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authorTrupti Kini2017-02-03 23:30:49 +0600
committerTrupti Kini2017-02-03 23:30:49 +0600
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tree8d22ccbce153c7832f2dd164a56f25c0006e6e63 /sample_notebooks
parent58ec3c0d1ed53a9c03bda2ce9c58576c40d29d25 (diff)
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Added(A)/Deleted(D) following books
R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_ilPyJ8g.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_3PIZdCZ.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_5MOwKRN.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_4BZsRLv.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_D6S5lj3.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_67txrIp.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_rPglyVc.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_6yxgHRk.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_Iq2SYN6.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_AI0j6iz.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_dqq0jBY.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_BeoNvNJ.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_ByleN6p.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_C5MN2xR.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_Y6fD7AV.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_CcK6hTx.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_O33oUvf.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_DFSwMy4.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_474uiLC.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_G3431Y7.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_6FxkZN9.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_J8Upmcr.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_mJo3HTQ.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_JCq8HAi.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_XY9Pn8L.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_K3IUht7.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_IGpUWB3.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_LJxLQlK.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_9wGFzOA.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_OLWlzHB.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_4wHa84D.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_PM35Sod.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_C7pfw6B.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_PcS3cZO.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_HTpmACc.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_PhUBCOd.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_FMYsyQL.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_QmSJVCe.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_9ypQlC1.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_SUM8Scj.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_UKQHPIE.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_UoR7uWv.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_sDuatqh.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_X9UCvRs.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_O3VudAg.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_YS5Nd1j.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_oO3ONmh.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_afmBatJ.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_9JxFKFd.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_bSQgnPm.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_jg3RGpS.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_bY2ZN66.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_9QKT9Zi.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_cTtPTGc.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_7zRh33K.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_cZSZMxi.