Olof B Widlund – författare
331 kr
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167 kr
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345 kr
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180 kr
Skickas inom 5-8 vardagar
331 kr
Skickas inom 5-8 vardagar
166 kr
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Domain Decomposition Methods in Science and Engineering XXVII
1 832 kr
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3 046 kr
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These are the proceedings of the 27th International Conference on Domain Decomposition Methods in Science and Engineering, which was held in Prague, Czech Republic, in July 2022.
Domain decomposition methods are iterative methods for solving the often very large systems of equations that arise when engineering problems are discretized, frequently using finite elements or other modern techniques. These methods are specifically designed to make effective use of massively parallel, high-performance computing systems.
The book presents both theoretical and computational advances in this domain, reflecting the state of art in 2022.
Domain Decomposition Methods in Science and Engineering XXVII
2 371 kr
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Domain Decomposition Methods in Science and Engineering XXIII
1 619 kr
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1 977 kr
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This book is a collection of papers presented at the 23rd International Conference on Domain Decomposition Methods in Science and Engineering, held on Jeju Island, Korea on July 6-10, 2015. Domain decomposition methods solve boundary value problems by splitting them into smaller boundary value problems on subdomains and iterating to coordinate the solution between adjacent subdomains. Domain decomposition methods have considerable potential for a parallelization of the finite element methods, and serve a basis for distributed, parallel computations.
Domain Decomposition Methods in Science and Engineering XXIII
1 619 kr
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Domain Decomposition Methods in Science and Engineering XXIV
1 619 kr
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1 977 kr
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These are the proceedings of the 24th International Conference on Domain Decomposition Methods in Science and Engineering, which was held in Svalbard, Norway in February 2017.
Domain decomposition methods are iterative methods for solving the often very large systems of equations that arise when engineering problems are discretized, frequently using finite elements or other modern techniques. These methods are specifically designed to make effective use of massively parallel, high-performance computing systems.
The book presents both theoretical and computational advances in this domain, reflecting the state of art in 2017.