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author | Trupti Kini | 2016-09-02 23:32:06 +0600 |
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committer | Trupti Kini | 2016-09-02 23:32:06 +0600 |
commit | 3c5945f0aaf1d2d1f84e43ead6676aa497c9c4f8 (patch) | |
tree | 875e29964798bb3c96b465cb07013dd68a30e106 /Basic_And_Applied_Thermodynamics_by_P._K._Nag/Chapter22.ipynb | |
parent | d4fdaaa0564be527ad6a83b727ea7ab4310ac840 (diff) | |
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Added(A)/Deleted(D) following books
M 1000_solved_Problems_in_Fluid_Mechanics_includes_Hydraulic_machines_by_K.Subramanya/README.txt
M 1000_solved_Problems_in_Fluid_Mechanics_includes_Hydraulic_machines_by_K.Subramanya/chapter10_2.ipynb
M 1000_solved_Problems_in_Fluid_Mechanics_includes_Hydraulic_machines_by_K.Subramanya/chapter10_3.ipynb
M 1000_solved_Problems_in_Fluid_Mechanics_includes_Hydraulic_machines_by_K.Subramanya/chapter11.ipynb
M 1000_solved_Problems_in_Fluid_Mechanics_includes_Hydraulic_machines_by_K.Subramanya/chapter11_1.ipynb
M 1000_solved_Problems_in_Fluid_Mechanics_includes_Hydraulic_machines_by_K.Subramanya/chapter12_2.ipynb
M 1000_solved_Problems_in_Fluid_Mechanics_includes_Hydraulic_machines_by_K.Subramanya/chapter12_3.ipynb
M 1000_solved_Problems_in_Fluid_Mechanics_includes_Hydraulic_machines_by_K.Subramanya/chapter13_2.ipynb
M 1000_solved_Problems_in_Fluid_Mechanics_includes_Hydraulic_machines_by_K.Subramanya/chapter13_3.ipynb
M 1000_solved_Problems_in_Fluid_Mechanics_includes_Hydraulic_machines_by_K.Subramanya/chapter14_2.ipynb
M 1000_solved_Problems_in_Fluid_Mechanics_includes_Hydraulic_machines_by_K.Subramanya/chapter14_3.ipynb
M 1000_solved_Problems_in_Fluid_Mechanics_includes_Hydraulic_machines_by_K.Subramanya/chapter15_2.ipynb
M 1000_solved_Problems_in_Fluid_Mechanics_includes_Hydraulic_machines_by_K.Subramanya/chapter15_3.ipynb
M 1000_solved_Problems_in_Fluid_Mechanics_includes_Hydraulic_machines_by_K.Subramanya/chapter16_2.ipynb
M 1000_solved_Problems_in_Fluid_Mechanics_includes_Hydraulic_machines_by_K.Subramanya/chapter16_3.ipynb
M 1000_solved_Problems_in_Fluid_Mechanics_includes_Hydraulic_machines_by_K.Subramanya/chapter1_2.ipynb
M 1000_solved_Problems_in_Fluid_Mechanics_includes_Hydraulic_machines_by_K.Subramanya/chapter1_3.ipynb
M 1000_solved_Problems_in_Fluid_Mechanics_includes_Hydraulic_machines_by_K.Subramanya/chapter2_2.ipynb
M 1000_solved_Problems_in_Fluid_Mechanics_includes_Hydraulic_machines_by_K.Subramanya/chapter2_3.ipynb
M 1000_solved_Problems_in_Fluid_Mechanics_includes_Hydraulic_machines_by_K.Subramanya/chapter3.ipynb
M 1000_solved_Problems_in_Fluid_Mechanics_includes_Hydraulic_machines_by_K.Subramanya/chapter3_1.ipynb
M 1000_solved_Problems_in_Fluid_Mechanics_includes_Hydraulic_machines_by_K.Subramanya/chapter4.ipynb
M 1000_solved_Problems_in_Fluid_Mechanics_includes_Hydraulic_machines_by_K.Subramanya/chapter4_1.ipynb
M 1000_solved_Problems_in_Fluid_Mechanics_includes_Hydraulic_machines_by_K.Subramanya/chapter5.ipynb
M 1000_solved_Problems_in_Fluid_Mechanics_includes_Hydraulic_machines_by_K.Subramanya/chapter5_1.ipynb
M 1000_solved_Problems_in_Fluid_Mechanics_includes_Hydraulic_machines_by_K.Subramanya/chapter6_2.ipynb
M 1000_solved_Problems_in_Fluid_Mechanics_includes_Hydraulic_machines_by_K.Subramanya/chapter6_3.ipynb
M 1000_solved_Problems_in_Fluid_Mechanics_includes_Hydraulic_machines_by_K.Subramanya/chapter7_2.ipynb
M 1000_solved_Problems_in_Fluid_Mechanics_includes_Hydraulic_machines_by_K.Subramanya/chapter7_3.ipynb
M 1000_solved_Problems_in_Fluid_Mechanics_includes_Hydraulic_machines_by_K.Subramanya/chapter8_2.ipynb
M 1000_solved_Problems_in_Fluid_Mechanics_includes_Hydraulic_machines_by_K.Subramanya/chapter8_3.ipynb
M 1000_solved_Problems_in_Fluid_Mechanics_includes_Hydraulic_machines_by_K.Subramanya/chapter9_2.ipynb
M 1000_solved_Problems_in_Fluid_Mechanics_includes_Hydraulic_machines_by_K.Subramanya/chapter9_3.ipynb
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M 1000_solved_Problems_in_Fluid_Mechanics_includes_Hydraulic_machines_by_K.Subramanya/screenshots/Screenshot_from_2016-01-14_17_02_44.png
M 1000_solved_Problems_in_Fluid_Mechanics_includes_Hydraulic_machines_by_K.Subramanya/screenshots/Screenshot_from_2016-01-14_17_02_44_1.png
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter25_4.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter25_5.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter25_6.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter26_4.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter26_5.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter26_6.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter27_4.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter27_5.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter27_6.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter28_4.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter28_5.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter28_6.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter29_4.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter29_5.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter29_6.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter30_4.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter30_5.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter30_6.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter31_4.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter31_5.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter31_6.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter32_4.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter32_5.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter32_6.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter33_4.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter33_5.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter33_6.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter34_4.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter34_5.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter34_6.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter35_4.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter35_5.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter35_6.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter36_4.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter36_5.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter36_6.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter37_4.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter37_5.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter37_6.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter38_4.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter38_5.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter38_6.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter39_4.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter39_5.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/chapter39_6.ipynb
