From 534e42c1dee8fefa92f28d4496f273f8c6e4bd94 Mon Sep 17 00:00:00 2001 From: FOSSEE SysAds Date: Tue, 8 Dec 2015 15:04:13 +0600 Subject: Added(A)/Deleted(D) following books A A_Course_In_Mechanical_Measurements_And_Instrumentation_by_A._K._Sawhney_And_P._Sawhney/README.txt A A_Course_In_Mechanical_Measurements_And_Instrumentation_by_A._K._Sawhney_And_P._Sawhney/ch2_1.ipynb A A_Course_In_Mechanical_Measurements_And_Instrumentation_by_A._K._Sawhney_And_P._Sawhney/ch3_1.ipynb A A_Course_In_Mechanical_Measurements_And_Instrumentation_by_A._K._Sawhney_And_P._Sawhney/ch4_1.ipynb A A_Course_In_Mechanical_Measurements_And_Instrumentation_by_A._K._Sawhney_And_P._Sawhney/ch5_1.ipynb A A_Course_In_Mechanical_Measurements_And_Instrumentation_by_A._K._Sawhney_And_P._Sawhney/ch6_1.ipynb A A_Course_In_Mechanical_Measurements_And_Instrumentation_by_A._K._Sawhney_And_P._Sawhney/ch7_1.ipynb A A_Course_In_Mechanical_Measurements_And_Instrumentation_by_A._K._Sawhney_And_P._Sawhney/ch8_1.ipynb A 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Internal_Combustion_Engines_by_H._B._Keswani/screenshots/ch9.png A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter10_1.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter10_2.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter10_3.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter10_4.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter11_1.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter11_2.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter11_3.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter11_4.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter12_1.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter12_2.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter12_3.ipynb A 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Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter3_1.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter3_2.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter3_3.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter3_4.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter4_1.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter4_2.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter4_3.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter4_4.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter5_1.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter5_2.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter5_3.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter5_4.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter6_1.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter6_2.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter6_3.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter6_4.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter7_1.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter7_2.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter7_3.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter7_4.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter8_1.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter8_2.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter8_3.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter8_4.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter9_1.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter9_2.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter9_3.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter9_4.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/README.txt A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/screenshots/chapter10_1.png A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/screenshots/chapter10_2.png A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/screenshots/chapter10_3.png A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/screenshots/chapter10_4.png A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/screenshots/chapter3_1.png A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/screenshots/chapter3_2.png A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/screenshots/chapter3_3.png A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/screenshots/chapter3_4.png A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/screenshots/chapter4_1.png A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/screenshots/chapter4_2.png A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/screenshots/chapter4_3.png A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/screenshots/chapter4_4.png A Introduction_To_Mechanical_Engineering_by_S._Chandra_And_O._Singh/Chapter1.ipynb A Introduction_To_Mechanical_Engineering_by_S._Chandra_And_O._Singh/Chapter2(PartB).ipynb A Introduction_To_Mechanical_Engineering_by_S._Chandra_And_O._Singh/Chapter2.ipynb A Introduction_To_Mechanical_Engineering_by_S._Chandra_And_O._Singh/Chapter3(partB).ipynb A Introduction_To_Mechanical_Engineering_by_S._Chandra_And_O._Singh/Chapter3.ipynb A Introduction_To_Mechanical_Engineering_by_S._Chandra_And_O._Singh/Chapter4(PartB).ipynb A Introduction_To_Mechanical_Engineering_by_S._Chandra_And_O._Singh/Chapter4.ipynb A Introduction_To_Mechanical_Engineering_by_S._Chandra_And_O._Singh/Chapter5.ipynb A Introduction_To_Mechanical_Engineering_by_S._Chandra_And_O._Singh/Chapter6.ipynb A Introduction_To_Mechanical_Engineering_by_S._Chandra_And_O._Singh/Chapter7.ipynb A Introduction_To_Mechanical_Engineering_by_S._Chandra_And_O._Singh/screenshots/chapter1.png A Introduction_To_Mechanical_Engineering_by_S._Chandra_And_O._Singh/screenshots/chapter2.png A Introduction_To_Mechanical_Engineering_by_S._Chandra_And_O._Singh/screenshots/chapter3.png A Introduction_to_Electric_Drives_by_J._S._Katre/AppendixB.ipynb A Introduction_to_Electric_Drives_by_J._S._Katre/AppendixB_1.ipynb A Introduction_to_Electric_Drives_by_J._S._Katre/chapter1.ipynb A Introduction_to_Electric_Drives_by_J._S._Katre/chapter10.ipynb A Introduction_to_Electric_Drives_by_J._S._Katre/chapter10_1.ipynb A Introduction_to_Electric_Drives_by_J._S._Katre/chapter10_2.ipynb A Introduction_to_Electric_Drives_by_J._S._Katre/chapter1_1.ipynb A Introduction_to_Electric_Drives_by_J._S._Katre/chapter1_2.ipynb A Introduction_to_Electric_Drives_by_J._S._Katre/chapter2.ipynb A Introduction_to_Electric_Drives_by_J._S._Katre/chapter2_1.ipynb A Introduction_to_Electric_Drives_by_J._S._Katre/chapter2_2.ipynb A Introduction_to_Electric_Drives_by_J._S._Katre/chapter3.ipynb A Introduction_to_Electric_Drives_by_J._S._Katre/chapter3_1.ipynb A Introduction_to_Electric_Drives_by_J._S._Katre/chapter3_2.ipynb A Introduction_to_Electric_Drives_by_J._S._Katre/chapter5.ipynb A Introduction_to_Electric_Drives_by_J._S._Katre/chapter5_1.ipynb A Introduction_to_Electric_Drives_by_J._S._Katre/chapter5_2.ipynb A Introduction_to_Electric_Drives_by_J._S._Katre/chapter6.ipynb A Introduction_to_Electric_Drives_by_J._S._Katre/chapter6_1.ipynb A Introduction_to_Electric_Drives_by_J._S._Katre/chapter6_2.ipynb A Introduction_to_Electric_Drives_by_J._S._Katre/chapter8.ipynb A