Canonical Problems in Scattering and Potential Theory Part II: Acoustic and Electromagnetic Diffraction by Canonical Structures
Although the analysis of scattering for closed bodies of simple geometric shape is well developed, structures with edges, cavities, or inclusions have seemed, until now, intractable to analytical methods. This two-volume set describes a breakthrough in analytical techniques for accurately determining diffraction from classes of canonical scatterers
1137252856
Canonical Problems in Scattering and Potential Theory Part II: Acoustic and Electromagnetic Diffraction by Canonical Structures
Although the analysis of scattering for closed bodies of simple geometric shape is well developed, structures with edges, cavities, or inclusions have seemed, until now, intractable to analytical methods. This two-volume set describes a breakthrough in analytical techniques for accurately determining diffraction from classes of canonical scatterers
82.99 In Stock
Canonical Problems in Scattering and Potential Theory Part II: Acoustic and Electromagnetic Diffraction by Canonical Structures

Canonical Problems in Scattering and Potential Theory Part II: Acoustic and Electromagnetic Diffraction by Canonical Structures

Canonical Problems in Scattering and Potential Theory Part II: Acoustic and Electromagnetic Diffraction by Canonical Structures

Canonical Problems in Scattering and Potential Theory Part II: Acoustic and Electromagnetic Diffraction by Canonical Structures

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Overview

Although the analysis of scattering for closed bodies of simple geometric shape is well developed, structures with edges, cavities, or inclusions have seemed, until now, intractable to analytical methods. This two-volume set describes a breakthrough in analytical techniques for accurately determining diffraction from classes of canonical scatterers

Product Details

ISBN-13: 9781000738131
Publisher: CRC Press
Publication date: 04/29/2002
Sold by: Barnes & Noble
Format: eBook
Pages: 520
File size: 69 MB
Note: This product may take a few minutes to download.

About the Author

Professor Sergei S. Vinogradov holds the post of Leading Scientist at the Institute of Radiophysics and Electronics, Kharkov, Ukraine.

Paul D. Smith is Professor of Applied Mathematics at the University of Dundee, Scotland.

Dr. Elena D. Vinogradova is also at the University of Dundee as a Visiting Scientist from the Institute of Radiophysics and Electronics, Kharkov, Ukraine.

Table of Contents

Mathematical Aspects of Wave Scattering. . Acoustic Diffraction from a Circular Hole in a Thin Spherical Shell. Acoustic Diffraction from Various Spherical Cavities. Electromagnetic Diffraction from a Perfectly Conducting Spherical Cavity. . EM Plane Wave Scattering by Two Concentric Spherical Shells. Diffraction from Spheroidal Cavities . SelectedWave-ScatteringProblems for Different Structures . Appendix: Spheroidal Functions. References.
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