Propagation Scattering and Dissipation of Electromagnetic Waves

Propagation  Scattering and Dissipation of Electromagnetic Waves
Author: A. S. Ilʹinskiĭ,Grigoriĭ I︠A︡kovlevich Slepi︠a︡n,A. Ya Slepyan
Publsiher: IET
Total Pages: 292
Release: 1993
Genre: Science
ISBN: 0863412831

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Aimed at physicists and engineers conducting theoretical research or designing microwave and millimetre-wave devices, this study explores methods of calculating microwave absorption in waveguides, resonators and periodic structures.

Propagation Scattering and Diffraction of Electromagnetic Waves

Propagation  Scattering and Diffraction of Electromagnetic Waves
Author: A. S. Ilyinski
Publsiher: Unknown
Total Pages: 135
Release: 1993
Genre: Anisotropy
ISBN: OCLC:838910522

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The following topics are dealt with:surface-impedance technique; dissipation processes; finite conductivity; waveguides; resonators; electromagnetic-wave diffraction; eigenmodes; anisotropic media; and finitely conducting walls

Electromagnetic Radiation Scattering and Diffraction

Electromagnetic Radiation  Scattering  and Diffraction
Author: Prabhakar H. Pathak,Robert J. Burkholder
Publsiher: John Wiley & Sons
Total Pages: 1156
Release: 2021-12-07
Genre: Science
ISBN: 9781119810537

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Electromagnetic Radiation, Scattering, and Diffraction Discover a graduate-level text for students specializing in electromagnetic wave radiation, scattering, and diffraction for engineering applications In Electromagnetic Radiation, Scattering and Diffraction, distinguished authors Drs. Prabhakar H. Pathak and Robert J. Burkholder deliver a thorough exploration of the behavior of electromagnetic fields in radiation, scattering, and guided wave environments. The book tackles its subject from first principles and includes coverage of low and high frequencies. It stresses physical interpretations of the electromagnetic wave phenomena along with their underlying mathematics. The authors emphasize fundamental principles and provide numerous examples to illustrate the concepts contained within. Students with a limited undergraduate electromagnetic background will rapidly and systematically advance their understanding of electromagnetic wave theory until they can complete useful and important graduate-level work on electromagnetic wave problems. Electromagnetic Radiation, Scattering and Diffraction also serves as a practical companion for students trying to simulate problems with commercial EM software and trying to better interpret their results. Readers will also benefit from the breadth and depth of topics, such as: Basic equations governing all electromagnetic (EM) phenomena at macroscopic scales are presented systematically. Stationary and relativistic moving boundary conditions are developed. Waves in planar multilayered isotropic and anisotropic media are analyzed. EM theorems are introduced and applied to a variety of useful antenna problems. Modal techniques are presented for analyzing guided wave and periodic structures. Potential theory and Green's function methods are developed to treat interior and exterior EM problems. Asymptotic High Frequency methods are developed for evaluating radiation Integrals to extract ray fields. Edge and surface diffracted ray fields, as well as surface, leaky and lateral wave fields are obtained. A collective ray analysis for finite conformal antenna phased arrays is developed. EM beams are introduced and provide useful basis functions. Integral equations and their numerical solutions via the method of moments are developed. The fast multipole method is presented. Low frequency breakdown is studied. Characteristic modes are discussed. Perfect for graduate students studying electromagnetic theory, Electromagnetic Radiation, Scattering, and Diffraction is an invaluable resource for professional electromagnetic engineers and researchers working in this area.

Propagation Scattering and Dissipation of Electromagnetic Waves

Propagation  Scattering  and Dissipation of Electromagnetic Waves
Author: A. S. Ilyinsky,A. Ya Slepyan
Publsiher: Unknown
Total Pages: 0
Release: 1993
Genre: Electromagnetic waves
ISBN: OCLC:499566123

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Radiation and Scattering of Waves

Radiation and Scattering of Waves
Author: Leopold B. Felsen,Nathan Marcuvitz
Publsiher: John Wiley & Sons
Total Pages: 934
Release: 1994-01-15
Genre: Technology & Engineering
ISBN: 0780310888

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As relevant today as it was when it was first published 20 years ago, this book is a classic in the field. Nowhere else can you find more complete coverage of radiation and scattering of waves. The chapter: Asympotic Evaluation of Integrals is considered the definitive source for asympotic techniques. This book is essential reading for engineers, physicists and others involved in the fields of electromagnetics and acoustics. It is also an indispensable reference for advanced engineering courses.

Wave Propagation Scattering And Emission In Complex Media

Wave Propagation  Scattering And Emission In Complex Media
Author: Ya-qiu Jin
Publsiher: World Scientific
Total Pages: 476
Release: 2005-01-26
Genre: Science
ISBN: 9789814483117

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This book contains review papers presented at the International Workshop on Wave Propagation, Scattering and Emission on Theory, Experiment, Simulation and Inversion (WPSE). The papers are of high quality, covering broad areas: a new mechanism of interaction of electromagnetic waves with complex media, remote sensing information, computational electromagnetics, etc. This book summarizes the most significant progress in wave propagation, encompassing theory, experiment, simulation, and inversion. It will also serve as a good reference for scientists in future research.List of Foreign Invited Speakers: Henry Bertoni (Brooklyn Polytechnic University), Lawrence Carin (Duke U), Al Chang (NASA, Goddard), Margaret Cheney (Rensselaer Polytech Institute), Weng Chew (U of Illinois at Urbana Champaign), Shane Cloude (AEL Consultants, UK), Adrian Fung (U of Texas at Arlington), Al Gasiewski (Environmental Tech Lab, NOAA), Martti Hallikainen (Helsinki U of Technology), Akira Ishimaru (U of Washington), Magdy Iskander (U of Hawaii), J A Kong (MIT), Roger Lang (George Washington U), Alex Maradudin (U of California at Irvine), Eric Michielssen (U of Illinois at Urbana Champaign), Eni Njoku (Caltech, Jet Propulsion Lab), Carey Rappaport (Northeastern U), Marc Saillard (Institut Fresnel), Kamal Sarabandi (U of Michigan), David R Smith (U of California at San Diego), Mitsuo Tateiba (Kyushu University), George Uslenghi (U of Illinois at Chicago), and Werner Wiesbeck (Karlsruhe U).

Scattering and Diffraction of Radio Waves

Scattering and Diffraction of Radio Waves
Author: Jack Raymond Mentzer
Publsiher: Unknown
Total Pages: 154
Release: 1955
Genre: Electric waves
ISBN: UOM:39015023290631

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Electromagnetic Scattering

Electromagnetic Scattering
Author: Piergiorgio Uslenghi
Publsiher: Elsevier
Total Pages: 812
Release: 2012-12-02
Genre: Science
ISBN: 9780323142434

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Electromagnetic Scattering is a collection of studies that aims to discuss methods, state of the art, applications, and future research in electromagnetic scattering. The book covers topics related to the subject, which includes low-frequency electromagnetic scattering; the uniform asymptomatic theory of electromagnetic edge diffraction; analyses of problems involving high frequency diffraction and imperfect half planes; and multiple scattering of waves by periodic and random distribution. Also covered in this book are topics such as theories of scattering from wire grid and mesh structures; the electromagnetic inverse problem; computational methods for transmission of waves; and developments in the use of complex singularities in the electromagnetic theory. Engineers and physicists who are interested in the study, developments, and applications of electromagnetic scattering will find the text informative and helpful.