Introduction_to_Electric_Drives_by_J._S._Katre/chapter8_1.ipynb A Introduction_to_Electric_Drives_by_J._S._Katre/chapter8_2.ipynb A Introduction_to_Electric_Drives_by_J._S._Katre/chapter9.ipynb A Introduction_to_Electric_Drives_by_J._S._Katre/chapter9_1.ipynb A Introduction_to_Electric_Drives_by_J._S._Katre/chapter9_2.ipynb A Introduction_to_Electric_Drives_by_J._S._Katre/screenshots/ch6_VLdc_VLrms.png A Introduction_to_Electric_Drives_by_J._S._Katre/screenshots/ch6_VLdc_VLrms_1.png A Introduction_to_Electric_Drives_by_J._S._Katre/screenshots/ch6_VLdc_VLrms_2.png A Introduction_to_Electric_Drives_by_J._S._Katre/screenshots/ch6_variation_of_RF_FF.png A Introduction_to_Electric_Drives_by_J._S._Katre/screenshots/ch6_variation_of_RF_FF_1.png A Introduction_to_Electric_Drives_by_J._S._Katre/screenshots/ch6_variation_of_RF_FF_2.png A Introduction_to_Electric_Drives_by_J._S._Katre/screenshots/ch_3_variation_avg_rms_load_V.png A Introduction_to_Electric_Drives_by_J._S._Katre/screenshots/ch_3_variation_avg_rms_load_V_1.png A Introduction_to_Electric_Drives_by_J._S._Katre/screenshots/ch_3_variation_avg_rms_load_V_2.png A Introductory_Methods_Of_Numerical_Analysis__by_S._S._Sastry/Chapter9.ipynb A Introductory_Methods_Of_Numerical_Analysis__by_S._S._Sastry/chapter1.ipynb A Introductory_Methods_Of_Numerical_Analysis__by_S._S._Sastry/chapter2.ipynb A Introductory_Methods_Of_Numerical_Analysis__by_S._S._Sastry/chapter3.ipynb A Introductory_Methods_Of_Numerical_Analysis__by_S._S._Sastry/chapter4.ipynb A Introductory_Methods_Of_Numerical_Analysis__by_S._S._Sastry/chapter6.ipynb A Introductory_Methods_Of_Numerical_Analysis__by_S._S._Sastry/chapter7.ipynb A Introductory_Methods_Of_Numerical_Analysis__by_S._S._Sastry/chapter8.ipynb A Introductory_Methods_Of_Numerical_Analysis__by_S._S._Sastry/chapter_5.ipynb A Introductory_Methods_Of_Numerical_Analysis__by_S._S._Sastry/screenshots/ex1.2.png A Introductory_Methods_Of_Numerical_Analysis__by_S._S._Sastry/screenshots/ex3.13.png A Introductory_Methods_Of_Numerical_Analysis__by_S._S._Sastry/screenshots/ex6.7.png A Linear_Integrated_Circuits_by_J._B._Gupta/README.txt A Linear_Integrated_Circuits_by_J._B._Gupta/chapter01_1.ipynb A Linear_Integrated_Circuits_by_J._B._Gupta/chapter01_2.ipynb A Linear_Integrated_Circuits_by_J._B._Gupta/chapter02_1.ipynb A Linear_Integrated_Circuits_by_J._B._Gupta/chapter02_2.ipynb A Linear_Integrated_Circuits_by_J._B._Gupta/chapter03_1.ipynb A Linear_Integrated_Circuits_by_J._B._Gupta/chapter03_2.ipynb A Linear_Integrated_Circuits_by_J._B._Gupta/chapter04_1.ipynb A Linear_Integrated_Circuits_by_J._B._Gupta/chapter04_2.ipynb A Linear_Integrated_Circuits_by_J._B._Gupta/chapter05_1.ipynb A Linear_Integrated_Circuits_by_J._B._Gupta/chapter05_2.ipynb A Linear_Integrated_Circuits_by_J._B._Gupta/chapter06_1.ipynb A Linear_Integrated_Circuits_by_J._B._Gupta/chapter06_2.ipynb A Linear_Integrated_Circuits_by_J._B._Gupta/chapter07_1.ipynb A Linear_Integrated_Circuits_by_J._B._Gupta/chapter07_2.ipynb A Linear_Integrated_Circuits_by_J._B._Gupta/chapter08_1.ipynb A Linear_Integrated_Circuits_by_J._B._Gupta/chapter08_2.ipynb A Linear_Integrated_Circuits_by_J._B._Gupta/chapter09_1.ipynb A Linear_Integrated_Circuits_by_J._B._Gupta/chapter09_2.ipynb A Linear_Integrated_Circuits_by_J._B._Gupta/chapter10_1.ipynb A Linear_Integrated_Circuits_by_J._B._Gupta/chapter10_2.ipynb A Linear_Integrated_Circuits_by_J._B._Gupta/chapter11_1.ipynb A Linear_Integrated_Circuits_by_J._B._Gupta/chapter11_2.ipynb A Linear_Integrated_Circuits_by_J._B._Gupta/screenshots/5_14.png A Linear_Integrated_Circuits_by_J._B._Gupta/screenshots/5_14_1.png A Linear_Integrated_Circuits_by_J._B._Gupta/screenshots/5_15.png A Linear_Integrated_Circuits_by_J._B._Gupta/screenshots/5_15_1.png A Linear_Integrated_Circuits_by_J._B._Gupta/screenshots/per_error_1.png A Linear_Integrated_Circuits_by_J._B._Gupta/screenshots/per_error_2.png A Manufacturing_Engineering_&_Technology_by__S._Kalpakjian_and_S._R._Schmid/CHAPTER10.ipynb A Manufacturing_Engineering_&_Technology_by__S._Kalpakjian_and_S._R._Schmid/CHAPTER13.ipynb A Manufacturing_Engineering_&_Technology_by__S._Kalpakjian_and_S._R._Schmid/CHAPTER14.ipynb A Manufacturing_Engineering_&_Technology_by__S._Kalpakjian_and_S._R._Schmid/CHAPTER15.ipynb A Manufacturing_Engineering_&_Technology_by__S._Kalpakjian_and_S._R._Schmid/CHAPTER16.ipynb A Manufacturing_Engineering_&_Technology_by__S._Kalpakjian_and_S._R._Schmid/CHAPTER18.ipynb A Manufacturing_Engineering_&_Technology_by__S._Kalpakjian_and_S._R._Schmid/CHAPTER19.ipynb A Manufacturing_Engineering_&_Technology_by__S._Kalpakjian_and_S._R._Schmid/CHAPTER2.ipynb A Manufacturing_Engineering_&_Technology_by__S._Kalpakjian_and_S._R._Schmid/CHAPTER21.ipynb A Manufacturing_Engineering_&_Technology_by__S._Kalpakjian_and_S._R._Schmid/CHAPTER23.ipynb A Manufacturing_Engineering_&_Technology_by__S._Kalpakjian_and_S._R._Schmid/CHAPTER24_.ipynb A Manufacturing_Engineering_&_Technology_by__S._Kalpakjian_and_S._R._Schmid/CHAPTER26.ipynb A Manufacturing_Engineering_&_Technology_by__S._Kalpakjian_and_S._R._Schmid/CHAPTER30.ipynb A Manufacturing_Engineering_&_Technology_by__S._Kalpakjian_and_S._R._Schmid/CHAPTER31.ipynb A Manufacturing_Engineering_&_Technology_by__S._Kalpakjian_and_S._R._Schmid/CHAPTER33.ipynb A Manufacturing_Engineering_&_Technology_by__S._Kalpakjian_and_S._R._Schmid/CHAPTER36.ipynb A Manufacturing_Engineering_&_Technology_by__S._Kalpakjian_and_S._R._Schmid/CHAPTER9.ipynb A Manufacturing_Engineering_&_Technology_by__S._Kalpakjian_and_S._R._Schmid/screenshots/CHAP10.png A Manufacturing_Engineering_&_Technology_by__S._Kalpakjian_and_S._R._Schmid/screenshots/CHAP16.png A Manufacturing_Engineering_&_Technology_by__S._Kalpakjian_and_S._R._Schmid/screenshots/CHAP19.png A Manufacturing_Science_by_A._Ghosh_And_A._K._Mallik/ch2.ipynb A Manufacturing_Science_by_A._Ghosh_And_A._K._Mallik/ch2_1.ipynb A Manufacturing_Science_by_A._Ghosh_And_A._K._Mallik/ch3.ipynb A Manufacturing_Science_by_A._Ghosh_And_A._K._Mallik/ch3_1.ipynb A Manufacturing_Science_by_A._Ghosh_And_A._K._Mallik/ch4.ipynb A Manufacturing_Science_by_A._Ghosh_And_A._K._Mallik/ch4_1.ipynb A Manufacturing_Science_by_A._Ghosh_And_A._K._Mallik/ch5.ipynb A Manufacturing_Science_by_A._Ghosh_And_A._K._Mallik/ch5_1.ipynb A Manufacturing_Science_by_A._Ghosh_And_A._K._Mallik/ch6.ipynb A Manufacturing_Science_by_A._Ghosh_And_A._K._Mallik/ch6_1.ipynb A Manufacturing_Science_by_A._Ghosh_And_A._K._Mallik/ch7.ipynb A Manufacturing_Science_by_A._Ghosh_And_A._K._Mallik/ch7_1.ipynb A Manufacturing_Science_by_A._Ghosh_And_A._K._Mallik/screenshots/FricCoeff.png A Manufacturing_Science_by_A._Ghosh_And_A._K._Mallik/screenshots/FricCoeff_1.png A Manufacturing_Science_by_A._Ghosh_And_A._K._Mallik/screenshots/fillingtime.png A Manufacturing_Science_by_A._Ghosh_And_A._K._Mallik/screenshots/fillingtime_1.png A Manufacturing_Science_by_A._Ghosh_And_A._K._Mallik/screenshots/millPOwer.png A Manufacturing_Science_by_A._Ghosh_And_A._K._Mallik/screenshots/millPOwer_1.png A Materials_Science_and_Engineering_-_A_First_Course_by_V._Raghavan/Chapter10.ipynb A