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Titlebook: High Performance Computing in Science and Engineering ’99; Transactions of the Egon Krause,Willi J?ger Conference proceedings 2000 Springe

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發(fā)表于 2025-3-21 16:04:08 | 只看該作者 |倒序瀏覽 |閱讀模式
書目名稱High Performance Computing in Science and Engineering ’99
副標(biāo)題Transactions of the
編輯Egon Krause,Willi J?ger
視頻videohttp://file.papertrans.cn/427/426378/426378.mp4
概述This book covers the most significant CSE projects at HLRS Stuttgart, a major supercomputing center in Germany.
圖書封面Titlebook: High Performance Computing in Science and Engineering ’99; Transactions of the  Egon Krause,Willi J?ger Conference proceedings 2000 Springe
描述The book contains reports about the most significant projects from science and engineering of the Federal High Performance Computing Center Stuttgart (HLRS). They were carefully selected in a peer-review process and are showcases of an innovative combination of state-of-the-art modeling, novel algorithms and the use of leading-edge parallel computer technology. The projects of HLRS are using supercomputer systems operated jointly by university and industry and therefore a special emphasis has been put on the industrial relevance of results and methods.
出版日期Conference proceedings 2000
關(guān)鍵詞High-Performance-Computing Scientific Computing; Numerical methods; Parallel computing; algorithms; mode
版次1
doihttps://doi.org/10.1007/978-3-642-59686-5
isbn_softcover978-3-642-64084-1
isbn_ebook978-3-642-59686-5
copyrightSpringer-Verlag Berlin Heidelberg 2000
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,Finite difference modelling of elastic wave propagation in the Earth’s uppermost mantle,ave equation numerically. Using a 2D finite difference scheme we calculate synthetic seismograms for a variety of very large models (larger than 1000 wave length). The size of the models employed and the number of time steps computed are unprecedented so far and inconceivable without modern high-per
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Summary of Project 11172, in fractured media’ in this report. The other three articles are related to SFB 381 topics that are in connection with our Cray-project and rely very much on synthetic data generated within this project..The resource requirements of our program strongly depend on the given problem (model-size, time
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Symmetric diblock copolymers confined into thin films: A Monte Carlo investigation on the CRAY T3E,ferent phases we quench several systems with identical parameters from the disordered state to a temperature in the intermediate segregation regime and monitor the morphology. Three film thickness are investigated and we find lamellar phases which are parallel and perpendicular oriented lamellar pha
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Simulation of random copolymers at selective interfaces and of cross-linked polymer blends,ting cross-linking under conditions without .-interactions with different cross-link densities. Investigating the network topology we found an effective chemical dimension larger than three in agreement with previous investigations on smaller systems. This differs strongly from a simple homogeneous
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The Metal-Insulator Transition in the Hubbard Model,alization (. = 0) results yield a metal-insulator transition at about the same critical interaction ... However, whereas the finite- temperature transition is again of the Mott-Hubbard type, the . = 0 transition is of Mott-Heisenberg type induced by long-range antiferromagnetic correlations.
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The multi-reference configuration interaction method on massively parallel architectures,nd electronic spectra of transition metal compounds such as Cr. and the first row transition metal dihalides, the investigation of the electronic structure of aromatic compounds such as benzene, naphtalene and anthrazene and their derivatives and the . determination of microscopic spin- and spin-pho
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Three-Dimensional Organization of Chromosome Territories and the Human Cell Nucleus,lyis of simulations, mass distribution of chromatin in cell nuclei and the fragmentation distribution of cellular DNA after irradiation with carbon ions. Thus in an anology to the Bauhaus principle that “form follows function”, analyzing in which form DNA is organized might help us to understand gen
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High Performance Computing in Science and Engineering ’99Transactions of the
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High Performance Computing in Science and Engineering ’99978-3-642-59686-5
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