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Edition: 6TH 02

Copyright: 2002

Publisher: McGraw-Hill Publishing Company

Published: 2002

International: No

Copyright: 2002

Publisher: McGraw-Hill Publishing Company

Published: 2002

International: No

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ENGINEERING CIRCUIT ANALYSIS has a long tradition of helping students develop a strong intuitive understanding of linear circuit analysis. The new 6th edition continues that tradition and retains the philosophy that problem- solving can be fun. Electrical engineering concepts are made clear through the authors' use of many practical examples, expanded explanations of important topics, and the addition of new material.

1. Units, Definitions, Experimental Laws, and Simple Circuits

2. Some Useful Techniques of Circuit Analysis

3. Inductance and Capacitance

4. Source-Free RL and RC Circuits

5. The Application of the Unit-Step Forcing Function

6. The RLC Circuit

7. The Sinusoidal Forcing Function

8. The Phasor Concept

9. The Sinusoidal Steady-State Response

10. Average Power and RMS Values

11. Polyphase Circuits

12. Complex Frequency

13. Frequency Response

14. Magnetically Coupled Circuits

15. Two-Port Networks

16. State-Variable Analysis

17. Fourier Analysis

18. Fourier Transforms

19. Laplace Transform Techniques

Appendixes

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Summary

ENGINEERING CIRCUIT ANALYSIS has a long tradition of helping students develop a strong intuitive understanding of linear circuit analysis. The new 6th edition continues that tradition and retains the philosophy that problem- solving can be fun. Electrical engineering concepts are made clear through the authors' use of many practical examples, expanded explanations of important topics, and the addition of new material.

Table of Contents

1. Units, Definitions, Experimental Laws, and Simple Circuits

2. Some Useful Techniques of Circuit Analysis

3. Inductance and Capacitance

4. Source-Free RL and RC Circuits

5. The Application of the Unit-Step Forcing Function

6. The RLC Circuit

7. The Sinusoidal Forcing Function

8. The Phasor Concept

9. The Sinusoidal Steady-State Response

10. Average Power and RMS Values

11. Polyphase Circuits

12. Complex Frequency

13. Frequency Response

14. Magnetically Coupled Circuits

15. Two-Port Networks

16. State-Variable Analysis

17. Fourier Analysis

18. Fourier Transforms

19. Laplace Transform Techniques

Appendixes

Publisher Info

Publisher: McGraw-Hill Publishing Company

Published: 2002

International: No

Published: 2002

International: No

2. Some Useful Techniques of Circuit Analysis

3. Inductance and Capacitance

4. Source-Free RL and RC Circuits

5. The Application of the Unit-Step Forcing Function

6. The RLC Circuit

7. The Sinusoidal Forcing Function

8. The Phasor Concept

9. The Sinusoidal Steady-State Response

10. Average Power and RMS Values

11. Polyphase Circuits

12. Complex Frequency

13. Frequency Response

14. Magnetically Coupled Circuits

15. Two-Port Networks

16. State-Variable Analysis

17. Fourier Analysis

18. Fourier Transforms

19. Laplace Transform Techniques

Appendixes