
| 《电路基础(第4版)(英文影印版)》是一本为电类各专业大学生学习电路课程而编写的教科书。《电路基础(第4版)(英文影印版)》可分为以下3个部分:直流电路,基本定律和定理,无源元件,有源元件;交流电路,相量,正弦稳态分析,功率,有效值,三相电路,频率响应;拉普拉斯变换,傅里叶级数,傅里叶变换,二端口网络分析。由此可以看出,它对基本内容的选取与当前国内外许多高等学校对该课程内容的取舍大体一致。这本电路教科书以电路的基础知识、分析方法为主体,编著者在此基础上适当地做了有创意的延伸与发展,加强了它与新技术的联系。《电路基础(第4版)(英文影印版)》是一本电类专业本科生学习电路基础课程的英文版教材。 |
| 《电路基础(第四版)(英文影印版)》 preface xi acknowledgments xvi guided tour xviii a note to the student xxiii about the authors xxv part 1 dc circuits 2 chapter 1 basic concepts 3 1.1 introduction 4 1.2 systems of units 4 1.3 charge and current 6 1.4 voltage 9 1.5 powerand energy 10 1.6 circuit elements 15 1.7 *applications 17 1.8 *problem solving 20 1.9 summary 23 chapter 2 basic laws 29 2.1 introduction 30 2.2 ohm's law 30 .2.3 *nodes, branches, and loops 35 2.4 kirchhoff's laws 37 2.5 series resistors and voltage division 43 2.6 parallel resistors and current division 45 2.7 *wye-detta transformations 52 2.8 *applications 58 2.9 summary 64 chapter 3 methods of analysis 81 3.1 introduction 82 3.2 nodal analysis 82 3.3 nodal analysis with voltage sources 88 3.4 mesh analysis 93 3.5 mesh analysis with current sources 98 3.6 *nodal and mesh analyses by inspection 100 3.7 nodal versus mesh analysis 104 3.8 circuit analysis with pspice 105 3.9 *applications: dc transistor circuits 107 3.10 summary 112 chapter 4 circuit theorems 127 4.1 introduction 128 4.2 linearity property 128 4.3 superposition 130 4.4 source transformation 135 4.5 thevenin's theorem 139 4.6 norton's theorem 145 4.7 *derivations of thevenin's and norton's theorems 149 4.8 maximum power transfer 150 4.9 verifying circuit theorems with pspice 152 4.10 *applications 155 4.11 summary 160 chapter 5 operational amplifiers 175 5.1 introduction 176 5.2 operational amplifiers 176 5.3 ideal op amp 179 5.4 inverting amplifier 181 5,5 noninvertingamplifier 183 5.6 summing amplifier 185 5.7 difference amplifier 187 5.8 cascaded qpamp circuits 191 5.9 op amp circuit analysis with pspice 194 5.10 tapplications 196 5.11 summary 199 chapter 6 capacitors and inductors 215 6.1 introduction 216 6.2 capacitors 216 6.3 series and parallel capacitors 222 6.4 inductors 226 6,5 series and parallel inductors 230 6,6 applications 233 6.7 summary 240 chapter 7 first-order circuits 253 7.1 introduction 254 7.2 thesource-free rccircuit 254 7.3 the source-free rt circuit 259 7.4 singularity functions 265 7.5 step response of an rccircuit 273 7.6 step response of an rt circuit 280 7.7 tfirst-qrder op amp circuits 284 7.8 transient analysis with pspice 289 7.9 applications 293 7.10 summary 299 chapter 8 second-order circuits 313 8.1 introduction 314 8.2 finding initial and final values 314 8.3 the source-free series rtc circuit 319 8.4 the source-free parallel rtc circuit 326 8.5 step response of a series rlc circuit 331 8.6 step response of a parallel rlc circuit 336 8.7 general second-order circuits 339 8.8 second-order op amp circuits 344 8.9 pspice analysis of rtccircuits 346 8.10 *duality 350 8.11 tapplications 353 8.12 summary 356 part 2 ac circuits 368 chapter 11 sinusoids and phasors 369 9.1 introduction 370 9.2 sinusoids 371 9.3 phasors 376 9.4 phasor relationships for circuit elements 385 9.5 impedance and admittance 387 9.6 *kirchhoff's laws in the frequency domain 389 9.7 impedance combinations 390 9.8 tapptications 396 9.9 summary 402 chapter 10 sinusoidal steady-state analysis 413 10.1 introduction 414 10.2 nodal analysis 414 10.3 mesh analysis 417 10.4 superposition theorem 421 10.5 source transformation 424 10.6 thevenin and norton equivalent circuits 426 10.7 qp amp ac circuits 431 10.8 ac analysis using pspice 433 10.9 tapptications 437 10.10 summary 441 chapter 11 ac power analysis 457 11.1 introduction 458 11.2 instantaneous and average power 458 11.3 maximum average power transfer 464 11.4 effective or rms value 467 11.5 apparent power and power factor 470 11.6 complex power 473 11.7 tconservation of ac power 477 11.8 power factor correction 481 11.9 tapplications 483 11.10 summary 488 chapter 12 three-phase circuits 503 12.1 introduction 504 12.2 balanced three-phase voltages 505 12.3 balanced wye-wye connection 509 12.4 balanced wye-delta connection 512 12.5 balanced delta-delta connection 514 12.6 balanced delta-wye connection 516 12.7 power in a balanced system 519 12.8 tunbalanced three-phase systems 525 12.9 pspice for three-phase circuits 529 12.10 tapptications 534 12.11 summary 543 chapter 13 magnetically coupled circuits 555 13.1 introduction 556 13.2 mutual inductance 557 13.3 energy in a coupled circuit 564 13.4 linear transformers 567 133 ideal transformers 573 13.6 idealautotransformers 581 13.7 tthree-phase transformers 584 13.8 pspiceanatysis of magnetically coupled circuits 586 13.9 applications 591 13.10 summary 597 chapter 14 frequency response 613 14.1 introduction 614 14.2 transfer function 614 14.3 tthe decibel scale 617 14.4 bode plots 619 14.5 series resonance 629 14.6 parallel resonance 634 14.7 passive filters 637 14.8 active filters 642 14.9 scaling 648 14.10 frequencyresponse using pspice 652 14.11 computation using matlab 655 14.12 applications 657 14.13 summary 663 part 3 advanced circuit analysis 674 此处删去原书第15.16章。 chapter 17 the fourier series 755 17.1 introduction 756 17.2 trigonometric fourier series 756 17.3 symmetry considerations 764 17.4 circuit applications 774 17.5 average power and rms values 778 17.6 exponential fourier series 781 17.7 fourier analysis with pspice 787 17.8 tapplications 793 17.9 summary 796 此处删去原书第18章。 chapter 19 two-port networks 849 19.1 introduction 850 19.2 impedance parameters 850 19.3 admittance parameters 855 19.4 hybrid parameters 858 19.5 transmission parameters 863 19.6 trelationships between 19.7 interconnection of networks 871 19.8 computing two-port parameters using pspice 877 19.9 tapplications 880 19.10 summary 889 appendix a simultaneous equations and matrix inversion a appendix b complex numbers a-9 appendix c mathematical formulas a-16 appendix d pspice for windows a-91 appendix e matlab a-46 appendix f kcide for circuits a-65 appendix g answers to odd-numbered problems a-75 bibliography b-1 |
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