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authorFOSSEE SysAds2015-12-08 15:04:13 +0600
committerFOSSEE SysAds2015-12-08 15:04:13 +0600
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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/Chapter1_2.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter1_3.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter1_4.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter1_5.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter1_6.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter1_7.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter1_8.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter1_9.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter2_1.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter2_2.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter2_3.ipynb A Introduction_To_Fluid_Mechanics_by_R._W._Fox_And_A._T._McDonald/Chapter2_4.ipynb A 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 Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter08.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter08_1.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter08_2.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter08_3.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter09.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter09_1.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter09_2.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter09_3.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter10.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter10_1.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter10_2.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter10_3.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter11.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter11_1.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter11_2.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter11_3.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter12.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter12_1.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter12_2.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter12_3.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter13.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter13_1.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter13_2.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/Chapter13_3.ipynb A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/README.txt A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/screenshots/Bedning_Moment_Diagram.png A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/screenshots/Bending.jpg A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/screenshots/Bending_1.jpg A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/screenshots/Bending_Moment_1.jpg A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/screenshots/Bending_Moment_Diagram.png A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/screenshots/ShearForce_1.jpg A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/screenshots/Shear_Force_2.jpg A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/screenshots/Shear_Force_Diagram.png A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/screenshots/bedning_2.jpg A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/screenshots/bedning_2_1.jpg A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/screenshots/shear_1.jpg A Mechanics_of_Materials_by_Pytel_and_Kiusalaas/screenshots/shear_1.tiff A Microelectronic_Circuits_by_A.S._Sedra_and_K.C._Smith/Chapter10_1.ipynb A Microelectronic_Circuits_by_A.S._Sedra_and_K.C._Smith/Chapter11_1.ipynb A Microelectronic_Circuits_by_A.S._Sedra_and_K.C._Smith/Chapter12_1.ipynb A Microelectronic_Circuits_by_A.S._Sedra_and_K.C._Smith/Chapter14_1.ipynb A Microelectronic_Circuits_by_A.S._Sedra_and_K.C._Smith/Chapter1_1.ipynb A Microelectronic_Circuits_by_A.S._Sedra_and_K.C._Smith/Chapter2_1.ipynb A Microelectronic_Circuits_by_A.S._Sedra_and_K.C._Smith/Chapter3_1.ipynb A Microelectronic_Circuits_by_A.S._Sedra_and_K.C._Smith/Chapter4_1.ipynb A Microelectronic_Circuits_by_A.S._Sedra_and_K.C._Smith/Chapter5_1.ipynb A Microelectronic_Circuits_by_A.S._Sedra_and_K.C._Smith/Chapter6_1.ipynb A