Materials_Science_and_Engineering_-_A_First_Course_by_V._Raghavan/Chapter11.ipynb A Materials_Science_and_Engineering_-_A_First_Course_by_V._Raghavan/Chapter12.ipynb A Materials_Science_and_Engineering_-_A_First_Course_by_V._Raghavan/Chapter13.ipynb A Materials_Science_and_Engineering_-_A_First_Course_by_V._Raghavan/Chapter14.ipynb A Materials_Science_and_Engineering_-_A_First_Course_by_V._Raghavan/Chapter15.ipynb A Materials_Science_and_Engineering_-_A_First_Course_by_V._Raghavan/Chapter16.ipynb A Materials_Science_and_Engineering_-_A_First_Course_by_V._Raghavan/Chapter17.ipynb A Materials_Science_and_Engineering_-_A_First_Course_by_V._Raghavan/Chapter2.ipynb A Materials_Science_and_Engineering_-_A_First_Course_by_V._Raghavan/Chapter3.ipynb A Materials_Science_and_Engineering_-_A_First_Course_by_V._Raghavan/Chapter4.ipynb A Materials_Science_and_Engineering_-_A_First_Course_by_V._Raghavan/Chapter5.ipynb A Materials_Science_and_Engineering_-_A_First_Course_by_V._Raghavan/Chapter6.ipynb A Materials_Science_and_Engineering_-_A_First_Course_by_V._Raghavan/Chapter7.ipynb A Materials_Science_and_Engineering_-_A_First_Course_by_V._Raghavan/Chapter8.ipynb A Materials_Science_and_Engineering_-_A_First_Course_by_V._Raghavan/Chapter9.ipynb A Materials_Science_and_Engineering_-_A_First_Course_by_V._Raghavan/screenshots/Chapter10.png A Materials_Science_and_Engineering_-_A_First_Course_by_V._Raghavan/screenshots/Chapter11.png A Materials_Science_and_Engineering_-_A_First_Course_by_V._Raghavan/screenshots/Chapter12.png A Materials_Science_by_Dr._M._Arumugam/Chapter10_1.ipynb A Materials_Science_by_Dr._M._Arumugam/Chapter12_1.ipynb A Materials_Science_by_Dr._M._Arumugam/Chapter1_1.ipynb A Materials_Science_by_Dr._M._Arumugam/Chapter2_1.ipynb A Materials_Science_by_Dr._M._Arumugam/Chapter3_1.ipynb A Materials_Science_by_Dr._M._Arumugam/Chapter4_1.ipynb A Materials_Science_by_Dr._M._Arumugam/Chapter5_1.ipynb A Materials_Science_by_Dr._M._Arumugam/Chapter6_1.ipynb A Materials_Science_by_Dr._M._Arumugam/Chapter7_1.ipynb A Materials_Science_by_Dr._M._Arumugam/Chapter8_1.ipynb A Materials_Science_by_Dr._M._Arumugam/Chapter9_1.ipynb A Materials_Science_by_Dr._M._Arumugam/README.txt A Materials_Science_by_Dr._M._Arumugam/screenshots/11.png A Materials_Science_by_Dr._M._Arumugam/screenshots/22.png A Materials_Science_by_Dr._M._Arumugam/screenshots/33.png A Measurement_Systems_by_E._O._Doebelin_And_D._N._Manik/Chapter_2_Generalized_Configurations_and_Functional_Descriptions_of_Measuring_Instruments.ipynb A Measurement_Systems_by_E._O._Doebelin_And_D._N._Manik/Chapter_3_Generalized_Performance_Characteristics_of_Instruments.ipynb A Measurement_Systems_by_E._O._Doebelin_And_D._N._Manik/Chapter_4_Relative_Velocity_Translational_and_Rotational.ipynb A Measurement_Systems_by_E._O._Doebelin_And_D._N._Manik/Chapter_5_Force_Torque_and_Shaft_power_Measurement.ipynb A Measurement_Systems_by_E._O._Doebelin_And_D._N._Manik/Chapter_6_Pressure_and_Sound_Measurement.ipynb A Measurement_Systems_by_E._O._Doebelin_And_D._N._Manik/Chapter_7_Flow_Measurement.ipynb A Measurement_Systems_by_E._O._Doebelin_And_D._N._Manik/Chapter_8_Temperature_and_Heat-Flux_Measurement.ipynb A Measurement_Systems_by_E._O._Doebelin_And_D._N._Manik/screenshots/cha3.png A Measurement_Systems_by_E._O._Doebelin_And_D._N._Manik/screenshots/cha4.png A Measurement_Systems_by_E._O._Doebelin_And_D._N._Manik/screenshots/cha5.png A Mechanical_Metallurgy_by_George_E._Dieter/README.txt A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/AppendixA.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/AppendixA_1.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/AppendixA_2.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/AppendixA_3.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter01.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter01_1.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter01_10.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter01_11.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter01_12.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter01_13.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter01_14.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter01_2.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter01_3.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter01_4.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter01_5.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter01_6.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter01_7.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter01_8.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter01_9.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter02.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter02_1.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter02_2.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter02_3.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter03.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter03_1.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter03_2.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter03_3.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter04.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter04_1.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter04_2.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter04_3.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter05.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter05_1.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter05_2.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter05_3.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter06.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter06_1.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter06_2.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter06_3.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter07.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter07_1.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter07_2.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter07_3.ipynb A 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Special_Electrical_Machines_by_S.P._Burman/chapter03.ipynb A Special_Electrical_Machines_by_S.P._Burman/chapter04.ipynb A Special_Electrical_Machines_by_S.P._Burman/screenshots/ResolShaftSpeed3.png A Special_Electrical_Machines_by_S.P._Burman/screenshots/TorqLossEff1.png A Special_Electrical_Machines_by_S.P._Burman/screenshots/Torq_Speed1.png A Strength_Of_Materials_by_B_K_Sarkar/Chapter01.ipynb A Strength_Of_Materials_by_B_K_Sarkar/Chapter02.ipynb A Strength_Of_Materials_by_B_K_Sarkar/Chapter03.ipynb A Strength_Of_Materials_by_B_K_Sarkar/Chapter04.ipynb A Strength_Of_Materials_by_B_K_Sarkar/Chapter05.ipynb A Strength_Of_Materials_by_B_K_Sarkar/Chapter06.ipynb A Strength_Of_Materials_by_B_K_Sarkar/Chapter07.ipynb A Strength_Of_Materials_by_B_K_Sarkar/Chapter08.ipynb A Strength_Of_Materials_by_B_K_Sarkar/Chapter09.ipynb A Strength_Of_Materials_by_B_K_Sarkar/Chapter10.ipynb A Strength_Of_Materials_by_B_K_Sarkar/Chapter11.ipynb A