Circuit Analysis
Theory and Practice
Delmar Cengage Learning (Publisher)
2nd Edition
Published on 1. September 1999
Book
Hardback
1088 pages
978-0-7668-0626-9 (ISBN)
Article exhausted; check for reprint
Description
The mathematical foundation and the practical application of circuit theory in this book should be of use to electrical and electronics technicians. It provides comprehensive coverage of circuit analysis topics, including fundamentals of DC and AC circuits, methods of analysis, capacitance, inductance, magnetism, simple transients, and computer methods. Hundreds of worked out examples lead the user through the critical thinking processes required to solve problems. Two popular computer simulation packages are used in the book. A CD-ROM is included, and a Web site devoted to this book is a source of both additional current information and updates in electronics engineering technology.
More details
Edition
2nd Revised edition
Language
English
Place of publication
Clifton Park
United States
Publishing group
Cengage Learning, Inc
Target group
College/higher education
Professional and scholarly
Edition type
Revised edition
Illustrations
Illustrations (some col.)
Dimensions
Height: 267 mm
Width: 216 mm
Weight
2200 gr
ISBN-13
978-0-7668-0626-9 (9780766806269)
Copyright in bibliographic data is held by Nielsen Book Services Limited or its licensors: all rights reserved.
Schweitzer Classification
Other editions
New editions
Book
07/2003
2nd Edition
Delmar Cengage Learning
€90.55
Article is exhausted; no reprint
Previous edition
Book
02/1995
Delmar Cengage Learning
€50.94
Article exhausted; check for reprint
Content
Voltage and current; resistance; Ohm's law, power, and energy; basic DC analysis - series circuits; parallel circuits; series - parallel circuits; methods of analysis; network theorems; capacitors and inductance - capacitors and capacitance; capacitive transients, pulse and waveshaping; magnetism and magnetic circuits; inductance and inductors; inductive transients; foundation AC concepts - AC fundamentals; r, l, and c elements and the impedance concept; power in AC circuits; impedance network - AC series - parallel circuits; methods of AC analysis; AC network theorems; resonance; filters and the bode plot; three-phase systems; transformers; nonsinusoidal waveforms.