The finite element method in electromagnetics, (2nd Ed.)

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Language: English

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753 p. · 16x24 cm · Hardback
The Finite Element Method is a numerical technique for obtaining approximate solutions to boundary-value problems in mathematical physics and is widely applied in electrical engineering for the solution of problems in electromagnetics. This text offers engineers a methodical way to quickly master this powerful technique.
Preface.

Preface to the First Edition.

Acknowledgments.

Basic Electromagnetic Theory.

Introduction to the Finite Element Method.

One Dimensional Finite Element Analysis.

Two Dimensional Finite Element Analysis.

Three Dimensional Finite Element Analysis.

Variational rinciples for Electromagnetics.

Eigenvalue Problems: Waveguides and Cavities.

Vector Finite Elements.

Absorbing Boundary Conditions.

Finite Element Boundary Integral Methods.

Finite Elements and Eigenfunction Expansion.

Finite Element Analysis in the Time Domain.

Solution of Finite Element Equations.

The Method of Moments and Fast Solvers.

Appendix A. Vector Identities and Integral Theorems.

Appendix B. The Ritz Procedure for Complex Valued Problems.

Appendix C. Green's Functions.

Appendix D. Singular Integral Evaluation.

Appendix E. Special Functions.

Index.