_b.pdf Binary files differnew file mode 100644 index 000000000..dedf81e41 --- /dev/null +++ b/911/CH9/EX9.10.b/ex_9_10_b.pdf diff --git a/911/CH9/EX9.10.b/ex_9_10_b.sce b/911/CH9/EX9.10.b/ex_9_10_b.sce new file mode 100644 index 000000000..8531eebb3 --- /dev/null +++ b/911/CH9/EX9.10.b/ex_9_10_b.sce @@ -0,0 +1,6 @@ +//example 9.10(b)//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+disp('It will be logic ''1'' only. The Q3 output will be shifted two positions to right by two clock transitions.')
\ No newline at end of file diff --git a/911/CH9/EX9.11.a/ex_9_11_a.pdf b/911/CH9/EX9.11.a/ex_9_11_a.pdf Binary files differnew file mode 100644 index 000000000..9426f595b --- /dev/null +++ b/911/CH9/EX9.11.a/ex_9_11_a.pdf diff --git a/911/CH9/EX9.11.a/ex_9_11_a.sce b/911/CH9/EX9.11.a/ex_9_11_a.sce new file mode 100644 index 000000000..aad6e13be --- /dev/null +++ b/911/CH9/EX9.11.a/ex_9_11_a.sce @@ -0,0 +1,6 @@ +//example 9.11.a//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+disp('The modulus of a ring counter is same as the number of bits (or flip flops). Therefore, the number of flip flops required is 10. The count sequence is 1000000000, 0100000000, 0010000000, 0001000000, 0000100000, 0000010000, 0000001000, 0000000100, 0000000010, 0000000001, and back to 1000000000')
\ No newline at end of file diff --git a/911/CH9/EX9.11.b/ex_9_11_b.pdf b/911/CH9/EX9.11.b/ex_9_11_b.pdf Binary files differnew file mode 100644 index 000000000..f44ecb31b --- /dev/null +++ b/911/CH9/EX9.11.b/ex_9_11_b.pdf diff --git a/911/CH9/EX9.11.b/ex_9_11_b.sce b/911/CH9/EX9.11.b/ex_9_11_b.sce new file mode 100644 index 000000000..12f71dd60 --- /dev/null +++ b/911/CH9/EX9.11.b/ex_9_11_b.sce @@ -0,0 +1,6 @@ +//example 9.11.b//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+disp('The modulus of a Johnson counter is twice as the number of bits (or flip flops). Therefore, the number of flip flops required is 5. The count sequence is 00000, 10000, 11000, ,11100, 11110, 11111, 01111, 00111, 00011, 00001 and back to 00000')
\ No newline at end of file diff --git a/911/CH9/EX9.12/ex_9_12.pdf b/911/CH9/EX9.12/ex_9_12.pdf Binary files differnew file mode 100644 index 000000000..6caac2d63 --- /dev/null +++ b/911/CH9/EX9.12/ex_9_12.pdf diff --git a/911/CH9/EX9.12/ex_9_12.sce b/911/CH9/EX9.12/ex_9_12.sce new file mode 100644 index 000000000..226efe4a0 --- /dev/null +++ b/911/CH9/EX9.12/ex_9_12.sce @@ -0,0 +1,6 @@ +//example 9.12//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+disp('The LSB of the five-bit ring counter feeds the clock input of the JK flip flop that has been wired as a toggle flip-flop. The ring counter has a modulus of five and the JK flip-flop works like a divide by two circuit. The modulus of the counter circuit obtained by the cascade arrangement of the two is therefore 10. It is very simple to write the count sequence. First, we write the first ten states of the ring counter output(designated by A, B, C, D and E). The logic status of F can be written by examining logic status of E. F toggles whenever E undergoes 1-to-0 transition')
\ No newline at end of file diff --git a/911/CH9/EX9.13/ex_9_13.pdf b/911/CH9/EX9.13/ex_9_13.pdf Binary files differnew file mode 100644 index 000000000..8c5994360 --- /dev/null +++ b/911/CH9/EX9.13/ex_9_13.pdf diff --git a/911/CH9/EX9.13/ex_9_13.sce b/911/CH9/EX9.13/ex_9_13.sce new file mode 100644 index 000000000..70be49040 --- /dev/null +++ b/911/CH9/EX9.13/ex_9_13.sce @@ -0,0 +1,6 @@ +//example 9.13//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+disp('Initially all the outputs are in logic 0 state. Since A=B=1, the serial input to the shift register is logic 1. The (MR)'' input is initially inactive. For the first three clock pulses, the output status is 10000000, 11000000 and 11100000. With the fourth clock pulse, the output tends to go to 11110000 but it can not be stable state as the NAND output goes from 1 to 0. This resets the register to 00000000. Thus, the register transits from 11100000 to 00000000. With the fifth, sixth, and seventh clock pulse, the circuit goes through 10000000, 11000000 and 11100000. The eighth clock pulse regenerates to 00000000')