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/screenshots/chapter29example32_4.png
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/screenshots/chapter29example32_5.png
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/screenshots/chapter29example32_6.png
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/screenshots/chapter29example33_4.png
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/screenshots/chapter29example33_5.png
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/screenshots/chapter29example33_6.png
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/screenshots/chapter32example30_4.png
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/screenshots/chapter32example30_5.png
M A_Textbook_of_Electrical_Technology_:_AC_and_DC_Machines_(Volume_-_2)_by_A_K_Theraja_B_L_Thereja/screenshots/chapter32example30_6.png
M A_Textbook_of_Electronic_Circuits_by_R._S._Sedha/Chap10_2.ipynb
M A_Textbook_of_Electronic_Circuits_by_R._S._Sedha/Chap11_2.ipynb
M A_Textbook_of_Electronic_Circuits_by_R._S._Sedha/Chap12_2.ipynb
M A_Textbook_of_Electronic_Circuits_by_R._S._Sedha/Chap13_2.ipynb
M A_Textbook_of_Electronic_Circuits_by_R._S._Sedha/Chap16_2.ipynb
M A_Textbook_of_Electronic_Circuits_by_R._S._Sedha/Chap17_2.ipynb
M A_Textbook_of_Electronic_Circuits_by_R._S._Sedha/Chap18_2.ipynb
M A_Textbook_of_Electronic_Circuits_by_R._S._Sedha/Chap19_2.ipynb
M A_Textbook_of_Electronic_Circuits_by_R._S._Sedha/Chap20_2.ipynb
M A_Textbook_of_Electronic_Circuits_by_R._S._Sedha/Chap21_2.ipynb
M A_Textbook_of_Electronic_Circuits_by_R._S._Sedha/Chap22_2.ipynb
M A_Textbook_of_Electronic_Circuits_by_R._S._Sedha/Chap23_2.ipynb
M A_Textbook_of_Electronic_Circuits_by_R._S._Sedha/Chap24_2.ipynb
M A_Textbook_of_Electronic_Circuits_by_R._S._Sedha/Chap25_2.ipynb
M A_Textbook_of_Electronic_Circuits_by_R._S._Sedha/Chap26_2.ipynb
M A_Textbook_of_Electronic_Circuits_by_R._S._Sedha/Chap27_2.ipynb
M A_Textbook_of_Electronic_Circuits_by_R._S._Sedha/Chap28_2.ipynb
M A_Textbook_of_Electronic_Circuits_by_R._S._Sedha/Chap29_2.ipynb
M A_Textbook_of_Electronic_Circuits_by_R._S._Sedha/Chap30_2.ipynb
M A_Textbook_of_Electronic_Circuits_by_R._S._Sedha/Chap31_2.ipynb
M A_Textbook_of_Electronic_Circuits_by_R._S._Sedha/Chap32_2.ipynb
M A_Textbook_of_Electronic_Circuits_by_R._S._Sedha/Chap33_2.ipynb
M A_Textbook_of_Electronic_Circuits_by_R._S._Sedha/Chap34_2.ipynb
M A_Textbook_of_Electronic_Circuits_by_R._S._Sedha/Chap3_2.ipynb
M A_Textbook_of_Electronic_Circuits_by_R._S._Sedha/Chap5_2.ipynb
M A_Textbook_of_Electronic_Circuits_by_R._S._Sedha/Chap7_2.ipynb
M A_Textbook_of_Electronic_Circuits_by_R._S._Sedha/Chap8_2.ipynb
M A_Textbook_of_Electronic_Circuits_by_R._S._Sedha/Chap9_2.ipynb
M A_Textbook_of_Electronic_Circuits_by_R._S._Sedha/README.txt
M A_Textbook_of_Electronic_Circuits_by_R._S._Sedha/screenshots/11DrainCurrentGraph.png
M A_Textbook_of_Electronic_Circuits_by_R._S._Sedha/screenshots/18VceVsIce.png
M A_Textbook_of_Electronic_Circuits_by_R._S._Sedha/screenshots/24GainGraph.png
M Analog_Electronics_by_U._A._Bakshi_And_A._P._Godse/README.txt
M Applied_Thermodynamics_and_Engineering_by_T._D._Eastop_and_A._Mcconkey/README.txt
A Basic_And_Applied_Thermodynamics_by_P._K._Nag/Chapter01.ipynb
A Basic_And_Applied_Thermodynamics_by_P._K._Nag/Chapter02.ipynb
A Basic_And_Applied_Thermodynamics_by_P._K._Nag/Chapter03.ipynb
A Basic_And_Applied_Thermodynamics_by_P._K._Nag/Chapter04.ipynb
A Basic_And_Applied_Thermodynamics_by_P._K._Nag/Chapter05.ipynb
A Basic_And_Applied_Thermodynamics_by_P._K._Nag/Chapter10.ipynb
A Basic_And_Applied_Thermodynamics_by_P._K._Nag/Chapter11.ipynb
A Basic_And_Applied_Thermodynamics_by_P._K._Nag/Chapter12.ipynb
A Basic_And_Applied_Thermodynamics_by_P._K._Nag/Chapter13.ipynb
A Basic_And_Applied_Thermodynamics_by_P._K._Nag/Chapter14.ipynb
A Basic_And_Applied_Thermodynamics_by_P._K._Nag/Chapter15.ipynb
A Basic_And_Applied_Thermodynamics_by_P._K._Nag/Chapter16.ipynb
A Basic_And_Applied_Thermodynamics_by_P._K._Nag/Chapter17.ipynb
A Basic_And_Applied_Thermodynamics_by_P._K._Nag/Chapter18.ipynb
A Basic_And_Applied_Thermodynamics_by_P._K._Nag/Chapter19.ipynb
A Basic_And_Applied_Thermodynamics_by_P._K._Nag/Chapter20.ipynb
A Basic_And_Applied_Thermodynamics_by_P._K._Nag/Chapter21.ipynb
A Basic_And_Applied_Thermodynamics_by_P._K._Nag/Chapter22.ipynb
A Basic_And_Applied_Thermodynamics_by_P._K._Nag/Chapter6.ipynb
A Basic_And_Applied_Thermodynamics_by_P._K._Nag/Chapter7.ipynb
A Basic_And_Applied_Thermodynamics_by_P._K._Nag/Chapter8.ipynb
A Basic_And_Applied_Thermodynamics_by_P._K._Nag/Chapter9.ipynb
A Basic_And_Applied_Thermodynamics_by_P._K._Nag/screenshots/16.11.png
A Basic_And_Applied_Thermodynamics_by_P._K._Nag/screenshots/3.3.png
A Basic_And_Applied_Thermodynamics_by_P._K._Nag/screenshots/7.10.png
R Basic_Electronics_(Electronics_Engineering)_by_J.B.Gupta/chapter1.ipynb -> Basic_Electronics_(Electronics_Engineering)_by_J_B_Gupta/chapter1.ipynb
R Basic_Electronics_(Electronics_Engineering)_by_J.B.Gupta/chapter10.ipynb -> Basic_Electronics_(Electronics_Engineering)_by_J_B_Gupta/chapter10.ipynb
R Basic_Electronics_(Electronics_Engineering)_by_J.B.Gupta/chapter13.ipynb -> Basic_Electronics_(Electronics_Engineering)_by_J_B_Gupta/chapter13.ipynb
R Basic_Electronics_(Electronics_Engineering)_by_J.B.Gupta/chapter14.ipynb -> Basic_Electronics_(Electronics_Engineering)_by_J_B_Gupta/chapter14.ipynb
R Basic_Electronics_(Electronics_Engineering)_by_J.B.Gupta/chapter15.ipynb -> Basic_Electronics_(Electronics_Engineering)_by_J_B_Gupta/chapter15.ipynb
R Basic_Electronics_(Electronics_Engineering)_by_J.B.Gupta/chapter2.ipynb -> Basic_Electronics_(Electronics_Engineering)_by_J_B_Gupta/chapter2.ipynb
R Basic_Electronics_(Electronics_Engineering)_by_J.B.Gupta/chapter3.ipynb -> Basic_Electronics_(Electronics_Engineering)_by_J_B_Gupta/chapter3.ipynb
R Basic_Electronics_(Electronics_Engineering)_by_J.B.Gupta/chapter4.ipynb -> Basic_Electronics_(Electronics_Engineering)_by_J_B_Gupta/chapter4.ipynb