Microelectronic_Circuits_by_A.S._Sedra_and_K.C._Smith/Chapter7_1.ipynb A Microelectronic_Circuits_by_A.S._Sedra_and_K.C._Smith/Chapter8_1.ipynb A Microelectronic_Circuits_by_A.S._Sedra_and_K.C._Smith/Chapter9_1.ipynb A Microelectronic_Circuits_by_A.S._Sedra_and_K.C._Smith/README.txt A Microelectronic_Circuits_by_A.S._Sedra_and_K.C._Smith/screenshots/10.3.png A Microelectronic_Circuits_by_A.S._Sedra_and_K.C._Smith/screenshots/5.2.png A Microelectronic_Circuits_by_A.S._Sedra_and_K.C._Smith/screenshots/5.4.png A Microwave_Devices_And_Circuits_by_S._Y._Liao/README.txt A Microwave_Devices_And_Circuits_by_S._Y._Liao/chapter10.ipynb A Microwave_Devices_And_Circuits_by_S._Y._Liao/chapter10_1.ipynb A Microwave_Devices_And_Circuits_by_S._Y._Liao/chapter10_2.ipynb A Microwave_Devices_And_Circuits_by_S._Y._Liao/chapter11.ipynb A Microwave_Devices_And_Circuits_by_S._Y._Liao/chapter11_1.ipynb A Microwave_Devices_And_Circuits_by_S._Y._Liao/chapter11_2.ipynb A Microwave_Devices_And_Circuits_by_S._Y._Liao/chapter12.ipynb A Microwave_Devices_And_Circuits_by_S._Y._Liao/chapter12_1.ipynb A Microwave_Devices_And_Circuits_by_S._Y._Liao/chapter12_2.ipynb A Microwave_Devices_And_Circuits_by_S._Y._Liao/chapter2.ipynb A Microwave_Devices_And_Circuits_by_S._Y._Liao/chapter2_1.ipynb A Microwave_Devices_And_Circuits_by_S._Y._Liao/chapter2_2.ipynb A Microwave_Devices_And_Circuits_by_S._Y._Liao/chapter3.ipynb A Microwave_Devices_And_Circuits_by_S._Y._Liao/chapter3_1.ipynb A Microwave_Devices_And_Circuits_by_S._Y._Liao/chapter3_2.ipynb A Microwave_Devices_And_Circuits_by_S._Y._Liao/chapter4.ipynb A Microwave_Devices_And_Circuits_by_S._Y._Liao/chapter4_1.ipynb A Microwave_Devices_And_Circuits_by_S._Y._Liao/chapter4_2.ipynb A Microwave_Devices_And_Circuits_by_S._Y._Liao/chapter5.ipynb A Microwave_Devices_And_Circuits_by_S._Y._Liao/chapter5_1.ipynb A Microwave_Devices_And_Circuits_by_S._Y._Liao/chapter5_2.ipynb A Microwave_Devices_And_Circuits_by_S._Y._Liao/chapter6.ipynb A Microwave_Devices_And_Circuits_by_S._Y._Liao/chapter6_1.ipynb A Microwave_Devices_And_Circuits_by_S._Y._Liao/chapter6_2.ipynb A Microwave_Devices_And_Circuits_by_S._Y._Liao/chapter7.ipynb A Microwave_Devices_And_Circuits_by_S._Y._Liao/chapter7_1.ipynb A Microwave_Devices_And_Circuits_by_S._Y._Liao/chapter7_2.ipynb A Microwave_Devices_And_Circuits_by_S._Y._Liao/chapter8.ipynb A Microwave_Devices_And_Circuits_by_S._Y._Liao/chapter8_1.ipynb A Microwave_Devices_And_Circuits_by_S._Y._Liao/chapter8_2.ipynb A Microwave_Devices_And_Circuits_by_S._Y._Liao/chapter9.ipynb A Microwave_Devices_And_Circuits_by_S._Y._Liao/chapter9_1.ipynb A Microwave_Devices_And_Circuits_by_S._Y._Liao/chapter9_2.ipynb A Microwave_Devices_And_Circuits_by_S._Y._Liao/screenshots/Screenshot_(7).png A Microwave_Devices_And_Circuits_by_S._Y._Liao/screenshots/Screenshot_(7)_1.png A Microwave_Devices_And_Circuits_by_S._Y._Liao/screenshots/Screenshot_(7)_2.png A Microwave_Devices_And_Circuits_by_S._Y._Liao/screenshots/Screenshot_(8).png A Microwave_Devices_And_Circuits_by_S._Y._Liao/screenshots/Screenshot_(8)_1.png A Microwave_Devices_And_Circuits_by_S._Y._Liao/screenshots/Screenshot_(8)_2.png A Microwave_Devices_And_Circuits_by_S._Y._Liao/screenshots/Screenshot_(9).png A Microwave_Devices_And_Circuits_by_S._Y._Liao/screenshots/Screenshot_(9)_1.png A Microwave_Devices_And_Circuits_by_S._Y._Liao/screenshots/Screenshot_(9)_2.png A Modern_Electronic_Instrumentation_And_Measurement_Techniques_by_A._D._Helfrick_And_W._D._Cooper/Chapter1.ipynb A 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Non-conventional_Energy_Sources_by_G._D._Rai/Chapter14.ipynb A Non-conventional_Energy_Sources_by_G._D._Rai/Chapter14_1.ipynb A Non-conventional_Energy_Sources_by_G._D._Rai/Chapter2.ipynb A Non-conventional_Energy_Sources_by_G._D._Rai/Chapter2_1.ipynb A Non-conventional_Energy_Sources_by_G._D._Rai/Chapter2_2.ipynb A Non-conventional_Energy_Sources_by_G._D._Rai/Chapter2_3.ipynb A Non-conventional_Energy_Sources_by_G._D._Rai/Chapter2_4.ipynb A Non-conventional_Energy_Sources_by_G._D._Rai/Chapter3.ipynb A Non-conventional_Energy_Sources_by_G._D._Rai/Chapter3_1.ipynb A Non-conventional_Energy_Sources_by_G._D._Rai/Chapter6.ipynb A Non-conventional_Energy_Sources_by_G._D._Rai/Chapter6_1.ipynb A Non-conventional_Energy_Sources_by_G._D._Rai/Chapter7.ipynb A