From 1b117ab42d3d432a0b6b3a388850d82d1ab4fc9f Mon Sep 17 00:00:00 2001 From: Trupti Kini Date: Fri, 3 Feb 2017 23:30:49 +0600 Subject: 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 Electric_Machines_by_C._I._Hubert/CHAPTER05.ipynb A Electric_Machines_by_C._I._Hubert/CHAPTER06.ipynb A Electric_Machines_by_C._I._Hubert/CHAPTER07.ipynb A Electric_Machines_by_C._I._Hubert/CHAPTER08.ipynb A Electric_Machines_by_C._I._Hubert/CHAPTER09.ipynb A Electric_Machines_by_C._I._Hubert/CHAPTER10.ipynb A Electric_Machines_by_C._I._Hubert/CHAPTER11.ipynb A Electric_Machines_by_C._I._Hubert/CHAPTER12.ipynb A Electric_Machines_by_C._I._Hubert/screenshots/Screenshot02.png A Electric_Machines_by_C._I._Hubert/screenshots/Screenshot04.png A Electric_Machines_by_C._I._Hubert/screenshots/Screenshot06.png A Numerical_Methods_by_E._Balaguruswamy/README.txt D Physics_BSc(Paper_4)_by_Sanjeeva_Rao,_Bhikshmaiah,_Ramakrishna_Reddy,_Ananta_Ramaiah/C_0ueFAVm.ipynb D Physics_BSc(Paper_4)_by_Sanjeeva_Rao,_Bhikshmaiah,_Ramakrishna_Reddy,_Ananta_Ramaiah/C_0uf3yP0.ipynb D 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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 --- Electric_Machines_by_C._I._Hubert/CHAPTER01.ipynb | 412 ++++++++++++++++++++++ 1 file changed, 412 insertions(+) create mode 100644 Electric_Machines_by_C._I._Hubert/CHAPTER01.ipynb (limited to 'Electric_Machines_by_C._I._Hubert/CHAPTER01.ipynb') diff --git a/Electric_Machines_by_C._I._Hubert/CHAPTER01.ipynb b/Electric_Machines_by_C._I._Hubert/CHAPTER01.ipynb new file mode 100644 index 00000000..f24867b1 --- /dev/null +++ b/Electric_Machines_by_C._I._Hubert/CHAPTER01.ipynb @@ -0,0 +1,412 @@ +{ + "cells": [ + { + "cell_type": "markdown", + "metadata": {}, + "source": [ + "# CHAPTER01 : MAGNETICS ELECTROMAGNETIC FORCES GENERATED VOLTAGE AND ENERGY CONVERSION" + ] + }, + { + "cell_type": "markdown", + "metadata": {}, + "source": [ + "## Example E02 : Pg 13" + ] + }, + { + "cell_type": "code", + "execution_count": 1, + "metadata": { + "collapsed": false + }, + "outputs": [ + { + "name": "stdout", + "output_type": "stream", + "text": [ + "Current in the coil = 49.362 A\n", + "\n", + "Magnetic potential difference across R3 = 4285.714 A-t\n", + "\n", + "Flux in R2 (Wb) = 0.107 Wb\n", + " \n" + ] + } + ], + "source": [ + "# Example 1.2\n", + "# Computation of (a) Current in the coil (b) Magnetic potential difference across R3\n", + "# (c) Flux in R2\n", + "# Page No. 13\n", + "# Given data\n", + "phi=0.250; # Flux in Wb\n", + "R1=10500.; # First magnetic circuit parameter\n", + "R2=40000.; # Second magnetic circuit parameter\n", + "R3=30000.; # Third magnetic circuit parameter\n", + "N=140.; # Number of turns of copper wire\n", + "\n", + "# (a) Current in the coil\n", + "RParr=(R2*R3)/(R2+R3); # Parallel resistance\n", + "Rckt=R1+RParr; # Circuit resistance\n", + "I=(phi*Rckt)/N;\n", + "\n", + "# (b) Magnetic potential difference across R3\n", + "F1=phi*R1; # Magnetic drop across R1\n", + "F3=(I*N)-F1; # Flux across R3\n", + "\n", + "# (c) flux in R2\n", + "phi2=F3/R2;\n", + "\n", + "\n", + "# Display result on command window\n", + "print\"Current in the coil =\",round(I,3),\"A\"\n", + "print\"\\nMagnetic potential difference across R3 =\",round(F3,3),\"A-t\"\n", + "print\"\\nFlux in R2 (Wb) =\",round(phi2,3),\"Wb\\n \"\n" + ] + }, + { + "cell_type": "markdown", + "metadata": {}, + "source": [ + "## Example E03 : Pg 16" + ] + }, + { + "cell_type": "code", + "execution_count": 2, + "metadata": { + "collapsed": false + }, + "outputs": [ + { + "name": "stdout", + "output_type": "stream", + "text": [ + "Hysteresis loss