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Titlebook: High Performance Computing and Communications; Third International Ronald Perrott,Barbara M. Chapman,Laurence T. Yang Conference proceedin

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Manycores in the Futuremerous, but not faster. They also may be less reliable. Chip-level parallelism raises important questions about architecture, software, algorithms, and applications. I’ll consider the directions in which the architecture may be headed, and look at the impact on parallel programming and scientific computing.
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Coarse-Grain Time Slicing with Resource-Share Control in Parallel-Job Schedulingapproach provides control regarding the resource shares allocated to different job classes. We demonstrate that this approach significantly improves response times for short and medium jobs and that it permits controlling different desirable resource-shares for different job classes at different times of the day according to site policies.
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Programming Challenges for Petascale and Multicore Parallel Systems. Unlike previous generations of hardware evolution, this shift will have a major impact on existing software. For petascale, it is widely recognized by application experts that past approaches based on domain decomposition will not scale to exploit the parallelism available in future high-end syste
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Bandwidth-Aware Design of Large-Scale Clusters for Scientific Computationsen developing a large scale PC cluster named PACS-CS (Parallel Array Computer System for Computational Sciences) at Center for Computational Sciences, University of Tsukuba, for wide variety of computational science applications such as computational physics, computational material science, etc. For
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Manycores in the Futuremerous, but not faster. They also may be less reliable. Chip-level parallelism raises important questions about architecture, software, algorithms, and applications. I’ll consider the directions in which the architecture may be headed, and look at the impact on parallel programming and scientific co
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