
Fundamentals of Electric Circuits
McGraw Hill Higher Education (Publisher)
3rd Edition
Published on 1. January 2006
Book
Paperback/Softback
978-0-07-110903-1 (ISBN)
Description
Alexander and Sadiku's third edition of "Fundamentals of Electric Circuits" continues in the spirit of its successful previous editions, with the objective of presenting circuit analysis in a manner that is clearer, more interesting, and easier to understand than the competition. Students are introduced to the sound, six-step problem solving methodology in chapter one, and are consistently made to apply and practice these steps in practice problems and homework problems throughout the text and online using the KCIDE software. A balance of theory, worked examples and extended examples, practice problems, and real-world applications, combined with over 300 new homework problems for the third edition and robust media offerings, renders the third edition the most comprehensive and student-friendly approach to linear circuit analysis. Key feature of this book is: it's all about Alexanders problem solving approach - supported with unmatched quantity and quality of problems - which sets this text apart from the traditional circuits texts.
More details
Edition
3rd Revised edition
Language
English
Place of publication
London
United States
Publishing group
McGraw-Hill Education - Europe
Edition type
Revised edition
Dimensions
Height: 254 mm
Width: 203 mm
Thickness: 32 mm
Weight
1843 gr
ISBN-13
978-0-07-110903-1 (9780071109031)
Copyright in bibliographic data and cover images is held by Nielsen Book Services Limited or by the publishers or by their respective licensors: all rights reserved.
Schweitzer Classification
Other editions
Previous edition

Charles Alexander | Matthew Sadiku
Fundamentals of Electric Circuits with CD-ROM
Book
04/2003
2nd Edition
McGraw-Hill Professional
€54.88
Article exhausted; check for reprint
Content
Part 1 DC Circuits 1 Basic Concepts 2 Basic Laws 3 Methods of Analysis 4 Circuit Theorems 5 Operational Amplifiers 6 Capacitors and Inductors 7 First-Order Circuits 8 Second-Order Circuits Part 2 AC Circuits 9 Sinusoids and Phasors 10 Sinusoidal Steady-State Analysis 11 AC Power Analysis 12 Three-Phase Circuits 13 Magnetically Coupled Circuits 14 Frequency Response Part 3 Advanced Circuit Analysis 15 Introduction to the Laplace Transform 16 Applications of the Laplace Transform 17 The Fourier Series 18 Fourier Transform 19 Two-Port Networks Appendix A Simultaneous Equations and Matrix Inversion Appendix B Complex Numbers Appendix C Mathematical Formulas Appendix D PSpice for Windows Appendix E MATLAB Appendix F KCIDE Appendix G Answers to Odd-Numbered Problems