R Basic_Electronics_(Electronics_Engineering)_by_J.B.Gupta/chapter5.ipynb -> Basic_Electronics_(Electronics_Engineering)_by_J_B_Gupta/chapter5.ipynb
R Basic_Electronics_(Electronics_Engineering)_by_J.B.Gupta/chapter6.ipynb -> Basic_Electronics_(Electronics_Engineering)_by_J_B_Gupta/chapter6.ipynb
R Basic_Electronics_(Electronics_Engineering)_by_J.B.Gupta/chapter7.ipynb -> Basic_Electronics_(Electronics_Engineering)_by_J_B_Gupta/chapter7.ipynb
R Basic_Electronics_(Electronics_Engineering)_by_J.B.Gupta/chapter8.ipynb -> Basic_Electronics_(Electronics_Engineering)_by_J_B_Gupta/chapter8.ipynb
R Basic_Electronics_(Electronics_Engineering)_by_J.B.Gupta/chapter9.ipynb -> Basic_Electronics_(Electronics_Engineering)_by_J_B_Gupta/chapter9.ipynb
R Basic_Electronics_(Electronics_Engineering)_by_J.B.Gupta/screenshots/Screenshot_(88).png -> Basic_Electronics_(Electronics_Engineering)_by_J_B_Gupta/screenshots/Screenshot_(88).png
R Basic_Electronics_(Electronics_Engineering)_by_J.B.Gupta/screenshots/Screenshot_(89).png -> Basic_Electronics_(Electronics_Engineering)_by_J_B_Gupta/screenshots/Screenshot_(89).png
R Basic_Electronics_(Electronics_Engineering)_by_J.B.Gupta/screenshots/Screenshot_(90).png -> Basic_Electronics_(Electronics_Engineering)_by_J_B_Gupta/screenshots/Screenshot_(90).png
M Coulson_And_Richardsons_Chemical_Engineering,_Volume_2_by_J._M._Coulson,_J._F._Richardson,_J._R._Backhurst_And_J._H._Harker/README.txt
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M Digital_Communications_by_S._Haykin/Chapter2.ipynb
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M Introductory_Methods_Of_Numerical_Analysis__by_S._S._Sastry/chapter_5_11.ipynb
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M Linear_Algebra_by_K._Hoffman_and_R._Kunze/Chapter1.ipynb
M Linear_Algebra_by_K._Hoffman_and_R._Kunze/Chapter10.ipynb
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M Manufacturing_Engineering_&_Technology_by__S_Kalpakjian_and_S_R_Schmid/CHAPTER10_14.ipynb
M Manufacturing_Engineering_&_Technology_by__S_Kalpakjian_and_S_R_Schmid/CHAPTER13_14.ipynb
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M Material_Science_by_S._L._Kakani_and_A._Kakani/README.txt
M Material_Science_by_S._L._Kakani_and_A._Kakani/ch10.ipynb
M Material_Science_by_S._L._Kakani_and_A._Kakani/ch11.ipynb
M Material_Science_by_S._L._Kakani_and_A._Kakani/ch12.ipynb
M Material_Science_by_S._L._Kakani_and_A._Kakani/ch13.ipynb
M Material_Science_by_S._L._Kakani_and_A._Kakani/ch14.ipynb
M Material_Science_by_S._L._Kakani_and_A._Kakani/ch15.ipynb
M Material_Science_by_S._L._Kakani_and_A._Kakani/ch16.ipynb
M Material_Science_by_S._L._Kakani_and_A._Kakani/ch18.ipynb
M Material_Science_by_S._L._Kakani_and_A._Kakani/ch2.ipynb
M Material_Science_by_S._L._Kakani_and_A._Kakani/ch3.ipynb
M Material_Science_by_S._L._Kakani_and_A._Kakani/ch4.ipynb
M Material_Science_by_S._L._Kakani_and_A._Kakani/ch5.ipynb
M Material_Science_by_S._L._Kakani_and_A._Kakani/ch6.ipynb
M Material_Science_by_S._L._Kakani_and_A._Kakani/ch7.ipynb
M Material_Science_by_S._L._Kakani_and_A._Kakani/ch8.ipynb
M Material_Science_by_S._L._Kakani_and_A._Kakani/ch9.ipynb
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M Material_Science_by_S._L._Kakani_and_A._Kakani/screenshots/16.png
M Material_Science_by_S._L._Kakani_and_A._Kakani/screenshots/7.png
M Microwave_engineering__by_D.M.Pozar_/Chapter_10_ACTIVE_MICROWAVE_CIRCUITS_2.ipynb
M Microwave_engineering__by_D.M.Pozar_/Chapter_10_ACTIVE_MICROWAVE_CIRCUITS_3.ipynb
M Microwave_engineering__by_D.M.Pozar_/Chapter_10_ACTIVE_MICROWAVE_CIRCUITS_4.ipynb
M Microwave_engineering__by_D.M.Pozar_/Chapter_12_INTRODUCTION_TO_MICROWAVE_SYSTEMS_2.ipynb
M Microwave_engineering__by_D.M.Pozar_/Chapter_12_INTRODUCTION_TO_MICROWAVE_SYSTEMS_3.ipynb
M Microwave_engineering__by_D.M.Pozar_/Chapter_12_INTRODUCTION_TO_MICROWAVE_SYSTEMS_4.ipynb
M Microwave_engineering__by_D.M.Pozar_/Chapter_1_ELECTROMAGNETIC_THEORY_2.ipynb
M Microwave_engineering__by_D.M.Pozar_/Chapter_1_ELECTROMAGNETIC_THEORY_3.ipynb
M Microwave_engineering__by_D.M.Pozar_/Chapter_1_ELECTROMAGNETIC_THEORY_4.ipynb
M Microwave_engineering__by_D.M.Pozar_/Chapter_2_TRANSMISSION_LINE_THEORY_2.ipynb
M Microwave_engineering__by_D.M.Pozar_/Chapter_2_TRANSMISSION_LINE_THEORY_3.ipynb
M Microwave_engineering__by_D.M.Pozar_/Chapter_2_TRANSMISSION_LINE_THEORY_4.ipynb
M Microwave_engineering__by_D.M.Pozar_/Chapter_3_TRANSMISSION_LINE_AND_WAVEGUIDES_2.ipynb
M Microwave_engineering__by_D.M.Pozar_/Chapter_3_TRANSMISSION_LINE_AND_WAVEGUIDES_3.ipynb
M Microwave_engineering__by_D.M.Pozar_/Chapter_3_TRANSMISSION_LINE_AND_WAVEGUIDES_4.ipynb
M Microwave_engineering__by_D.M.Pozar_/Chapter_4_MICROWAVE_NETWORK_ANALYSIS_2.ipynb
M Microwave_engineering__by_D.M.Pozar_/Chapter_4_MICROWAVE_NETWORK_ANALYSIS_3.ipynb
M Microwave_engineering__by_D.M.Pozar_/Chapter_4_MICROWAVE_NETWORK_ANALYSIS_4.ipynb
M Microwave_engineering__by_D.M.Pozar_/Chapter_5_IMPEDENCE_MATCHING_AND_TUNNING_2.ipynb
M Microwave_engineering__by_D.M.Pozar_/Chapter_5_IMPEDENCE_MATCHING_AND_TUNNING_3.ipynb
M Microwave_engineering__by_D.M.Pozar_/Chapter_5_IMPEDENCE_MATCHING_AND_TUNNING_4.ipynb
M Microwave_engineering__by_D.M.Pozar_/Chapter_6_MICROWAVE_RESONATORS_2.ipynb
M Microwave_engineering__by_D.M.Pozar_/Chapter_6_MICROWAVE_RESONATORS_3.ipynb
M Microwave_engineering__by_D.M.Pozar_/Chapter_6_MICROWAVE_RESONATORS_4.ipynb
M Microwave_engineering__by_D.M.Pozar_/Chapter_7_POWER_DIVIDERS_DIRECTIONAL_COUPLERS_AND_HYBRIDS_2.ipynb
M Microwave_engineering__by_D.M.Pozar_/Chapter_7_POWER_DIVIDERS_DIRECTIONAL_COUPLERS_AND_HYBRIDS_3.ipynb
M Microwave_engineering__by_D.M.Pozar_/Chapter_7_POWER_DIVIDERS_DIRECTIONAL_COUPLERS_AND_HYBRIDS_4.ipynb
M Microwave_engineering__by_D.M.Pozar_/Chapter_8_MICROWAVE_FILTERS_2.ipynb
M Microwave_engineering__by_D.M.Pozar_/Chapter_8_MICROWAVE_FILTERS_3.ipynb
M Microwave_engineering__by_D.M.Pozar_/Chapter_8_MICROWAVE_FILTERS_4.ipynb
M Microwave_engineering__by_D.M.Pozar_/Chapter_9_THEORY_AND_DESIGN_OF_FERRIMAGNETIC_COMPONENTS_2.ipynb
M Microwave_engineering__by_D.M.Pozar_/Chapter_9_THEORY_AND_DESIGN_OF_FERRIMAGNETIC_COMPONENTS_3.ipynb
M Microwave_engineering__by_D.M.Pozar_/Chapter_9_THEORY_AND_DESIGN_OF_FERRIMAGNETIC_COMPONENTS_4.ipynb
M Microwave_engineering__by_D.M.Pozar_/README.txt
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M Microwave_engineering__by_D.M.Pozar_/screenshots/Screen_Shot_2016-06-29_at_6.35.29_pm.png
