Multiscale Methods in Science and Engineering
Multiscale problems naturally pose severe challenges for computational science and engineering. The smaller scales must be well resolved over the range of the larger scales. Challenging multiscale problems are very common and are found in e.g. materials science, fluid mechanics, electrical and mechanical engineering. Homogenization, subgrid modelling, heterogeneous multiscale methods, multigrid, multipole, and adaptive algorithms are examples of methods to tackle these problems. This volume is an overview of current mathematical and computational methods for problems with multiple scales with applications in chemistry, physics and engineering.
1101518743
Multiscale Methods in Science and Engineering
Multiscale problems naturally pose severe challenges for computational science and engineering. The smaller scales must be well resolved over the range of the larger scales. Challenging multiscale problems are very common and are found in e.g. materials science, fluid mechanics, electrical and mechanical engineering. Homogenization, subgrid modelling, heterogeneous multiscale methods, multigrid, multipole, and adaptive algorithms are examples of methods to tackle these problems. This volume is an overview of current mathematical and computational methods for problems with multiple scales with applications in chemistry, physics and engineering.
109.99
In Stock
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Multiscale Methods in Science and Engineering
289
Multiscale Methods in Science and Engineering
289Paperback(2005)
$109.99
109.99
In Stock
Product Details
ISBN-13: | 9783540253358 |
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Publisher: | Springer Berlin Heidelberg |
Publication date: | 07/22/2005 |
Series: | Lecture Notes in Computational Science and Engineering , #44 |
Edition description: | 2005 |
Pages: | 289 |
Product dimensions: | 6.10(w) x 9.25(h) x 0.36(d) |
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