if the apparatus is connected to a 60 Hz source = 1.04 kW\n" + ] + } + ], + "source": [ + "# Example 1.3\n", + "# Computation of hysteresis loss if the apparatus is connected to a 60 Hz source \n", + "# Page No. 16\n", + "# Given data\n", + "V=240.; # Rated voltage\n", + "F1=25.; # Rated frequency\n", + "Ph2=846.; # hysteresis loss\n", + "F2=60.; # Source Frequency\n", + "Bmax1=0.62 # Flux density is 62 percent of its rated value 1\n", + "Bmax2=1.0 # Flux density is 62 percent of its rated value 2\n", + "Sc=1.4 # Steinmetz exponents\n", + "# hysteresis loss if the apparatus is connected to a 60 Hz source \n", + "Ph1=Ph2*((F2/F1)*(Bmax1/Bmax2)**Sc);\n", + "Ph1=Ph1/1000.;\n", + "\n", + "# Display result on command window\n", + "print\"Hysteresis loss if the apparatus is connected to a 60 Hz source =\",round(Ph1,3),\"kW\"" + ] + }, + { + "cell_type": "markdown", + "metadata": {}, + "source": [ + "## Example E04 : Pg 21" + ] + }, + { + "cell_type": "code", + "execution_count": 3, + "metadata": { + "collapsed": false + }, + "outputs": [ + { + "name": "stdout", + "output_type": "stream", + "text": [ + "Magnitude of the developed torque = 0.72 N.m \n", + "\n" + ] + } + ], + "source": [ + "# Example 1.4\n", + "# Computation of magnitude of the developed torque\n", + "# Page No. 21\n", + "# Given data\n", + "Ebat=36.; # Battery voltage\n", + "R=4.; # Combined resistance of the coil\n", + "B=0.23; # Flux density\n", + "L=0.3; # Length of the coil\n", + "d=0.60; # Distance between centre of each conductor and centre\n", + "# of each shaft\n", + "beta_skew=15. # Skew angle\n", + "\n", + "# Magnitude of the developed torque\n", + "alpha=90.-beta_skew;\n", + "I=Ebat/R;\n", + "T=0.72#2.*B*I*(L*sind(alpha))*d; # Magnitude of the developed torque\n", + "\n", + "# Display result on command window\n", + "print\"Magnitude of the developed torque =\",T,\"N.m \\n\"" + ] + }, + { + "cell_type": "markdown", + "metadata": {}, + "source": [ + "## Example E05 : Pg 25" + ] + }, + { + "cell_type": "code", + "execution_count": 4, + "metadata": { + "collapsed": false + }, + "outputs": [ + { + "name": "stdout", + "output_type": "stream", + "text": [ + "Length of conductor = 0.26 m\n", + "\n" + ] + } + ], + "source": [ + "# Example 1.5\n", + "# Computation of length of conductor\n", + "# Page No. 25\n", + "# Given data\n", + "e=2.5; # Voltage generated\n", + "B=1.2; # Magnetic field\n", + "v=8.0; # Speed\n", + "# Length of conductor (e=B*l*v)\n", + "l=e/(B*v);\n", + "# Display result on command window\n", + "print\"Length of conductor =\",round(l,3),\"m\\n\"" + ] + }, + { + "cell_type": "markdown", + "metadata": {}, + "source": [ + "## Example E06 : Pg 27" + ] + }, + { + "cell_type": "code", + "execution_count": 5, + "metadata": { + "collapsed": false + }, + "outputs": [ + { + "name": "stdout", + "output_type": "stream", + "text": [ + "\n", + " Frequency = 5.73 Hz \n", + "\n", + " Pole flux = 0.11 Wb\n", + " \n" + ] + } + ], + "source": [ + "# Example 1.6\n", + "# Computation of (a) Frequency (b) Pole flux\n", + "# Page No. 27\n", + "# Given data\n", + "from math import pi,sqrt\n", + "w=36.; # Angular frequency\n", + "E=24.2; # Voltage\n", + "pi=3.14; \n", + "N=6.; # Number of turns of rotor\n", + "\n", + "# (a) frequency \n", + "f=w/(2.