Non-conventional_Energy_Sources_by_G._D._Rai/Chapter7_1.ipynb A Non-conventional_Energy_Sources_by_G._D._Rai/Chapter8.ipynb A Non-conventional_Energy_Sources_by_G._D._Rai/Chapter8_1.ipynb A Non-conventional_Energy_Sources_by_G._D._Rai/Chapter9.ipynb A Non-conventional_Energy_Sources_by_G._D._Rai/Chapter9_1.ipynb A Non-conventional_Energy_Sources_by_G._D._Rai/README.txt A Non-conventional_Energy_Sources_by_G._D._Rai/screenshots/chapter2.png A Non-conventional_Energy_Sources_by_G._D._Rai/screenshots/chapter2_1.png A Non-conventional_Energy_Sources_by_G._D._Rai/screenshots/chapter3.png A Non-conventional_Energy_Sources_by_G._D._Rai/screenshots/chapter6.png A Non-conventional_Energy_Sources_by_G._D._Rai/screenshots/chapter7.png A Non-conventional_Energy_Sources_by_G._D._Rai/screenshots/chapter8.png A OP_Amps_and_Linear_Integrated_Circuits:_Concepts_and_Applications_by_James_M._Fiore/README.txt A OP_Amps_and_Linear_Integrated_Circuits:_Concepts_and_Applications_by_James_M._Fiore/ch1.ipynb A OP_Amps_and_Linear_Integrated_Circuits:_Concepts_and_Applications_by_James_M._Fiore/ch10.ipynb A OP_Amps_and_Linear_Integrated_Circuits:_Concepts_and_Applications_by_James_M._Fiore/ch10_1.ipynb A OP_Amps_and_Linear_Integrated_Circuits:_Concepts_and_Applications_by_James_M._Fiore/ch11.ipynb A OP_Amps_and_Linear_Integrated_Circuits:_Concepts_and_Applications_by_James_M._Fiore/ch11_1.ipynb A OP_Amps_and_Linear_Integrated_Circuits:_Concepts_and_Applications_by_James_M._Fiore/ch12.ipynb A OP_Amps_and_Linear_Integrated_Circuits:_Concepts_and_Applications_by_James_M._Fiore/ch12_1.ipynb A OP_Amps_and_Linear_Integrated_Circuits:_Concepts_and_Applications_by_James_M._Fiore/ch1_1.ipynb A OP_Amps_and_Linear_Integrated_Circuits:_Concepts_and_Applications_by_James_M._Fiore/ch3.ipynb A OP_Amps_and_Linear_Integrated_Circuits:_Concepts_and_Applications_by_James_M._Fiore/ch3_1.ipynb A OP_Amps_and_Linear_Integrated_Circuits:_Concepts_and_Applications_by_James_M._Fiore/ch4.ipynb A OP_Amps_and_Linear_Integrated_Circuits:_Concepts_and_Applications_by_James_M._Fiore/ch4_1.ipynb A OP_Amps_and_Linear_Integrated_Circuits:_Concepts_and_Applications_by_James_M._Fiore/ch5.ipynb A OP_Amps_and_Linear_Integrated_Circuits:_Concepts_and_Applications_by_James_M._Fiore/ch5_1.ipynb A OP_Amps_and_Linear_Integrated_Circuits:_Concepts_and_Applications_by_James_M._Fiore/ch6.ipynb A OP_Amps_and_Linear_Integrated_Circuits:_Concepts_and_Applications_by_James_M._Fiore/ch6_1.ipynb A OP_Amps_and_Linear_Integrated_Circuits:_Concepts_and_Applications_by_James_M._Fiore/ch7.ipynb A OP_Amps_and_Linear_Integrated_Circuits:_Concepts_and_Applications_by_James_M._Fiore/ch7_1.ipynb A OP_Amps_and_Linear_Integrated_Circuits:_Concepts_and_Applications_by_James_M._Fiore/ch8.ipynb A OP_Amps_and_Linear_Integrated_Circuits:_Concepts_and_Applications_by_James_M._Fiore/ch8_1.ipynb A OP_Amps_and_Linear_Integrated_Circuits:_Concepts_and_Applications_by_James_M._Fiore/ch9.ipynb A OP_Amps_and_Linear_Integrated_Circuits:_Concepts_and_Applications_by_James_M._Fiore/ch9_1.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 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+{
+ "metadata": {
+ "name": "chapter 14 som.ipynb"
+ },
+ "nbformat": 3,
+ "nbformat_minor": 0,
+ "worksheets": [
+ {
+ "cells": [
+ {
+ "cell_type": "heading",
+ "level": 1,
+ "metadata": {},
+ "source": [
+ "Chapter 14:Dams and Retaining Walls"
+ ]
+ },
+ {
+ "cell_type": "heading",
+ "level": 2,
+ "metadata": {},
+ "source": [
+ "Problem no 14.1,Page No.325"
+ ]
+ },
+ {
+ "cell_type": "code",
+ "collapsed": false,
+ "input": [
+ "import math\n",
+ "%matplotlib inline\n",
+ "\n",
+ "#Initilization of variables\n",
+ "b=2 #m #width \n",
+ "FOS=1.5 #Factor of safety\n",
+ "#rho_mason=2.5*rho_w\n",
+ "mu=0.5 #coeffeicient of friction\n",
+ "\n",
+ "#Calculations\n",
+ "\n",
+ "#Let L=1 m (length of dam)\n",
+ "L=1\n",
+ "#W=b*H*L*rho\n",
+ "#After substituting values and Further simplifying we get\n",
+ "#W=2*H*rho\n",
+ "\n",
+ "#Total Pressure\n",
+ "#P=W*H**2*2**-1\n",
+ "\n",
+ "x_bar=b*2**-1 #Distance of Line of action of W from waterface\n",
+ "\n",
+ "#Distance of pt where resultant cuts the base measured from Line of action\n",
+ "#x=P*W**-1*H*3**-1\n",
+ "#After substituting values and Further simplifying we get\n",
+ "#x=H**2*30**-1\n",
+ "\n",
+ "#x_bar+x=2*b*3**-1\n",
