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Titlebook: Computer Representation of the Stereochemistry of Organic Molecules; With application to Henry W. Davis Book 1976 Springer Basel AG 1976 a

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书目名称Computer Representation of the Stereochemistry of Organic Molecules
副标题With application to
编辑Henry W. Davis
视频video
丛书名称Interdisciplinary Systems Research
图书封面Titlebook: Computer Representation of the Stereochemistry of Organic Molecules; With application to  Henry W. Davis Book 1976 Springer Basel AG 1976 a
描述The role of the computer in the practice of organic chemistry has been firmly established over the past decade. Its uses as a large scale information storage and retrieval device in chemistry have been too numerous to mention. More recently, the applicability of computers to the problem of discovering valid and reasonable synthesis routes for organic molecules has been demonstrated. This has been both as an adjunct to the 1 chemist in the on-line interactive mode ,2,3 and also as a wholly computer-directed system seeking to simulate the intelligent prob- 4 lem-solving activity of the human organic synthetic chemist. ,5 In all of these computer applications to organic chemistry, it has been necessary to devise some computer-compatible repres- tation of an organic molecule that is both canonical and c- venient for table look-ups. This is in order that entities that have been constructed at different times under different circumstances can be identified and classified, with identical molecules being recognized as such even if their connection matrices list the elements of the molecule in different orders. E. J. Corey and W. T. Wipke, Science, 166, 178 (1969). 2 E. J. Corey, W. T. Wipk
出版日期Book 1976
关键词algorithms; Canon; chemistry; computer; Equivalence; information; matrices; Parity; presentation; Simula; stor
版次1
doihttps://doi.org/10.1007/978-3-0348-5788-8
isbn_softcover978-3-7643-0847-6
isbn_ebook978-3-0348-5788-8
copyrightSpringer Basel AG 1976
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Identifying and Numbering the SE Classes,d this by requiring that there be a graph isomorphism taking one atom into the other. In this section we shall define two atoms to be SE in a precisely analogous fashion. We shall find that the ideas of section 5 carry over to this setting and that we can identify SE atoms by essentially the same me
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tructed at different times under different circumstances can be identified and classified, with identical molecules being recognized as such even if their connection matrices list the elements of the molecule in different orders. E. J. Corey and W. T. Wipke, Science, 166, 178 (1969). 2 E. J. Corey, W. T. Wipk978-3-7643-0847-6978-3-0348-5788-8
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https://doi.org/10.1007/978-1-4020-8676-2A . is a pair (S, E) where S is a set of . and E is a subset of S × S, called the set of ..
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https://doi.org/10.1007/978-1-4020-8676-2Algorithm 1 of this section identifies and numbers the CE classes of a molecule.
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