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Titlebook: Modern Software Tools for Scientific Computing; Erlend Arge,Are Magnus Bruaset,Hans Petter Langtan Book 1997 Springer Science+Business Med

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書目名稱Modern Software Tools for Scientific Computing
編輯Erlend Arge,Are Magnus Bruaset,Hans Petter Langtan
視頻videohttp://file.papertrans.cn/638/637403/637403.mp4
概述Includes supplementary material:
圖書封面Titlebook: Modern Software Tools for Scientific Computing;  Erlend Arge,Are Magnus Bruaset,Hans Petter Langtan Book 1997 Springer Science+Business Med
描述Looking back at the years that have passed since the realization of the very first electronic, multi-purpose computers, one observes a tremendous growth in hardware and software performance. Today, researchers and engi- neers have access to computing power and software that can solve numerical problems which are not fully understood in terms of existing mathemati- cal theory. Thus, computational sciences must in many respects be viewed as experimental disciplines. As a consequence, there is a demand for high- quality, flexible software that allows, and even encourages, experimentation with alternative numerical strategies and mathematical models. Extensibil- ity is then a key issue; the software must provide an efficient environment for incorporation of new methods and models that will be required in fu- ture problem scenarios. The development of such kind of flexible software is a challenging and expensive task. One way to achieve these goals is to in- vest much work in the design and implementation of generic software tools which can be used in a wide range of application fields. In order to provide a forum where researchers could present and discuss their contributions to the de
出版日期Book 1997
關(guān)鍵詞Debugging; FORTRAN; Splines; calculus; data structures; design; development; geometry; mathematics; modeling;
版次1
doihttps://doi.org/10.1007/978-1-4612-1986-6
isbn_softcover978-1-4612-7368-4
isbn_ebook978-1-4612-1986-6
copyrightSpringer Science+Business Media New York 1997
The information of publication is updating

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https://doi.org/10.1007/978-1-4612-1986-6Debugging; FORTRAN; Splines; calculus; data structures; design; development; geometry; mathematics; modeling;
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e computers, one observes a tremendous growth in hardware and software performance. Today, researchers and engi- neers have access to computing power and software that can solve numerical problems which are not fully understood in terms of existing mathemati- cal theory. Thus, computational sciences
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Book 1997enging and expensive task. One way to achieve these goals is to in- vest much work in the design and implementation of generic software tools which can be used in a wide range of application fields. In order to provide a forum where researchers could present and discuss their contributions to the de
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Hereditarily Optimal Realizations: Why are they Relevant in Phylogenetic Analysis, and how does oneese are essentially unique, and can also be described in an explicit way. We define hereditarily optimal realizations, discuss some of their properties, and we indicate in particular why, due to recent results on the so-called . of a metric space, it is a straight forward task to compute these reali
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