Mixed Finite Element Methods and Applications Springer Series in Computational Mathematics - Info and Reading Options
By Daniele Boffi

"Mixed Finite Element Methods and Applications Springer Series in Computational Mathematics" was published by Springer-Verlag Berlin and Heidelberg GmbH & in 2013 and it has 685 pages.
“Mixed Finite Element Methods and Applications Springer Series in Computational Mathematics” Metadata:
- Title: ➤ Mixed Finite Element Methods and Applications Springer Series in Computational Mathematics
- Author: Daniele Boffi
- Number of Pages: 685
- Publisher: ➤ Springer-Verlag Berlin and Heidelberg GmbH &
- Publish Date: 2013
“Mixed Finite Element Methods and Applications Springer Series in Computational Mathematics” Subjects and Themes:
- Subjects: ➤ Finite element method - Mathematics - Computer science - Mechanics, applied - Computational Mathematics and Numerical Analysis - Computational Science and Engineering - Theoretical and Applied Mechanics
Edition Identifiers:
- The Open Library ID: OL26189048M - OL17585877W
- Online Computer Library Center (OCLC) ID: 864846081
- ISBN-13: 9783642365188
- All ISBNs: 9783642365188
AI-generated Review of “Mixed Finite Element Methods and Applications Springer Series in Computational Mathematics”:
"Mixed Finite Element Methods and Applications Springer Series in Computational Mathematics" Description:
The Open Library:
Non-standard finite element methods, in particular mixed methods, are central to many applications. In this text the authors, Boffi, Brezzi and Fortin present a general framework, starting with a finite dimensional presentation, then moving on to formulation in Hilbert spaces and finally considering approximations, including stabilized methods and eigenvalue problems. This book also provides an introduction to standard finite element approximations, followed by the construction of elements for the approximation of mixed formulations in H(div) and H(curl). The general theory is applied to some classical examples: Dirichlet's problem, Stokes' problem, plate problems, elasticity and electromagnetism.
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