Basic Engineering Circuit Analysis
Wiley (Publisher)
8th Edition
Published on 7. December 2004
Book
Hardback
816 pages
978-0-471-48728-9 (ISBN)
Description
Irwin's "Basic Engineering Circuit Analysis" has built a solid reputation for its highly accessible presentation, clear explanations, and extensive array of helpful learning aids. Now in a new Eighth Edition, this highly-accessible book has been fine-tuned and revised, making it more effective and even easier to use. It covers such topics as resistive circuits, nodal and loop analysis techniques, capacitance and inductance, AC steady-state analysis, polyphase circuits, the Laplace transform, two-port networks, and much more. For over twenty years, Irwin has provided readers with a straightforward examination of the basics of circuit analysis, including: using real-world examples to demonstrate the usefulness of the material; integrating MATLAB throughout the book and includes special icons to identify sections where CAD tools are used and discussed; offering expanded and redesigned 'Problem-Solving Strategies' sections to improve clarity; a new chapter on Op-Amps that gives readers a deeper explanation of theory; and a revised pedagogical structure to enhance learning.
More details
Edition
8th Revised edition
Language
English
Place of publication
New York
United States
Publishing group
John Wiley and Sons Ltd
Target group
Professional and scholarly
Edition type
Revised edition
Dimensions
Height: 285 mm
Width: 221 mm
Weight
1871 gr
ISBN-13
978-0-471-48728-9 (9780471487289)
Copyright in bibliographic data is held by Nielsen Book Services Limited or its licensors: all rights reserved.
Schweitzer Classification
Content
Preface. 1. Basic Concepts. 2. Resistive Circuits. 3. Nodal and Loop Analysis Techniques. 4. Operational Amplifiers. 5. Additional Analysis Techniques. 6. Capacitance and Inductance. 7. First -- and Second -- Order Transient Circuits. 8. AC Steady --State Analysis. 9. Steady--State Power Analysis. 10. Magnetically Coupled Networks. 11. Polyphase Circuits. 12. Variable-- Frequency Network Performance. 13. The Laplace Transform. 14. Application of the Laplace Transform to Circuit Analysis. 15. Fourier Analysis Techniques. 16. Two--Port Networks. Appendix Complex Numbers. Index. Photo Credits.