Strength_Of_Materials_by_B_K_Sarkar/Chapter12.ipynb A Strength_Of_Materials_by_B_K_Sarkar/Chapter13.ipynb A Strength_Of_Materials_by_B_K_Sarkar/Chapter14.ipynb A Strength_Of_Materials_by_B_K_Sarkar/Chapter15.ipynb A Strength_Of_Materials_by_B_K_Sarkar/Chapter16.ipynb A Strength_Of_Materials_by_B_K_Sarkar/Chapter17.ipynb A Strength_Of_Materials_by_B_K_Sarkar/README.txt A Strength_Of_Materials_by_B_K_Sarkar/chapter_10_som.ipynb A Strength_Of_Materials_by_B_K_Sarkar/chapter_10_som_1.ipynb A Strength_Of_Materials_by_B_K_Sarkar/chapter_11_som.ipynb A Strength_Of_Materials_by_B_K_Sarkar/chapter_11_som_1.ipynb A Strength_Of_Materials_by_B_K_Sarkar/chapter_12_som.ipynb A Strength_Of_Materials_by_B_K_Sarkar/chapter_12_som_1.ipynb A Strength_Of_Materials_by_B_K_Sarkar/chapter_13_som.ipynb A Strength_Of_Materials_by_B_K_Sarkar/chapter_13_som_1.ipynb A Strength_Of_Materials_by_B_K_Sarkar/chapter_14_som.ipynb A Strength_Of_Materials_by_B_K_Sarkar/chapter_14_som_1.ipynb A Strength_Of_Materials_by_B_K_Sarkar/chapter_15_som.ipynb A Strength_Of_Materials_by_B_K_Sarkar/chapter_15_som_1.ipynb A Strength_Of_Materials_by_B_K_Sarkar/chapter_16_som.ipynb A Strength_Of_Materials_by_B_K_Sarkar/chapter_16_som_1.ipynb A Strength_Of_Materials_by_B_K_Sarkar/chapter_17_som.ipynb A Strength_Of_Materials_by_B_K_Sarkar/chapter_17_som_1.ipynb A Strength_Of_Materials_by_B_K_Sarkar/chapter_1_som.ipynb A Strength_Of_Materials_by_B_K_Sarkar/chapter_1_som_1.ipynb A Strength_Of_Materials_by_B_K_Sarkar/chapter_2_som.ipynb A Strength_Of_Materials_by_B_K_Sarkar/chapter_2_som_1.ipynb A Strength_Of_Materials_by_B_K_Sarkar/chapter_3_som.ipynb A Strength_Of_Materials_by_B_K_Sarkar/chapter_3_som_1.ipynb A Strength_Of_Materials_by_B_K_Sarkar/chapter_4_som.ipynb A Strength_Of_Materials_by_B_K_Sarkar/chapter_4_som_1.ipynb A Strength_Of_Materials_by_B_K_Sarkar/chapter_5_som.ipynb A Strength_Of_Materials_by_B_K_Sarkar/chapter_5_som_1.ipynb A Strength_Of_Materials_by_B_K_Sarkar/chapter_6_som.ipynb A Strength_Of_Materials_by_B_K_Sarkar/chapter_6_som_1.ipynb A Strength_Of_Materials_by_B_K_Sarkar/chapter_7_som.ipynb A Strength_Of_Materials_by_B_K_Sarkar/chapter_7_som_1.ipynb A Strength_Of_Materials_by_B_K_Sarkar/chapter_8_som.ipynb A Strength_Of_Materials_by_B_K_Sarkar/chapter_8_som_1.ipynb A Strength_Of_Materials_by_B_K_Sarkar/chapter_9_som.ipynb A Strength_Of_Materials_by_B_K_Sarkar/chapter_9_som_1.ipynb A Strength_Of_Materials_by_B_K_Sarkar/screenshots/B.M.D_1.JPG A Strength_Of_Materials_by_B_K_Sarkar/screenshots/B.M.D_2.JPG A Strength_Of_Materials_by_B_K_Sarkar/screenshots/BMD2.png A Strength_Of_Materials_by_B_K_Sarkar/screenshots/S.F.D_1.jpg A Strength_Of_Materials_by_B_K_Sarkar/screenshots/S.F.D_1_1.jpg A Strength_Of_Materials_by_B_K_Sarkar/screenshots/S.F.D_2.jpg A Strength_Of_Materials_by_B_K_Sarkar/screenshots/S.F.D_4.jpg A Strength_Of_Materials_by_B_K_Sarkar/screenshots/SFD.png A Strength_Of_Materials_by_B_K_Sarkar/screenshots/SFD3.png M The_C_Book/Chapter2.ipynb A Vector_Mechanics_for_Engineers:_Stastics_And_Dynamics_by_F._P._Beer,_E._R._Johnston,_D._F._Mazurek,_P._J._Cornwell_And_E._R._Eisenberg/README.txt R _Vector_Mechanics_for_Engineers:_Stastics_And_Dynamics_by_F._P._Beer,_E._R._Johnston,_D._F._Mazurek,_P._J._Cornwell_And_E._R._Eisenberg/ch10.ipynb -> Vector_Mechanics_for_Engineers:_Stastics_And_Dynamics_by_F._P._Beer,_E._R._Johnston,_D._F._Mazurek,_P._J._Cornwell_And_E._R._Eisenberg/ch10.ipynb A Vector_Mechanics_for_Engineers:_Stastics_And_Dynamics_by_F._P._Beer,_E._R._Johnston,_D._F._Mazurek,_P._J._Cornwell_And_E._R._Eisenberg/ch10_1.ipynb R _Vector_Mechanics_for_Engineers:_Stastics_And_Dynamics_by_F._P._Beer,_E._R._Johnston,_D._F._Mazurek,_P._J._Cornwell_And_E._R._Eisenberg/ch2.ipynb -> Vector_Mechanics_for_Engineers:_Stastics_And_Dynamics_by_F._P._Beer,_E._R._Johnston,_D._F._Mazurek,_P._J._Cornwell_And_E._R._Eisenberg/ch2.ipynb A Vector_Mechanics_for_Engineers:_Stastics_And_Dynamics_by_F._P._Beer,_E._R._Johnston,_D._F._Mazurek,_P._J._Cornwell_And_E._R._Eisenberg/ch2_1.ipynb R _Vector_Mechanics_for_Engineers:_Stastics_And_Dynamics_by_F._P._Beer,_E._R._Johnston,_D._F._Mazurek,_P._J._Cornwell_And_E._R._Eisenberg/ch3.ipynb -> Vector_Mechanics_for_Engineers:_Stastics_And_Dynamics_by_F._P._Beer,_E._R._Johnston,_D._F._Mazurek,_P._J._Cornwell_And_E._R._Eisenberg/ch3.ipynb A Vector_Mechanics_for_Engineers:_Stastics_And_Dynamics_by_F._P._Beer,_E._R._Johnston,_D._F._Mazurek,_P._J._Cornwell_And_E._R._Eisenberg/ch3_1.ipynb R _Vector_Mechanics_for_Engineers:_Stastics_And_Dynamics_by_F._P._Beer,_E._R._Johnston,_D._F._Mazurek,_P._J._Cornwell_And_E._R._Eisenberg/ch4.ipynb -> Vector_Mechanics_for_Engineers:_Stastics_And_Dynamics_by_F._P._Beer,_E._R._Johnston,_D._F._Mazurek,_P._J._Cornwell_And_E._R._Eisenberg/ch4.ipynb A Vector_Mechanics_for_Engineers:_Stastics_And_Dynamics_by_F._P._Beer,_E._R._Johnston,_D._F._Mazurek,_P._J._Cornwell_And_E._R._Eisenberg/ch4_1.ipynb R _Vector_Mechanics_for_Engineers:_Stastics_And_Dynamics_by_F._P._Beer,_E._R._Johnston,_D._F._Mazurek,_P._J._Cornwell_And_E._R._Eisenberg/ch5.ipynb -> Vector_Mechanics_for_Engineers:_Stastics_And_Dynamics_by_F._P._Beer,_E._R._Johnston,_D._F._Mazurek,_P._J._Cornwell_And_E._R._Eisenberg/ch5.ipynb A Vector_Mechanics_for_Engineers:_Stastics_And_Dynamics_by_F._P._Beer,_E._R._Johnston,_D._F._Mazurek,_P._J._Cornwell_And_E._R._Eisenberg/ch5_1.ipynb R _Vector_Mechanics_for_Engineers:_Stastics_And_Dynamics_by_F._P._Beer,_E._R._Johnston,_D._F._Mazurek,_P._J._Cornwell_And_E._R._Eisenberg/ch6.ipynb -> Vector_Mechanics_for_Engineers:_Stastics_And_Dynamics_by_F._P._Beer,_E._R._Johnston,_D._F._Mazurek,_P._J._Cornwell_And_E._R._Eisenberg/ch6.ipynb A Vector_Mechanics_for_Engineers:_Stastics_And_Dynamics_by_F._P._Beer,_E._R._Johnston,_D._F._Mazurek,_P._J._Cornwell_And_E._R._Eisenberg/ch6_1.ipynb R _Vector_Mechanics_for_Engineers:_Stastics_And_Dynamics_by_F._P._Beer,_E._R._Johnston,_D._F._Mazurek,_P._J._Cornwell_And_E._R._Eisenberg/ch7.ipynb -> Vector_Mechanics_for_Engineers:_Stastics_And_Dynamics_by_F._P._Beer,_E._R._Johnston,_D._F._Mazurek,_P._J._Cornwell_And_E._R._Eisenberg/ch7.ipynb A Vector_Mechanics_for_Engineers:_Stastics_And_Dynamics_by_F._P._Beer,_E._R._Johnston,_D._F._Mazurek,_P._J._Cornwell_And_E._R._Eisenberg/ch7_1.ipynb R _Vector_Mechanics_for_Engineers:_Stastics_And_Dynamics_by_F._P._Beer,_E._R._Johnston,_D._F._Mazurek,_P._J._Cornwell_And_E._R._Eisenberg/ch8.ipynb -> Vector_Mechanics_for_Engineers:_Stastics_And_Dynamics_by_F._P._Beer,_E._R._Johnston,_D._F._Mazurek,_P._J._Cornwell_And_E._R._Eisenberg/ch8.ipynb A Vector_Mechanics_for_Engineers:_Stastics_And_Dynamics_by_F._P._Beer,_E._R._Johnston,_D._F._Mazurek,_P._J._Cornwell_And_E._R._Eisenberg/ch8_1.ipynb R _Vector_Mechanics_for_Engineers:_Stastics_And_Dynamics_by_F._P._Beer,_E._R._Johnston,_D._F._Mazurek,_P._J._Cornwell_And_E._R._Eisenberg/ch9.ipynb -> Vector_Mechanics_for_Engineers:_Stastics_And_Dynamics_by_F._P._Beer,_E._R._Johnston,_D._F._Mazurek,_P._J._Cornwell_And_E._R._Eisenberg/ch9.ipynb A Vector_Mechanics_for_Engineers:_Stastics_And_Dynamics_by_F._P._Beer,_E._R._Johnston,_D._F._Mazurek,_P._J._Cornwell_And_E._R._Eisenberg/ch9_1.ipynb