Engineering Circuit Analysis https://www.mheducation.com/cover-images/Jpeg_400-high/0073545511.jpeg 9 9780073545516 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 chapters, 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. This book offers CONNECT and COSMOS (solutions). CONNECT is free with the text if ordered together.
Engineering Circuit Analysis

Engineering Circuit Analysis

9th Edition
By William Hayt and Jack Kemmerly and Jamie Phillips and Steven Durbin
ISBN10: 0073545511
ISBN13: 9780073545516
Copyright: 2019
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09780073545516

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The estimated amount of time this product will be on the market is based on a number of factors, including faculty input to instructional design and the prior revision cycle and updates to academic research-which typically results in a revision cycle ranging from every two to four years for this product. Pricing subject to change at any time.

Program Details

Chapter 1 Introduction

Chapter 2 Basic Components and Electric Circuits

Chapter 3 Voltage and Current Laws

Chapter 4 Basic Nodal and Mesh Analysis

Chapter 5 Handy Circuit Analysis Techniques

Chapter 6 The Operational Amplifier

Chapter 7 Capacitors and Inductors

Chapter 8 Basic RC and RL Circuits

Chapter 9 The RLC Circuit

Chapter 10 Sinusoidal Steady-State Analysis

Chapter 11 AC Circuit Power Analysis

Chapter 12 Polyphase Circuits

Chapter 13 Magnetically Coupled Circuits

Chapter 14 Circuit Analysis in the s-Domain

Chapter 15 Frequency Response

Chapter 16 Two-Port Networks

Chapter 17 Fourier Circuit Analysis

Appendix 1 An Introduction to Network Topology

Appendix 2 Solution of Simultaneous Equations

Appendix 3 A Proof of Thevenin's Theorem

Appendix 4 An LTspice Tutorial

Appendix 5 Complex Numbers

Appendix 6 A Brief MATLAB Tutorial

Appendix 7 Additional Laplace Transform Theorems

Appendix 8 The Complex Frequency Plane