M Microwave_engineering__by_D.M.Pozar_/screenshots/Screen_Shot_2016-06-29_at_6.36.09_pm.png
M Microwave_engineering__by_D.M.Pozar_/screenshots/chap_1.png
M Microwave_engineering__by_D.M.Pozar_/screenshots/chap_1_1.png
M Microwave_engineering__by_D.M.Pozar_/screenshots/chap_2.png
M Microwave_engineering__by_D.M.Pozar_/screenshots/chap_2_1.png
M Microwave_engineering__by_D.M.Pozar_/screenshots/chap_3.png
M Microwave_engineering__by_D.M.Pozar_/screenshots/chap_3_1.png
M Numerical_Methods_For_Engineers_by_S._C._Chapra_And_R._P._Canale/Chapter10_2.ipynb
M Numerical_Methods_For_Engineers_by_S._C._Chapra_And_R._P._Canale/Chapter11_2.ipynb
M Numerical_Methods_For_Engineers_by_S._C._Chapra_And_R._P._Canale/Chapter13_2.ipynb
M Numerical_Methods_For_Engineers_by_S._C._Chapra_And_R._P._Canale/Chapter14_2.ipynb
M Numerical_Methods_For_Engineers_by_S._C._Chapra_And_R._P._Canale/Chapter15_2.ipynb
M Numerical_Methods_For_Engineers_by_S._C._Chapra_And_R._P._Canale/Chapter17_2.ipynb
M Numerical_Methods_For_Engineers_by_S._C._Chapra_And_R._P._Canale/Chapter18_2.ipynb
M Numerical_Methods_For_Engineers_by_S._C._Chapra_And_R._P._Canale/Chapter19_2.ipynb
M Numerical_Methods_For_Engineers_by_S._C._Chapra_And_R._P._Canale/Chapter1_2.ipynb
M Numerical_Methods_For_Engineers_by_S._C._Chapra_And_R._P._Canale/Chapter21_2.ipynb
M Numerical_Methods_For_Engineers_by_S._C._Chapra_And_R._P._Canale/Chapter22_2.ipynb
M Numerical_Methods_For_Engineers_by_S._C._Chapra_And_R._P._Canale/Chapter23_2.ipynb
M Numerical_Methods_For_Engineers_by_S._C._Chapra_And_R._P._Canale/Chapter25_2.ipynb
M Numerical_Methods_For_Engineers_by_S._C._Chapra_And_R._P._Canale/Chapter26_2.ipynb
M Numerical_Methods_For_Engineers_by_S._C._Chapra_And_R._P._Canale/Chapter3_2.ipynb
M Numerical_Methods_For_Engineers_by_S._C._Chapra_And_R._P._Canale/Chapter4_2.ipynb
M Numerical_Methods_For_Engineers_by_S._C._Chapra_And_R._P._Canale/Chapter5_2.ipynb
M Numerical_Methods_For_Engineers_by_S._C._Chapra_And_R._P._Canale/Chapter6_2.ipynb
M Numerical_Methods_For_Engineers_by_S._C._Chapra_And_R._P._Canale/Chapter7_2.ipynb
M Numerical_Methods_For_Engineers_by_S._C._Chapra_And_R._P._Canale/Chapter9_2.ipynb
M Numerical_Methods_For_Engineers_by_S._C._Chapra_And_R._P._Canale/README.txt
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M Numerical_Methods_For_Engineers_by_S._C._Chapra_And_R._P._Canale/screenshots/image2.png
M Numerical_Methods_For_Engineers_by_S._C._Chapra_And_R._P._Canale/screenshots/image3.png
M Optical_Fiber_Communication_System_by_Dr._M.K._Raina/README.txt
M PRINCIPLES_OF_MASS_TRANSFER_AND_SEPARATION_PROCESS_by_Binay_K._Dutta/Chapter-2.ipynb
M PRINCIPLES_OF_MASS_TRANSFER_AND_SEPARATION_PROCESS_by_Binay_K._Dutta/Chapter-3.ipynb
M PRINCIPLES_OF_MASS_TRANSFER_AND_SEPARATION_PROCESS_by_Binay_K._Dutta/Chapter-4.ipynb
M PRINCIPLES_OF_MASS_TRANSFER_AND_SEPARATION_PROCESS_by_Binay_K._Dutta/Chapter-5.ipynb
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M PRINCIPLES_OF_MASS_TRANSFER_AND_SEPARATION_PROCESS_by_Binay_K._Dutta/screenshots/chapter2_example_2.4_plot_2.png
M PRINCIPLES_OF_MASS_TRANSFER_AND_SEPARATION_PROCESS_by_Binay_K._Dutta/screenshots/chapter4_example_4.5_plot_2.png
M Physics-_For_Students_Of_Science_And_Engineering(Part_2)_by_D._Halliday_and_R._Resnick/Chapter26.ipynb
M Physics-_For_Students_Of_Science_And_Engineering(Part_2)_by_D._Halliday_and_R._Resnick/Chapter27.ipynb
M Physics-_For_Students_Of_Science_And_Engineering(Part_2)_by_D._Halliday_and_R._Resnick/Chapter28.ipynb
M Physics-_For_Students_Of_Science_And_Engineering(Part_2)_by_D._Halliday_and_R._Resnick/Chapter29.ipynb
M Physics-_For_Students_Of_Science_And_Engineering(Part_2)_by_D._Halliday_and_R._Resnick/Chapter30.ipynb
M Physics-_For_Students_Of_Science_And_Engineering(Part_2)_by_D._Halliday_and_R._Resnick/Chapter31.ipynb
M Physics-_For_Students_Of_Science_And_Engineering(Part_2)_by_D._Halliday_and_R._Resnick/Chapter33.ipynb
M Physics-_For_Students_Of_Science_And_Engineering(Part_2)_by_D._Halliday_and_R._Resnick/Chapter34.ipynb
M Physics-_For_Students_Of_Science_And_Engineering(Part_2)_by_D._Halliday_and_R._Resnick/Chapter35.ipynb
M Physics-_For_Students_Of_Science_And_Engineering(Part_2)_by_D._Halliday_and_R._Resnick/Chapter36.ipynb
M Physics-_For_Students_Of_Science_And_Engineering(Part_2)_by_D._Halliday_and_R._Resnick/Chapter37.ipynb
M Physics-_For_Students_Of_Science_And_Engineering(Part_2)_by_D._Halliday_and_R._Resnick/Chapter38.ipynb
M Physics-_For_Students_Of_Science_And_Engineering(Part_2)_by_D._Halliday_and_R._Resnick/Chapter39.ipynb
M Physics-_For_Students_Of_Science_And_Engineering(Part_2)_by_D._Halliday_and_R._Resnick/Chapter40.ipynb
M Physics-_For_Students_Of_Science_And_Engineering(Part_2)_by_D._Halliday_and_R._Resnick/Chapter41.ipynb
M Physics-_For_Students_Of_Science_And_Engineering(Part_2)_by_D._Halliday_and_R._Resnick/Chapter42.ipynb
M Physics-_For_Students_Of_Science_And_Engineering(Part_2)_by_D._Halliday_and_R._Resnick/Chapter43.ipynb
M Physics-_For_Students_Of_Science_And_Engineering(Part_2)_by_D._Halliday_and_R._Resnick/Chapter44.ipynb
M Physics-_For_Students_Of_Science_And_Engineering(Part_2)_by_D._Halliday_and_R._Resnick/Chapter45.ipynb
M Physics-_For_Students_Of_Science_And_Engineering(Part_2)_by_D._Halliday_and_R._Resnick/Chapter46.ipynb
M Physics-_For_Students_Of_Science_And_Engineering(Part_2)_by_D._Halliday_and_R._Resnick/Chapter47.ipynb
M Physics-_For_Students_Of_Science_And_Engineering(Part_2)_by_D._Halliday_and_R._Resnick/Chapter48.ipynb
M Physics-_For_Students_Of_Science_And_Engineering(Part_2)_by_D._Halliday_and_R._Resnick/screenshots/Chapter_37.png
M Physics-_For_Students_Of_Science_And_Engineering(Part_2)_by_D._Halliday_and_R._Resnick/screenshots/Chapter_38.png
M Physics-_For_Students_Of_Science_And_Engineering(Part_2)_by_D._Halliday_and_R._Resnick/screenshots/Chapter_39.png
M Power_Electronics:_Principles_&_Applications_by_J_M_Jacob/Chapter1.ipynb
M Power_Electronics:_Principles_&_Applications_by_J_M_Jacob/Chapter2.ipynb
M Power_Electronics:_Principles_&_Applications_by_J_M_Jacob/Chapter3.ipynb
M Power_Electronics:_Principles_&_Applications_by_J_M_Jacob/Chapter4.ipynb
M Power_Electronics:_Principles_&_Applications_by_J_M_Jacob/Chapter5.ipynb
M Power_Electronics:_Principles_&_Applications_by_J_M_Jacob/Chapter6.ipynb
M Power_Electronics:_Principles_&_Applications_by_J_M_Jacob/Chapter7.ipynb
M Power_Electronics:_Principles_&_Applications_by_J_M_Jacob/Chapter8.ipynb
M Power_Electronics:_Principles_&_Applications_by_J_M_Jacob/Chapter9.ipynb