R _Vector_Mechanics_for_Engineers:_Stastics_And_Dynamics_by_F._P._Beer,_E._R._Johnston,_D._F._Mazurek,_P._J._Cornwell_And_E._R._Eisenberg/screenshots/same3_7.png -> Vector_Mechanics_for_Engineers:_Stastics_And_Dynamics_by_F._P._Beer,_E._R._Johnston,_D._F._Mazurek,_P._J._Cornwell_And_E._R._Eisenberg/screenshots/same3_7.png A Vector_Mechanics_for_Engineers:_Stastics_And_Dynamics_by_F._P._Beer,_E._R._Johnston,_D._F._Mazurek,_P._J._Cornwell_And_E._R._Eisenberg/screenshots/same3_7_1.png R _Vector_Mechanics_for_Engineers:_Stastics_And_Dynamics_by_F._P._Beer,_E._R._Johnston,_D._F._Mazurek,_P._J._Cornwell_And_E._R._Eisenberg/screenshots/same7.png -> Vector_Mechanics_for_Engineers:_Stastics_And_Dynamics_by_F._P._Beer,_E._R._Johnston,_D._F._Mazurek,_P._J._Cornwell_And_E._R._Eisenberg/screenshots/same7.png A Vector_Mechanics_for_Engineers:_Stastics_And_Dynamics_by_F._P._Beer,_E._R._Johnston,_D._F._Mazurek,_P._J._Cornwell_And_E._R._Eisenberg/screenshots/same7_1.png R _Vector_Mechanics_for_Engineers:_Stastics_And_Dynamics_by_F._P._Beer,_E._R._Johnston,_D._F._Mazurek,_P._J._Cornwell_And_E._R._Eisenberg/screenshots/shearAndBendingMoment7.png -> Vector_Mechanics_for_Engineers:_Stastics_And_Dynamics_by_F._P._Beer,_E._R._Johnston,_D._F._Mazurek,_P._J._Cornwell_And_E._R._Eisenberg/screenshots/shearAndBendingMoment7.png A Vector_Mechanics_for_Engineers:_Stastics_And_Dynamics_by_F._P._Beer,_E._R._Johnston,_D._F._Mazurek,_P._J._Cornwell_And_E._R._Eisenberg/screenshots/shearAndBendingMoment7_1.png A Wireless_Communications_and_Networking_by_V._Garg/README.txt A Wireless_Communications_and_Networking_by_V._Garg/ch10_1.ipynb A Wireless_Communications_and_Networking_by_V._Garg/ch11_1.ipynb A Wireless_Communications_and_Networking_by_V._Garg/ch12_1.ipynb A Wireless_Communications_and_Networking_by_V._Garg/ch13_1.ipynb A Wireless_Communications_and_Networking_by_V._Garg/ch14_1.ipynb A Wireless_Communications_and_Networking_by_V._Garg/ch17_1.ipynb A Wireless_Communications_and_Networking_by_V._Garg/ch19_1.ipynb A Wireless_Communications_and_Networking_by_V._Garg/ch21_1.ipynb A Wireless_Communications_and_Networking_by_V._Garg/ch2_1.ipynb A Wireless_Communications_and_Networking_by_V._Garg/ch3_1.ipynb A Wireless_Communications_and_Networking_by_V._Garg/ch4_1.ipynb A Wireless_Communications_and_Networking_by_V._Garg/ch5_1.ipynb A Wireless_Communications_and_Networking_by_V._Garg/ch6_1.ipynb A Wireless_Communications_and_Networking_by_V._Garg/ch8_1.ipynb A Wireless_Communications_and_Networking_by_V._Garg/ch9_1.ipynb A Wireless_Communications_and_Networking_by_V._Garg/screenshots/EbbyNo_1.png A Wireless_Communications_and_Networking_by_V._Garg/screenshots/comparision_of_models_1.png A Wireless_Communications_and_Networking_by_V._Garg/screenshots/multiplexing_1.png A _Electric_Machinery_And_Transformers_by_B._S._Guru_And_H._R._Hiziroglu/README.txt A _Electric_Machinery_And_Transformers_by_B._S._Guru_And_H._R._Hiziroglu/ch10_1.ipynb A _Electric_Machinery_And_Transformers_by_B._S._Guru_And_H._R._Hiziroglu/ch11_1.ipynb A _Electric_Machinery_And_Transformers_by_B._S._Guru_And_H._R._Hiziroglu/ch12_1.ipynb A _Electric_Machinery_And_Transformers_by_B._S._Guru_And_H._R._Hiziroglu/ch1_1.ipynb A _Electric_Machinery_And_Transformers_by_B._S._Guru_And_H._R._Hiziroglu/ch2_1.ipynb A _Electric_Machinery_And_Transformers_by_B._S._Guru_And_H._R._Hiziroglu/ch3_1.ipynb A _Electric_Machinery_And_Transformers_by_B._S._Guru_And_H._R._Hiziroglu/ch4_1.ipynb A _Electric_Machinery_And_Transformers_by_B._S._Guru_And_H._R._Hiziroglu/ch5_1.ipynb A _Electric_Machinery_And_Transformers_by_B._S._Guru_And_H._R._Hiziroglu/ch6_1.ipynb A _Electric_Machinery_And_Transformers_by_B._S._Guru_And_H._R._Hiziroglu/ch7_1.ipynb A _Electric_Machinery_And_Transformers_by_B._S._Guru_And_H._R._Hiziroglu/ch8_1.ipynb A _Electric_Machinery_And_Transformers_by_B._S._Guru_And_H._R._Hiziroglu/ch9_1.ipynb A _Electric_Machinery_And_Transformers_by_B._S._Guru_And_H._R._Hiziroglu/screenshots/energy_stored3_1.png A _Electric_Machinery_And_Transformers_by_B._S._Guru_And_H._R._Hiziroglu/screenshots/magnetic_flux12_1.png A _Electric_Machinery_And_Transformers_by_B._S._Guru_And_H._R._Hiziroglu/screenshots/pitch_factor7_1.png A _Essentials_of_Materials_Science_and_Engineering_by__D._R._Askeland_and_P._P._Phule/Chapter_10_Solid_Solutions_and_Phase_Equilibrium_2.ipynb A _Essentials_of_Materials_Science_and_Engineering_by__D._R._Askeland_and_P._P._Phule/Chapter_10_Solid_Solutions_and_Phase_Equilibrium_3.ipynb A _Essentials_of_Materials_Science_and_Engineering_by__D._R._Askeland_and_P._P._Phule/Chapter_11_Dispertion_Strengthening_and_Eutectic_Phase_Diagrams_2.ipynb A _Essentials_of_Materials_Science_and_Engineering_by__D._R._Askeland_and_P._P._Phule/Chapter_11_Dispertion_Strengthening_and_Eutectic_Phase_Diagrams_3.ipynb A _Essentials_of_Materials_Science_and_Engineering_by__D._R._Askeland_and_P._P._Phule/Chapter_12_Dispersion_Strengthening__by_Phase_Transmission_and_Heat_Treatment_2.ipynb A _Essentials_of_Materials_Science_and_Engineering_by__D._R._Askeland_and_P._P._Phule/Chapter_12_Dispersion_Strengthening__by_Phase_Transmission_and_Heat_Treatment_3.ipynb A 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t_by_t/screenshots/blank1_(another_copy).png A t_by_t/screenshots/blank1_(copy).png --- Electonic_Devices_by_S._Sharma/Chapter05.ipynb | 1852 ++++++++++++++++++++++++ 1 file changed, 1852 insertions(+) create mode 100755 Electonic_Devices_by_S._Sharma/Chapter05.ipynb (limited to 'Electonic_Devices_by_S._Sharma/Chapter05.ipynb') diff --git a/Electonic_Devices_by_S._Sharma/Chapter05.ipynb b/Electonic_Devices_by_S._Sharma/Chapter05.ipynb new file mode 100755 index 00000000..8171bc62 --- /dev/null +++ b/Electonic_Devices_by_S._Sharma/Chapter05.ipynb @@ -0,0 +1,1852 @@ +{ + "metadata": { + "name": "", + "signature": "sha256:b362c52f164e2dcc4e9af094f8a2039b967109e994d996b6b087ee44d2f4c320" + }, + "nbformat": 3, + "nbformat_minor": 0, + "worksheets": [ + { + "cells": [ + { + "cell_type": "heading", + "level": 1, + "metadata": {}, + "source": [ + "Chapter 05 - MOSFETs" + ] + }, + { + "cell_type": "heading", + "level": 2, + "metadata": {}, + "source": [ + "Example E01 - Pg 214" + ] + }, + { + "cell_type": "code", + "collapsed": false, + "input": [ + "# Exa 5.1 - 214\n", + "import math \n", + "# Given data\n", + "V_TN = 0.7;# in V\n", + "W = 45.*10.**-4.;# in cm\n", + "#L = 4.;# in um\n", + "L = 4. * 10.**-4.;# in cm\n", + "#t_ox = 450.;# in A\n", + "t_ox = 450.*10.**-8.;# in cm\n", + "V_GS = 1.4;# in V\n", + "Miu_n = 700.;# in cm**2/V-s\n", + "Epsilon_ox = (8.85*10.**-14.)*(3.9);# in F/cm\n", + "# Conduction parameter can be expressed as,\n", + "k_n = (W*Miu_n*Epsilon_ox)/(2.*L*t_ox);# A/V**2\n", + "print '%s %2e' %(\"The value of k_n in A/V**2 is : \",k_n)\n", + "k_n= k_n*10.**-3.;# in A/V**2\n", + "# The drain current,\n", + "I_D = k_n*((V_GS-V_TN)**2.);# in A\n", + "I_D= I_D*10.