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Titlebook: Cooperativity Theory in Biochemistry; Steady-State and Equ Terrell L. Hill Book 1985 Springer-Verlag New York Inc. 1985 biochemistry.biolog

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書目名稱Cooperativity Theory in Biochemistry
副標題Steady-State and Equ
編輯Terrell L. Hill
視頻videohttp://file.papertrans.cn/239/238026/238026.mp4
叢書名稱Springer Series in Molecular and Cell Biology
圖書封面Titlebook: Cooperativity Theory in Biochemistry; Steady-State and Equ Terrell L. Hill Book 1985 Springer-Verlag New York Inc. 1985 biochemistry.biolog
描述During the past few decades we have witnessed an era of remarkable growth in the field of molecular biology. In 1950 very little was known of the chemical constitution of biological systems, the manner in which information was trans- mitted from one organism to another, or the extent to which the chemical basis of life is unified. The picture today is dramatically different. We have an almost bewildering variety of information detailing many different aspects of life at the molecular level. These great advances have brought with them some breath-taking insights into the molecular mechanisms used by nature for rep- licating, distributing and modifying biological information. We have learned a great deal about the chemical and physical nature of the macromolecular nucleic acids and proteins, and the manner in which carbohydrates, lipids and smaller molecules work together to provide the molecular setting of living sys- tems. It might be said that these few decades have replaced a near vacuum of information with a very large surplus. It is in the context of this flood of information that this series of monographs on molecular biology has been organized. The idea is to bring together i
出版日期Book 1985
關鍵詞biochemistry; biology; molecular mechanisms; nucleic acid; proteins
版次1
doihttps://doi.org/10.1007/978-1-4612-5082-1
isbn_softcover978-1-4612-9555-6
isbn_ebook978-1-4612-5082-1Series ISSN 0942-6523
issn_series 0942-6523
copyrightSpringer-Verlag New York Inc. 1985
The information of publication is updating

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Institutions and National Organizationsady-state systems. The basic theoretical approach, however, has to be quite different: there is no steady-state analogue of the grand partition function from which to derive all of the important steady-state properties. Instead, we have to introduce interaction effects explicitly into the rate const
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