
Engineering Circuit Analysis
McGraw Hill Higher Education (Publisher)
7th Edition
Published on 1. November 2007
Book
Paperback/Softback
978-0-07-110937-6 (ISBN)
Description
The hallmark feature of this classic text is its focus on the student - it is written so that students may teach the science of circuit analysis to themselves. Terms are clearly defined when they are introduced, basic material appears toward the beginning of each chapter and is explained carefully and in detail, and numerical examples are used to introduce and suggest general results. Simple practice problems appear throughout each chapter, while more difficult problems appear at the end of each chapter, following the order of presentation of text material. This introduction and resulting repetition provide an important boost to the learning process. Hayt's rich pedagogy supports and encourages the student throughout by offering tips and warnings, using design to highlight key material, and providing lots of opportunities for hands-on learning. The thorough exposition of topics is delivered in an informal way that underscores the authors' conviction that circuit analysis can and should be fun.
More details
Edition
7th Revised edition
Language
English
Place of publication
London
United States
Publishing group
McGraw-Hill Education - Europe
Target group
College/higher education
Edition type
Revised edition
Dimensions
Height: 254 mm
Width: 203 mm
Thickness: 33 mm
Weight
1760 gr
ISBN-13
978-0-07-110937-6 (9780071109376)
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
William Hayt | Jack Kemmerly | Steven Durbin
Engineering Circuit Analysis: With Replacement CD-Rom
Book
12/2002
6th Edition
McGraw-Hill Publishing Co.
€143.69
Article exhausted; check for reprint
Content
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