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Multiscale Model Reduction: Multiscale Finite Element Methods and Their Generalizations: 212 (Applied Mathematical Sciences)

Multiscale Model Reduction: Multiscale Finite Element Methods and Their Generalizations: 212 (Applied Mathematical Sciences)

Multiscale Model Reduction: Multiscale Finite Element Methods and Their
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Multiscale Model Reduction: Multiscale Finite Element Methods and Their Generalizations: 212 (Applied Mathematical Sciences) Hardback - 2023

by Eric Chung; Yalchin Efendiev; Thomas Y. Hou

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1st ed. 2023 edition omer Service Center GmbH ProductSafety@springernature.com NO-PA16APR2015-KAP. Hardback. New.
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Details

  • Title Multiscale Model Reduction: Multiscale Finite Element Methods and Their Generalizations: 212 (Applied Mathematical Sciences)
  • Author Eric Chung; Yalchin Efendiev; Thomas Y. Hou
  • Binding Hardback
  • Condition New
  • Pages 491
  • Volumes 1
  • Language ENG
  • Publisher Springer
  • Publication date 1st ed. 2023 edition omer Ser
  • Bookseller's Inventory # 6395352968
  • ISBN 9783031204081 / 3031204085
  • Weight 2.24 lbs (1.02 kg)
  • Category Mathematics
  • Quantity available 4

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Reader reviews for Multiscale Model Reduction: Multiscale Finite Element Methods and Their Generalizations: 212 (Applied Mathematical Sciences)

From the publisher

This monograph is devoted to the study of multiscale model reduction methods from the point of view of multiscale finite element methods.
Multiscale numerical methods have become popular tools for modeling processes with multiple scales. These methods allow reducing the degrees of freedom based on local offline computations. Moreover, these methods allow deriving rigorous macroscopic equations for multiscale problems without scale separation and high contrast. Multiscale methods are also used to design efficient solvers.
This book offers a combination of analytical and numerical methods designed for solving multiscale problems. The book mostly focuses on methods that are based on multiscale finite element methods. Both applications and theoretical developments in this field are presented. The book is suitable for graduate students and researchers, who are interested in this topic.

From the rear cover

This monograph is devoted to the study of multiscale model reduction methods from the point of view of multiscale finite element methods.

Multiscale numerical methods have become popular tools for modeling processes with multiple scales. These methods allow reducing the degrees of freedom based on local offline computations. Moreover, these methods allow deriving rigorous macroscopic equations for multiscale problems without scale separation and high contrast. Multiscale methods are also used to design efficient solvers.
This book offers a combination of analytical and numerical methods designed for solving multiscale problems. The book mostly focuses on methods that are based on multiscale finite element methods. Both applications and theoretical developments in this field are presented. The book is suitable for graduate students and researchers, who are interested in this topic.

About the author

​Eric Chung is a Professor in the Department of Mathematics and an Outstanding Fellow of the Faculty of Science at the Chinese University of Hong Kong. His research focuses on numerical discretizations of partial differential equations and the development of computational multiscale methods for challenging applications.
Yalchin Efendiev is a Professor in the Department of Mathematics at the Texas A&M University.


Thomas Y. Hou is the Charles Lee Powell Professor of Applied and Computational Mathematics at the California Institute of Technology. His research focuses on multiscale analysis and computation, fluid interface problems, and singularity formation of 3D Euler and Navier-Stokes equations.

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