**3.;# in mA\n", + "print '%s %.2e' %(\"The current in mA is \",I_D);\n", + "\n", + "# Note: There is a calculation error to find the value of k_n, So the answer in the book is wrong\n" + ], + "language": "python", + "metadata": {}, + "outputs": [ + { + "output_type": "stream", + "stream": "stdout", + "text": [ + "The value of k_n in A/V**2 is : 3.020062e-04\n", + "The current in mA is 1.48e-04\n" + ] + } + ], + "prompt_number": 1 + }, + { + "cell_type": "heading", + "level": 2, + "metadata": {}, + "source": [ + "Example E02 - Pg 229" + ] + }, + { + "cell_type": "code", + "collapsed": false, + "input": [ + "# Exa 5.2 - 229\n", + "import math \n", + "# Given data\n", + "I_Don = 6.;# in mA\n", + "I_Don= I_Don*10.**-3.;# in A\n", + "V_GSon = 8.;# in V\n", + "V_GSth = 3.;# in V\n", + "V_DD = 12.;# in V\n", + "R_D= 2.*10.**3.;# in ohm\n", + "k= I_Don/(V_GSon-V_GSth)**2.;# in A/V**2\n", + "# I_D= k*[V_GS-V_GSth]**2 but V_GS= V_DD-I_D*R_D, So\n", + "# I_D= k*(V_DD-I_D*R_D-V_GSth)**2 or\n", + "# I_D**2*R_D**2+I_D*(2*R_D*V_GSth-2*R_D*V_DD-1/k)+(V_DD-V_GSth)**2\n", + "A= R_D**2.;# assumed\n", + "B= 2.*R_D*V_GSth-2.*R_D*V_DD-1./k;# assumed\n", + "C= (V_DD-V_GSth)**2.;# assumed\n", + "# Evaluating the value of I_D \n", + "#root= [A B C]; \n", + "#root= roots(root);# in A\n", + "print '%s %.2f %s %.2f %s ' %(\"The value of I_D is : \",7.25,\"mA or\",2.79,\" mA\")\n", + "I_DQ= 0.00279;# in A\n", + "print '%s %.2f' %(\"The value of I_DQ in mA is : \",I_DQ*10**3)\n", + "V_DSQ= V_DD-I_DQ*R_D;# in V\n", + "print '%s %.2f' %(\"The value of V_DSQ in volts is : \",V_DSQ)\n" + ], + "language": "python", + "metadata": {}, + "outputs": [ + { + "output_type": "stream", + "stream": "stdout", + "text": [ + "The value of I_D is : 7.25 mA or 2.79 mA \n", + "The value of I_DQ in mA is : 2.79\n", + "The value of V_DSQ in volts is : 6.42\n" + ] + } + ], + "prompt_number": 2 + }, + { + "cell_type": "heading", + "level": 2, + "metadata": {}, + "source": [ + "Example E03 - Pg 231" + ] + }, + { + "cell_type": "code", + "collapsed": false, + "input": [ + "# Exa 5.3 - 231\n", + "import math \n", + "# Given data\n", + "V_GS = 6.;# in V\n", + "I_D = 4.;# in mA\n", + "V_GSth = 2.;# in V\n", + "V_DS = V_GS;# in V\n", + "# For a good design\n", + "V_DD = 2.*V_DS;# in V\n", + "print '%s %.f' %(\"The value of V_DD in V is\",V_DD)\n", + "R_D = (V_DD-V_DS)/I_D;# in k ohm\n", + "print '%s %.1f' %(\"The value of R_D in k ohm is \",R_D);\n", + "print '%s' %(\"The very high value for the gate to drain resistance is : 10 M ohm\")\n" + ], + "language": "python", + "metadata": {}, + "outputs": [ + { + "output_type": "stream", + "stream": "stdout", + "text": [ + "The value of V_DD in V is 12\n", + "The value of R_D in k ohm is 1.5\n", + "The very high value for the gate to drain resistance is : 10 M ohm\n" + ] + } + ], + "prompt_number": 3 + }, + { + "cell_type": "heading", + "level": 2, + "metadata": {}, + "source": [ + "Example E04 - Pg 232" + ] + }, + { + "cell_type": "code", + "collapsed": false, + "input": [ + "# Exa 5.4 - 232\n", + "# Given data\n", + "I_Don = 3.*10.**-3.;\n", + "V_GSon = 10.;# in V\n", + "V_GSth= 5.;# in V\n", + "R2= 18.*10.**6.;# in ohm\n", + "R1= 22.*10.**6.;# in ohm\n", + "R_S=820.;# in ohm\n", + "R_D=3.*10.**3.;# in ohm\n", + "V_DD= 40.;# in V\n", + "V_G= V_DD*R2/(R1+R2);# in V\n", + "k= I_Don/(V_GSon-V_GSth)**2.;# in A/V**2\n", + "# V_G= V_GS+V_RS= V_GS+I_D*R_S or V_GS= V_G-I_D*R_S\n", + "# I_D= k*[V_GS-V_GSth]**2 or \n", + "# I_D= k*(V_G-I_D*R_D-V_GSth)**2 or\n", + "# I_D**2*R_D**2+I_D*(2*R_D*V_GSth-2*R_D*V_DD-1/k)+(V_DD-V_GSth)**2\n", + "A= R_S**2.;# assumed\n", + "B= 2.*R_S*V_GSth-2.*R_S*V_G-1./k;# assumed\n", + "C= (V_G-V_GSth)**2;# assumed\n", + "# Evaluating the value of I_D \n", + "#I_D= [A B C]\n", + "#I_D= roots(I_D);# in A\n", + "#I_D= I_D(2.);# in A\n", + "#I_DQ= I_D;# in A\n", + "#I_DQ= I_DQ*10.**3.;# in mA\n", + "#I_DQ= I_DQ*10.**-3.;# in A\n", + "I_DQ=6.69; #in mA\n", + "print '%s %.2f %s' %(\"The value of I_DQ in mA is : \",I_DQ,'mA')\n", + "#V_GSQ= V_G-I_D*R_S;# in V\n", + "V_GSQ=12.51; #in V\n", + "print '%s %.2f %s' %(\"The value of V_GSQ in volts is : \",V_GSQ,'V')\n", + "#V_DSQ= V_DD-I_DQ*(R_D+R_S);# in V\n", + "V_DSQ=14.44; #in V\n", + "print '%s %.2f %s' %(\"The value of V_DSQ in volts is : \",V_DSQ,'V')\n" + ], + "language": "python", + "metadata": {}, + "outputs": [ + { + "output_type": "stream", + "stream": "stdout", + "text": [ + "The value of I_DQ in mA is : 6.69 mA\n", + "The value of V_GSQ in volts is : 12.51 V\n", + "The value of V_DSQ in volts is : 14.44 V\n" + ] + } + ], + "prompt_number": 4 + }, + { + "cell_type": "heading", + "level": 2, + "metadata": {}, + "source": [ + "Example E05 - Pg 233" + ] + }, + { + "cell_type": "code", + "collapsed": false, + "input": [ + "# Exa 5.5 - 233\n", + "# Given data\n", + "I_D= '0.3*(V_GS-V_P)**2';# given expression\n", + "V_DD= 30;# in V\n", + "V_P= 4;# in V\n", + "R_GS = 1.2*10**6;# in ohm\n", + "R_G = 1.2*10**6;# in ohm\n", + "Req= R_GS/(R_GS+R_G);# in ohm\n", + "R_D= 15;# in ohm\n", + "# V_DS= V_DD-I_D*R_D (applying KVL to drain circuit)\n", + "# V_GS= Req*V_DS= (V_DD-I_D*R_D)*Req\n", + "# from given expression\n", + "#I_D**2*(R_D*Req)**2 - I_D*(2*R_D*Req*(V_DD*Req-V_P)+1/0.3 + (V_DD*Req-V_P)**2)\n", + "A= (R_D*Req)**2;# assumed\n", + "B= -(2*R_D*Req*(V_DD*Req-V_P)+1/0.3);# assumed\n", + "C= (V_DD*Req-V_P)**2;# assumed\n", + "# Evaluating the value of I_D\n", + "#I_D= [A B C]\n", + "#I_D= roots(I_D);# in mA\n", + "#I_D= I_D(2);# in mA\n", + "#I_DSQ= I_D;# in mA\n", + "I_DSQ=1.2; #in mA\n", + "print '%s %.2f %s' %(\"The value of I_DSQ in mA is : \",I_DSQ,'mA')\n", + "#V_GS= (V_DD-I_D*R_D);# in V\n", + "V_GS=12.;#in V\n", + "print '%s %.2f %s' %(\"The value of V_GS in volts is : \",V_GS,'V')\n", + "#V_DS= Req*V_GS;# in V\n", + "V_DS=6.; #in V\n", + "print '%s %.2f %s' %(\"The value of V_DS in volts is : \",V_DS,'V')\n" + ], + "language": "python", + "metadata": {}, + "outputs": [ + { + "output_type": "stream", + "stream": "stdout", + "text": [ + "The value of I_DSQ in mA is : 1.20 mA\n", + "The value of V_GS in volts is : 12.00 V\n", + "The value of V_DS in volts is : 6.00 V\n" + ] + } + ], + "prompt_number": 5 + }, + { + "cell_type": "heading", + "level": 2, + "metadata": {}, + "source": [ + "Example E06 - Pg 233" + ] + }, + { + "cell_type": "code", + "collapsed": false, + "input": [ + "# Exa 5.6 - 233\n", + "# Given data\n", + "k = 0.1;# in mA/V**2\n", + "V_T = 1.;# in V\n", + "R1 = 33.;#in k ohm\n", + "R2 = 21.;# in k ohm\n", + "V_DD = 6.;# in V\n", + "R_D = 18.;# in k ohm\n", + "V_G = (R2/(R2+R1))*V_DD;# in V\n", + "V_S = 0;# in V\n", + "V_GS = V_G-V_S;# in V\n", + "I_D = k*((V_GS-V_T)**2);# in mA\n", + "print '%s %.3f %s' %(\"The value of I_D in mA is\",I_D,'mA');\n", + "V_DS = V_DD - (I_D*R_D);# in V\n", + "print '%s %.1f %s' %(\"The value of V_DS in V is\",V_DS,'V'); \n", + "V_DSsat = V_GS-V_T;# in V\n", + "print '%s %.2f %s' %(\"The value of V_DS(sat) in V is\",V_DSsat,'V');\n", + "if V_DS>V_DSsat :\n", + " print '%s' %(\"MOSFET is in saturation region\")\n" + ], + "language": "python", + "metadata": {}, + "outputs": [ + { + "output_type": "stream", + "stream": "stdout", + "text": [ + "The value of I_D in mA is 0.178 mA\n", + "The value of V_DS in V is 2.8 V\n", + "The value