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Methods for electromagnetic field an...
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Lindell, Ismo V.
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Methods for electromagnetic field analysis /
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
Methods for electromagnetic field analysis // Ismo V. Lindell.
作者:
Lindell, Ismo V.
出版者:
New York :IEEE Press, : [2000],
面頁冊數:
xii, 320 p. :ill. ;23 cm.
附註:
Originally published: New York : Oxford University Press, 1992.
標題:
Electromagnetic fields - Mathematics. -
ISBN:
9780780360396
Methods for electromagnetic field analysis /
Lindell, Ismo V.
Methods for electromagnetic field analysis /
Ismo V. Lindell. - New York :IEEE Press,[2000] - xii, 320 p. :ill. ;23 cm. - IEEE Press series on electromagnetic wave theory. - IEEE Press series on electromagnetic wave theory..
Originally published: New York : Oxford University Press, 1992.
Includes bibliographical references and indexes.
Complex vectors --Appendix A --
Counter Electrical Engineering/Electromagnetics Methods for Electromagnetic Field Analysis A volume in the IEEE Series on Electromagnetic Wave Theory Donald G. Dudley, Series Editor Ö a gigantic platter of formulae of the dyadic kind.'-Akhlesh Lakhtaki, Professor, The Pennsylvania State University This monograph discusses mathematical and conceptual methods applicable in the analysis of electromagnetic fields and waves. Dyadic algebra is reviewed and armed with new identities it is applied throughout the book. The power of dyadic operations is seen when working with boundary, sheet and interface conditions, medium equations, field transformations, Greens functions, plane wave problems, vector circuit theory, multipole and image sources. Dyadic algebra offers convenience in handling problems involving chiral and bianisotropic media, of recent interest because of their wide range of potential applications. The final chapter gives, for the first time in book form, a unified presentation of EIT, the exact image theory, introduced by this author and colleagues. EIT is a general method for solving problems involving layered media by replacing them through image sources located in complex space. The main emphasis of the monograph is not on specific results but methods of analysis. The contents should be of interest to scientists doing research work in various fields of electromagnetics, as well as to graduate students. The addition of problems and answers in this reprint will enhance the teaching value of this work. Also in the series: Mathematical Foundations for Electromagnetic Theory Donald D. Dudley, University of Arizona, Tucson 1994 Hardcover 256 pp Methods for Electromagnetic Wave Propagation D.S. Jones, University of Dundee 1995 Hardcover 672 pp The Transmission Line Modeling Method: TLM Christos Christopoulos, University of Nottingham 1995 Hardcover 232 pp.
ISBN: 9780780360396US155.00
LCCN: 00047149 Subjects--Topical Terms:
684801
Electromagnetic fields
--Mathematics.
LC Class. No.: QC665.E4 / L46 2000
Dewey Class. No.: 530.14/1
Methods for electromagnetic field analysis /
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Counter Electrical Engineering/Electromagnetics Methods for Electromagnetic Field Analysis A volume in the IEEE Series on Electromagnetic Wave Theory Donald G. Dudley, Series Editor Ö a gigantic platter of formulae of the dyadic kind.'-Akhlesh Lakhtaki, Professor, The Pennsylvania State University This monograph discusses mathematical and conceptual methods applicable in the analysis of electromagnetic fields and waves. Dyadic algebra is reviewed and armed with new identities it is applied throughout the book. The power of dyadic operations is seen when working with boundary, sheet and interface conditions, medium equations, field transformations, Greens functions, plane wave problems, vector circuit theory, multipole and image sources. Dyadic algebra offers convenience in handling problems involving chiral and bianisotropic media, of recent interest because of their wide range of potential applications. The final chapter gives, for the first time in book form, a unified presentation of EIT, the exact image theory, introduced by this author and colleagues. EIT is a general method for solving problems involving layered media by replacing them through image sources located in complex space. The main emphasis of the monograph is not on specific results but methods of analysis. The contents should be of interest to scientists doing research work in various fields of electromagnetics, as well as to graduate students. The addition of problems and answers in this reprint will enhance the teaching value of this work. Also in the series: Mathematical Foundations for Electromagnetic Theory Donald D. Dudley, University of Arizona, Tucson 1994 Hardcover 256 pp Methods for Electromagnetic Wave Propagation D.S. Jones, University of Dundee 1995 Hardcover 672 pp The Transmission Line Modeling Method: TLM Christos Christopoulos, University of Nottingham 1995 Hardcover 232 pp.
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