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Applied Problems in the Theory of Electromagnetic Wave Scattering

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This book presents the development of electromagnetic theory in the field of scattering for a wide range of objects. Highly useful worked examples are included throughout the book to support the an...
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  • 31 October 2022
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This book explores the development of electromagnetic theory in the field of scattering. Solutions to applied problems of electromagnetic wave scattering are presented and include resonant electromagnetic wave scattering, solved by the integral equation method, and 2D and 3D scattering problems, solved by the asymptotical (short wave) method. The book provides worked examples throughout for analysis of the electromagnetic wave scattering processes by different objects.

The key audience for this book includes researchers in the field of electromagnetic scattering and designers of radar and radio equipment.

Key Features:

  • Presents solutions to several applied problems of electromagnetic wave scattering by the integral equation method and asymptotical (short wave) method.
  • Includes the development of electromagnetic theory in the field of scattering for a wide range of objects of different nature.
  • Uses worked examples for the analysis of electromagnetic wave scattering processes by different objects.
  • Discusses how to obtain practically important estimates of scattering characteristics of objects.
  • Contains tools to design new variants of the objects and entities.

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Price: £99.00
Pages: 350
Publisher: Institute of Physics Publishing
Imprint: Institute of Physics Publishing
Series: IOP ebooks
Publication Date: 31 October 2022
ISBN: 9780750339797
Format: eBook
BISACs:

SCIENCE / Physics / Electromagnetism, Electricity, electromagnetism and magnetism, SCIENCE / Physics / Mathematical & Computational, Mathematical physics

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Table of Contents:
PART 1: Using integral equation method for solving problems of resonant
electromagnetic wave scattering
1. Electromagnetic wave scattering at resonant size impedance screens of finite
thickness
2. Using the Müller type integral equation system for solving problems of resonant
electromagnetic wave scattering
PART II: Asymptotic methods for solving some applied problems
3. Electromagnetic wave scattering by a cylindrical object immersed in a dielectric
half-space
4. Restoration of the "illuminated" part of a convex perfectly conducting surface
5. Scattering and radiation characteristics of antenna systems under the nose
radomes
6. The influence of weather precipitation on the gain of reflector antennas
7. The near-filed of the reflector antenna shaped as an asymmetric cut from a
paraboloid of revolution
8. Electromagnetic wave scattering by thin wires placed inside the dielectric shell
9. Backscattering of inflatable dielectric lifting-turning device designed for ground
measurement of radar object scattering characteristics
10. Scattering characteristics of atmospheric entities