Network analysis with applications

The second edition of this successful book retains the many essential features of the first edition that have appealed to its many users and has added valuable, practical material on PSPICE and MATLAB. The outstanding features that have been retained include comprehensive review of basic circuit law...

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Bibliographic Details
Main Author: Stanley, William D.
Format: Book
Language:English
Published: Upper Saddle River, N.J. Prentice Hall 1997.
Edition:2nd ed.
Subjects:
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020 |a 9780132609104 (alk. paper) 
039 9 |a 201409101154  |b ariff  |c 201405201522  |d shahrim  |c 200910081425  |d VLOAD  |y 200910081405  |z VLOAD 
040 |a UPNM 
090 |a TK 454.2  |b .S72 1997 
100 1 |a Stanley, William D. 
245 1 0 |a Network analysis with applications  |c William D. Stanley 
250 |a 2nd ed. 
260 |a Upper Saddle River, N.J.  |b Prentice Hall  |c 1997. 
300 |a xiv, 690 p.  |b ill.  |c 25 cm. 
500 |a Includes index. 
505 0 |a 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 -- A. Determinants -- B. Complex Algebra -- C. Laplace Transforms -- D. Elements of PSPICE. 
520 |a The second edition of this successful book retains the many essential features of the first edition that have appealed to its many users and has added valuable, practical material on PSPICE and MATLAB. The outstanding features that have been retained include comprehensive review of basic circuit laws and analysis methods; capacitive and inductive transients, with a 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; and waveform analysis. New features include PSPICE examples for most chapters, and a new appendix providing PSPICE fundamentals; MATLAB examples for most chapters, along with introductory material on MATLAB; and a new chapter providing an expanded treatment of Fourier series analysis, including the introduction of the Fourier transform. 
650 0 |a Electric network analysis. 
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