+ "#After substituting values and Further simplifying we get\n",
+ "#1+H**2*30**-1=2*b*3**-1\n",
+ "H=(30*(2*b*3**-1-1))**0.5 #height of dam\n",
+ "\n",
+ "#Frictional Resistance offered at the base\n",
+ "#F=mu*W\n",
+ "#After substituting values and Further simplifying we get\n",
+ "#F=3.16*rho\n",
+ "\n",
+ "#Total Lateral Pressure\n",
+ "#P=W*H**2*2**-1\n",
+ "#P=4.99*W\n",
+ "\n",
+ "#Factor of safety against sliding\n",
+ "#FOS1=F*P**-1=3.16*4.99**-1*rho_mason*rho_w**-1\n",
+ "FOS1=3.16*4.99**-1*2.5\n",
+ "\n",
+ "#FOS1>FOS\n",
+ "\n",
+ "#Result\n",
+ "print\"Dam is safe against sliding\",round(FOS1,2)"
+ ],
+ "language": "python",
+ "metadata": {},
+ "outputs": [
+ {
+ "output_type": "stream",
+ "stream": "stdout",
+ "text": [
+ "Dam is safe against sliding 1.58\n"
+ ]
+ }
+ ],
+ "prompt_number": 2
+ },
+ {
+ "cell_type": "heading",
+ "level": 2,
+ "metadata": {},
+ "source": [
+ "Problem no 14.2,Page No.327"
+ ]
+ },
+ {
+ "cell_type": "code",
+ "collapsed": false,
+ "input": [
+ "import math\n",
+ "%matplotlib inline\n",
+ "\n",
+ "#Initilization of variables\n",
+ "D=2 #m #External Diameter\n",
+ "d=1.5 #m #Internal Diameter\n",
+ "P=1600 #N/m**2 #N/m**2 #Wind Pressure\n",
+ "W=19200 #N/m**2 #Weight of masonry\n",
+ "\n",
+ "#Calculations\n",
+ "\n",
+ "#Let H be max height of dam\n",
+ "\n",
+ "#W2=pi*4**-1*(D**2-d**2)*H*W #weight of chimney\n",
+ "#W2=26400*H\n",
+ "\n",
+ "#Eccentricrty\n",
+ "x=(D**2+d**2)*(8*D)**-1\n",
+ "\n",
+ "#P2=H*D*P #Lateral thrust of wind on chimney\n",
+ "#P2=3200*H\n",
+ "\n",
+ "#Now by using the relation we get P*W**-1=x*(H*2**-1)**-1\n",
+ "#After substituting values and Further simplifying we get\n",
+ "H=0.39*2*26400*3200**-1\n",
+ "\n",
+ "#result\n",
+ "print\"The Height of Dam is\",round(H,2),\"m\""
+ ],
+ "language": "python",
+ "metadata": {},
+ "outputs": [
+ {
+ "output_type": "stream",
+ "stream": "stdout",
+ "text": [
+ "The Height of Dam is 6.44 m\n"
+ ]
+ }
+ ],
+ "prompt_number": 3
+ },
+ {
+ "cell_type": "heading",
+ "level": 2,
+ "metadata": {},
+ "source": [
+ "Problem no 14.3,Page No.327"
+ ]
+ },
+ {
+ "cell_type": "code",
+ "collapsed": false,
+ "input": [
+ "import math\n",
+ "%matplotlib inline\n",
+ "\n",
+ "#Initilization of variables\n",
+ "rho_w=10 #KN/m**3 #Density of water\n",
+ "rho_mason=22.4 #KN/m**3 #Density of mason\n",
+ "H=6 #m #height of dam\n",
+ "a=1 #m #width of top\n",
+ "b=4 #m #bottom width\n",
+ "h=5.5 #m #Weight of water depth \n",
+ "\n",
+ "#Calculations\n",
+ "\n",
+ "#Let L=1 m (length of dam)\n",
+ "L=1\n",
+ "\n",
+ "#weight of dam\n",
+ "W=(a+b)*2**-1*H*a*rho_mason\n",
+ "\n",
+ "#Lateral thrust\n",
+ "P=rho_w*h**2*a*2**-1\n",
+ "\n",
+ "#distance of Line of action of W measured from vertical face\n",
+ "x_bar=(b**2+b*a+a**2)*(3*(b+a))**-1\n",
+ "\n",
+ "#distance of pt where resultant cuts the base\n",
+ "x=P*W**-1*h*3**-1\n",
+ "\n",
+ "#Eccentricity\n",
+ "e=x_bar+x-b*2**-1\n",
+ "\n",
+ "#Stress at Pt B\n",
+ "sigma1=W*b**-1*(1-6*e*b**-1)\n",
+ "\n",
+ "#stress at Pt C\n",
+ "sigma2=W*b**-1*(1+6*e*b**-1)\n",
+ "\n",
+ "#Result\n",
+ "print\"Max stress intensities at the base is\",round(sigma2,2),\"KN/m**2\"\n",
+ "print\"Min stress intensities at the base is\",round(sigma1,2),\"KN/m**2\"\n",
+ "\n",
+ "#Plotting the Shear Force Diagram\n",
+ "\n",
+ "X1=[0,L,L]\n",
+ "Y1=[sigma2,sigma1,0]\n",
+ "Z1=[0,0,0]\n",
+ "plt.plot(X1,Y1,X1,Z1)\n",
+ "plt.xlabel(\"Length x in m\")\n",
+ "plt.ylabel(\"Shear Force in kN\")\n",
+ "plt.show()\n"
+ ],
+ "language": "python",
+ "metadata": {},
+ "outputs": [
+ {
+ "output_type": "stream",
+ "stream": "stdout",
+ "text": [
+ "Max stress intensities at the base is 112.38 KN/m**2\n",
+ "Min stress intensities at the base is 55.62 KN/m**2\n"
+ ]
+ },
+ {
+ "metadata": {},
+ "output_type": "display_data",
+ "png": 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+ "text": [
+ "<matplotlib.figure.Figure at 0x55942b0>"
+ ]
+ }
+ ],
+ "prompt_number": 29
+ },
+ {
+ "cell_type": "heading",
+ "level": 2,
+ "metadata": {},
+ "source": [
+ "Problem no 14.4,Page No.329"
+ ]
+ },
+ {
+ "cell_type": "code",
+ "collapsed": false,
+ "input": [
+ "import math\n",
+ "%matplotlib inline\n",
+ "\n",
+ "#Initilization of variables\n",
+ "H=10 #m #height od dam\n",
+ "a=2 #m #top width\n",
+ "b=5 #m #bottom width\n",
