Description: Numerical Analysis of Multiscale Problems by Ivan G. Graham, Thomas Y. Hou, Omar Lakkis, Robert Scheichl Articles cover the analysis of forward and inverse PDE problems in heterogeneous media, high-frequency wave propagation, atomistic-continuum modeling and high-dimensional problems arising in modeling uncertainty. FORMAT Paperback LANGUAGE English CONDITION Brand New Publisher Description The 91st London Mathematical Society Durham Symposium took place from July 5th to 15th 2010, with more than 100 international participants attending. The Symposium focused on Numerical Analysis of Multiscale Problems and this book contains 10 invited articles from some of the meetings key speakers, covering a range of topics of contemporary interest in this area. Articles cover the analysis of forward and inverse PDE problems in heterogeneous media, high-frequency wave propagation, atomistic-continuum modeling and high-dimensional problems arising in modeling uncertainty. Novel upscaling and preconditioning techniques, as well as applications to turbulent multi-phase flow, and to problems of current interest in materials science are all addressed. As such this book presents the current state-of-the-art in the numerical analysis of multiscale problems and will be of interest to both practitioners and mathematicians working in those fields. Back Cover The 91st London Mathematical Society Durham Symposium took place from July 5th to 15th 2010, with more than 100 international participants attending. The Symposium focused on Numerical Analysis of Multiscale Problems and this book contains 10 invited articles from some of the meetings key speakers, covering a range of topics of contemporary interest in this area. Articles cover the analysis of forward and inverse PDE problems in heterogeneous media, high-frequency wave propagation, atomistic-continuum modeling and high-dimensional problems arising in modeling uncertainty. Novel upscaling and preconditioning techniques, as well as applications to turbulent multi-phase flow, and to problems of current interest in materials science are all addressed. As such this book presents the current state-of-the-art in the numerical analysis of multiscale problems and will be of interest to both practitioners and mathematicians working in those fields. Author Biography Ivan Graham is Professor of Numerical analysis at the University of Bath. Thomas Hou is Charles Lee Powell Professor of Applied and Computational Mathematics at California Institute of Technology. Omar Lakkis is Senior lecturer in Mathematics at the University of Sussex. Robert Scheichl is Senior Lecturer in Mathematics at the University of Bath. Feature Multiscale Methods is one of the most active areas in computational science. This book is a multi-disciplinary textbook on these methods. Complements nicely the previous volume on Multiscale Methods, LNCSE 44. Details ISBN3642431240 Publisher Springer-Verlag Berlin and Heidelberg GmbH & Co. KG Series Lecture Notes in Computational Science and Engineering Year 2014 ISBN-10 3642431240 ISBN-13 9783642431241 Format Paperback Imprint Springer-Verlag Berlin and Heidelberg GmbH & Co. K Place of Publication Berlin Country of Publication Germany Translated from English Edited by Robert Scheichl DEWEY 518 Publication Date 2014-02-22 Short Title NUMERICAL ANALYSIS OF MULTISCA Edition Description 2012 Language English Media Book Series Number 83 Pages 374 Edition 2012th Illustrations X, 374 p. Author Robert Scheichl Alternative 9783642220609 Audience Professional & Vocational We've got this At The Nile, if you're looking for it, we've got it. With fast shipping, low prices, friendly service and well over a million items - you're bound to find what you want, at a price you'll love! TheNile_Item_ID:96373373;
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ISBN-13: 9783642431241
Book Title: Numerical Analysis of Multiscale Problems
Number of Pages: 374 Pages
Language: English
Publication Name: Numerical Analysis of Multiscale Problems
Publisher: Springer-Verlag Berlin and Heidelberg Gmbh & Co. Kg
Publication Year: 2014
Subject: Engineering & Technology, Mathematics, Physics
Item Height: 235 mm
Item Weight: 587 g
Type: Textbook
Author: Thomas Y. Hou, Robert Scheichl, Ivan G. Graham, Omar Lakkis
Item Width: 155 mm
Format: Paperback