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Mathematical Elasticity

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Mathematical Elasticity Synopsis

The Mathematical Elasticity set contains three self-contained volumes that together provide the only modern treatise on elasticity. They introduce contemporary research on three-dimensional elasticity, the theory of plates, and the theory of shells. Each volume contains proofs, detailed surveys of all mathematical prerequisites, and many problems for teaching and self-study.

An extended preface and extensive bibliography have been added to each volume to highlight the progress that has been made since the original publication.

The first book, Three-Dimensional Elasticity, covers the modeling and mathematical analysis of nonlinear three-dimensional elasticity. In volume two, Theory of Plates, asymptotic methods provide a rigorous mathematical justification of the classical two-dimensional linear plate and shallow shell theories. The objective of Theory of Shells, the final volume, is to show how asymptotic methods provide a rigorous mathematical justification of the classical two-dimensional linear shell theories: membrane, generalized membrane, and flexural.

These classic textbooks are for advanced undergraduates, first-year graduate students, and researchers in pure or applied mathematics or continuum mechanics. They are appropriate for courses in mathematical elasticity, theory of plates and shells, continuum mechanics, computational mechanics, and applied mathematics in general.

About This Edition

ISBN: 9781611976939
Publication date:
Author: Philippe G Ciarlet
Publisher: Society for Industrial and Applied Mathematics an imprint of SIAM - Society for Industrial and Applied Mathematics
Format: Paperback
Pagination: 1546 pages
Series: Classics in Applied Mathematics
Genres: Applied mathematics
Mathematical modelling
Chaos theory
Differential calculus and equations
Calculus of variations

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