Basic Engineering Circuit Analysis, Study Guide / Edition 6

Basic Engineering Circuit Analysis, Study Guide / Edition 6

by J. David Irwin
     
 

ISBN-10: 047136648X

ISBN-13: 9780471366485

Pub. Date: 12/28/1998

Publisher: Wiley

This popular introductory circuits text, known for its "learn-by-doing format" has been further improved with the additions of new problem-solving techniques and other learning enhancements. The presentations of the fundamental principles are replete with examples, drill problems, extension exercises and design problems.  See more details below

Overview

This popular introductory circuits text, known for its "learn-by-doing format" has been further improved with the additions of new problem-solving techniques and other learning enhancements. The presentations of the fundamental principles are replete with examples, drill problems, extension exercises and design problems.

Product Details

ISBN-13:
9780471366485
Publisher:
Wiley
Publication date:
12/28/1998
Edition description:
Older Edition
Pages:
192
Product dimensions:
8.47(w) x 10.86(h) x 0.50(d)

Table of Contents

Ch. 1Basic Concepts
1.1System of Units1
1.2Basic Quantities2
1.3Circuit Elements10
Ch. 2Resistive Circuits
2.1Ohm's Law21
2.2Kirchhoff's Laws26
2.3Single-Loop Circuits36
2.4Single-Node-Pair Circuits45
2.5Series and Parallel Resistor Combinations54
2.6Circuits with Series-Parallel Combinations of Resistors57
2.7Wye [actual symbol not reproducible] Delta Transformations65
2.8Circuits with Dependent Sources69
Ch. 3Nodal and Loop Analysis Techniques
3.1Nodal Analysis89
3.2Loop Analysis113
3.3Circuit Equations via Network Topology127
3.4Circuits with Operational Amplifiers138
Ch. 4DC PSPICE Analysis
4.2Elements of the Program167
4.3Applications175
Ch. 5Additional Analysis Techniques
5.1Network Theorems197
5.2Maximum Power Transfer231
5.3Sensitivity Analysis236
Ch. 6Capacitance and Inductance
6.1Capacitors254
6.2Inductors260
6.3Capacitor and Inductor Combinations264
Ch. 7RC and RL Circuits
7.1Development of the Fundamental Procedures280
7.2Source-Free Circuits286
7.3Circuits with Constant and Nonconstant Forcing Functions294
7.4Pulse Response305
7.5RC Operational Amplifier Circuits310
7.6Transient Circuit Analysis Using PSPICE313
Ch. 8RLC Circuits
8.1The Basic Circuit Equation345
8.2Mathematical Development of the Response Equations346
8.3The Network Response352
8.4PSPICE Analysis of RLC Circuits365
Ch. 9Sinusoids and Phasors
9.1Sinusoids382
9.2Sinusoidal and Complex Forcing Functions387
9.3Phasors391
9.4Phasor Relationships for Circuit Elements394
9.5Impedance and Admittance399
9.6Basic Analysis Using Kirchhoff's Laws418
9.7Use of Phasors in Operational Amplifier Circuits423
Ch. 10Sinusoidal Steady-State Analysis
10.1Linearity435
10.2Nodal Analysis436
10.3Mesh Analysis443
10.4Superposition446
10.5Source Transformation450
10.6Thevenin's and Norton's Theorems452
10.7PSPICE Analysis Techniques460
Ch. 11Steady-State Power Analysis
11.1Instantaneous Power481
11.2Average Power482
11.3Maximum Average Power Transfer489
11.4Effective or rms Values494
11.5The Power Factor498
11.6Complex Power501
11.7Power Measurements508
11.8Safety Considerations511
Ch. 12Polyphase Circuits
12.1Three-Phase Circuits533
12.2Three-Phase Connections536
12.3PSPICE Analysis of Three-Phase Circuits557
12.4Three-Phase Measurement564
12.5Power Factor Correction570
Ch. 13Magnetically Coupled Networks
13.1Mutual Inductance581
13.2Energy Analysis589
13.3The Linear Transformer592
13.4PSPICE Analysis of Magnetically Coupled Circuits597
13.5The Ideal Transformer600
13.6PSPICE Analysis of Ideal Transformer Circuits613
13.7Ideal Autotransformers616
13.8Three-Phase Transformers619
13.9Safety Considerations623
Ch. 14Frequency Characteristics
14.1General Network Characteristics639
14.2Sinusoidal Frequency Analysis643
14.3Resonant Circuits660
14.4Scaling681
14.5Frequency Response Using PSPICE683
14.6Filter Networks688
Ch. 15Two-Port Network

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