Shock Wave Science and Technology Reference Library, Vol. 2: Solids I

Author:   Y. Horie
Publisher:   Springer-Verlag Berlin and Heidelberg GmbH & Co. KG
Edition:   Softcover reprint of hardcover 1st ed. 2007
Volume:   2
ISBN:  

9783642061134


Pages:   369
Publication Date:   12 February 2010
Format:   Paperback
Availability:   In Print   Availability explained
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Shock Wave Science and Technology Reference Library, Vol. 2: Solids I


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Overview

This book is the first of several volumes on solids in the Shock Wave Science and Technology Reference Library. This is a unique collection, and the library as a whole sets out to comprehensively and authoritatively cover and review at research level the subject matter with all its ramifications. All the chapters are self-contained and can be read independently of each other, though they are of course thematically interrelated.

Full Product Details

Author:   Y. Horie
Publisher:   Springer-Verlag Berlin and Heidelberg GmbH & Co. KG
Imprint:   Springer-Verlag Berlin and Heidelberg GmbH & Co. K
Edition:   Softcover reprint of hardcover 1st ed. 2007
Volume:   2
Dimensions:   Width: 15.50cm , Height: 2.00cm , Length: 23.50cm
Weight:   0.593kg
ISBN:  

9783642061134


ISBN 10:   3642061133
Pages:   369
Publication Date:   12 February 2010
Audience:   Professional and scholarly ,  Professional & Vocational
Format:   Paperback
Publisher's Status:   Active
Availability:   In Print   Availability explained
This item will be ordered in for you from one of our suppliers. Upon receipt, we will promptly dispatch it out to you. For in store availability, please contact us.

Table of Contents

Use of the Z Accelerator for Isentropic and Shock Compression Studies.- Ultrashort Laser Shock Dynamics.- Failure Waves and Their Effects on Penetration Mechanics in Glass and Ceramics.- Empirical Equations of State for Solids.- Elastic–Plastic Shock Waves.- Elements of Phenomenological Plasticity: Geometrical Insight, Computational Algorithms, and Topics in Shock Physics.- Numerical Methods for Shocks in Solids.- Mesoscale Modeling of Shocks in Heterogeneous Reactive Materials.

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