
Engineering Circuit Analysis
by Hayt, William Hart; Kemmerly, Jack E.; Durbin, Steven M.-
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Summary
Table of Contents
1 Circuit Analysis and Electrical Engineering2 Basic Components and Electric Circuits3 Voltage and Curent Laws4 Basic Nodal and Mesh Analysis5 Useful Circuit Analysis Techniques6 The Operational Amplifier7 Capacitors and Inductors8 Basic RL and RC Circuits9 The RLC Circuit 10 Sinusoidal Steady State Analysis11 AC Power Circuit Analysis12 Polyphase Circuits13 Magnetically Coupled Circuits14 Complex Frequency and The Laplace Transform15 Circuit Analysis in the s-Domain 16 Frequency Response17 Two-Port Networks18 Fourier Circuit Analysis19 State-Variable Analysis - *on Web Site OnlyAppendixesAppendix 1 An Introduction to Network TopologyAppendix 2 Solution of Simultaneous EquationsAppendix 3 A Proof of Thevenin's TheoremAppendix 4 A PSpice TutorialAppendix 5 Complex NumbersAppendix 6 A Brief MATLAB tutorialAppendix 7 Additional Laplace Transform TheoremsAppendix 8 Answers to Odd-Numbered Problems
3 Voltage and Curent Laws4 Basic Nodal and Mesh Analysis5 Useful Circuit Analysis Techniques6 The Operational Amplifier7 Capacitors and Inductors8 Basic RL and RC Circuits9 The RLC Circuit 10 Sinusoidal Steady State Analysis11 AC Power Circuit Analysis12 Polyphase Circuits13 Magnetically Coupled Circuits14 Complex Frequency and The Laplace Transform15 Circuit Analysis in the s-Domain 16 Frequency Response17 Two-Port Networks18 Fourier Circuit Analysis19 State-Variable Analysis - *on Web Site OnlyAppendixesAppendix 1 An Introduction to Network TopologyAppendix 2 Solution of Simultaneous EquationsAppendix 3 A Proof of Thevenin's TheoremAppendix 4 A PSpice TutorialAppendix 5 Complex NumbersAppendix 6 A Brief MATLAB tutorialAppendix 7 Additional Laplace Transform TheoremsAppendix 8 Answers to Odd-Numbered Problems
5 Useful Circuit Analysis Techniques6 The Operational Amplifier7 Capacitors and Inductors8 Basic RL and RC Circuits9 The RLC Circuit 10 Sinusoidal Steady State Analysis11 AC Power Circuit Analysis12 Polyphase Circuits13 Magnetically Coupled Circuits14 Complex Frequency and The Laplace Transform15 Circuit Analysis in the s-Domain 16 Frequency Response17 Two-Port Networks18 Fourier Circuit Analysis19 State-Variable Analysis - *on Web Site OnlyAppendixesAppendix 1 An Introduction to Network TopologyAppendix 2 Solution of Simultaneous EquationsAppendix 3 A Proof of Thevenin's TheoremAppendix 4 A PSpice TutorialAppendix 5 Complex NumbersAppendix 6 A Brief MATLAB tutorialAppendix 7 Additional Laplace Transform TheoremsAppendix 8 Answers to Odd-Numbered Problems
7 Capacitors and Inductors8 Basic RL and RC Circuits9 The RLC Circuit 10 Sinusoidal Steady State Analysis11 AC Power Circuit Analysis12 Polyphase Circuits13 Magnetically Coupled Circuits14 Complex Frequency and The Laplace Transform15 Circuit Analysis in the s-Domain 16 Frequency Response17 Two-Port Networks18 Fourier Circuit Analysis19 State-Variable Analysis - *on Web Site OnlyAppendixesAppendix 1 An Introduction to Network TopologyAppendix 2 Solution of Simultaneous EquationsAppendix 3 A Proof of Thevenin's TheoremAppendix 4 A PSpice TutorialAppendix 5 Complex NumbersAppendix 6 A Brief MATLAB tutorialAppendix 7 Additional Laplace Transform TheoremsAppendix 8 Answers to Odd-Numbered Problems
