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Titlebook: Mathematical Models in Biological Discovery; Daniel L. Solomon,Charles F. Walter Conference proceedings 1977 Springer-Verlag Berlin · Heid

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書目名稱Mathematical Models in Biological Discovery
編輯Daniel L. Solomon,Charles F. Walter
視頻videohttp://file.papertrans.cn/627/626439/626439.mp4
叢書名稱Lecture Notes in Biomathematics
圖書封面Titlebook: Mathematical Models in Biological Discovery;  Daniel L. Solomon,Charles F. Walter Conference proceedings 1977 Springer-Verlag Berlin · Heid
描述When I was asked to help organize an American Association for the Advancement of Science symposium about how mathematical models have con- tributed to biology, I agreed immediately. The subject is of immense importance and wide-spread interest. However, too often it is discussed in biologically sterile environments by "mutual admiration society" groups of "theoreticians", many of whom have never seen, and most of whom have never done, an original scientific experiment with the biolog- ical materials they attempt to describe in abstract (and often prejudiced) terms. The opportunity to address the topic during an annual meeting of the AAAS was irresistable. In order to try to maintain the integrity ;,f the original intent of the symposium, it was entitled, "Contributions of Mathematical Models to Biological Discovery". This symposium was organized by Daniel Solomon and myself, held during the 141st annual meeting of the AAAS in New York during January, 1975, sponsored by sections G and N (Biological and Medical Sciences) of the AAAS and the North American Regions of the Biometric Society, and supported by grant BMS 75-0280) from the National Science Foundation. What follows in this v
出版日期Conference proceedings 1977
關(guān)鍵詞Biomathematik; Mathematica; biological; computer simulation; environment; enzyme; evolution; feedback; mathe
版次1
doihttps://doi.org/10.1007/978-3-642-93057-7
isbn_softcover978-3-540-08134-0
isbn_ebook978-3-642-93057-7Series ISSN 0341-633X Series E-ISSN 2196-9981
issn_series 0341-633X
copyrightSpringer-Verlag Berlin · Heidelberg 1977
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Computer Simulation as a Means of Physiological Integration of Biochemical Systems, the information available about individual entities such as proteins and nucleic acids is now immense and still growing rapidly, the task of determining how they interact to form a living system is now only beginning, especially with respect to quantitative behavior. In reviewing a recent book, Dr.
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Needs for the Future: Radically Different Types of Mathematical Models,in the volume, the purpose of this paper is to investigate less obvious, and therefore more speculative, directions. In particular, I intend to show reason to suspect that the laws of biology are of a different mathematical form than the laws of physics and that, therefore, the mathematical models o
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constraint that prevents microfinance institutions (MFIs) from reaching more customers is their lack of access to refinancing. Given the scarcity of donor funds and the limits of long-term domestic funding sources, MFIs seeking funding are increasingly turning to international private capital market
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Charles WalterPaths Towards Quantum Gravity”, Holb? k, Denmark, 10–16 May 2008. My aim for these lectures was to introduce a mixture of physics and mathematics postgraduate students into a selection of exciting new developments on the interface of mathematics and quantum field theory. This write-up covers three t
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