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Fundamentals of electric circuits / Charles K. Alexander, Matthew N.O. Sadiku.

By: Contributor(s): Material type: TextTextPublisher: Boston : McGraw-Hill, [2004]Copyright date: copyright 2004Edition: 2nd edDescription: xviii, 904, [118] pages : color illustrations ; 26 cm. + 1 computer disc (4 3/4 inch)Content type:
  • text
Media type:
  • unmediated
Carrier type:
  • volume
ISBN:
  • 0072463317
  • 0071151257 (ise)
Subject(s): DDC classification:
  • 621.31924 21 A.C.F
Contents:
Part 1. DC circuits -- 1. Basic concepts -- 2. Basic laws -- 3. Methods of analysis -- 4. Circuit theorems -- 5. Operational amplifiers -- 6. Capacitors and inductors -- 7. First-order circuits -- 8. Second-order circuits -- Part 2. AC circuits -- 9. Sinusoids and phasors -- 10. Sinusoidal steady-state analysis -- 11. AC power analysis -- 12. Three-phase circuits -- 13. Magnetically coupled circuits -- 14. Frequency response -- Part 3. Advanced circuit analysis -- 15. Introduction to Laplace transforms -- 16. Applications of Laplace transforms -- 17. The Fourier series -- 18. Fourier transform -- 19. Two-port networks -- Appendixes: -- A. Simultaneous equations and matrix inversion -- B. Complex numbers -- C. Mathematical formulas -- D. PSpice for Windows -- E. MATLAB -- F. Answers to odd-numbered problems.
Summary: Intended for use in the introductory circuit analysis or circuit theory course taught in electrical engineering or electrical engineering technology departments.
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Holdings
Item type Current library Collection Call number Status Date due Barcode
Books Books Main library B2 Faculty of Engineering & Technology (Electrical) 621.31924 A.C.F (Browse shelf(Opens below)) Available 00000881
Books Books Main library B2 Faculty of Engineering & Technology (Electrical) 621.31924 A.C.F (Browse shelf(Opens below)) Available 00000867

Includes bibliographical references and index.

Part 1. DC circuits --
1. Basic concepts --
2. Basic laws --
3. Methods of analysis --
4. Circuit theorems --
5. Operational amplifiers --
6. Capacitors and inductors --
7. First-order circuits --
8. Second-order circuits --
Part 2. AC circuits --
9. Sinusoids and phasors --
10. Sinusoidal steady-state analysis --
11. AC power analysis --
12. Three-phase circuits --
13. Magnetically coupled circuits --
14. Frequency response --
Part 3. Advanced circuit analysis --
15. Introduction to Laplace transforms --
16. Applications of Laplace transforms --
17. The Fourier series --
18. Fourier transform --
19. Two-port networks --
Appendixes: --
A. Simultaneous equations and matrix inversion --
B. Complex numbers --
C. Mathematical formulas --
D. PSpice for Windows --
E. MATLAB --
F. Answers to odd-numbered problems.

Intended for use in the introductory circuit analysis or circuit theory course taught in electrical engineering or electrical engineering technology departments.

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