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Computational Methods for Electromagnetics is an indispensable resource for making efficient and accurate formulations for electromagnetics applications and their numerical treatment. Employing a unified and coherent approach that is unmatched
in the field, the authors detail both integral and differential equations using the method-of- moments and finite-element procedures. Details are provided to enable the reader to implement concepts in software and, in addition, a collection of related computer programs are available via the Internet. This book is designed for graduate-level classroom use or self-study, and every chapter includes problems. It will also be of particular interest to engineers working in the aerospace, defense, telecommunications, wireless, electromagnetic compatibility, and electronic packaging industries. *Contents Electromagnetic theory; Integral equation methods for scattering from infinite
cylinders; Differential equation methods for scattering from infinite cylinders; Algorithms for the solution of linear systems of equations; The discretization process: Basis/ testing functions
and convergence; Alternative surface integral equation formulations; Strip gratings and other two-dimensional structures with one-dimensional periodicity; Three-dimensional problems with translational or rotational symmetry; Subsectional basis functions for multidimensional and vector problems; Integral equation methods for three-dimensional bodies; Frequency domain differential equation formulations for open three- dimensional problems; Finite-difference time-domain methods on orthogonal meshes; Appendix A: Quadrature; Appendix B: Source-field relationships for cylinders; Appendix C: FORTRAN codes for TM scattering from perfect electric conducting cylinders; Appendix D: Additional sofrware available via the Internet; Index. 584pp (2001) 180 × 240mm ISBN 97881 7371 377 4
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Pages : 584
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