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An Introduction to Metamaterials and Waves in Composites
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An Introduction to Metamaterials and Waves in Composites

Book Details

Format Hardback or Cased Book
ISBN-10 1439841578
ISBN-13 9781439841570
Publisher Taylor & Francis Inc
Imprint CRC Press Inc
Country of Manufacture GB
Country of Publication GB
Publication Date Jun 7th, 2011
Print length 376 Pages
Weight 686 grams
Dimensions 15.50 x 24.00 x 2.60 cms
Ksh 30,600.00
Werezi Extended Catalogue 0 in stock

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Requiring no advanced knowledge of wave propagation, this text focuses on theoretical aspects of metamaterials, periodic composites, and layered composites. It gives novices a platform from which they can start exploring the subject in more detail. With special emphasis on elastic media and acoustics, the book covers elastodynamic, acoustic, and electrodynamic metamaterials, including negative permittivity materials, artificial magnetic metamaterials, Willis materials, and extremal materials. Mainly self-contained, it provides detailed derivations, numerous illustrations, end-of-chapter problems, and extensive references.

Requiring no advanced knowledge of wave propagation, An Introduction to Metamaterials and Waves in Composites focuses on theoretical aspects of metamaterials, periodic composites, and layered composites. The book gives novices a platform from which they can start exploring the subject in more detail.

After introducing concepts related to elasticity, acoustics, and electrodynamics in media, the text presents plane wave solutions to the equations that describe elastic, acoustic, and electromagnetic waves. It examines the plane wave expansion of sources as well as scattering from curved interfaces, specifically spheres and cylinders. The author then covers electrodynamic, acoustic, and elastodynamic metamaterials. He also describes examples of transformations, aspects of acoustic cloaking, and applications of pentamode materials to acoustic cloaking. With a focus on periodic composites, the text uses the Bloch-Floquet theorem to find the effective behavior of composites in the quasistatic limit, presents the quasistatic equations of elastodynamic and electromagnetic waves, and investigates Brillouin zones and band gaps in periodic structures. The final chapter discusses wave propagation in smoothly varying layered media, anisotropic density of a periodic layered medium, and quasistatic homogenization of laminates.

This book provides a launch pad for research into elastic and acoustic metamaterials. Many of the ideas presented have yet to be realized experimentally—the book encourages readers to explore these ideas and bring them to technological maturity.


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