M Power_Electronics:_Principles_&_Applications_by_J_M_Jacob/screenshots/1.png
M Power_Electronics:_Principles_&_Applications_by_J_M_Jacob/screenshots/2.png
M Power_Electronics:_Principles_&_Applications_by_J_M_Jacob/screenshots/3.png
M Power_Electronics_Principles_&_Applications_by_J_M_Jacob/Chapter1.ipynb
M Power_Electronics_Principles_&_Applications_by_J_M_Jacob/Chapter1_1.ipynb
M Power_Electronics_Principles_&_Applications_by_J_M_Jacob/Chapter2.ipynb
M Power_Electronics_Principles_&_Applications_by_J_M_Jacob/Chapter2_1.ipynb
M Power_Electronics_Principles_&_Applications_by_J_M_Jacob/Chapter3.ipynb
M Power_Electronics_Principles_&_Applications_by_J_M_Jacob/Chapter3_1.ipynb
M Power_Electronics_Principles_&_Applications_by_J_M_Jacob/Chapter4.ipynb
M Power_Electronics_Principles_&_Applications_by_J_M_Jacob/Chapter4_1.ipynb
M Power_Electronics_Principles_&_Applications_by_J_M_Jacob/Chapter5.ipynb
M Power_Electronics_Principles_&_Applications_by_J_M_Jacob/Chapter5_1.ipynb
M Power_Electronics_Principles_&_Applications_by_J_M_Jacob/Chapter6.ipynb
M Power_Electronics_Principles_&_Applications_by_J_M_Jacob/Chapter6_1.ipynb
M Power_Electronics_Principles_&_Applications_by_J_M_Jacob/Chapter7.ipynb
M Power_Electronics_Principles_&_Applications_by_J_M_Jacob/Chapter7_1.ipynb
M Power_Electronics_Principles_&_Applications_by_J_M_Jacob/Chapter8.ipynb
M Power_Electronics_Principles_&_Applications_by_J_M_Jacob/Chapter8_1.ipynb
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M Principles_of_Electronics_____by_V.K._Mehta_and_Rohit_Mehta/chapter22_1.ipynb
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M Principles_of_Electronics_____by_V.K._Mehta_and_Rohit_Mehta/chapter24_1.ipynb
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M Principles_of_Electronics_____by_V.K._Mehta_and_Rohit_Mehta/chapter25_1.ipynb
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M Principles_of_Electronics_____by_V.K._Mehta_and_Rohit_Mehta/chapter26_1.ipynb
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M Principles_of_Electronics_____by_V.K._Mehta_and_Rohit_Mehta/chapter2_1.ipynb
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M Principles_of_Mass_Transfer_and_Separation_Process_by_Binay_K._Dutta/Chapter2.ipynb
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M Principles_of_Physics_by_F.J.Bueche/Chapter1.ipynb
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M Principles_of_Physics_by_F.J.Bueche/Chapter11.ipynb
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M Principles_of_Physics_by_F.J.Bueche/Chapter13.ipynb
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M Principles_of_Physics_by_F.J.Bueche/Chapter14.ipynb
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M Principles_of_Physics_by_F.J.Bueche/Chapter15.ipynb
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M Principles_of_Physics_by_F.J.Bueche/Chapter16.ipynb
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M Principles_of_Physics_by_F.J.Bueche/Chapter18.ipynb
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M Principles_of_Physics_by_F.J.Bueche/Chapter1_1.ipynb
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M Principles_of_Physics_by_F.J.Bueche/Chapter20.ipynb
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M Principles_of_Physics_by_F.J.Bueche/Chapter21.ipynb
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M Principles_of_Physics_by_F.J.Bueche/Chapter22.ipynb
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M Principles_of_Physics_by_F.J.Bueche/Chapter23.ipynb
M Principles_of_Physics_by_F.J.Bueche/Chapter23_1.ipynb
M Principles_of_Physics_by_F.J.Bueche/Chapter24.ipynb
M Principles_of_Physics_by_F.J.Bueche/Chapter24_1.ipynb
M Principles_of_Physics_by_F.J.Bueche/Chapter25.ipynb
M Principles_of_Physics_by_F.J.Bueche/Chapter25_1.ipynb
M Principles_of_Physics_by_F.J.Bueche/Chapter26.ipynb
M Principles_of_Physics_by_F.J.Bueche/Chapter26_1.ipynb
M Principles_of_Physics_by_F.J.Bueche/Chapter27.ipynb
M Principles_of_Physics_by_F.J.Bueche/Chapter27_1.ipynb
M Principles_of_Physics_by_F.J.Bueche/Chapter2_1.ipynb
M Principles_of_Physics_by_F.J.Bueche/Chapter2_2.ipynb
M Principles_of_Physics_by_F.J.Bueche/Chapter3.ipynb
M Principles_of_Physics_by_F.J.Bueche/Chapter3_1.ipynb
M Principles_of_Physics_by_F.J.Bueche/Chapter3_2.ipynb
M Principles_of_Physics_by_F.J.Bueche/Chapter4.ipynb
M Principles_of_Physics_by_F.J.Bueche/Chapter4_1.ipynb
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M Principles_of_Physics_by_F.J.Bueche/Chapter5.ipynb
M Principles_of_Physics_by_F.J.Bueche/Chapter5_1.ipynb
M Principles_of_Physics_by_F.J.Bueche/Chapter5_2.ipynb
M Principles_of_Physics_by_F.J.Bueche/Chapter6.ipynb
M Principles_of_Physics_by_F.J.Bueche/Chapter6_1.ipynb
M Principles_of_Physics_by_F.J.Bueche/Chapter6_2.ipynb
M Principles_of_Physics_by_F.J.Bueche/Chapter7.ipynb
M Principles_of_Physics_by_F.J.Bueche/Chapter7_1.ipynb
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M Principles_of_Physics_by_F.J.Bueche/Chapter8.ipynb
M Principles_of_Physics_by_F.J.Bueche/Chapter8_1.ipynb
M Principles_of_Physics_by_F.J.Bueche/Chapter9.ipynb
M Principles_of_Physics_by_F.J.Bueche/Chapter9_1.ipynb
M Principles_of_Physics_by_F.J.Bueche/Chapter9_2.ipynb
A Principles_of_Physics_by_F.J.Bueche/README.txt
M Principles_of_Physics_by_F.J.Bueche/chapter12.ipynb
M Principles_of_Physics_by_F.J.Bueche/chapter12_1.ipynb
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M Principles_of_Physics_by_F.J.Bueche/screenshots/8.4_1.png
M Problems_in_Electrical_Engineering_by_Parker_Smith/Chapter1.ipynb
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M SURVYNG_AND_LEVELLING__by_N.N.BASAK/README.txt
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M SURVYNG_AND_LEVELLING__by_N.N.BASAK/chap10_Curves_1.ipynb
M SURVYNG_AND_LEVELLING__by_N.N.BASAK/chap1_Introduction.ipynb
M SURVYNG_AND_LEVELLING__by_N.N.BASAK/chap1_Introduction_1.ipynb
M SURVYNG_AND_LEVELLING__by_N.N.BASAK/chap2_Chain-Surveying.ipynb
M SURVYNG_AND_LEVELLING__by_N.N.BASAK/chap2_Chain-Surveying_1.ipynb
M SURVYNG_AND_LEVELLING__by_N.N.BASAK/chap3_Compass-Traversing.ipynb
M SURVYNG_AND_LEVELLING__by_N.N.BASAK/chap3_Compass-Traversing_1.ipynb
M SURVYNG_AND_LEVELLING__by_N.N.BASAK/chap5_Levelling.ipynb
M SURVYNG_AND_LEVELLING__by_N.N.BASAK/chap5_Levelling_1.ipynb
M SURVYNG_AND_LEVELLING__by_N.N.BASAK/chap7_Computation-of-Area.ipynb
M SURVYNG_AND_LEVELLING__by_N.N.BASAK/chap7_Computation-of-Area_1.ipynb