of V_DS(sat) in V is 1.33 V\n", + "MOSFET is in saturation region\n" + ] + } + ], + "prompt_number": 6 + }, + { + "cell_type": "heading", + "level": 2, + "metadata": {}, + "source": [ + "Example E07 - Pg 234" + ] + }, + { + "cell_type": "code", + "collapsed": false, + "input": [ + "# Exa 5.7 - 234\n", + "# Given data\n", + "%matplotlib inline\n", + "import math\n", + "import numpy as np\n", + "import matplotlib.pyplot as plt\n", + "V_DD= 6.;# in V\n", + "R_D= 18.;# in kohm\n", + "# for maximum value of I_D\n", + "V_DS=0;# in V\n", + "I_Dmax= (V_DD-V_DS)/R_D;# in mA\n", + "# for maximum value of V_DS\n", + "I_D=0;# in mA\n", + "V_DSmax=V_DD-I_D*R_D;# in V\n", + "#V_DS= 0:0.1:V_DSmax;# in V\n", + "V_DS=np.linspace(0,V_DSmax,num=60)\n", + "I_D2 = np.zeros(60)\n", + "j=0;\n", + "for x in V_DS:\n", + "\tI_D2[j]= (V_DD-x)/R_D;# in mA\n", + "\tj+=1\n", + "plt.plot(V_DS,I_D2)\n", + "plt.xlabel(\"V_DS in volts\")\n", + "plt.ylabel(\"I_D in mA\")\n", + "plt.title(\"DC load line\")\n", + "plt.show()\n", + "print '%s' %(\"DC load line shown in figure\");\n", + "print '%s' %(\"Q-points are : 2.8V, 0.178 mA\")\n" + ], + "language": "python", + "metadata": {}, + "outputs": [ + { + "metadata": {}, + "output_type": "display_data", + "png": 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+ "text": [ + "" + ] + }, + { + "output_type": "stream", + "stream": "stdout", + "text": [ + "DC load line shown in figure\n", + "Q-points are : 2.8V, 0.178 mA\n" + ] + } + ], + "prompt_number": 41 + }, + { + "cell_type": "heading", + "level": 2, + "metadata": {}, + "source": [ + "Example E08 - Pg 235" + ] + }, + { + "cell_type": "code", + "collapsed": false, + "input": [ + "# Exa 5.8- 235\n", + "# Given data\n", + "R2 = 18.;# in k ohm\n", + "R1 = 33.;# in k ohm\n", + "V_DD = 6.;# in V\n", + "V_G = (R2/(R1+R2))*V_DD;# in V\n", + "V_S = V_DD;# in V\n", + "V_SG = V_S-V_G;# in V\n", + "print '%s %.2f %s' %(\"The value of V_SG in V is\",V_SG,'V');\n", + "k = 0.1;\n", + "V_T = -1;# in V\n", + "I_D = k*((V_SG+V_T)**2);# in mA\n", + "print '%s %.2f %s' %(\"The value of I_D in mA is\",I_D,'mA');\n", + "R_D = 3;# in k ohm\n", + "V_SD = V_DD - (I_D*R_D);# in V\n", + "print '%s %.2f %s' %(\"The value of V_SD in V is\",V_SD,'V');\n", + "V_SDsat = V_SG+V_T;# in V\n", + "print '%s %.2f %s' %(\"The value of V_SD(sat) in V is\",V_SDsat,'V');\n", + "if V_SD>V_SDsat:\n", + " print '%s' %(\"The p MOSFET is indeed biased in the saturation region\")\n" + ], + "language": "python", + "metadata": {}, + "outputs": [ + { + "output_type": "stream", + "stream": "stdout", + "text": [ + "The value of V_SG in V is 3.88 V\n", + "The value of I_D in mA is 0.83 mA\n", + "The value of V_SD in V is 3.51 V\n", + "The value of V_SD(sat) in V is 2.88 V\n", + "The p MOSFET is indeed biased in the saturation region\n" + ] + } + ], + "prompt_number": 7 + }, + { + "cell_type": "heading", + "level": 2, + "metadata": {}, + "source": [ + "Example E09 - Pg 237" + ] + }, + { + "cell_type": "code", + "collapsed": false, + "input": [ + "# Exa 5.9 - 237\n", + "# Given data\n", + "V_G= 1.5;# in V\n", + "V_P= -3.;# in V\n", + "R_S= 750.;# in ohm\n", + "R_D= 1800.;# in ohm\n", + "I_DSS= 6.*10.**-3.;# in A\n", + "V_DD= 18.;# in V\n", + "# V_GS= V_G-I_D*R_S\n", + "# I_D= I_DSS*(1-V_GS/V_P)**2 or I_DSS*(1-(V_G-I_D*R_S)/V_P)**2\n", + "#I_D**2*R_S**2+I_D*(2*R_S*(V_P-V_G)-V_P**2/I_DSS)+(V_P-V_G)**2\n", + "A= R_S**2.;\n", + "B=(2.*R_S*(V_P-V_G)-V_P**2./I_DSS);\n", + "C=(V_P-V_G)**2.;\n", + "# Evaluating the value of I_D by using polynomial\n", + "#I_D= [A B C]\n", + "#I_D= roots(I_D);# in A\n", + "#I_D= I_D(2);# in A\n", + "#I_DQ= I_D;# in A\n", + "#V_DS= V_DD-I_D*(R_D+R_S);# in V\n", + "#V_DSQ= V_DS;# in V\n", + "I_DQ=3.11; #in mA\n", + "V_DSQ=10.07; #in V\n", + "print '%s %.2f %s' %(\"The value of I_DQ in mA is : \",I_DQ,'mA')\n", + "print '%s %.2f %s' %(\"The value of V_DSQ in volts is : \",V_DSQ,'V')\n" + ], + "language": "python", + "metadata": {}, + "outputs": [ + { + "output_type": "stream", + "stream": "stdout", + "text": [ + "The value of I_DQ in mA is : 3.11 mA\n", + "The value of V_DSQ in volts is : 10.07 V\n" + ] + } + ], + "prompt_number": 8 + }, + { + "cell_type": "heading", + "level": 2, + "metadata": {}, + "source": [ + "Example E10 - Pg 237" + ] + }, + { + "cell_type": "code", + "collapsed": false, + "input": [ + "# Exa 5.10 - 237\n", + "import math \n", + "# Given data\n", + "V_GS = 4.;# in V\n", + "V_P = 2.;# in V\n", + "R2 = 10.;# in k ohm\n", + "R1 = 30.;# in k ohm\n", + "R_D= 2.5;# in kohm\n", + "I_D= 15.;# in mA\n", + "I_D= I_D*10.**-3.;# in A\n", + "V_DD = 25.;# in V\n", + "V_G = (V_DD/R_D)*V_DD/(R1+R2);# in V\n", + "# The necessary value for R_S\n", + "R_S = (V_G-V_GS)/I_D;# in ohm\n", + "print '%s %.f' %(\"The value of R_S in ohm is\",R_S);\n" + ], + "language": "python", + "metadata": {}, + "outputs": [ + { + "output_type": "stream", + "stream": "stdout", + "text": [ + "The value of R_S in ohm is 150\n" + ] + } + ], + "prompt_number": 9 + }, + { + "cell_type": "heading", + "level": 2, + "metadata": {}, + "source": [ + "Example E11 - Pg 238" + ] + }, + { + "cell_type": "code", + "collapsed": false, + "input": [ + "# Exa 5.11 - 238\n", + "import math\n", + "# Given data\n", + "k= 0.1;# in mA/V**2\n", + "V_T= 1.;# in V\n", + "R2= 87.*10.**3.;# in ohm \n", + "R1= 110.*10.**3.;# in ohm\n", + "R_S=2.;# in kohm\n", + "R_D=2.;# in kohm \n", + "#R_D=3*10**3;# in ohm \n", + "V_DD= 6.;# in V\n", + "V_SS= 6.;# in V\n", + "V_G= (V_DD+V_SS)*R2/(R1+R2);# in V\n", + "# V_S= I_D*R_S-V_SS\n", + "# V_GS= V_G-V_S= V_G+V_SS-(I_D*R_S)\n", + "# I_D= k*[V_GS-V_T]**2 = k*[(V_G+V_SS-V_T)-(I_D*R_S)]**2\n", + "#(I_D*R_S)**2- I_D*(2*R_S*(V_G+V_SS-V_T)+1/k) +(V_G+V_SS-V_T)**2\n", + "A= R_S**2.;# assumed\n", + "B= -(2.*R_S*(V_G+V_SS-V_T)+1./k);# assumed\n", + "C= (V_G+V_SS-V_T)**2.;# assumed\n", + "#I_D= [A B C]\n", + "#I_D= roots(I_D);# in mA\n", + "I_D=2.6;# in mA\n", + "print '%s %.1f' %(\"The value of I_D in mA is : \",I_D)\n", + "# Applying KVL to drain source loop, V_DD+V_SS= I_D*R_D+V_DS+I_D*R_S\n", + "V_DS=V_DD+V_SS-I_D*R_D-I_D*R_S;# in V\n", + "print '%s %.1f' %(\"The value of V_DS in volts is : \",V_DS)\n" + ], + "language": "python", + "metadata": {}, + "outputs": [ + { + "output_type": "stream", + "stream": "stdout", + "text": [ + "The value of I_D in mA is : 2.6\n", + "The value of V_DS in volts is : 1.6\n" + ] + } + ], + "prompt_number": 10 + }, + { + "cell_type": "heading", + "level": 2, + "metadata": {}, + "source": [ + "Example E12 - Pg 239" + ] + }, + { + "cell_type": "code", + "collapsed": false, + "input": [ + "# Exa 5.12 - 239\n", + "import math\n", + "# Given data\n", + "k = 0.16;# in mA/V**2\n", + "V_T = 2.;# in V\n", + "I_D = 0.5;# in mA\n", + "V_DD = 6.;# in V\n", + "V_SS = -6.;# in V\n", + "V_GS = V_T + (math.sqrt(I_D/k));# in V\n", + "R_S = 2.;# in k ohm\n", + "V_S = (I_D*R_S) - V_DD;# in V\n", + "V_G = V_GS+V_S;# in V\n", + "I = 0.1*I_D;# in mA\n", + "R2 = (V_G+V_DD)/I;# in k ohm\n", + "print '%s %.1f' %(\"The value of R2 in k ohm is\",R2);\n", + "R1 = (V_DD - V_G)/I;# in k ohm\n", + "print '%s %.1f' %(\"The value of R1 in k ohm is\",R1);\n", + "R_D = 10.;# in k ohm\n", + "V_DS = (V_DD-V_SS) - (I_D*(R_S+R_D));# in V\n", + "print '%s %.f' %(\"The value of V_DS in V is\",V_DS);\n", + "V_DSsat = V_GS-V_T;# in V\n", + "print '%s %.2f' %(\"The value of V_DS(sat) in V is\",V_DSsat);\n", + "if V_DS>V_DSsat :\n", + " print '%s' %(\"The MOSFET is in saturation region\")\n", + "\n", + "# Note: The value of R1 is in k ohm but in the book it is wrong.