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Titlebook: Domain Decomposition Methods in Science and Engineering XXV; Ronald Haynes,Scott MacLachlan,Olof Widlund Conference proceedings 2020 Sprin

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Gabriel Michel,Eric Brangier,Mélissa Brunmholtz and the time harmonic Maxwell’s equations. Such equations are much harder to solve than diffusive problems like Laplace’s equation, because of two main reasons: first, the pollution effect [1] requires much finer meshes than would be necessary just to resolve the signal computed, and second,
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Emanuele Fabbro,Alessandro Mudang high contrast and multiscale problems, since in this case, the convergence of two-level domain decomposition methods is deteriorating when the contrast becomes large, see [1, 10, 16, 17, 11, 9, 8] and references therein.
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https://doi.org/10.1007/978-3-030-56750-7Domain decomposition methods; Iterative methods; Numerical methods for PDEs; Parallel computing; Large l
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Does the Partition of Unity Influence the Convergence of Schwarz Methods?bdomain solutions, and always uses the newest data available from the neighboring subdomains. In the parallel Schwarz method introduced by Lions in [10], where all subdomains are solved simultaneously, one also stores subdomain solutions, but one has to distinguish two cases: if in the decomposition
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Analysis of Double Sweep Optimized Schwarz Methods: the Positive Definite Casemholtz and the time harmonic Maxwell’s equations. Such equations are much harder to solve than diffusive problems like Laplace’s equation, because of two main reasons: first, the pollution effect [1] requires much finer meshes than would be necessary just to resolve the signal computed, and second,
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Comparison of Continuous and Discrete Techniques to Apply Coarse Correctionsng high contrast and multiscale problems, since in this case, the convergence of two-level domain decomposition methods is deteriorating when the contrast becomes large, see [1, 10, 16, 17, 11, 9, 8] and references therein.
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