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Multipole Theory in Electromagnetism

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Multipole theory provides a powerful way of characterizing the electromagnetic behaviour of a medium (both microscopic and macroscopic). This book describes multipole theory, and its successes and failures in applications to transmission, scattering and reflection. It also presents a modified multipole theory which avoids the failures of the standard approach.
Hardback
01-February-2005
RRP: $448.00
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This book provides an introduction to the classical, quantum, and symmetry aspects of multipole theory, demonstrating the successes of the theory and also its unphysical aspects. It presents a transformation theory which removes these unphysical properties. The book will be of interest to physics students wishing to advance their knowledge of multipole theory, and also a useful reference work for molecular and optical physicists, theoretical chemists working on multipole effects, solid state physicists studying the effects of electromagnetic fields on condensed matter, engineers and applied mathematicians with interests in anisotropic materials. An interesting recent development has been the increasing use of computer calculations in applications of multipole theory. The book will assist computational physicists and chemists wishing to work in this area to acquire the necessary background in multipole theory.

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RRP: $448.00
$382.00
Ships in 3-5 business days
Hurry up! Current stock:

Multipole Theory in Electromagnetism

RRP: $448.00
$382.00

Description

This book provides an introduction to the classical, quantum, and symmetry aspects of multipole theory, demonstrating the successes of the theory and also its unphysical aspects. It presents a transformation theory which removes these unphysical properties. The book will be of interest to physics students wishing to advance their knowledge of multipole theory, and also a useful reference work for molecular and optical physicists, theoretical chemists working on multipole effects, solid state physicists studying the effects of electromagnetic fields on condensed matter, engineers and applied mathematicians with interests in anisotropic materials. An interesting recent development has been the increasing use of computer calculations in applications of multipole theory. The book will assist computational physicists and chemists wishing to work in this area to acquire the necessary background in multipole theory.

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