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The hallmark feature of Engineering Circuit Analysis is its focus on the student. This text is written so students may teach the science of circuit analysis to themselves. Terms are clearly defined, basic material appears toward the beginning of each chapter and is explained carefully and in detail, and numerical examples are used to introduce and suggest general results. Simple practice problems appear throughout each chapter, while more difficult problems appear at the end of chapters.Table of Contents Chapter 1 IntroductionChapter 2 Basic Components and Electric Circuits
Chapter 3 Voltage and Current Laws
Chapter 4 Basic Nodal and Mesh Analysis
Chapter 5 Handy Circuit Analysis Techniques
Chapter 6 The Operational Amplifier
Chapter 7 Capacitors and Inductors
Chapter 8 Basic RC and RL Circuits
Chapter 9 The RLC Circuit
Chapter 10 Sinusoidal Steady-State Analysis
Chapter 11 AC Circuit Power Analysis
Chapter 12 Polyphase Circuits
Chapter 13 Magnetically Coupled Circuits
Chapter 14 Circuit Analysis in the s-Domain
Chapter 15 Frequency Response
Chapter 16 Two-Port Networks
Chapter 17 Fourier Circuit Analysis
Appendix 1 An Introduction to Network Topology
Appendix 2 Solution of Simultaneous Equations
Appendix 3 A Proof of Thevenin's Theorem
Appendix 4 An LTspice Tutorial
Appendix 5 Complex Numbers
Appendix 6 A Brief MATLAB Tutorial
Appendix 7 Additional Laplace Transform Theorems
Appendix 8 The Complex Frequency Plane
Engineering Circuit Analysis, 9th ed.pdf.zip.002.zip
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