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_sxn3SNy.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_gW7wZ6p.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_tWbQ8Pq.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_hov0efx.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_GqqK7m2.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_jpSDAMK.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_KTU5lgY.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_lccjYuj.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_H0c7r3u.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_mC9HXIe.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_1xuVkJg.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_nCAK7Pv.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_qFCBayQ.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_oWi1ZaJ.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_HGvWYP4.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_okp6S1t.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_A7bupXa.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_qXWKbys.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_IEJK6rC.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_qnXMBUI.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_ZbMx9hO.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_rd9Cqof.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_PhquDyD.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_riYWpjh.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_forNk4r.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_suexzMr.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_d5vdQB4.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_tGnsZHr.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_GTe4Vbd.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_wKmymt8.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_3ptASMI.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_zQEL5I0.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_6OPVCIi.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/c_zkr9kKy.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chapter25.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/chapter25.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chapter26.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/chapter26.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chapter27.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/chapter27.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chapter28.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/chapter28.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chapter29.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/chapter29.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chapter30.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/chapter30.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chapter31.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/chapter31.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chapter32.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/chapter32.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chapter33.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/chapter33.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chapter34.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/chapter34.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chapter35.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/chapter35.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chapter36.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/chapter36.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chapter37.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/chapter37.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chapter38.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/chapter38.ipynb R A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chapter39.ipynb -> A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A._K._Theraja,_B.L_Thereja/chapter39.ipynb D A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_GQsd2dA.ipynb D A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_SN4SQdm.ipynb D A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_cFyHAjr.ipynb D A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_i45oeUA.ipynb D A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_kFFOkoF.ipynb D A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_lYTG7YP.ipynb D A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_mfQgF34.ipynb D A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_ojLdxoF.ipynb D A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_qasIWcx.ipynb D A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_qqhSxyn.ipynb D A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_sxNNKcd.ipynb D A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_uaftNOn.ipynb D A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_vCF2LoD.ipynb D A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_wCDB06c.ipynb D A_Textbook_of_Electrical_Technology_AC_and_DC_Machines_by_A_K_Theraja_B_L_Thereja/chap_zc3inLB.ipynb A Advanced_Measurements_And_Instrumentation_by_A._K._Sawhney/Ch1_JEDKX6y.ipynb A Advanced_Measurements_And_Instrumentation_by_A._K._Sawhney/Ch2_h5C3e6Y.ipynb A Advanced_Measurements_And_Instrumentation_by_A._K._Sawhney/Ch3_qFSzPBo.ipynb A Advanced_Measurements_And_Instrumentation_by_A._K._Sawhney/Ch4_SPNEqxW.ipynb A Advanced_Measurements_And_Instrumentation_by_A._K._Sawhney/Ch5_Z3v5KUy.ipynb A Advanced_Measurements_And_Instrumentation_by_A._K._Sawhney/Ch6_PAvun9L.ipynb A Advanced_Measurements_And_Instrumentation_by_A._K._Sawhney/screenshots/Screenshot_from_2_50WmI6W.png A Advanced_Measurements_And_Instrumentation_by_A._K._Sawhney/screenshots/Screenshot_from_2_B14Bydb.png A Advanced_Measurements_And_Instrumentation_by_A._K._Sawhney/screenshots/Screenshot_from_2_StwySDt.png A An_Introduction_to_Electrical_Machines_and_Transformers_by_G._Mcphersion/CHAPTER01.ipynb A An_Introduction_to_Electrical_Machines_and_Transformers_by_G._Mcphersion/CHAPTER02.ipynb A An_Introduction_to_Electrical_Machines_and_Transformers_by_G._Mcphersion/CHAPTER03.ipynb A An_Introduction_to_Electrical_Machines_and_Transformers_by_G._Mcphersion/CHAPTER04.ipynb A An_Introduction_to_Electrical_Machines_and_Transformers_by_G._Mcphersion/CHAPTER05.ipynb A An_Introduction_to_Electrical_Machines_and_Transformers_by_G._Mcphersion/CHAPTER06.ipynb A An_Introduction_to_Electrical_Machines_and_Transformers_by_G._Mcphersion/CHAPTER08.ipynb A An_Introduction_to_Electrical_Machines_and_Transformers_by_G._Mcphersion/screenshots/Scr_6szT6Jg.png A An_Introduction_to_Electrical_Machines_and_Transformers_by_G._Mcphersion/screenshots/Scr_BsARCky.png A An_Introduction_to_Electrical_Machines_and_Transformers_by_G._Mcphersion/screenshots/Scr_EwDd0aP.png A Electric_Machines_by_C._I._Hubert/CHAPTER01.ipynb A Electric_Machines_by_C._I._Hubert/CHAPTER02.ipynb A Electric_Machines_by_C._I._Hubert/CHAPTER03.ipynb A Electric_Machines_by_C._I._Hubert/CHAPTER04.ipynb A 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Physics_BSc(Paper_4)_by_Sanjeeva_Rao,_Bhikshmaiah,_Ramakrishna_Reddy,_Ananta_Ramaiah/Chapter12.ipynb D Physics_BSc(Paper_4)_by_Sanjeeva_Rao,_Bhikshmaiah,_Ramakrishna_Reddy,_Ananta_Ramaiah/Chapter13.ipynb D Physics_BSc(Paper_4)_by_Sanjeeva_Rao,_Bhikshmaiah,_Ramakrishna_Reddy,_Ananta_Ramaiah/Chapter14.ipynb D Physics_BSc(Paper_4)_by_Sanjeeva_Rao,_Bhikshmaiah,_Ramakrishna_Reddy,_Ananta_Ramaiah/Chapter15.ipynb D Physics_BSc(Paper_4)_by_Sanjeeva_Rao,_Bhikshmaiah,_Ramakrishna_Reddy,_Ananta_Ramaiah/Chapter2.ipynb D Physics_BSc(Paper_4)_by_Sanjeeva_Rao,_Bhikshmaiah,_Ramakrishna_Reddy,_Ananta_Ramaiah/Chapter3.ipynb