+ "W=25 #KN/m**3 #weight of mason\n",
+ "rho_w=10 #KN/m**3 #density of water\n",
+ "\n",
+ "#Calculations\n",
+ "\n",
+ "#Let L=1 m (length of dam)\n",
+ "L=1\n",
+ "\n",
+ "#weight of dam\n",
+ "W2=(b+a)*H*L*W*2**-1\n",
+ "\n",
+ "##Lateral thrust\n",
+ "P=rho_w*H**2*L*2**-1 \n",
+ "\n",
+ "#Resultant thrust\n",
+ "R=(P**2+W**2)**0.5\n",
+ "\n",
+ "#Distance of Line of action from vertical base\n",
+ "x_bar=(b**2+b*a+a**2)*(3*(b+a))**-1\n",
+ "\n",
+ "##distance of pt where resultant cuts the base\n",
+ "x=P*W2**-1*H*3**-1\n",
+ "\n",
+ "#Eccentricity\n",
+ "e=x_bar+x-b*2**-1\n",
+ "\n",
+ "#Stress at Pt B\n",
+ "sigma1=W2*b**-1*(1-6*e*b**-1)\n",
+ "\n",
+ "#stress at Pt C\n",
+ "sigma2=W2*b**-1*(1+6*e*b**-1)\n",
+ "\n",
+ "#Result\n",
+ "print\"The Resultant Thrust on the base is\",round(R,2),\"KN\"\n",
+ "\n",
+ "#Plotting the Shear Force Diagram\n",
+ "\n",
+ "X1=[0,L,L]\n",
+ "Y1=[-sigma2,-sigma1,0]\n",
+ "Z1=[0,0,0]\n",
+ "plt.plot(X1,Y1,X1,Z1)\n",
+ "plt.xlabel(\"Length x in m\")\n",
+ "plt.ylabel(\"Shear Force in kN\")\n",
+ "plt.show()\n"
+ ],
+ "language": "python",
+ "metadata": {},
+ "outputs": [
+ {
+ "output_type": "stream",
+ "stream": "stdout",
+ "text": [
+ "The Resultant Thrust on the base is 500.62 KN\n"
+ ]
+ },
+ {
+ "metadata": {},
+ "output_type": "display_data",
+ "png": 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KXKQmq9IxEH+lBHJ5p05Zc1W98AJMmACPPgpXXml3VCJiN69MZSKBwRhrXY4H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\n",
+ "text": [
+ "<matplotlib.figure.Figure at 0x5657d50>"
+ ]
+ }
+ ],
+ "prompt_number": 28
+ },
+ {
+ "cell_type": "heading",
+ "level": 2,
+ "metadata": {},
+ "source": [
+ "Problem no 14.5,Page No.330"
+ ]
+ },
+ {
+ "cell_type": "code",
+ "collapsed": false,
+ "input": [
+ "import math\n",
+ "%matplotlib inline\n",
+ "\n",
+ "#Initilization of variables\n",
+ "H=30 #m #height of Dam\n",
+ "h=29 #m #height of water\n",
+ "rho_w=9810 #N/m**3 \n",
+ "rho_mason=22560 #N/m**3\n",
+ "sigma1=0 #KN/m**3\n",
+ "sigma2=880 #KN/m**3\n",
+ "\n",
+ "#Calculations\n",
+ "\n",
+ "#Let L=1 m (length of dam)\n",
+ "L=1\n",
+ "\n",
+ "#weight of dam\n",
+ "#W=(a+b)*2**-1*L*H*rho_mason*10**-3\n",
+ "#After substituting values and Further simplifying we get\n",
+ "#W=338.4*(a+b) #equation1\n",
+ "\n",
+ "#Pressure at B=0, Sinc etension at base has just been avoided\n",
+ "\n",
+ "#Eccentricity\n",
+ "e=b*6**-1 #as sigma1=0\n",
+ "\n",
+ "#Pressure at C\n",
+ "#sigma2=W2*b**-1*(1+6*e*b**-1)\n",
+ "#After substituting values and Further simplifying we get\n",
+ "#W=440*b\n",
+ "\n",
+ "#From equation1,440*b=338*(a+b)\n",
+ "#b=3.33*a\n",
+ "\n",
+ "#the distance of C.Gof dam\n",
+ "#x_bar=(b**2+b*a+a**2)*(3*(b+a))**-1\n",
+ "#After substituting values and Further simplifying we get\n",
+ "#x_bar=1.187*a\n",
+ "\n",
+ "#distance of pt where resultant cuts the base\n",
+ "#x=P*W2**-1*H*3**-1\n",
+ "#After substituting values and Further simplifying we get\n",
+ "#x=27.214*a**-1\n",
+ "\n",
+ "#Now x_bar+x=2*3**-1*b\n",
+ "#After substituting values and Further simplifying we get\n",
+ "a=(27.17*(2.22-1.187)**-1)**0.5\n",
+ "b=3.33*a\n",
+ "\n",
+ "#Result\n",
+ "print\"The top width dam is\",round(a,2),\"m\"\n",
+ "print\"The bottom width dam is\",round(b,2),\"m\"\n",
+ "\n",
+ "\n",
+ "#Plotting the Shear Force Diagram\n",
+ "\n",
+ "X1=[0,L,L]\n",
+ "Y1=[sigma2,sigma1,0]\n",
+ "Z1=[0,0,0]\n",
+ "plt.plot(X1,Y1,X1,Z1)\n",
+ "plt.xlabel(\"Length x in m\")\n",
+ "plt.ylabel(\"Shear Force in kN\")\n",
+ "plt.show()\n"
+ ],
+ "language": "python",
+ "metadata": {},
+ "outputs": [
+ {
+ "output_type": "stream",
+ "stream": "stdout",
+ "text": [
+ "The top width dam is 5.13 m\n",
+ "The bottom width dam is 17.08 m\n"
+ ]
+ },
+ {
+ "metadata": {},
+ "output_type": "display_data",
+ "png": 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Izs4mLi7uwiMUEbe54gpYvRruuw9GjYLZs+EiNpiUJqzWJJGcnMzHH39Mhw4d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\nhIiI1EhJQkREavT/G7kEgAv8kjUAAAAASUVORK5CYII=\n",
+ "text": [
+ "<matplotlib.figure.Figure at 0x5650490>"
+ ]
+ }
+ ],
+ "prompt_number": 35
+ },
+ {
+ "cell_type": "heading",
+ "level": 2,
+ "metadata": {},
+ "source": [
+ "Problem no 14.6,Page No.332"
+ ]
+ },
+ {
+ "cell_type": "code",
+ "collapsed": false,
+ "input": [
+ "import math\n",
