A Posteriori Error Estimation Techniques for Finite Element Methods

A Posteriori Error Estimation Techniques for Finite Element Methods
Author: Rüdiger Verfürth
Publisher: Oxford University Press
Total Pages: 414
Release: 2013-04-18
Genre: Mathematics
ISBN: 0199679428


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A posteriori error estimation techniques are fundamental to the efficient numerical solution of PDEs arising in physical and technical applications. This book gives a unified approach to these techniques and guides graduate students, researchers, and practitioners towards understanding, applying and developing self-adaptive discretization methods.


A Posteriori Error Estimation Techniques for Finite Element Methods
Language: en
Pages: 414
Authors: Rüdiger Verfürth
Categories: Mathematics
Type: BOOK - Published: 2013-04-18 - Publisher: Oxford University Press

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A posteriori error estimation techniques are fundamental to the efficient numerical solution of PDEs arising in physical and technical applications. This book g
A Posteriori Error Estimation in Finite Element Analysis
Language: en
Pages: 266
Authors: Mark Ainsworth
Categories: Mathematics
Type: BOOK - Published: 2011-09-28 - Publisher: John Wiley & Sons

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An up-to-date, one-stop reference-complete with applications This volume presents the most up-to-date information available on aposteriori error estimation for
A posteriori error estimation in finite element analysis
Language: en
Pages:
Authors: Mark Ainsworth
Categories:
Type: BOOK - Published: 1996 - Publisher:

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Finite Elements
Language: en
Pages: 336
Authors: Ivo Babuska
Categories: Mathematics
Type: BOOK - Published: 2010-11-04 - Publisher:

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Most of the many books on finite elements are devoted either to mathematical theory or to engineering applications, but not to both. This book presents computed
A Posteriori Error Estimation Techniques for Finite Element Methods
Language: en
Pages: 573
Authors: Rüdiger Verfürth
Categories: Mathematics
Type: BOOK - Published: 2013-04-18 - Publisher: OUP Oxford

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Self-adaptive discretization methods are now an indispensable tool for the numerical solution of partial differential equations that arise from physical and tec