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Titlebook: High Performance Computing in Science and Engineering ‘13; Transactions of the Wolfgang E. Nagel,Dietmar H. Kröner,Michael M. Res Conferen

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发表于 2025-3-21 16:53:53 | 显示全部楼层 |阅读模式
书目名称High Performance Computing in Science and Engineering ‘13
副标题Transactions of the
编辑Wolfgang E. Nagel,Dietmar H. Kröner,Michael M. Res
视频video
概述Includes supplementary material:
图书封面Titlebook: High Performance Computing in Science and Engineering ‘13; Transactions of the  Wolfgang E. Nagel,Dietmar H. Kröner,Michael M. Res Conferen
描述This book presents the state-of-the-art in simulation on supercomputers. Leading researchers present results achieved on systems of the High Performance Computing Center Stuttgart (HLRS) for the year 2013. The reports cover all fields of computational science and engineering ranging from CFD via computational physics and chemistry to computer science with a special emphasis on industrially relevant applications. Presenting results of one of Europe’s leading systems this volume covers a wide variety of applications that deliver a high level of sustained performance. The book covers the main methods in high performance computing. Its outstanding results in achieving highest performance for production codes are of particular interest for both the scientist and the engineer. The book comes with a wealth of coloured illustrations and tables of results.
出版日期Conference proceedings 2013
关键词computational science and engineering; high performance computing; modelling; simulation; vector superco
版次1
doihttps://doi.org/10.1007/978-3-319-02165-2
isbn_softcover978-3-319-34435-5
isbn_ebook978-3-319-02165-2
copyrightSpringer International Publishing Switzerland 2013
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Sebastian Lange,Felix Spanierntly computable. They can be used to prove the multigrid convergence of several geometric estimators. Their asymptotic properties can be used to estimate the local amount of noise along the shape, through a multiscale analysis.
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From Molecules to Thin Films: GaP Nucleation on Si SubstratesSilicon is prominently used as a substrate for a variety of functionalized materials. Those are tuned towards direct band gap semiconductor materials or for subsequent adsorption and growth of optically active organic compounds.
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https://doi.org/10.1007/978-3-319-02165-2computational science and engineering; high performance computing; modelling; simulation; vector superco
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A Dissipative-Particle-Dynamics Model for Simulating Dynamics of Charged Colloidstions with thermal fluctuations are taken accounts in full using Dissipative Particle Dynamics, and the electrostatic interactions are simulated using Particle–Particle–Particle Mesh method. This new model is applied to investigate the electrophoretic mobility of a charged colloid under an external
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