\ No newline at end of file diff --git a/911/CH9/EX9.2/ex_9_2.pdf b/911/CH9/EX9.2/ex_9_2.pdf Binary files differnew file mode 100644 index 000000000..0cce64995 --- /dev/null +++ b/911/CH9/EX9.2/ex_9_2.pdf diff --git a/911/CH9/EX9.2/ex_9_2.sce b/911/CH9/EX9.2/ex_9_2.sce new file mode 100644 index 000000000..0d76906d3 --- /dev/null +++ b/911/CH9/EX9.2/ex_9_2.sce @@ -0,0 +1,14 @@ +//example 9.2//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+close
+//closes all other files//
+a=log(6000)
+//from the data//
+b=log(2)
+c=a/b;
+N=round(c)
+disp('Minimum number of flip flops=')
+disp(N)
\ No newline at end of file diff --git a/911/CH9/EX9.3.a/ex_9_3.sce b/911/CH9/EX9.3.a/ex_9_3.sce new file mode 100644 index 000000000..a038ffc93 --- /dev/null +++ b/911/CH9/EX9.3.a/ex_9_3.sce @@ -0,0 +1,16 @@ +//example 9.3(a)//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+// ff = input ( ' Enter the no of flip-flops ' ) ;
+ff =4;
+//given input//
+k=2^ff;
+if(k ==2) then // output d i s p l a y
+printf ( 'With given flipflop we can only count 2 ,we can have a modulus 2 counter' );
+else
+printf ( 'With given number of flip-flops the counter will have a natural count of %d ' ,k);
+printf ( 'We can thus construct any counter that has a modulus between 2 and %d' ,k )
+disp('in our given question we are given count till 1011 so, it will be mod 12 counter')
+end
\ No newline at end of file diff --git a/911/CH9/EX9.3.a/ex_9_3_a.pdf b/911/CH9/EX9.3.a/ex_9_3_a.pdf Binary files differnew file mode 100644 index 000000000..9cc4fc4ee --- /dev/null +++ b/911/CH9/EX9.3.a/ex_9_3_a.pdf diff --git a/911/CH9/EX9.3.b/ex_9_3_b.pdf b/911/CH9/EX9.3.b/ex_9_3_b.pdf Binary files differnew file mode 100644 index 000000000..ef7086cf3 --- /dev/null +++ b/911/CH9/EX9.3.b/ex_9_3_b.pdf diff --git a/911/CH9/EX9.3.b/ex_9_3_b.sce b/911/CH9/EX9.3.b/ex_9_3_b.sce new file mode 100644 index 000000000..629d00045 --- /dev/null +++ b/911/CH9/EX9.3.b/ex_9_3_b.sce @@ -0,0 +1,9 @@ +//example 9.3(b)//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+f=1.2*1000000/12
+//from part a//
+disp(f, 'frequency of given system (in Hz)=')
+//in Hz//
\ No newline at end of file diff --git a/911/CH9/EX9.5.a/ex_9_5_a.pdf b/911/CH9/EX9.5.a/ex_9_5_a.pdf Binary files differnew file mode 100644 index 000000000..dc04a2717 --- /dev/null +++ b/911/CH9/EX9.5.a/ex_9_5_a.pdf diff --git a/911/CH9/EX9.5.a/ex_9_5_a.sce b/911/CH9/EX9.5.a/ex_9_5_a.sce new file mode 100644 index 000000000..08d528d40 --- /dev/null +++ b/911/CH9/EX9.5.a/ex_9_5_a.sce @@ -0,0 +1,9 @@ +//example 9.5(a)//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+close
+//closes all open files//
+disp('here we have 4 flip flops, in which initial input is 0000')
+disp('Count sequence is given as 0000, 1111, 1110, 1101, 1100, 1011, 1010, 1001, 1000, 0111, 0110, 0101, 0100, 0011, 0010, 0001. ')
\ No newline at end of file diff --git a/911/CH9/EX9.5.a/ex_9_5_a.xcos b/911/CH9/EX9.5.a/ex_9_5_a.xcos new file mode 100644 index 000000000..e8e5d56dc --- /dev/null +++ b/911/CH9/EX9.5.a/ex_9_5_a.xcos @@ -0,0 +1 @@ +<?xml version="1.0" encoding="UTF-8"?