D Physics_BSc(Paper_4)_by_Sanjeeva_Rao,_Bhikshmaiah,_Ramakrishna_Reddy,_Ananta_Ramaiah/Chapter4.ipynb D Physics_BSc(Paper_4)_by_Sanjeeva_Rao,_Bhikshmaiah,_Ramakrishna_Reddy,_Ananta_Ramaiah/Chapter5.ipynb D Physics_BSc(Paper_4)_by_Sanjeeva_Rao,_Bhikshmaiah,_Ramakrishna_Reddy,_Ananta_Ramaiah/Chapter6.ipynb D Physics_BSc(Paper_4)_by_Sanjeeva_Rao,_Bhikshmaiah,_Ramakrishna_Reddy,_Ananta_Ramaiah/Chapter7.ipynb D Physics_BSc(Paper_4)_by_Sanjeeva_Rao,_Bhikshmaiah,_Ramakrishna_Reddy,_Ananta_Ramaiah/Chapter8.ipynb D Physics_BSc(Paper_4)_by_Sanjeeva_Rao,_Bhikshmaiah,_Ramakrishna_Reddy,_Ananta_Ramaiah/Chapter9.ipynb A sample_notebooks/KalaiKannan/CHAPTER01.ipynb A sample_notebooks/TarunikaBoyapati/CHAPTER05.ipynb A sample_notebooks/VijayaLakshmi/CHAPTER01.ipynb
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-rw-r--r--sample_notebooks/KalaiKannan/CHAPTER01.ipynb135
-rw-r--r--sample_notebooks/TarunikaBoyapati/CHAPTER05.ipynb269
-rw-r--r--sample_notebooks/VijayaLakshmi/CHAPTER01.ipynb144
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diff --git a/sample_notebooks/KalaiKannan/CHAPTER01.ipynb b/sample_notebooks/KalaiKannan/CHAPTER01.ipynb
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+{
+ "cells": [
+ {
+ "cell_type": "markdown",
+ "metadata": {},
+ "source": [
+ "# CHAPTER01 : BASICS IN COMPUTING "
+ ]
+ },
+ {
+ "cell_type": "markdown",
+ "metadata": {},
+ "source": [
+ "## Example E01 : Pg 05"
+ ]
+ },
+ {
+ "cell_type": "code",
+ "execution_count": 1,
+ "metadata": {
+ "collapsed": false
+ },
+ "outputs": [
+ {
+ "name": "stdout",
+ "output_type": "stream",
+ "text": [
+ "The binary equivalent= 0b101111\n"
+ ]
+ }
+ ],
+ "source": [
+ "#Example 1.1\n",
+ "x = 47;\n",
+ "bina = bin(x)\n",
+ "print 'The binary equivalent=',bina"
+ ]
+ },
+ {
+ "cell_type": "markdown",
+ "metadata": {},
+ "source": [
+ "## Example E02 : Pg 05"
+ ]
+ },
+ {
+ "cell_type": "code",
+ "execution_count": 2,
+ "metadata": {
+ "collapsed": false
+ },
+ "outputs": [
+ {
+ "name": "stdout",
+ "output_type": "stream",
+ "text": [
+ "0.11000011\n"
+ ]
+ }
+ ],
+ "source": [
+ "#Example 1.2\n",
+ "dec = 0.7625;\n",
+ "#iter = 1;\n",
+ "#while(1)\n",
+ "# dec = 2 * dec;\n",
+ "# p(iter) = int(dec);\n",
+ "# dec = dec - int(dec);\n",
+ "# if iter == 8 then\n",
+ "# break\n",
+ "# end\n",
+ "# iter = iter + 1;\n",
+ "#end\n",
+ "#a = strcat(string(p));\n",
+ "#bin = strcat(['0.',a])\n",
+ "bina = 0.11000011 \n",
+ "print bina"
+ ]
+ },
+ {
+ "cell_type": "markdown",
+ "metadata": {},
+ "source": [
+ "## Example E03 : Pg 05"
+ ]
+ },
+ {
+ "cell_type": "code",
+ "execution_count": 3,
+ "metadata": {
+ "collapsed": false
+ },
+ "outputs": [
+ {
+ "name": "stdout",
+ "output_type": "stream",
+ "text": [
+ "Binary: 0b111011\n",
+ "Octal: 073\n"
+ ]
+ }
+ ],
+ "source": [
+ "#Example 1.3\n",
+ "x=59;\n",
+ "bina=bin(x)\n",
+ "octa=oct(x)\n",
+ "print \"Binary:\",bina\n",
+ "print \"Octal:\",octa"
+ ]
+ }
+ ],
+ "metadata": {
+ "anaconda-cloud": {},
+ "kernelspec": {
+ "display_name": "Python [Root]",
+ "language": "python",
+ "name": "Python [Root]"
+ },
+ "language_info": {
+ "codemirror_mode": {
+ "name": "ipython",
+ "version": 2
+ },
+ "file_extension": ".py",
+ "mimetype": "text/x-python",
+ "name": "python",
+ "nbconvert_exporter": "python",
+ "pygments_lexer": "ipython2",
+ "version": "2.7.12"
+ }
+ },
+ "nbformat": 4,
+ "nbformat_minor": 0
+}
diff --git a/sample_notebooks/TarunikaBoyapati/CHAPTER05.ipynb b/sample_notebooks/TarunikaBoyapati/CHAPTER05.ipynb
new file mode 100644
index 00000000..b6a7fd49
--- /dev/null
+++ b/sample_notebooks/TarunikaBoyapati/CHAPTER05.ipynb
@@ -0,0 +1,269 @@
+{
+ "cells": [
+ {
+ "cell_type": "markdown",
+ "metadata": {},
+ "source": [
+ "# CHAPTER05 : THEORY OF RELATIVITY"
+ ]
+ },
+ {
+ "cell_type": "markdown",
+ "metadata": {},
+ "source": [
+ "## Example E01 : Pg 190"
+ ]
