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Numerical techniques in electromagnetics with MATLAB Sadiku, Matthew N. O.

Material type: TextTextPublication details: Boca Raton, Fla. : CRC Press, ©2009.Edition: 3RDDescription: xvii, 710 pages : illustrations ; 25 cmISBN:
  • 9781420063097
DDC classification:
  • 537.015 SAD
Contents:
Fundamental concepts -- Analytical methods -- Finite difference methods -- Variational methods -- Moment methods -- Finite element method -- Transmission-line-matrix method -- Monte Carlo methods -- Method of lines -- Vector relations -- Programming in MATLAB -- Solution of simultaneous equations
Summary: This edition demonstrates how to pose, numerically analyze, and solve electromagnetic problems (EM). Significant updates include the transition of all FORTRAN code into the more widely used MATLAB® format as well as improvements made to the standard algorithm for the finite difference time domain (FDTD) method and the treatment of absorbing boundary conditions in FDTD, the finite element method, and the transmission-line-matrix method. In addition to updated examples and new homework problems throughout, the second edition adds a chapter on the method of lines. An appendix covers use of MATLAB code
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Holdings
Item type Current library Collection Call number Status Date due Barcode
Books Books IIITDM Kurnool General Stacks Non-fiction 537.015 SAD (Browse shelf(Opens below)) Available 0004631
Books Books IIITDM Kurnool General Stacks Non-fiction 537.015 SAD (Browse shelf(Opens below)) Available 0004632

Fundamental concepts --
Analytical methods --
Finite difference methods --
Variational methods --
Moment methods --
Finite element method --
Transmission-line-matrix method --
Monte Carlo methods --
Method of lines --
Vector relations --
Programming in MATLAB --
Solution of simultaneous equations


This edition demonstrates how to pose, numerically analyze, and solve electromagnetic problems (EM). Significant updates include the transition of all FORTRAN code into the more widely used MATLAB® format as well as improvements made to the standard algorithm for the finite difference time domain (FDTD) method and the treatment of absorbing boundary conditions in FDTD, the finite element method, and the transmission-line-matrix method. In addition to updated examples and new homework problems throughout, the second edition adds a chapter on the method of lines. An appendix covers use of MATLAB code

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