><XcosDiagram background="-1"><mxGraphModel as="model"><root><mxCell id="677ec6dd:13dc6ef6f4a:-7fff"/><mxCell id="677ec6dd:13dc6ef6f4a:-8000" parent="677ec6dd:13dc6ef6f4a:-7fff"/><BasicBlock blockType="h" dependsOnU="1" id="677ec6dd:13dc6ef6f4a:-7fd8" interfaceFunctionName="JKFLIPFLOP" ordering="1" parent="677ec6dd:13dc6ef6f4a:-8000" simulationFunctionName="csuper" simulationFunctionType="DEFAULT" style="JKFLIPFLOP"><ScilabDouble as="exprs" height="0" width="0"/><Array as="realParameters" scilabClass="ScilabMList"><ScilabString height="1" width="5"><data column="0" line="0" value="diagram"/><data column="1" line="0" value="props"/><data column="2" line="0" value="objs"/><data column="3" line="0" value="version"/><data column="4" line="0" 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\ No newline at end of file diff --git a/911/CH9/EX9.5.b/ex_9_5_b.pdf b/911/CH9/EX9.5.b/ex_9_5_b.pdf Binary files differnew file mode 100644 index 000000000..4677030dd --- /dev/null +++ b/911/CH9/EX9.5.b/ex_9_5_b.pdf diff --git a/911/CH9/EX9.5.b/ex_9_5_b.sce b/911/CH9/EX9.5.b/ex_9_5_b.sce new file mode 100644 index 000000000..2dc346d5a --- /dev/null +++ b/911/CH9/EX9.5.b/ex_9_5_b.sce @@ -0,0 +1,86 @@ +//example 9.5(b)//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+close
+c = [0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 1 0 ];
+//taking the values for a mod - counter
+q = [0 1 1 0 0 1 1 0 0 1 1 0 0 1 1 0 0 ];
+a = [0 1 1 1 1 0 0 0 0 1 1 1 1 0 0 0 0 ];
+b = [0 1 1 1 1 1 1 1 1 0 0 0 0 0 0 0 0 ];
+y1=q;
+y2=a;
+y3=b;
+y11p =1;
+y22p =1;
+y33p =1;
+y44p =1;
+cp =1;
+yf1p =1;
+for i =1:17
+ // making arrays to draw the output
+if y1(i)==1 then
+for o =1:100
+y11 ( y11p )=1;
+y11p = y11p +1;
+end
+else
+for o =1:100
+y11 ( y11p )=0;
+y11p = y11p +1;
+end
+end
+if y2(i)==1 then
+for o =1:100
+y21 ( y22p )=1;
+y22p = y22p +1;
+end
+else
+for o =1:100
+y21 ( y22p )=0;
+y22p = y22p +1;
+end
+end
+if y3(i)==1 then
+for o =1:100
+y31 ( y33p )=1;
+y33p = y33p +1;
+end
+else
+for o =1:100
+y31 ( y33p )=0;
+y33p = y33p +1;
+end
+end
+if c(i)==1 then
+for o =1:100
+c1(cp) =1;
+cp=cp +1;
+end
+else
+for o =1:100
+c1(cp) =0;
+cp=cp +1;
+end
+end
+end
+z =[2 2];
+subplot (4 ,1 ,1);
+//ploting the output
+title ( ' Timing Diagram ' );
+plot (c1);
+plot (z);
+ylabel ( 'C ' );
+subplot (4 ,1 ,2);
+plot (y11);
+ylabel ( 'Q' );
+plot (z);
+subplot (4 ,1 ,3);
+plot (y21);
+ylabel ( 'A' );
+plot (z);
+subplot (4 ,1 ,4);
+plot (z);
+ylabel ( 'B ' );
+plot (y31);
\ No newline at end of file diff --git a/911/CH9/EX9.6/ex_9_6.pdf b/911/CH9/EX9.6/ex_9_6.pdf Binary files differnew file mode 100644 index 000000000..f580c301f --- /dev/null +++ b/911/CH9/EX9.6/ex_9_6.pdf diff --git a/911/CH9/EX9.6/ex_9_6.sce b/911/CH9/EX9.6/ex_9_6.sce new file mode 100644 index 000000000..0aeac7db4 --- /dev/null +++ b/911/CH9/EX9.6/ex_9_6.sce @@ -0,0 +1,6 @@ +//example 9.6//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+disp('output after 34th clock pulse of A B C D E F G H are 0 0 1 0 1 1 0 0 respectively.')
\ No newline at end of file diff --git a/911/CH9/EX9.7.b/ex_9_7_b.pdf b/911/CH9/EX9.7.b/ex_9_7_b.pdf Binary files differnew file mode 100644 index 000000000..d7798056c --- /dev/null +++ b/911/CH9/EX9.7.b/ex_9_7_b.pdf diff --git a/911/CH9/EX9.7.b/ex_9_7_b.sce b/911/CH9/EX9.7.b/ex_9_7_b.sce new file mode 100644 index 000000000..15b3f5fbe --- /dev/null +++ b/911/CH9/EX9.7.b/ex_9_7_b.sce @@ -0,0 +1,7 @@ +//example 9.7(b)//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+disp('The presettable counter has been set as DOWN counter. After 6th pulse it will be set to 0000 state.')
+disp('Immediately after eigth state it will be set to 0100 state.')
\ No newline at end of file diff --git a/911/CH9/EX9.7/ex_9_7.pdf b/911/CH9/EX9.7/ex_9_7.pdf Binary files differnew file mode 100644 index 000000000..3def5c2c5 --- /dev/null +++ b/911/CH9/EX9.7/ex_9_7.pdf diff --git a/911/CH9/EX9.7/ex_9_7.sce b/911/CH9/EX9.7/ex_9_7.sce new file mode 100644 index 000000000..99e9d3386 --- /dev/null +++ b/911/CH9/EX9.7/ex_9_7.sce @@ -0,0 +1,8 @@ +//exmaple 9.7(a)//
+clc
+//clears the screen//
+clear
+//clears all existing variables//
+a=bin2dec('0110')
+//given initial state//
+disp(a,'Modulus of presettable counter in given condition is:')
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