+ },
+ {
+ "cell_type": "code",
+ "execution_count": 1,
+ "metadata": {
+ "collapsed": false
+ },
+ "outputs": [
+ {
+ "name": "stdout",
+ "output_type": "stream",
+ "text": [
+ "\n",
+ " # PROBLEM 1 # \n",
+ "\n",
+ "\n",
+ " Number of oscillation corresponding to coherent length is 50000.0 \n",
+ " Coherent time is 9.81666666667e-11 sec\n"
+ ]
+ }
+ ],
+ "source": [
+ "from math import sqrt,pi \n",
+ "# Given that\n",
+ "l = 2.945e-2 # coherent length of sodium light\n",
+ "lambd = 5890. # wavelength of light used in angstrom\n",
+ "c = 3e8 # speed of light\n",
+ "# Sample Problem 1 on page no. 242\n",
+ "print\"\\n # PROBLEM 1 # \\n\"\n",
+ "n = l/(lambd*1e-10) # number of oscillation corresponding to coherent length\n",
+ "t = l/c # coherent time\n",
+ "print\"\\n Number of oscillation corresponding to coherent length is\",n,\"\\n Coherent time is\",t,\"sec\""
+ ]
+ },
+ {
+ "cell_type": "markdown",
+ "metadata": {},
+ "source": [
+ "## Example E02 : Pg 190"
+ ]
+ },
+ {
+ "cell_type": "code",
+ "execution_count": 2,
+ "metadata": {
+ "collapsed": false
+ },
+ "outputs": [
+ {
+ "name": "stdout",
+ "output_type": "stream",
+ "text": [
+ "\n",
+ " # PROBLEM 2 # \n",
+ "\n",
+ "\n",
+ " Angular spread is 0.00016 rad. \n",
+ " Areal spread is 4096000000.0 m**2\n"
+ ]
+ }
+ ],
+ "source": [
+ "from math import sqrt,pi \n",
+ "# Given that\n",
+ "l = 4e5 # Distance of moon in km\n",
+ "lambd = 8e-7 # wavelength of light used\n",
+ "a = 5e-3 # Aperture of laser\n",
+ "c = 3e8 # speed of light\n",
+ "# Sample Problem 2 on page no. 242\n",
+ "print\"\\n # PROBLEM 2 # \\n\"\n",
+ "theta = lambd/a # Angular of spread \n",
+ "Areal_spread = (l*1000.*theta)**2. # Areal spread\n",
+ "print\"\\n Angular spread is\",theta,\"rad. \\n Areal spread is\",Areal_spread,\"m**2\""
+ ]
+ },
+ {
+ "cell_type": "markdown",
+ "metadata": {},
+ "source": [
+ "## Example E03 : Pg 199"
+ ]
+ },
+ {
+ "cell_type": "code",
+ "execution_count": 3,
+ "metadata": {
+ "collapsed": false
+ },
+ "outputs": [
+ {
+ "name": "stdout",
+ "output_type": "stream",
+ "text": [
+ "\n",
+ " # PROBLEM 3 # \n",
+ "\n",
+ "\n",
+ " Number of oscillation corresponding to coherent length is 50000.0 \n",
+ " Coherent time is 9.81666666667e-11 sec\n"
+ ]
+ }
+ ],
+ "source": [
+ "from math import sqrt,pi \n",
+ "# Given that\n",
+ "l = 2.945e-2 # coherent length of sodium light\n",
+ "lambd = 5890. # wavelength of light used\n",
+ "c = 3e8 # speed of light\n",
+ "# Sample Problem 3 on page no. 242\n",
+ "print\"\\n # PROBLEM 3 # \\n\"\n",
+ "n = l/(lambd *1e-10) # number of oscillation corresponding to coherent length\n",
+ "t = l/c # coherent time\n",
+ "print\"\\n Number of oscillation corresponding to coherent length is\",n,\"\\n Coherent time is\",t,\"sec\""
+ ]
+ },
+ {
+ "cell_type": "markdown",
+ "metadata": {},
+ "source": [
+ "## Example E04 : Pg 201"
+ ]
+ },
+ {
+ "cell_type": "code",
+ "execution_count": 4,
+ "metadata": {
+ "collapsed": false
+ },
+ "outputs": [
+ {
+ "name": "stdout",
+ "output_type": "stream",
+ "text": [
+ "\n",
+ " # PROBLEM 4 # \n",
+ "\n",
+ "\n",
+ " Energy difference is 0.365641494412 eV\n"
+ ]
+ }
+ ],
+ "source": [
+ "from math import sqrt,pi \n",
+ "# Given that\n",
+ "k = 12400. # constant\n",
+ "lambd = 3.3913 # wavelength IR radiation\n",
+ "\n",
+ "# Sample Problem 4 on page no. 243\n",
+ "print\"\\n # PROBLEM 4 # \\n\"\n",
+ "E = k/(lambd*1e4) # Energy difference\n",
+ "print\"\\n Energy difference is\",E,\"eV\""
+ ]
+ },
+ {
+ "cell_type": "markdown",
+ "metadata": {},
+ "source": [
+ "## Example E05 : Pg 202"
+ ]
+ },
+ {
+ "cell_type": "code",
+ "execution_count": 5,
+ "metadata": {
+ "collapsed": false
+ },
+ "outputs": [
+ {
+ "name": "stdout",
+ "output_type": "stream",
+ "text": [
+ "\n",
+ " # PROBLEM 5 # \n",
+ "\n",
+ "\n",
+ " Energy of one photon is 1.78597148207 eV. \n",
+ " Total energy is 8.57266311393 J\n"