+ "%matplotlib inline\n",
+ "\n",
+ "#Initilization of variables\n",
+ "H= 4 #m #height of dam\n",
+ "a=1 #m #Top width\n",
+ "b=3 #m #bottom width\n",
+ "rho1=9810 #N/m**3 #weight of water\n",
+ "rho2=19620 #n/m**3 #Weight of mason\n",
+ "\n",
+ "#Calculations\n",
+ "\n",
+ "#Let L=1 m (length of dam)\n",
+ "L=1\n",
+ "\n",
+ "#weight of dam\n",
+ "W=(a+b)*2**-1*L*H*rho2*10**-3\n",
+ "\n",
+ "##Lateral thrust\n",
+ "P=rho1*H**2*L*2**-1*10**-3 \n",
+ "\n",
+ "#Distance of Line of action from vertical base\n",
+ "x_bar=(b**2+b*a+a**2)*(3*(b+a))**-1\n",
+ "\n",
+ "#distance of pt where resultant cuts the base\n",
+ "x=P*W**-1*H*3**-1\n",
+ "\n",
+ "#Eccentricity\n",
+ "e=x_bar+x-b*2**-1\n",
+ "\n",
+ "#Stress at Pt B\n",
+ "sigma1=W*10**3*b**-1*(1-6*e*b**-1)\n",
+ "\n",
+ "#stress at Pt C\n",
+ "sigma2=W*10**3*b**-1*(1+6*e*b**-1)\n",
+ "\n",
+ "#Stresses at the base when resorvoir is empty\n",
+ "\n",
+ "e2=x_bar-b*2**-1\n",
+ "\n",
+ "#Minus sign indicates sigma_b>sigma_c\n",
+ "\n",
+ "#Stress at C\n",
+ "sigma2_2=W*10**3*b**-1*(1+6*round(e2,2)*b**-1)\n",
+ "\n",
+ "#Stress at Pt B\n",
+ "sigma1_2=W*10**3*b**-1*(1-6*round(e2,2)*b**-1)\n",
+ "\n",
+ "#result\n",
+ "print\"When the Reservoir is full :sigma1\",round(sigma1,2),\"KN/m**2\"\n",
+ "print\" :sigma2\",round(sigma2,2),\"KN/m**2\"\n",
+ "print\"When the Reservoir is empty:sigma1_2\",round(sigma1_2,2),\"KN/m**2\"\n",
+ "print\" :sigma2_2\",round(sigma2_2,2),\"KN/m**2\""
+ ],
+ "language": "python",
+ "metadata": {},
+ "outputs": [
+ {
+ "output_type": "stream",
+ "stream": "stdout",
+ "text": [
+ "When the Reservoir is full :sigma1 26160.0 KN/m**2\n",
+ " :sigma2 78480.0 KN/m**2\n",
+ "When the Reservoir is empty:sigma1_2 96268.8 KN/m**2\n",
+ " :sigma2_2 8371.2 KN/m**2\n"
+ ]
+ }
+ ],
+ "prompt_number": 21
+ },
+ {
+ "cell_type": "heading",
+ "level": 2,
+ "metadata": {},
+ "source": [
+ "Problem no 14.7,Page No.333"
+ ]
+ },
+ {
+ "cell_type": "code",
+ "collapsed": false,
+ "input": [
+ "import math\n",
+ "%matplotlib inline\n",
+ "\n",
+ "#Initilization of variables\n",
+ "H=8 #m #height of dam\n",
+ "h=7.5 #m #Height of water\n",
+ "a=1 #m #top width\n",
+ "mu=0.6 #Coeffeicient of friction\n",
+ "rho_mason=22.4 #KN/m**3 #weight of mason\n",
+ "rho_w=9.81 #KN/m**3 #density of water\n",
+ "\n",
+ "#Calculations\n",
+ "\n",
+ "#weight of dam\n",
+ "#W=(a+b)*2**-1*L*H*rho2*10**-3\n",
+ "#After substituting values and further simplifying we get\n",
+ "#W=89600*(b+1)\n",
+ "\n",
+ "#Distance of Line of action from vertical base\n",
+ "#x_bar=(b**2+b*a+a**2)*(3*(b+a))**-1\n",
+ "#After substituting values and further simplifying we get\n",
+ "#x_bar=(1+b+b**2)*(3*(1+b))**-1\n",
+ "\n",
+ "#Lateral thrust\n",
+ "P=rho_w*h**2*2**-1\n",
+ "\n",
+ "#Min width to avoid tension at base\n",
+ "#Z=x_bar+P*W**-1*h*3**-1\n",
+ "#Z=2*3**-1*b\n",
+ "#After substituting values and further simplifying we get\n",
+ "#b**2+b-24.09=0\n",
+ "a=1\n",
+ "b=1\n",
+ "c=-24.09\n",
+ "\n",
+ "X=b**2-4*a*c\n",
+ "\n",
+ "b1=(-b+X**0.5)*(2*a)**-1\n",
+ "b2=(-b-X**0.5)*(2*a)**-1\n",
+ "\n",
+ "#Thus width cannot be negative,b1 is considered\n",
+ "\n",
+ "#Min width to avoid sliding\n",
+ "#mu*W>P\n",
+ "#After substituting values and further simplifying we get\n",
+ "b=P*10**3*(mu*89600)**-1-1\n",
+ "\n",
+ "#Result\n",
+ "print\"The Min bottom width is\",round(b,2),\"m\""
+ ],
+ "language": "python",
+ "metadata": {},
+ "outputs": [
+ {
+ "output_type": "stream",
+ "stream": "stdout",
+ "text": [
+ "The Min bottom width is 4.13 m\n"
+ ]
+ }
+ ],
+ "prompt_number": 30
+ },
+ {
+ "cell_type": "heading",
+ "level": 2,
+ "metadata": {},
+ "source": [
+ "Problem no 14.8,Page No.334"
+ ]
+ },
+ {
+ "cell_type": "code",
+ "collapsed": false,
+ "input": [
+ "import math\n",
+ "%matplotlib inline\n",
+ "\n",
+ "#Initilization of variables\n",
+ "H=10 #m #height of dam\n",
+ "a=1 #m #top width\n",
+ "b=7 #m #Bottom width\n",
+ "rho_mason=19620 #N/m**3 #weight of mason\n",
+ "rho_w=9810 #N/m**3 #density of water\n",
+ "\n",
+ "#Calculations\n",
+ "\n",
+ "#Lateral thrust\n",
+ "P=rho_w*H**2*2**-1\n",
+ "\n",
+ "#weight of dam\n",
+ "W=(rho_w*H*2**-1*a)+(rho_mason*(a+b)*2**-1*H)\n",
+ "\n",
+ "#Taking Moment at B,M_B=0\n",
+ "x_bar=((rho_w*H*2**-1*1*3**-1)+(rho_mason*H*2**-1*2*3**-1)+(rho_mason*H*1.5)+(rho_mason*H*5*11*2**-1*3**-1))*W**-1\n",
