
Network Analysis with Applications
William D. Stanley(Author)
Pearson (Publisher)
4th Edition
Published on 30. September 2002
Book
Hardback
672 pages
978-0-13-060246-6 (ISBN)
Description
Network Analysis with Applications presents the general methods of circuit and network analysis by employing differential and integral calculus and transform methods with a strong applied emphasis. Some of its features are: *Comprehensive review of basic circuit laws and analysis methods. *Capacitive and inductive transients, with special emphasis on graphical interpretation. *Simplified treatment of first-order circuits. *Simplified treatment of the Laplace transform and its application to higher-order circuits. Transfer function analysis and pole-zero concepts. Sinusoidal steady-state analysis and its relationship to transient analysis. Frequency response analysis and Bode plots. Waveform analysis. The accompanying CD-ROM brings many of the circuit diagrams from the text to life through Electronics WorkbenchaA A software. New features in the fourth edition include: *Electronics WorkbenchaA A (EWB) examples have been updated to work with Multisim, the latest version of EWB. *Appendix E provides a brief introduction to MATLABA (R) to familiarize readers with the program.
More details
Edition
4th edition
Language
English
Place of publication
United States
Publishing group
Pearson Education (US)
Target group
Professional and scholarly
Dimensions
Height: 230 mm
Width: 185 mm
Thickness: 40 mm
Weight
1085 gr
ISBN-13
978-0-13-060246-6 (9780130602466)
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 D. Stanley
Network Analysis with Applications
Book
08/1999
3rd Edition
Pearson
€43.32
Article exhausted; check for reprint
Content
1. Basic Circuit Laws.
2. Circuit Analysis Methods.
3. Capacitive and Inductive Transients and Equivalent Circuits.
4. Initial, Final, and First-Order Circuits.
5. LaPlace Transforms.
6. Circuit Analysis with LaPlace Transforms.
7. Transfer Functions.
8. Sinusoidal Steady-State Analysis.
9. Frequency Response Analysis and Bode Plots.
10. Waveform Analysis.
11. Fourier Analysis.
Appendix A. Determinants.
Appendix B. Complex Algebra.
Appendix C. LaPlace Transforms.
Appendix D. Introduction to Electronics Workbench.
Appendix E. Electronics Workbench EDA Analyses Discussion.
Answers to Selected Odd-Numbered Problems.
Index.
2. Circuit Analysis Methods.
3. Capacitive and Inductive Transients and Equivalent Circuits.
4. Initial, Final, and First-Order Circuits.
5. LaPlace Transforms.
6. Circuit Analysis with LaPlace Transforms.
7. Transfer Functions.
8. Sinusoidal Steady-State Analysis.
9. Frequency Response Analysis and Bode Plots.
10. Waveform Analysis.
11. Fourier Analysis.
Appendix A. Determinants.
Appendix B. Complex Algebra.
Appendix C. LaPlace Transforms.
Appendix D. Introduction to Electronics Workbench.
Appendix E. Electronics Workbench EDA Analyses Discussion.
Answers to Selected Odd-Numbered Problems.
Index.