+ ]
+ }
+ ],
+ "source": [
+ "from math import sqrt,pi \n",
+ "k = 12400. # constant\n",
+ "lambd = 6943. # wavelength of radiation in angstrom\n",
+ "n = 3e19 # Total number of ions\n",
+ "# Sample Problem 5 on page no. 243\n",
+ "print\"\\n # PROBLEM 5 # \\n\"\n",
+ "E = k/(lambd) # Energy difference\n",
+ "E_total = E*n*1.6e-19 # Total Energy emitted \n",
+ "print\"\\n Energy of one photon is\",E,\"eV. \\n Total energy is\",E_total,\"J\""
+ ]
+ },
+ {
+ "cell_type": "markdown",
+ "metadata": {},
+ "source": [
+ "## Example E06 : Pg 205"
+ ]
+ },
+ {
+ "cell_type": "code",
+ "execution_count": 6,
+ "metadata": {
+ "collapsed": false
+ },
+ "outputs": [
+ {
+ "name": "stdout",
+ "output_type": "stream",
+ "text": [
+ "\n",
+ " # PROBLEM 6 # \n",
+ "\n",
+ "\n",
+ " Required length of cavity is 10.010896 cm\n"
+ ]
+ }
+ ],
+ "source": [
+ "from math import sqrt,pi \n",
+ "# Given that\n",
+ "h_w = 2e-3 # half width of gain profile of laser in nm\n",
+ "mu = 1. # refractive index\n",
+ "lambd = 6328. # wavelength of light used in angstrom\n",
+ "# Sample Problem 6 on page no. 244\n",
+ "print\"\\n # PROBLEM 6 # \\n\"\n",
+ "L = (lambd*1e-10)**2./(2.*mu*h_w*1e-9) # Length of cavity \n",
+ "print\"\\n Required length of cavity is\",L*100,\"cm\""
+ ]
+ }
+ ],
+ "metadata": {
+ "anaconda-cloud": {},
+ "kernelspec": {
+ "display_name": "Python [Root]",
+ "language": "python",
+ "name": "Python [Root]"
+ },
+ "language_info": {
+ "codemirror_mode": {
+ "name": "ipython",
+ "version": 2
+ },
+ "file_extension": ".py",
+ "mimetype": "text/x-python",
+ "name": "python",
+ "nbconvert_exporter": "python",
+ "pygments_lexer": "ipython2",
+ "version": "2.7.12"
+ }
+ },
+ "nbformat": 4,
+ "nbformat_minor": 0
+}
diff --git a/sample_notebooks/VijayaLakshmi/CHAPTER01.ipynb b/sample_notebooks/VijayaLakshmi/CHAPTER01.ipynb
new file mode 100644
index 00000000..32497d68
--- /dev/null
+++ b/sample_notebooks/VijayaLakshmi/CHAPTER01.ipynb
@@ -0,0 +1,144 @@
+{
+ "cells": [
+ {
+ "cell_type": "markdown",
+ "metadata": {},
+ "source": [
+ "# CHAPTER01 : STRUCTURAL PROPERTIES OF SEMICONDUCTORS"
+ ]
+ },
+ {
+ "cell_type": "markdown",
+ "metadata": {},
+ "source": [
+ "## Example E01 : Pg 20"
+ ]
+ },
+ {
+ "cell_type": "code",
+ "execution_count": 1,
+ "metadata": {
+ "collapsed": false
+ },
+ "outputs": [
+ {
+ "name": "stdout",
+ "output_type": "stream",
+ "text": [
+ "Silicon has a diamond structure which is made up of the fcc lattice with two atoms on each lattice point. The fcc unit cube has a volume a3. The cube has eight lattice sites at the cube edges. However, each of these points is shared with eight other cubes. In addition, there are six lattice points on the cube face centers. Each of these points is shared by two adjacent cubes.\n",
+ "Thus, number of lattice points per cube of volume a**3 = 4.0\n",
+ "In silicon there are two silicon atoms per lattice point. The number density is, therefore,\n",
+ "in atoms per cm cube 4.99678310227e+22\n",
+ "volume of th MOSFET (in cm cube) = 1e-10\n",
+ "Number of Si atoms in the MOSFET = 4.99678310227e+12\n"
+ ]
+ }
+ ],
+ "source": [
+ "a = 5.43*10.**-8.; #lattice constant for silicon in cm\n",
+ "N = 8./8. +6./2.; # Silicon has a diamond structure which is made up of the fcc lattice with two atoms on each lattice point. The fcc unit cube has a volume a3. The cube has eight lattice sites at the cube edges. However, each of these points is shared with eight other cubes. In addition, there are six lattice points on the cube face centers. Each of these points is shared by two adjacent cubes.\n",
+ "print\"Silicon has a diamond structure which is made up of the fcc lattice with two atoms on each lattice point. The fcc unit cube has a volume a3. The cube has eight lattice sites at the cube edges. However, each of these points is shared with eight other cubes. In addition, there are six lattice points on the cube face centers. Each of these points is shared by two adjacent cubes.\"\n",
