NONLINEAR WAVES IN BOUNDED MEDIA: The Mathematics of Resonance
This unique book aims to treat a class of nonlinear waves that are reflected from the boundaries of media of finite extent. It involves both standing (unforced) waves and resonant oscillations due to external periodic forcing. The waves are both hyperbolic and dispersive. To achieve this aim, the book develops the necessary understanding of linear waves and the mathematical techniques of nonlinear waves before dealing with nonlinear waves in bounded media. The examples used come mainly from gas dynamics, water waves and viscoelastic waves.
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NONLINEAR WAVES IN BOUNDED MEDIA: The Mathematics of Resonance
This unique book aims to treat a class of nonlinear waves that are reflected from the boundaries of media of finite extent. It involves both standing (unforced) waves and resonant oscillations due to external periodic forcing. The waves are both hyperbolic and dispersive. To achieve this aim, the book develops the necessary understanding of linear waves and the mathematical techniques of nonlinear waves before dealing with nonlinear waves in bounded media. The examples used come mainly from gas dynamics, water waves and viscoelastic waves.
82.99 In Stock
NONLINEAR WAVES IN BOUNDED MEDIA: The Mathematics of Resonance

NONLINEAR WAVES IN BOUNDED MEDIA: The Mathematics of Resonance

NONLINEAR WAVES IN BOUNDED MEDIA: The Mathematics of Resonance

NONLINEAR WAVES IN BOUNDED MEDIA: The Mathematics of Resonance

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Overview

This unique book aims to treat a class of nonlinear waves that are reflected from the boundaries of media of finite extent. It involves both standing (unforced) waves and resonant oscillations due to external periodic forcing. The waves are both hyperbolic and dispersive. To achieve this aim, the book develops the necessary understanding of linear waves and the mathematical techniques of nonlinear waves before dealing with nonlinear waves in bounded media. The examples used come mainly from gas dynamics, water waves and viscoelastic waves.

Product Details

ISBN-13: 9789813100350
Publisher: World Scientific Publishing Company, Incorporated
Publication date: 01/18/2017
Sold by: Barnes & Noble
Format: eBook
Pages: 420
File size: 23 MB
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