M SURVYNG_AND_LEVELLING__by_N.N.BASAK/chap8_Computation-of-Volume.ipynb
M SURVYNG_AND_LEVELLING__by_N.N.BASAK/chap8_Computation-of-Volume_1.ipynb
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M Solid_State_Electronic_Devices_by_D.K_Bhattacharya_,_Rajnish_Sharma/Chapter12.ipynb
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M Solid_State_Electronic_Devices_by_D.K_Bhattacharya_,_Rajnish_Sharma/Chapter3.ipynb
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M Solid_State_Electronic_Devices_by_D.K_Bhattacharya_,_Rajnish_Sharma/Chapter5.ipynb
M Solid_State_Electronic_Devices_by_D.K_Bhattacharya_,_Rajnish_Sharma/Chapter6.ipynb
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M Theory_of_Alternating_Current_Machinery_by_A._S._Langsdorf/Chapter1.ipynb
M Theory_of_Alternating_Current_Machinery_by_A._S._Langsdorf/Chapter10.ipynb
M Theory_of_Alternating_Current_Machinery_by_A._S._Langsdorf/Chapter16.ipynb
M Theory_of_Alternating_Current_Machinery_by_A._S._Langsdorf/Chapter2.ipynb
M Theory_of_Alternating_Current_Machinery_by_A._S._Langsdorf/Chapter3.ipynb
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M Theory_of_Alternating_Current_Machinery_by_A._S._Langsdorf/screenshots/chapter3.png
M Thermodynamics_by_K._M._Gupta/README.txt
M Thermodynamics_by_K._M._Gupta/ch1.ipynb
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M Thermodynamics_by_K._M._Gupta/ch3.ipynb
M Thermodynamics_by_K._M._Gupta/ch4.ipynb
M Thermodynamics_by_K._M._Gupta/ch5.ipynb
M Thermodynamics_by_K._M._Gupta/ch6.ipynb
M Thermodynamics_by_K._M._Gupta/ch7.ipynb
M Thermodynamics_by_K._M._Gupta/ch8.ipynb
M Thermodynamics_by_K._M._Gupta/ch9.ipynb
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M basic_electrical_engineering_by_nagsarkar_and_sukhija/Chapter2.ipynb
M basic_electrical_engineering_by_nagsarkar_and_sukhija/Chapter4.ipynb
M basic_electrical_engineering_by_nagsarkar_and_sukhija/Chapter5.ipynb
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M basic_electrical_engineering_by_nagsarkar_and_sukhija/chapter11.ipynb
M basic_electrical_engineering_by_nagsarkar_and_sukhija/chapter3_(2).ipynb
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M basic_electrical_engineering_by_nagsarkar_and_sukhija/chapter8.ipynb
M basic_electrical_engineering_by_nagsarkar_and_sukhija/chapter9.ipynb
M basic_electrical_engineering_by_nagsarkar_and_sukhija/screenshots/chap1.png
M basic_electrical_engineering_by_nagsarkar_and_sukhija/screenshots/chapter2.png
M basic_electrical_engineering_by_nagsarkar_and_sukhija/screenshots/chapter6.png
M modern_physics_by_Satish_K._Gupta/README.txt
M modern_physics_by_Satish_K._Gupta/chap10_1.ipynb
M modern_physics_by_Satish_K._Gupta/chap11_1.ipynb
M modern_physics_by_Satish_K._Gupta/chap12_1.ipynb
M modern_physics_by_Satish_K._Gupta/chap13_1.ipynb
M modern_physics_by_Satish_K._Gupta/chap14_1.ipynb
M modern_physics_by_Satish_K._Gupta/chap15_1.ipynb
M modern_physics_by_Satish_K._Gupta/chap16_1.ipynb
M modern_physics_by_Satish_K._Gupta/chap17_1.ipynb
M modern_physics_by_Satish_K._Gupta/chap18_1.ipynb
M modern_physics_by_Satish_K._Gupta/chap19_1.ipynb
M modern_physics_by_Satish_K._Gupta/chap1_1.ipynb
M modern_physics_by_Satish_K._Gupta/chap20_1.ipynb
M modern_physics_by_Satish_K._Gupta/chap21_1.ipynb
M modern_physics_by_Satish_K._Gupta/chap22_1.ipynb
M modern_physics_by_Satish_K._Gupta/chap23_1.ipynb
M modern_physics_by_Satish_K._Gupta/chap25_1.ipynb
M modern_physics_by_Satish_K._Gupta/chap26_1.ipynb
M modern_physics_by_Satish_K._Gupta/chap27_1.ipynb
M modern_physics_by_Satish_K._Gupta/chap28_1.ipynb
M modern_physics_by_Satish_K._Gupta/chap2_1.ipynb
M modern_physics_by_Satish_K._Gupta/chap30_1.ipynb
M modern_physics_by_Satish_K._Gupta/chap31_1.ipynb
M modern_physics_by_Satish_K._Gupta/chap32_1.ipynb
M modern_physics_by_Satish_K._Gupta/chap33_1.ipynb
M modern_physics_by_Satish_K._Gupta/chap34_1.ipynb
M modern_physics_by_Satish_K._Gupta/chap35_1.ipynb
M modern_physics_by_Satish_K._Gupta/chap36_1.ipynb
M modern_physics_by_Satish_K._Gupta/chap37_1.ipynb
M modern_physics_by_Satish_K._Gupta/chap3_1.ipynb
M modern_physics_by_Satish_K._Gupta/chap4_1.ipynb
M modern_physics_by_Satish_K._Gupta/chap5_1.ipynb
M modern_physics_by_Satish_K._Gupta/chap6_1.ipynb
M modern_physics_by_Satish_K._Gupta/chap7_1.ipynb
M modern_physics_by_Satish_K._Gupta/chap8_1.ipynb
M modern_physics_by_Satish_K._Gupta/chap9_1.ipynb
M modern_physics_by_Satish_K._Gupta/chap_29_1.ipynb
M modern_physics_by_Satish_K._Gupta/screenshots/image1_1.png
M modern_physics_by_Satish_K._Gupta/screenshots/image22_1.png
M modern_physics_by_Satish_K._Gupta/screenshots/image33_1.png
M sample_notebooks/AdityaR/Chapter_5-Sample_Notebook.ipynb
M sample_notebooks/AdityaR/Chapter_5.ipynb
M sample_notebooks/AshvaniKumar/ch10.ipynb
M "sample_notebooks/Deepak SinghAttri/Chapter17.ipynb"
M sample_notebooks/Harshitgarg/Chapter_1-INTRODUCTION_TO_MECHANICS_OF_SOLIDS_.ipynb
M sample_notebooks/Harshitgarg/Chapter_1-INTRODUCTION_TO_MECHANICS_OF_SOLIDS__1.ipynb
M sample_notebooks/Harshitgarg/Chapter_1-INTRODUCTION_TO_MECHANICS_OF_SOLIDS__2.ipynb
M "sample_notebooks/KARTHIKEYAN S/CHAPTER_1.ipynb"
M sample_notebooks/MeenaChandrupatla/Chapter2_Gases.ipynb
M sample_notebooks/MeenaChandrupatla/Chapter2_Gases_1.ipynb
M sample_notebooks/MohdAsif/chapter1.ipynb
M sample_notebooks/NityaL/Sample-Chapter_26.ipynb
M sample_notebooks/NityaL/Sample.ipynb
M "sample_notebooks/PRAVEENKUMAR C/STATICS_CHAPTER_1.ipynb"
M sample_notebooks/PraveenKumar/chapter1.ipynb
M sample_notebooks/PreetiRani/ch4.ipynb
M sample_notebooks/PriyankaSaini/CHAPTER1.ipynb
M "sample_notebooks/Reshma Ustad/Chapter_2_Properties_Of_Material.ipynb"
M sample_notebooks/RuchiMittal/chpater3.ipynb
M sample_notebooks/SPANDANAARROJU/Chapter5.ipynb
M "sample_notebooks/Sai KumarMadem/Chapter2.ipynb"
M sample_notebooks/ShantanuBhosale/chapter40.ipynb
M sample_notebooks/ShantanuBhosale/chapter40_1.ipynb
M sample_notebooks/SundeepKatta/Chapter7.ipynb
M sample_notebooks/VineshSaini/ch10.ipynb
M sample_notebooks/kapiljain/Chapter12.ipynb
M sample_notebooks/karansingh/ch1.ipynb
M sample_notebooks/kartiksankhla/Chapter2_1.ipynb
M sample_notebooks/maheshvattikuti/Untitled-checkpoint.ipynb
M sample_notebooks/pratiksonone/Chapter1_1.ipynb
M sample_notebooks/ramcharanvattikuti/Untitled-checkpoint.ipynb
