
Transform Circuit Analysis for Engineering and Technology
William D. Stanley(Author)
Pearson (Publisher)
5th Edition
Published on 11. August 2003
Book
Hardback
496 pages
978-0-13-060259-6 (ISBN)
Description
For courses in LaPlace Circuit Analysis, and Circuit Analysis and Conventional Flow.
Written specifically to meet the needs of students in engineering technology or applied engineering programs, this text presents the fundamentals of transient circuit and system analysis with an emphasis on the LaPlace transform and pole-zero approach for analyzing and interpreting problems.
Written specifically to meet the needs of students in engineering technology or applied engineering programs, this text presents the fundamentals of transient circuit and system analysis with an emphasis on the LaPlace transform and pole-zero approach for analyzing and interpreting problems.
More details
Edition
5th edition
Language
English
Place of publication
United States
Publishing group
Pearson Education (US)
Target group
Professional and scholarly
Dimensions
Height: 230 mm
Width: 195 mm
Thickness: 25 mm
Weight
847 gr
ISBN-13
978-0-13-060259-6 (9780130602596)
Schweitzer Classification
Other editions
Previous edition

William D. Stanley
Transform Circuit Analysis for Engineering and Technology
Book
09/1999
4th Edition
Pearson
€97.79
Article exhausted; check for reprint
Content
1. Introductory Considerations.
2. Waveform Analysis.
3. Circuit Parameters.
4. The Basic Time-Domain Circuit.
5. LaPlace Transform.
6. Circuit Analysis by LaPlace Transforms.
7. System Considerations.
8. The Sinusoidal Steady State.
9. Fourier Analysis.
10. Introduction to Discrete-Time Systems.
Appendix A. Complex Algebra.
Appendix B. Table of LaPlace Transforms.
Appendix C. Transform Derivations.
Appendix D. Introduction of Multisim.
Appendix E. Introduction to MatLab.
Answers to Selected Odd-Numbered Problems.
Index.
2. Waveform Analysis.
3. Circuit Parameters.
4. The Basic Time-Domain Circuit.
5. LaPlace Transform.
6. Circuit Analysis by LaPlace Transforms.
7. System Considerations.
8. The Sinusoidal Steady State.
9. Fourier Analysis.
10. Introduction to Discrete-Time Systems.
Appendix A. Complex Algebra.
Appendix B. Table of LaPlace Transforms.
Appendix C. Transform Derivations.
Appendix D. Introduction of Multisim.
Appendix E. Introduction to MatLab.
Answers to Selected Odd-Numbered Problems.
Index.