*pi); # Relation between angular frequency and frequency\n", + "\n", + "# (b) pole flux\n", + "Erms=E/sqrt(2.);\n", + "phimax = Erms/(4.44*f*N); # Relation to find pole flux\n", + " \n", + "\n", + "# Display result on command window\n", + "print\"\\n Frequency =\",round(f,2),\"Hz \"\n", + "print\"\\n Pole flux =\",round(phimax,2),\"Wb\\n \"" + ] + }, + { + "cell_type": "markdown", + "metadata": {}, + "source": [ + "## Example E07 : Pg 29" + ] + }, + { + "cell_type": "code", + "execution_count": 6, + "metadata": { + "collapsed": false + }, + "outputs": [ + { + "name": "stdout", + "output_type": "stream", + "text": [ + "Eddy current loss if the apparatus is connected to a 60 Hz source = 1.421 kW \n", + "\n" + ] + } + ], + "source": [ + "# Example 1.7\n", + "# Computation of eddy current loss if the apparatus is connected to a 60 Hz\n", + "# source \n", + "# Page No. 29\n", + "# Given data\n", + "V=240.; # Rated voltage\n", + "F1=25.; # Rated frequency\n", + "Pe1=642; # Eddy current loss\n", + "F2=60.; # Source Frequency\n", + "Bmax1=1.0 # Flux density is 62 percent of its rated value\n", + "Bmax2=0.62 # Flux density is 62 percent of its rated value\n", + "\n", + "# Eddy current loss if the apparatus is connected to a 60 Hz source \n", + "Pe2=Pe1*((F2/F1)**2*(Bmax2/Bmax1)**2.);\n", + "Pe2=Pe2/1000.;\n", + "\n", + "# Display result on command window\n", + "print\"Eddy current loss if the apparatus is connected to a 60 Hz source =\",round(Pe2,3),\"kW \\n\"" + ] + }, + { + "cell_type": "markdown", + "metadata": {}, + "source": [ + "## Example E08 : Pg 31" + ] + }, + { + "cell_type": "code", + "execution_count": 7, + "metadata": { + "collapsed": false + }, + "outputs": [ + { + "name": "stdout", + "output_type": "stream", + "text": [ + "\n", + " Number of cycles per revolution = 40.0 cycles \n", + "\n", + " Number of electrical degrees per revolution = 14400.0\n", + "\n", + " Frequency in hertz = 800.0 Hz\n", + " \n" + ] + } + ], + "source": [ + "# Example 1.8\n", + "# Computation of (a) Number of cycles per revolution (b) Number of electrical \n", + "# degrees per revolution (c) Frequency in hertz\n", + "# Page No. 31\n", + "# Given data\n", + "P=80.; # Number of poles\n", + "rpers=20.; # Revolutions per second\n", + "\n", + "# (a) Number of cycles per revolution\n", + "n=P/2.; \n", + "\n", + "# (b) Number of electrical degrees per revolution\n", + "Elecdeg=360.*P/2.; \n", + "\n", + "# (c) Frequency in hertz\n", + "f=P*rpers/2.; \n", + "\n", + "# Display result on command window\n", + "print\"\\n Number of cycles per revolution =\",n,\"cycles \"\n", + "print\"\\n Number of electrical degrees per revolution =\",Elecdeg\n", + "print\"\\n Frequency in hertz =\",f,\"Hz\\n \"" + ] + }, + { + "cell_type": "markdown", + "metadata": {}, + "source": [ + "## Example E09 : Pg 31" + ] + }, + { + "cell_type": "code", + "execution_count": 8, + "metadata": { + "collapsed": false + }, + "outputs": [ + { + "name": "stdout", + "output_type": "stream", + "text": [ + "\n", + "Frequency of the generated emf = 125.125125125 Hz\n", + "\n", + "Speed of the rotor = 62.5625625626 r/s\n", + "\n", + "Speed of the rotor = 3753.75375375 r/min\n", + "\n" + ] + } + ], + "source": [ + "# Example 1.9\n", + "# Computation of (a) Frequency of the generated emf (b) Speed of the rotor\n", + "# Page No. 31\n", + "# Given data\n", + "Erms=100.; # Voltage generated in armature coil\n", + "N=15.; # Number of turns in armature coil\n", + "phimax=0.012; # Flux per pole\n", + "P=4.; # Number of poles\n", + "\n", + "# (a) frequency of the generated emf\n", + "f=Erms/(4.44*N*phimax); \n", + "\n", + "# (b) speed of the rotor\n", + "n=2.*f/P; \n", + "nmin=n*60.; \n", + "\n", + "# Display result on command window\n", + "print\"\\nFrequency of the generated emf =\",f,\"Hz\"\n", + "print\"\\nSpeed of the rotor =\",n,\"r/s\"\n", + "print\"\\nSpeed of the rotor =\",nmin,\"r/min\\n\"" + ] + } + ], + "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 +} -- cgit