9 The RLC Circuit 10 Sinusoidal Steady State Analysis11 AC Power Circuit Analysis12 Polyphase Circuits13 Magnetically Coupled Circuits14 Complex Frequency and The Laplace Transform15 Circuit Analysis in the s-Domain 16 Frequency Response17 Two-Port Networks18 Fourier Circuit Analysis19 State-Variable Analysis - *on Web Site OnlyAppendixesAppendix 1 An Introduction to Network TopologyAppendix 2 Solution of Simultaneous EquationsAppendix 3 A Proof of Thevenin's TheoremAppendix 4 A PSpice TutorialAppendix 5 Complex NumbersAppendix 6 A Brief MATLAB tutorialAppendix 7 Additional Laplace Transform TheoremsAppendix 8 Answers to Odd-Numbered Problems
11 AC Power Circuit Analysis12 Polyphase Circuits13 Magnetically Coupled Circuits14 Complex Frequency and The Laplace Transform15 Circuit Analysis in the s-Domain 16 Frequency Response17 Two-Port Networks18 Fourier Circuit Analysis19 State-Variable Analysis - *on Web Site OnlyAppendixesAppendix 1 An Introduction to Network TopologyAppendix 2 Solution of Simultaneous EquationsAppendix 3 A Proof of Thevenin's TheoremAppendix 4 A PSpice TutorialAppendix 5 Complex NumbersAppendix 6 A Brief MATLAB tutorialAppendix 7 Additional Laplace Transform TheoremsAppendix 8 Answers to Odd-Numbered Problems
13 Magnetically Coupled Circuits14 Complex Frequency and The Laplace Transform15 Circuit Analysis in the s-Domain 16 Frequency Response17 Two-Port Networks18 Fourier Circuit Analysis19 State-Variable Analysis - *on Web Site OnlyAppendixesAppendix 1 An Introduction to Network TopologyAppendix 2 Solution of Simultaneous EquationsAppendix 3 A Proof of Thevenin's TheoremAppendix 4 A PSpice TutorialAppendix 5 Complex NumbersAppendix 6 A Brief MATLAB tutorialAppendix 7 Additional Laplace Transform TheoremsAppendix 8 Answers to Odd-Numbered Problems
15 Circuit Analysis in the s-Domain 16 Frequency Response17 Two-Port Networks18 Fourier Circuit Analysis19 State-Variable Analysis - *on Web Site OnlyAppendixesAppendix 1 An Introduction to Network TopologyAppendix 2 Solution of Simultaneous EquationsAppendix 3 A Proof of Thevenin's TheoremAppendix 4 A PSpice TutorialAppendix 5 Complex NumbersAppendix 6 A Brief MATLAB tutorialAppendix 7 Additional Laplace Transform TheoremsAppendix 8 Answers to Odd-Numbered Problems
17 Two-Port Networks18 Fourier Circuit Analysis19 State-Variable Analysis - *on Web Site OnlyAppendixesAppendix 1 An Introduction to Network TopologyAppendix 2 Solution of Simultaneous EquationsAppendix 3 A Proof of Thevenin's TheoremAppendix 4 A PSpice TutorialAppendix 5 Complex NumbersAppendix 6 A Brief MATLAB tutorialAppendix 7 Additional Laplace Transform TheoremsAppendix 8 Answers to Odd-Numbered Problems
19 State-Variable Analysis - *on Web Site OnlyAppendixesAppendix 1 An Introduction to Network TopologyAppendix 2 Solution of Simultaneous EquationsAppendix 3 A Proof of Thevenin's TheoremAppendix 4 A PSpice TutorialAppendix 5 Complex NumbersAppendix 6 A Brief MATLAB tutorialAppendix 7 Additional Laplace Transform TheoremsAppendix 8 Answers to Odd-Numbered Problems
Appendix 1 An Introduction to Network TopologyAppendix 2 Solution of Simultaneous EquationsAppendix 3 A Proof of Thevenin's TheoremAppendix 4 A PSpice TutorialAppendix 5 Complex NumbersAppendix 6 A Brief MATLAB tutorialAppendix 7 Additional Laplace Transform TheoremsAppendix 8 Answers to Odd-Numbered Problems
Appendix 3 A Proof of Thevenin's TheoremAppendix 4 A PSpice TutorialAppendix 5 Complex NumbersAppendix 6 A Brief MATLAB tutorialAppendix 7 Additional Laplace Transform TheoremsAppendix 8 Answers to Odd-Numbered Problems
Appendix 5 Complex NumbersAppendix 6 A Brief MATLAB tutorialAppendix 7 Additional Laplace Transform TheoremsAppendix 8 Answers to Odd-Numbered Problems
Appendix 7 Additional Laplace Transform TheoremsAppendix 8 Answers to Odd-Numbered Problems
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