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Multiple Scattering: Interaction of Time-Harmonic Waves with N Obstacles (Encyclopedia of Mathematics and its Applications)

Multiple Scattering: Interaction of Time-Harmonic Waves with N Obstacles (Encyclopedia of Mathematics and its Applications)

Multiple Scattering: Interaction of Time-Harmonic Waves with N Obstacles
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Multiple Scattering: Interaction of Time-Harmonic Waves with N Obstacles (Encyclopedia of Mathematics and its Applications) Hardback - 2006 - 1st Edition

by Martin, P. A

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Cambridge University Press, 2006-08-21. Hardcover. New. New. In shrink wrap. Looks like an interesting title!
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  • Title Multiple Scattering: Interaction of Time-Harmonic Waves with N Obstacles (Encyclopedia of Mathematics and its Applications)
  • Author Martin, P. A
  • Binding Hardback
  • Edition number 1st
  • Edition 1
  • Condition New
  • Pages 450
  • Volumes 1
  • Language ENG
  • Publisher Cambridge University Press
  • Publication date 2006-08-21
  • Features Bibliography, Dust Cover, Index, Table of Contents
  • Bookseller's Inventory # Q-0521865549
  • ISBN 9780521865548 / 0521865549
  • Weight 1.75 lbs (0.79 kg)
  • Dimensions 9.41 x 6.48 x 1.11 in (23.90 x 16.46 x 2.82 cm)
  • Category Mathematics
  • Library of Congress subjects Multiple scattering (Physics)
  • Library of Congress Catalogue Number 2006494906
  • Dewey Decimal Code 530.416
  • Quantity available 1

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Reader reviews for Multiple Scattering: Interaction of Time-Harmonic Waves with N Obstacles (Encyclopedia of Mathematics and its Applications)

From the publisher

The interaction of waves with obstacles is an everyday phenomenon in science and engineering, arising for example in acoustics, electromagnetism, seismology and hydrodynamics. The mathematical theory and technology needed to understand the phenomenon is known as multiple scattering, and this book is the first devoted to the subject. The author covers a variety of techniques, describing first the single-obstacle methods and then extending them to the multiple-obstacle case. A key ingredient in many of these extensions is an appropriate addition theorem: a coherent, thorough exposition of these theorems is given, and computational and numerical issues around them are explored. The application of these methods to different types of problems is also explained; in particular, sound waves, electromagnetic radiation, waves in solids and water waves. A comprehensive bibliography of some 1400 items rounds off the book, which will be an essential reference on the topic for applied mathematicians, physicists and engineers.
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