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Fundamentals of electric circuits / Charles K. Alexander and Matthew N.O. Sadiku

By: Contributor(s): Material type: TextTextPublication details: New York : McGraw Hill Education, c2013Edition: Fifth editionDescription: xxii, 905 pages : color illustrations, portraits ; 27 cmISBN:
  • 9780073380575
Subject(s): LOC classification:
  • TK 454 .A44 2013
Contents:
PART 1 DC Circuits Chapter 1 Basic Concepts Chapter 2 Basic Laws Chapter 3 Methods of Analysis Chapter 4 Circuit Theorems Chapter 5 Operational Amplifiers Chapter 6 Capacitors and Inductors Chapter 7 First-Order Circuits Chapter 8 Second-Order Circuits PART 2 AC Circuits Chapter 9 Sinusoids and Phasors Chapter 10 Sinusoidal Steady-State Analysis Chapter 11 AC Power Analysis Chapter 12 Three-Phase Circuits Chapter 13 Magnetically Coupled Circuits Chapter 14 Frequency Response PART 3 Advanced Circuit Analysis Chapter 15 Introduction to the Laplace Transform Chapter 16 Applications of the Laplace Transform Chapter 17 The Fourier Series Chapter 18 Fourier Transform Chapter 19 Two-Port Networks Appendix A Simultaneous Equations and Matrix Inversion Appendix B Complex Numbers Appendix C Mathematical Formulas Appendix D Answers to Odd-Numbered Problems Selected Bibliography Index
Summary: A model for magnetic coupling is presented in Chapter 13 that will make analysis easier as well as enhance your ability to find errors. We have succefully used this model for years and felt it was now time to add it to the book.
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Item type Current library Home library Collection Call number Copy number Status Date due Barcode
Books Books National University - Manila LRC - Main General Circulation Electrical Engineering GC TK 454 .A44 2013 (Browse shelf(Opens below)) c.1 Available NULIB000010119

Includes bibliographical references and index.

PART 1 DC Circuits Chapter 1 Basic Concepts Chapter 2 Basic Laws Chapter 3 Methods of Analysis Chapter 4 Circuit Theorems Chapter 5 Operational Amplifiers Chapter 6 Capacitors and Inductors Chapter 7 First-Order Circuits Chapter 8 Second-Order Circuits PART 2 AC Circuits Chapter 9 Sinusoids and Phasors Chapter 10 Sinusoidal Steady-State Analysis Chapter 11 AC Power Analysis Chapter 12 Three-Phase Circuits Chapter 13 Magnetically Coupled Circuits Chapter 14 Frequency Response PART 3 Advanced Circuit Analysis Chapter 15 Introduction to the Laplace Transform Chapter 16 Applications of the Laplace Transform Chapter 17 The Fourier Series Chapter 18 Fourier Transform Chapter 19 Two-Port Networks Appendix A Simultaneous Equations and Matrix Inversion Appendix B Complex Numbers Appendix C Mathematical Formulas Appendix D Answers to Odd-Numbered Problems Selected Bibliography Index

A model for magnetic coupling is presented in Chapter 13 that will make analysis easier as well as enhance your ability to find errors. We have succefully used this model for years and felt it was now time to add it to the book.

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