+ "print \"Thus, number of lattice points per cube of volume a**3 = \",N\n",
+ "print\"In silicon there are two silicon atoms per lattice point. The number density is, therefore,\"\n",
+ "Nsi = N*2./a**3.;\n",
+ "print\"in atoms per cm cube\",Nsi\n",
+ "l = 50.*10.**-4.;\n",
+ "b = 2.*10.**-4.;\n",
+ "h = 1.*10.**-4.;\n",
+ "vol = l*b*h; #volume of the MOSFET\n",
+ "print \"volume of th MOSFET (in cm cube) = \",vol\n",
+ "nmos = Nsi*vol;\n",
+ "print\"Number of Si atoms in the MOSFET = \",nmos"
+ ]
+ },
+ {
+ "cell_type": "markdown",
+ "metadata": {},
+ "source": [
+ "## Example E02 : Pg 22"
+ ]
+ },
+ {
+ "cell_type": "code",
+ "execution_count": 2,
+ "metadata": {
+ "collapsed": false
+ },
+ "outputs": [
+ {
+ "name": "stdout",
+ "output_type": "stream",
+ "text": [
+ "In the (001) surfaces, the top atoms are either Ga or As leading to the terminology Ga terminated (or Ga stabilized) and As terminated (or As stabilized), respectively. A square of area a2 has four atoms on the edges of the square and one atom at the center of the square. The atoms on the square edges are shared by a total of four squares. The total number of atoms per square is\n",
+ "2.0\n",
+ "The surface density (in per cm square) of Ga atoms on a Ga terminated (001) GaAs surface 6.26517346699e+14\n"
+ ]
+ }
+ ],
+ "source": [
+ "a = 5.65*10.**-8.; #lattice constant in cm\n",
+ "print \"In the (001) surfaces, the top atoms are either Ga or As leading to the terminology Ga terminated (or Ga stabilized) and As terminated (or As stabilized), respectively. A square of area a2 has four atoms on the edges of the square and one atom at the center of the square. The atoms on the square edges are shared by a total of four squares. The total number of atoms per square is\"\n",
+ "N = 4./4. +1.; \n",
+ "print N\n",
+ "density = N/a**2.; #Surface density\n",
+ "print \"The surface density (in per cm square) of Ga atoms on a Ga terminated (001) GaAs surface\",density"
+ ]
+ },
+ {
+ "cell_type": "markdown",
+ "metadata": {},
+ "source": [
+ "## Example E2.5.1 : Pg 23"
+ ]
+ },
+ {
+ "cell_type": "code",
+ "execution_count": 3,
+ "metadata": {
+ "collapsed": false
+ },
+ "outputs": [
+ {
+ "name": "stdout",
+ "output_type": "stream",
+ "text": [
+ "We can form a triangle on the (111) surface of GaAs. There are three atoms on the tips of the triangle. These atoms are shared by six other similar triangles. There are also 3 atoms along the edges of the triangle which are shared by two adjacent triangles. Thus the number of atoms in the triangle are\n",
+ "2.0\n",
+ "The density (in per square cm) of GaAs atoms on the surface = 7.28588939852e+14\n"
+ ]
+ }
+ ],
+ "source": [
+ "a = 5.63*10.**-8.; #lattice constant in cm\n",
+ "print \"We can form a triangle on the (111) surface of GaAs. There are three atoms on the tips of the triangle. These atoms are shared by six other similar triangles. There are also 3 atoms along the edges of the triangle which are shared by two adjacent triangles. Thus the number of atoms in the triangle are\"\n",
+ "N = 3./6. +3./2.;\n",
+ "print N\n",
+ "area = 3.**0.5/2.*a**2.; #area of triangle\n",
+ "density = N/area; #The density of GaAs atoms on the surface\n",
+ "print \"The density (in per square cm) of GaAs atoms on the surface = \",density"
+ ]
+ }
+ ],
+ "metadata": {
+ "anaconda-cloud": {},
+ "kernelspec": {
+ "display_name": "Python [Root]",
+ "language": "python",
+ "name": "Python [Root]"
+ },
+ "language_info": {
+ "codemirror_mode": {
+ "name": "ipython",
+ "version": 2
+ },
+ "file_extension": ".py",
+ "mimetype": "text/x-python",
+ "name": "python",
+ "nbconvert_exporter": "python",
+ "pygments_lexer": "ipython2",
+ "version": "2.7.12"
+ }
+ },
+ "nbformat": 4,
+ "nbformat_minor": 0
+}