+ "\n",
+ "#Now using relation we get\n",
+ "x=P*W**-1*H*3**-1\n",
+ "\n",
+ "#Eccentricity\n",
+ "e=x_bar+x-b*2**-1\n",
+ "\n",
+ "#Max stress\n",
+ "sigma_max=W*b**-1*(1+6*round(e,2)*b**-1)\n",
+ "\n",
+ "#Min stress\n",
+ "sigma_min=W*b**-1*(1-6*round(e,2)*b**-1)\n",
+ "\n",
+ "#Result\n",
+ "print\"The Max stresses on the base is\",round(sigma_max,2),\"N/m**2\"\n",
+ "print\"The Min stresses on the base is\",round(sigma_min,2),\"N/m**2\""
+ ],
+ "language": "python",
+ "metadata": {},
+ "outputs": [
+ {
+ "output_type": "stream",
+ "stream": "stdout",
+ "text": [
+ "The Max stresses on the base is 228372.8 N/m**2\n",
+ "The Min stresses on the base is 9870.06 N/m**2\n"
+ ]
+ }
+ ],
+ "prompt_number": 47
+ },
+ {
+ "cell_type": "heading",
+ "level": 2,
+ "metadata": {},
+ "source": [
+ "Problem no 14.10,Page No.337"
+ ]
+ },
+ {
+ "cell_type": "code",
+ "collapsed": false,
+ "input": [
+ "import math\n",
+ "%matplotlib inline\n",
+ "\n",
+ "#Initilization of variables\n",
+ "H=6 #m #height of dam\n",
+ "a=1 #m #top width\n",
+ "b=3 #m #Bottom width\n",
+ "rho_mason=22 #KN/m**3 #weight of mason\n",
+ "rho_earth=16 #KN/m**3 #density of water\n",
+ "phi=30 #Degree #angle of repose\n",
+ "mu=0.5 #Coeffecient of friction\n",
+ "\n",
+ "#Calculations\n",
+ "\n",
+ "#Let Length of dam ,L=1 m\n",
+ "L=1 #m\n",
+ "\n",
+ "#weight of dam\n",
+ "W=(a+b)*2**-1*L*H*rho_mason\n",
+ "\n",
+ "#Lateral thrust\n",
+ "P=rho_earth*H**2*L*2**-1*((1-sin(30*pi*180**-1))*(1+sin(phi*pi*180**-1))**-1)\n",
+ "\n",
+ "#Distance of Line of action from vertical base\n",
+ "x_bar=(b**2+b*a+a**2)*(3*(b+a))**-1\n",
+ "\n",
+ "#distance of pt where resultant cuts the base\n",
+ "x=P*W**-1*H*3**-1\n",
+ "\n",
+ "#Eccentricity\n",
+ "e=x_bar+x-b*2**-1\n",
+ "e_max=b*6**-1\n",
+ "\n",
+ "#stress at toe\n",
+ "sigma2=W*10**3*b**-1*(1+6*round(e,2)*b**-1)*10**-3\n",
+ "\n",
+ "#Safe agaainst bearing\n",
+ "\n",
+ "#Frictional Resistance \n",
+ "F=mu*W\n",
+ "\n",
+ "#Hence F>P,so it is safe against sliding\n",
+ "\n",
+ "#Result\n",
+ "print\"Safe against bearing as well as sliding\""
+ ],
+ "language": "python",
+ "metadata": {},
+ "outputs": [
+ {
+ "output_type": "stream",
+ "stream": "stdout",
+ "text": [
+ "Safe against bearing as well as sliding\n"
+ ]
+ }
+ ],
+ "prompt_number": 69
+ },
+ {
+ "cell_type": "heading",
+ "level": 2,
+ "metadata": {},
+ "source": [
+ "Problem no 14.11,Page No.338"
+ ]
+ },
+ {
+ "cell_type": "code",
+ "collapsed": false,
+ "input": [
+ "import math\n",
+ "%matplotlib inline\n",
+ "\n",
+ "#Initilization of variables\n",
+ "H=8 #m #height of dam\n",
+ "a=1 #m #top width\n",
+ "b=4.5 #m #Bottom width\n",
+ "rho_mason=24 #KN/m**3 #weight of mason\n",
+ "rho_earth=20 #KN/m**3 #density of water\n",
+ "phi=30 #Degree #angle of repose\n",
+ "mu=0.5 #Coeffecient of friction\n",
+ "BC=120 #KN/m**2\n",
+ "\n",
+ "\n",
+ "#Calculations\n",
+ "\n",
+ "#Let Length of dam ,L=1 m\n",
+ "L=1 #m\n",
+ "\n",
+ "#weight of dam\n",
+ "W=(a+b)*2**-1*L*H*rho_mason\n",
+ "\n",
+ "#Rankine's coeff earth pressure\n",
+ "K=((1-sin(30*pi*180**-1))*(1+sin(phi*pi*180**-1))**-1)\n",
+ "\n",
+ "#Lateral thrust\n",
+ "P=rho_earth*H**2*L*2**-1*round(K,2)\n",
+ "\n",
+ "#Distance of Line of action from vertical base\n",
+ "x_bar=(b**2+b*a+a**2)*(3*(b+a))**-1\n",
+ "\n",
+ "#distance of pt where resultant cuts the base\n",
+ "x=P*W**-1*H*3**-1\n",
+ "\n",
+ "#Eccentricity\n",
+ "e=x_bar+x-b*2**-1\n",
+ "\n",
+ "#Pressure at heel B\n",
+ "sigma1=W*b**-1*(1-6*round(e,2)*b**-1)\n",
+ "\n",
+ "#Pressure at heel C\n",
+ "sigma2=W*b**-1*(1+6*round(e,2)*b**-1)\n",
+ "\n",
+ "#sigma2>120 #KN/m**2,so it is unsafe against bearing capacity of the soil\n",
+ "\n",
+ "#result\n",
+ "print\"Unsafe against the bearing capacity of soil\" \n",
+ "\n",
+ "#Plotting the Shear Force Diagram\n",
+ "\n",
+ "X1=[0,L,L]\n",
+ "Y1=[sigma2,sigma1,0]\n",
+ "Z1=[0,0,0]\n",
+ "plt.plot(X1,Y1,X1,Z1)\n",
+ "plt.xlabel(\"Length x in m\")\n",
+ "plt.ylabel(\"Shear Force in kN\")\n",
+ "plt.show()\n"
+ ],
+ "language": "python",
+ "metadata": {},
+ "outputs": [
+ {
+ "output_type": "stream",
+ "stream": "stdout",
+ "text": [
+ "Unsafe against the bearing capacity of soil\n"
+ ]
+ },
+ {
+ "metadata": {},
+ "output_type": "display_data",
+ "png": 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+ "text": [
