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Titlebook: High Performance Scientific and Engineering Computing; Proceedings of the I Hans-Joachim Bungartz,Franz Durst,Christoph Zenger Conference p

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發(fā)表于 2025-3-21 18:53:29 | 只看該作者 |倒序瀏覽 |閱讀模式
書目名稱High Performance Scientific and Engineering Computing
副標題Proceedings of the I
編輯Hans-Joachim Bungartz,Franz Durst,Christoph Zenger
視頻videohttp://file.papertrans.cn/427/426438/426438.mp4
概述Includes supplementary material:
叢書名稱Lecture Notes in Computational Science and Engineering
圖書封面Titlebook: High Performance Scientific and Engineering Computing; Proceedings of the I Hans-Joachim Bungartz,Franz Durst,Christoph Zenger Conference p
描述Since the creation of the term "Scientific Computing" and of its German counterpart "Wissenschaftliches Rechnen" (whoever has to be blamed for that), scientists from outside the field have been confused about the some- what strange distinction between scientific and non-scientific computations. And the insiders, i. e. those who are, at least, convinced of always comput- ing in a very scientific way, are far from being happy with this summary of their daily work, even if further characterizations like "High Performance" or "Engineering" try to make things clearer - usually with very modest suc- cess, however. Moreover, to increase the unfortunate confusion of terms, who knows the differences between "Computational Science and Engineering" , as indicated in the title of the series these proceedings were given the honour to be published in, and "Scientific and Engineering Computing", as chosen for the title of our book? Actually, though the protagonists of scientific com- puting persist in its independence as a scientific discipline (and rightly so, of course), the ideas behind the term diverge wildly. Consequently, the variety of answers one can get to the question "What is scientifi
出版日期Conference proceedings 1999
關鍵詞Computer; Hochleistungsrechnen; calculus; computer science; computing; high performance; numerical simulat
版次1
doihttps://doi.org/10.1007/978-3-642-60155-2
isbn_softcover978-3-540-65730-9
isbn_ebook978-3-642-60155-2Series ISSN 1439-7358 Series E-ISSN 2197-7100
issn_series 1439-7358
copyrightSpringer-Verlag Berlin Heidelberg 1999
The information of publication is updating

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A. Walther,A. Griewanka simple guess-and-determine approach which is efficient enough against these generators..We also present an implemented attack on Trifork, this time using lattice-based techniques. We show it cannot have more than 64 bits of security, hence it is not cryptographically secure.
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B. Huurdeman,S. N?gele,V. Reichenberger,H. Rentz-Reichertose our own scheme, ULISS (Unlinkable Limited Invisible Sanitizable Signature), then show that it verifies these properties. This extension of SaS can not only improve current use cases, but also introduce new ones, ., restricting the number of changes in a document within a certain timeframe.
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M. Meinke,Th. Rister,F. Rütten,A. Schvorak relying on ORAM. Our key idea is to keep track of the states of updates and the deletion information inside the secure enclave to prevent the leakage from the server. To speed up, we further leverage a compressed data structure to maintain a sketch of addition operations in the enclave to facilitat
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M. Franke,Th. Rung,L. Xue,F. Thiele relying on ORAM. Our key idea is to keep track of the states of updates and the deletion information inside the secure enclave to prevent the leakage from the server. To speed up, we further leverage a compressed data structure to maintain a sketch of addition operations in the enclave to facilitat
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U. Becker-Lemgau,M. G. Hackenberg,W. Joppich,S. Mijalkovi?,B. Steckel,Th. Sontowski,R. Tilch relying on ORAM. Our key idea is to keep track of the states of updates and the deletion information inside the secure enclave to prevent the leakage from the server. To speed up, we further leverage a compressed data structure to maintain a sketch of addition operations in the enclave to facilitat
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cing and revoking pirate rebroadcasts and (ii) by presenting the first efficient constructions of tracing and revoking pirate rebroadcasts that are capable of performing tracing for . of traitors and revoking . of users. We present three instantiations of our framework: our first construction achiev
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