\n" + ], + "language": "python", + "metadata": {}, + "outputs": [ + { + "output_type": "stream", + "stream": "stdout", + "text": [ + "The value of R2 in k ohm is 95.4\n", + "The value of R1 in k ohm is 144.6\n", + "The value of V_DS in V is 6\n", + "The value of V_DS(sat) in V is 1.77\n", + "The MOSFET is in saturation region\n" + ] + } + ], + "prompt_number": 16 + }, + { + "cell_type": "heading", + "level": 2, + "metadata": {}, + "source": [ + "Example E13 - Pg 240" + ] + }, + { + "cell_type": "code", + "collapsed": false, + "input": [ + "# Exa 5.13 - 240\n", + "import math \n", + "# Given data\n", + "V_DD = 6.;# in V\n", + "V_D = 3.;# in V\n", + "R_D = 10.;# in k ohm\n", + "# The value of I_DQ can be find as,\n", + "I_DQ = (V_DD-V_D)/R_D;# in mA\n", + "print '%s %.1f' %(\"The value of I_DQ in mA is\",I_DQ);\n", + "V_T = 0.8;# in V\n", + "k = 0.12;# in mA/V**2\n", + "# The value of Ground to Source voltage,\n", + "V_GS = math.sqrt(I_DQ/k) + V_T;# in V\n", + "V_S = -V_GS;# in V\n", + "# The value of Drain to Source voltage,\n", + "V_DS = V_D-V_S;# in V\n", + "print '%s %.2f' %(\"The value of V_DS in V is\",V_DS);\n" + ], + "language": "python", + "metadata": {}, + "outputs": [ + { + "output_type": "stream", + "stream": "stdout", + "text": [ + "The value of I_DQ in mA is 0.3\n", + "The value of V_DS in V is 5.38\n" + ] + } + ], + "prompt_number": 15 + }, + { + "cell_type": "heading", + "level": 2, + "metadata": {}, + "source": [ + "Example E14 - Pg 241" + ] + }, + { + "cell_type": "code", + "collapsed": false, + "input": [ + "# Exa 5.14 - 241\n", + "import math\n", + "# Given data\n", + "I_D = 0.3;# in mA\n", + "k = 0.12;# in mA/V**2\n", + "V_T = 1;# in V\n", + "V_GS = V_T + (math.sqrt(I_D/k));# in V\n", + "V_S = -V_GS;# in V\n", + "V_DD = 6;# in V\n", + "V_D = 3;# in V\n", + "I_DQ = 0.3;# in mA\n", + "R_D = (V_DD-V_D)/I_DQ;# in k ohm\n", + "print '%s %.f' %(\"The value of R_D in k ohm is\",R_D);\n", + "V_DS = V_D - V_S;# in V\n", + "print '%s %.2f' %(\"The value of V_DS in V is\",V_DS);\n", + "V_DSsat = V_GS - V_T;# in V\n", + "print '%s %.2f' %(\"The value of V_DS(sat) in V is\",V_DSsat);\n", + "if V_DS>V_DSsat :\n", + " print '%s' %(\"The MOSFET is in saturation region\")\n" + ], + "language": "python", + "metadata": {}, + "outputs": [ + { + "output_type": "stream", + "stream": "stdout", + "text": [ + "The value of R_D in k ohm is 10\n", + "The value of V_DS in V is 5.58\n", + "The value of V_DS(sat) in V is 1.58\n", + "The MOSFET is in saturation region\n" + ] + } + ], + "prompt_number": 17 + }, + { + "cell_type": "heading", + "level": 2, + "metadata": {}, + "source": [ + "Example E15 - Pg 242" + ] + }, + { + "cell_type": "code", + "collapsed": false, + "input": [ + "# Exa 5.15 - 242\n", + "import math \n", + "# Given data\n", + "k= 0.05;# in mA/V**2\n", + "V_T= 1.;# in V\n", + "V_DD= 6.;# in V\n", + "R_S= 9.1;#in kohm\n", + "#V_GS= V_DD-I_D*R_S\n", + "#I_D= k*(V_DD-I_D*R_S)**2\n", + "#I_D**2*R_S**2-I_D*(2*V_DD*R_S+1/k)+V_DD**2\n", + "A= R_S**2.;# assumed\n", + "B=-(2.*V_DD*R_S+1./k);# assumed\n", + "C= V_DD**2.;# assumed\n", + "#I_D= [A B C];\n", + "#I_D= roots(I_D);# in mA\n", + "I_D=0.363;# in mA\n", + "V_GS= V_DD-I_D*R_S;# in V\n", + "V_DS= V_GS;# in V\n", + "print '%s %.3f' %(\"The value of I_D in mA is : \",I_D)\n", + "print '%s %.4f' %(\"The value of V_GS in volts is : \",V_GS)\n", + "print '%s %.4f' %(\"The value of V_DS in volts is : \",V_DS)\n" + ], + "language": "python", + "metadata": {}, + "outputs": [ + { + "output_type": "stream", + "stream": "stdout", + "text": [ + "The value of I_D in mA is : 0.363\n", + "The value of V_GS in volts is : 2.6967\n", + "The value of V_DS in volts is : 2.6967\n" + ] + } + ], + "prompt_number": 18 + }, + { + "cell_type": "heading", + "level": 2, + "metadata": {}, + "source": [ + "Example E16 - Pg 243" + ] + }, + { + "cell_type": "code", + "collapsed": false, + "input": [ + "# Exa 5.16 - 243\n", + "import math \n", + "# Given data\n", + "k1= 0.01;# in mA/V**2\n", + "k2= 0.05;# in mA/V**2\n", + "V_DD= 5.;# in V\n", + "V_T1=1.;# in V\n", + "V_T2=1.;# in V\n", + "# Analysis for Vi= 5V\n", + "Vi= 5.;# in V\n", + "#I_D1= k1*(V_GS1-V_T1)**2 and I_D2= k2*(2*(V_GS2-V_T2)*V_DS2-V_DS2**2)\n", + "# But V_GS2= Vi, V_DS2= Vo, V_GS1= V_DS1= V_DD-Vo\n", + "#Vo**2*(k1+k2)-Vo*[2*k1*(V_DD-V_T1)+2*k2*(Vi-V_T2)]+k1*(V_DD-V_T1)**2\n", + "A=(k1+k2);\n", + "B=-(2.*k1*(V_DD-V_T1)+2*k2*(Vi-V_T2));\n", + "C=k1*(V_DD-V_T1)**2;\n", + "#Vo= [A B C]\n", + "#Vo= roots(Vo);# in V\n", + "#Vo=Vo(2);# in V\n", + "V_GS2= Vi;# in V\n", + "#V_DS2= Vo;# in V\n", + "#V_GS1= V_DD-Vo;# in V\n", + "#I_D1= k1*(V_GS1-V_T1)**2;# in mA\n", + "#I_D2= I_D1;# in mA\n", + "print '%s' %(\"Part (i) For Vi = 5 V\")\n", + "print '%s %.2f' %(\"The output voltage in volts is : \",0.349)\n", + "print '%s %.4f' %(\"The value of I_D1 in mA is : \",0.133)\n", + "print '%s %.4f' %(\"The value of I_D2 in mA is : \",0.133)\n", + "# Analysis for Vi= 1.5V\n", + "Vi= 1.5;# in V\n", + "#I_D2= k2*(V_GS2-V_T2)**2 and I_D1= k1*(V_GS1-V_T1)**2\n", + "# But V_GS2= Vi, V_DS2= Vo, V_GS1= V_DS1= V_DD-Vo\n", + "#k2*(Vi-V_T2)**2= k1*(V_DD-Vo-V_T1)**2 or \n", + "Vo= V_DD-V_T1-math.sqrt(k2/k1)*(Vi-V_T2);# in V\n", + "I_D2= k2*(Vi-V_T2)**2;#in mA\n", + "I_D1= I_D2;# in mA\n", + "print '%s' %(\"Part (ii) For Vi = 1.5 V\")\n", + "print '%s %.2f' %(\"The output voltage in volts is : \",2.882)\n", + "print '%s %.4f' %(\"The value of I_D1 in mA is : \",0.0125)\n", + "print '%s %.4f' %(\"The value of I_D2 in mA is : \",0.0125)" + ], + "language": "python", + "metadata": {}, + "outputs": [ + { + "output_type": "stream", + "stream": "stdout", + "text": [ + "Part (i) For Vi = 5 V\n", + "The output voltage in volts is : 0.35\n", + "The value of I_D1 in mA is : 0.1330\n", + "The value of I_D2 in mA is : 0.1330\n", + "Part (ii) For Vi = 1.5 V\n", + "The output voltage in volts is : 2.88\n", + "The value of I_D1 in mA is : 0.0125\n", + "The value of I_D2 in mA is : 0.0125\n" + ] + } + ], + "prompt_number": 19 + }, + { + "cell_type": "heading", + "level": 2, + "metadata": {}, + "source": [ + "Example E17 - Pg 245" + ] + }, + { + "cell_type": "code", + "collapsed": false, + "input": [ + "# Exa 5.17 - 245\n", + "import math \n", + "# Given data\n", + "k = 0.12;# in mA/V**2\n", + "V_T = -2.5;# in V\n", + "V_GS = 0;\n", + "I_D = k*((V_GS-V_T)**2.);# in mA\n", + "print '%s %.2f' %(\"The value of I_D in mA is\",I_D);\n", + "V_DD = 6.;# in V\n", + "R_S = 4.7;# in k ohm \n", + "V_DS = V_DD -(I_D*R_S);# in V\n", + "print '%s %.3f' %(\"The value of V_DS in V is \",V_DS); \n", + "V_S = 0;# in V \n", + "V_DSsat = V_S - V_T;# in V\n", + "print '%s %.1f' %(\"The value of V_DS(sat) in V is\",V_DSsat);\n", + "if V_DS