+ "<matplotlib.figure.Figure at 0x54faf90>"
+ ]
+ }
+ ],
+ "prompt_number": 86
+ },
+ {
+ "cell_type": "heading",
+ "level": 2,
+ "metadata": {},
+ "source": [
+ "Problem no 14.12,Page No.340"
+ ]
+ },
+ {
+ "cell_type": "code",
+ "collapsed": false,
+ "input": [
+ "import math\n",
+ "%matplotlib inline\n",
+ "\n",
+ "#Initilization of variables\n",
+ "H=6 #m #height of dam\n",
+ "a=1.5 #m #top width\n",
+ "b=3.5 #m #Bottom width\n",
+ "rho_s=16 #KN/m**3 #density of soil\n",
+ "rho_mason=22.5 #KN/m**3 #density of mason\n",
+ "phi=30 #Degree #angle of repose\n",
+ "\n",
+ "#Calculations\n",
+ "\n",
+ "#Let Length of dam ,L=1 m\n",
+ "L=1 #m\n",
+ "\n",
+ "#weight of dam\n",
+ "W=(a+b)*2**-1*L*H*rho_mason\n",
+ "\n",
+ "#Rankine's coeff earth pressure\n",
+ "K=((1-sin(30*pi*180**-1))*(1+sin(phi*pi*180**-1))**-1)\n",
+ "\n",
+ "#Lateral thrust\n",
+ "P=rho_s*H**2*L*2**-1*K\n",
+ "\n",
+ "#Distance of Line of action from vertical base\n",
+ "x_bar=(b**2+b*a+a**2)*(3*(b+a))**-1\n",
+ "\n",
+ "#distance of pt where resultant cuts the base\n",
+ "x=P*W**-1*H*3**-1\n",
+ "\n",
+ "#Eccentricity\n",
+ "e=x_bar+x-b*2**-1\n",
+ "\n",
+ "#Pressure at heel B\n",
+ "sigma1=W*b**-1*(1-6*round(e,3)*b**-1)\n",
+ "\n",
+ "#Pressure at heel C\n",
+ "sigma2=W*b**-1*(1+6*round(e,3)*b**-1)\n",
+ "\n",
+ "#Result\n",
+ "print\"The Max Intensities of soil at the wall is\",round(sigma2,2),\"KN/m**2\"\n",
+ "print\"The Min Intensities of soil at the wall is\",round(sigma1,2),\"KN/m**2\"\n",
+ "\n",
+ "#Plotting the Shear Force Diagram\n",
+ "\n",
+ "X1=[0,L,L]\n",
+ "Y1=[sigma2,sigma1,0]\n",
+ "Z1=[0,0,0]\n",
+ "plt.plot(X1,Y1,X1,Z1)\n",
+ "plt.xlabel(\"Length x in m\")\n",
+ "plt.ylabel(\"Shear Force in kN\")\n",
+ "plt.show()\n"
+ ],
+ "language": "python",
+ "metadata": {},
+ "outputs": [
+ {
+ "output_type": "stream",
+ "stream": "stdout",
+ "text": [
+ "The Max Intensities of soil at the wall is 118.91 KN/m**2\n",
+ "The Min Intensities of soil at the wall is 73.95 KN/m**2\n"
+ ]
+ },
+ {
+ "metadata": {},
+ "output_type": "display_data",
+ "png": 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+ "text": [
+ "<matplotlib.figure.Figure at 0x555a0f0>"
+ ]
+ }
+ ],
+ "prompt_number": 113
+ },
+ {
+ "cell_type": "heading",
+ "level": 2,
+ "metadata": {},
+ "source": [
+ "Problem no 14.13,Page No.341"
+ ]
+ },
+ {
+ "cell_type": "code",
+ "collapsed": false,
+ "input": [
+ "import math\n",
+ "%matplotlib inline\n",
+ "\n",
+ "#Initilization of variables\n",
+ "H=6 #m #height of dam\n",
+ "a=1 #m #top width\n",
+ "b=3 #m #Bottom width\n",
+ "rho_s=18 #KN/m**3 #density of soil\n",
+ "rho_mason=24 #KN/m**3 #density of mason\n",
+ "alpha=20\n",
+ "phi=30\n",
+ "\n",
+ "#Calculations\n",
+ "\n",
+ "#Let Length of dam ,L=1 m\n",
+ "L=1 #m\n",
+ "\n",
+ "a2=cos(alpha*pi*180**-1)\n",
+ "b2=(cos(alpha*pi*180**-1)-((cos(alpha*pi*180**-1)**2-cos(phi*pi*180**-1)**2))**0.5)\n",
+ "c2=(cos(alpha*pi*180**-1)+((cos(alpha*pi*180**-1)**2-cos(phi*pi*180**-1)**2)**0.5))\n",
+ "\n",
+ "X=a2*b2*c2**-1\n",
+ "\n",
+ "#Total Pressue on the wall\n",
+ "P=rho_s*H**2*2**-1*X\n",
+ "\n",
+ "#The Horizontal component of pressure\n",
+ "P_H=P*cos(20*pi*180**-1)\n",
+ "\n",
+ "#The Vertical component of pressure\n",
+ "P_V=P*sin(20*pi*180**-1)\n",
+ "\n",
+ "#weight of wall\n",
+ "W=(a+b)*H*rho_mason*2**-1\n",
+ "\n",
+ "#TotaL Weight \n",
+ "W1=W+P_V\n",
+ "\n",
+ "#Taking moment of vertical Loads about B,M_B=0\n",
+ "x_bar=(rho_mason*a*H*0.5+rho_mason*H*2)*W1**-1\n",
+ "\n",
+ "x=P_H*W1**-1*H*3**-1\n",
+ "\n",
+ "#eccentricity\n",
+ "e=x_bar+x-b*2**-1\n",
+ "\n",
+ "#Stress at the toe at C\n",
+ "sigma_max=W1*b**-1*(1+6*round(e,2)*b**-1)\n",
+ "\n",
+ "#Stress at the heel at B\n",
+ "sigma_min=W1*b**-1*(1-6*round(e,2)*b**-1)\n",
+ "\n",
+ "#Result\n",
+ "print\"Pressure at the base of the wall:Pressure at the heel\",round(sigma_min,2),\"KN/m**2\"\n",
+ "print\" :Pressure at the toe\",round(sigma_max,2),\"KN/m**2\""
+ ],
+ "language": "python",
+ "metadata": {},
+ "outputs": [
+ {
+ "output_type": "stream",
+ "stream": "stdout",
+ "text": [
+ "Pressure at the base of the wall:Pressure at the heel 37.84 KN/m**2\n",
+ " :Pressure at the toe 184.76 KN/m**2\n"
+ ]
+ }
+ ],
+ "prompt_number": 155
+ }
+ ],
+ "metadata": {}
+ }
+ ]
+} \ No newline at end of file