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diff --git a/Basic_And_Applied_Thermodynamics_by_P._K._Nag/Chapter22.ipynb b/Basic_And_Applied_Thermodynamics_by_P._K._Nag/Chapter22.ipynb new file mode 100644 index 00000000..e9d827fd --- /dev/null +++ b/Basic_And_Applied_Thermodynamics_by_P._K._Nag/Chapter22.ipynb @@ -0,0 +1,493 @@ +{ + "cells": [ + { + "cell_type": "markdown", + "metadata": {}, + "source": [ + "# Chapter 22: Transport Processes in Gas" + ] + }, + { + "cell_type": "markdown", + "metadata": {}, + "source": [ + "## Ex22.1:pg-911" + ] + }, + { + "cell_type": "code", + "execution_count": 22, + "metadata": { + "collapsed": false + }, + "outputs": [ + { + "name": "stdout", + "output_type": "stream", + "text": [ + "\n", + " Example 22.1 \n", + "\n", + "\n", + " Mean free path = math.exp m,\n", + " The fraction of molecules have free path longer than 2*lambda = 13.5335283237 percent\n" + ] + } + ], + "source": [ + "# Given that\n", + "p = 1.013e5 # Pressure in Pa\n", + "t = 300 # Temperature in K\n", + "d = 3.5 # Effective diameter of oxygen molecule in Angstrom \n", + "r = 2 # Ratio of free path of molecules with the lambda\n", + "print \"\\n Example 22.1 \\n\"\n", + "sigma = math.pi*(d*(10**-10))**2\n", + "n = p/(t*1.38*(10**-23))\n", + "R = math.exp(-r)\n", + "print \"\\n Mean free path = math.exp m,\\n The fraction of molecules have free path longer than 2*lambda = \",R*100, \" percent\"\n", + "# Answer given in the book contain round off error for mean free path." + ] + }, + { + "cell_type": "markdown", + "metadata": {}, + "source": [ + "## Ex22.2:pg-912" + ] + }, + { + "cell_type": "code", + "execution_count": 23, + "metadata": { + "collapsed": false + }, + "outputs": [ + { + "name": "stdout", + "output_type": "stream", + "text": [ + "\n", + " Example 22.2 \n", + "\n", + "\n", + " Pressure of the gas = 134.236067593 Pa,\n", + " No of collisions made by a molecule per meter of path = math.exp 38022.8136882\n" + ] + } + ], + "source": [ + "\n", + "# Given that\n", + "lambda1 = (2.63e-5) # Mean free path of the molecules of the gas in m\n", + "t = 25 # Temperature in degree centigrade\n", + "r = 2.56e-10 # Radius of the molecules in m\n", + "print \"\\n Example 22.2 \\n\"\n", + "sigma = 4*math.pi*r**2\n", + "n = 0.707/(sigma*lambda1)\n", + "p = n*(t+273)*(1.38*10**-23)\n", + "N = 1.0/lambda1\n", + "print \"\\n Pressure of the gas = \",p,\" Pa,\\n No of collisions made by a molecule per meter of path = math.exp\",N\n", + "\n" + ] + }, + { + "cell_type": "markdown", + "metadata": {}, + "source": [ + "## Ex22.3:pg-912" + ] + }, + { + "cell_type": "code", + "execution_count": 24, + "metadata": { + "collapsed": false + }, + "outputs": [ + { + "name": "stdout", + "output_type": "stream", + "text": [ + "\n", + " Example 22.3 \n", + "\n", + "\n", + " The no of free paths which are longer than, \n", + " 10 cm = 3679.0 ,\n", + " 20 cm = 1354.0 ,\n", + " 50 cm = 68.0 ,\n", + "\n", + " The no of free paths which are between,\n", + " 5 cm and 10 cm = -2387.0 ,\n", + " 9.5 cm and 10.5 cm = -369.0 ,\n", + " 9.9 cm and 10.1 cm = -74.0 ,\n", + "\n", + " The no of free paths which are exactly 10 cm = -0.0\n" + ] + } + ], + "source": [ + "\n", + "# Given that\n", + "import math\n", + "from scipy import integrate \n", + "lambda1 = 10.0 # Mean free path of the gas in cm\n", + "N0 = 10000.0 # No of free paths\n", + "x1 = 10.0 # In cm\n", + "x2 = 20.0 # In cm\n", + "x3 = 50.0 # In cm\n", + "x4 = 5.0 # In cm\n", + "x5 = 9.5 # In cm\n", + "x6 = 10.5 # In cm\n", + "x7 = 9.9 # In cm\n", + "x8 = 10.1 # In cm\n", + "print \"\\n Example 22.3 \\n\"\n", + "# For x>10 cm\n", + "N1 = N0*(math.exp(-1))\n", + "# For x>20 cm\n", + "N2 = N0*(math.exp(-2))\n", + "# For x>50 cm\n", + "N3 = N0*(math.exp(-5))\n", + "def f(x): \n", + " y = (-N0/lambda1)*(math.exp((-x)/lambda1)),\n", + " return y\n", + "# For 5>x>10 cm\n", + "N4,er = integrate.quad( lambda x: (-N0/lambda1)*(math.exp((-x)/lambda1)),x4,x1)\n", + "# For 9.5>x>10.5 cm\n", + "N5,e = integrate.quad( lambda x: (-N0/lambda1)*(math.exp((-x)/lambda1)),x5,x6)\n", + "# For 9.9>x>10.1 cm\n", + "N6,eor = integrate.quad( lambda x: (-N0/lambda1)*(math.exp((-x)/lambda1)),x7,x8)\n", + "# For x=10 cm\n", + "N7,eer = integrate.quad( lambda x: (-N0/lambda1)*(math.exp((-x)/lambda1)),x1,x1)\n", + "print \"\\n The no of free paths which are longer than, \\n 10 cm = \",math. ceil(N1) ,\",\\n 20 cm = \",math. ceil(N2) ,\",\\n 50 cm = \",math. ceil(N3) ,\",\\n\\n The no of free paths which are between,\\n 5 cm and 10 cm = \",math.floor(N4) ,\",\\n 9.5 cm and 10.5 cm = \",math.floor(N5) ,\",\\n 9.9 cm and 10.1 cm = \",math.floor(N6) ,\",\\n\\n The no of free paths which are exactly 10 cm = \",N7 \n", + "\n" + ] + }, + { + "cell_type": "markdown", + "metadata": {}, + "source": [ + "## Ex22.4:pg-913" + ] + }, + { + "cell_type": "code", + "execution_count": 25, + "metadata": { + "collapsed": false + }, + "outputs": [ + { + "name": "stdout", + "output_type": "stream", + "text": [ + "\n", + " Example 22.4 \n", + "\n", + "\n", + " Coefficient of viscosity = math.exp Ns/m**2 2.051171875e-05\n" + ] + } + ], + "source": [ + "# Given that\n", + "p = 1.0 # Pressure in atm\n", + "t = 300.0 # Temperature in K\n", + "print \"\\n Example 22.4 \\n\"\n", + "# From previous example, we have\n", + "m = 5.31e-26 # In kg/molecule\n", + "v = 445.0 # In m/s\n", + "sigma = 3.84e-19 # In m**2\n", + "# Therefore\n", + "mu = (1.0/3.0)*(m*v/sigma)\n", + "print \"\\n Coefficient of viscosity = math.exp Ns/m**2\",mu" + ] + }, + { + "cell_type": "markdown", + "metadata": {}, + "source": [ + "## Ex22.5:pg-913" + ] + }, + { + "cell_type": "code", + "execution_count": 26, + "metadata": { + "collapsed": false + }, + "outputs": [ + { + "name": "stdout", + "output_type": "stream", + "text": [ + "\n", + " Example 22.5 \n", + "\n", + "\n", + " Thermal conductivity = 0.0 W/mK,\n", + " If the gas has Maxwellian velocity distribution,\n", + " Thermal conductivity = 5.98958333333e-05 W/mK\n" + ] + } + ], + "source": [ + "\n", + "# Given that\n", + "p = 1.0 # Pressure in atm\n", + "t = 300.0 # Temperature in K\n", + "F = 5.0 # For oxygen gas degree of freedom\n", + "print \"\\n Example 22.5 \\n\"\n", + "v = 445.0 # In m/s as given in the book\n", + "m = 5.31e-26 # Mass of oxygen molecule in kg\n", + "sigma = 3.84e-19 # As given in the book in m**2\n", + "k = (1/6)*(v*F*(1.38*10**-23))/sigma\n", + "# If the gas has Maxwellian velocity distribution,\n", + "k_ = (1.0/3.0)*(F*(1.38*10**-23)/sigma)*((1.38*10**-23)*t/(math.pi*m))**(1/2)\n", + "print \"\\n Thermal conductivity = \",k ,\" W/mK,\\n If the gas has Maxwellian velocity distribution,\\n Thermal conductivity = \",k_ ,\" W/mK\"\n", + "\n" + ] + }, + { + "cell_type": "markdown", + "metadata": {}, + "source": [ + "## Ex22.6:pg-914" + ] + }, + { + "cell_type": "code", + "execution_count": 27, + "metadata": { + "collapsed": false + }, + "outputs": [ + { + "name": "stdout", + "output_type": "stream", + "text": [ + "\n", + " Example 22.6 \n", + "\n", + "\n", + " Pressure in the cathode ray tube = 0.142844028924 Pa\n" + ] + } + ], + "source": [ + "import math\n", + "# Given that\n", + "F = .90 # Fraction of electrons leaving the cathode ray reach the anode without making a collision\n", + "x = 0.2 # Distance between cathode ray and anode in m\n", + "d = 3.6e-10 # Diameter of ion in m\n", + "t = 2000.0 # Temperature of electron in K\n", + "print \"\\n Example 22.6 \\n\"\n", + "lambda1 = x/(math.log(1/F))\n", + "sigma = math.pi*(d**2)\n", + "n = 4/(sigma*lambda1)\n", + "p = n*(1.38*10**-23)*(t)\n", + "print \"\\n Pressure in the cathode ray tube = \",p ,\" Pa\"" + ] + }, + { + "cell_type": "markdown", + "metadata": {}, + "source": [ + "## Ex22.7:pg-914" + ] + }, + { + "cell_type": "code", + "execution_count": 28, + "metadata": { + "collapsed": false + }, + "outputs": [ + { + "name": "stdout", + "output_type": "stream", + "text": [ + "\n", + " Example 22.7 \n", + "\n", + "\n", + " No of collisions per sec are made by one molecule with the other molecule = 9962400.07749 \n", + "The no of molecules strike the flask per sq. cm = 6.11714975845e+20 \n", + " No of molecules in the flask = 2.44685990338e+22\n" + ] + } + ], + "source": [ + "# Given that\n", + "V = 1.0 # Volume of the flask in litre\n", + "p = 1.0 # Pressure in atm\n", + "t = 300.0 # Temperature in K\n", + "r = 1.8e-10 # Radius of oxygen gas molecule in m\n", + "m = 5.31e-26 # Mass of oxygen molecule in kg\n", + "print \"\\n Example 22.7 \\n\"\n", + "n = (p*(1.013e5))/((1.38e-23)*(t)*1000)\n", + "sigma = 4*math.pi*(r**2)\n", + "v = ((8*(1.38e-23)*t)/(math.pi*m))**(1/2)\n", + "z = sigma*n*v*1000\n", + "N = (1.0/4.0)*(n*0.1*v)\n", + "print \"\\n No of collisions per sec are made by one molecule with the other molecule =\", z,\"\\nThe no of molecules strike the flask per sq. cm =\",N,\"\\n No of molecules in the flask =\",n" + ] + }, + { + "cell_type": "markdown", + "metadata": {}, + "source": [ + "## Ex22.8:pg-915" + ] + }, + { + "cell_type": "code", + "execution_count": 29, + "metadata": { + "collapsed": false + }, + "outputs": [ + { + "name": "stdout", + "output_type": "stream", + "text": [ + "\n", + " Example 22.8 \n", + "\n", + "\n", + " Time = 1.00003111262 s\n" + ] + } + ], + "source": [ + "# Given that\n", + "lambda1 = 2.0 # Mean free path in cm\n", + "T = 300.0 # Temperature in K\n", + "r = 0.5 # As half of the molecules did not make any collision\n", + "print \"\\n Example 22.8 \\n\"\n", + "x = lambda1*(math.log(1/r))\n", + "v = 445.58 # For oxygen at 300K in m/s\n", + "t = x/(v*100)\n", + "print \"\\n Time =\", math.exp(t), \"s\"\n", + "\n" + ] + }, + { + "cell_type": "markdown", + "metadata": {}, + "source": [ + "## Ex22.9:pg-915" + ] + }, + { + "cell_type": "code", + "execution_count": 30, + "metadata": { + "collapsed": false + }, + "outputs": [ + { + "name": "stdout", + "output_type": "stream", + "text": [ + "\n", + " Example 22.9 \n", + "\n", + "\n", + " Pressure = 1.03636998072 N/m**2\n" + ] + } + ], + "source": [ + "\n", + "# Given that\n", + "f = 0.9 # Fraction of electrons leaving the cathode ray and reaching the anode without making any collision\n", + "x = 20.0 # Distance between cathode ray tube and anode in cm\n", + "sigma = 4.07e-19 # Collision cross section of molecules in m**2\n", + "T = 2000 # Temperature in K\n", + "print \"\\n Example 22.9 \\n\"\n", + "lambda1 = (x*0.01)/(math.log(1.0/f))\n", + "n = 1/(sigma*lambda1)\n", + "p = n*(1.38e-23)*T\n", + "print \"\\n Pressure =\", math.exp(p), \"N/m**2\"\n", + "# The answer given in the book contains round off error.\n" + ] + }, + { + "cell_type": "markdown", + "metadata": {}, + "source": [ + "## Ex22.10:pg-916" + ] + }, + { + "cell_type": "code", + "execution_count": 31, + "metadata": { + "collapsed": false + }, + "outputs": [ + { + "name": "stdout", + "output_type": "stream", + "text": [ + "\n", + " Example 22.10 \n", + "\n", + "\n", + " Initial concentration gradient of reactive molecules = 0.0 molecules/m**4, \n", + " The no of reactive molecules per sec cross a cross section at the mid point of the tube from left to right = 0.9 molecules/m**2,\n", + " The no of reactive molecules per sec cross a cross section at the mid point of the tube from right to left = 4.08598425576e-12 molecule/m**2,\n", + " Initial net rate of diffusion = 0.0112863158384 g/m**2-s\n" + ] + } + ], + "source": [ + "# Given that\n", + "l = 2.0 # Length of tube in m\n", + "a = 1e-4 # Cross section of the tube in m**2\n", + "p = 1.0 # Pressure in atm\n", + "t = 0 # Temperature in degree centigrade\n", + "r = 0.5 # Fraction of the carbon atoms which are radioactive C14\n", + "sigma = 4e-19 # Collision cross section area in m**2\n", + "print \"\\n Example 22.10 \\n\"\n", + "n = (p*1.01325e+5)/((1.38e-23)*(t+273))\n", + "C_g = -n/l\n", + "m = (46/6.023)*10**-26 # In kg/molecule\n", + "v = (2.55*(1.38e-23)*(t+273)/m)**(1/2.0)\n", + "lambda1 = (1.0/(sigma*n))\n", + "gama = (1.0/4)*(v*n) - (1/6.0)*(v*lambda1*(C_g))\n", + "gama_ = (1/4.0)*(v*n) + (1.0/6.0)*(v*lambda1*(C_g))\n", + "x = (1.0/4)*(v*n)\n", + "y = (1.0/6)*(v*lambda1*(C_g))\n", + "d = (1.0/6)*(v*lambda1*(-1*C_g))*2*(m)\n", + "a=x+y\n", + "b=x-y\n", + "print \"\\n Initial concentration gradient of reactive molecules =\",math.exp (C_g),\" molecules/m**4, \\n The no of reactive molecules per sec cross a cross section at the mid point of the tube from left to right =\",f , \"molecules/m**2,\\n The no of reactive molecules per sec cross a cross section at the mid point of the tube from right to left =\",e ,\" molecule/m**2,\\n Initial net rate of diffusion = \",d*1000 ,\"g/m**2-s\"\n", + "# The answer for lambda given in the book conatains calculation error\n", + "# The answers contains calculation error\n" + ] + } + ], + "metadata": { + "kernelspec": { + "display_name": "Python 2", + "language": "python", + "name": "python2" + }, + "language_info": { + "codemirror_mode": { + "name": "ipython", + "version": 2 + }, + "file_extension": ".py", + "mimetype": "text/x-python", + "name": "python", + "nbconvert_exporter": "python", + "pygments_lexer": "ipython2", + "version": "2.7.11" + } + }, + "nbformat": 4, + "nbformat_minor": 0 +} |