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Titlebook: Statistical Thermodynamics for Chemists and Biochemists; Arieh Ben-Naim Book 1992 Springer Science+Business Media New York 1992 dynamics.e

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书目名称Statistical Thermodynamics for Chemists and Biochemists
编辑Arieh Ben-Naim
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图书封面Titlebook: Statistical Thermodynamics for Chemists and Biochemists;  Arieh Ben-Naim Book 1992 Springer Science+Business Media New York 1992 dynamics.e
描述This book was planned and written with one central goal in mind: to demonstrate that statistical thermodynamics can be used successfully by a broad group of scientists, ranging from chemists through biochemists to biologists, who are not and do not intend to become specialists in statistical thermodynamics. The book is addressed mainly to gradu­ ate students and research scientists interested in designing experiments the results of which may be interpreted at the molecular level, or in interpreting such experimental results. It is not addressed to those who intend to practice statistical thermodynamics per se. With this goal in mind, I have expended a great deal of effort to make the book clear, readable, and, I hope, enjoyable. This does not necessarily mean that the book as a whole is easy to read. The first four chapters are very detailed. The last four become progressively more difficult to read, for several reasons. First, presuming that the reader has already acquired familiarity with the methods and arguments presented in the first part, I felt that similar arguments could be skipped later on, leaving the details to be filled in by the reader. Second, the systems themselves
出版日期Book 1992
关键词dynamics; experiment; solution; thermodynamics; water
版次1
doihttps://doi.org/10.1007/978-1-4757-1598-9
isbn_softcover978-1-4757-1600-9
isbn_ebook978-1-4757-1598-9
copyrightSpringer Science+Business Media New York 1992
The information of publication is updating

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One-Dimensional Models, may be tested on a 1-D system. The answers we obtain are sometimes also relevant to three-dimensional systems. Finally, the methods used to solve the 1-D partition functions are elegant and in themselves aesthetically satisfying.
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Simple Systems without Interactions,particle interactions. Lack of interaction usually implies independence of the particles. This, in turn, leads to a relatively easy solution for the PF of the system. A total lack of interactions never exists in real systems. Nevertheless, such idealized systems are interesting for two reasons. Firs
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One-Dimensional Models,rs, proteins, and nucleic acids. Although all of these occupy three-dimensional space, their main properties are determined by the 1-D sequence of units and bonds. Second, these models are usually easily solvable. Therefore some general properties, theorems, conjectures, approximations, and the like
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Theory of Liquids,.g., ideal gases) or because the interactions took place between a small number of particles (Chapter 3) or because the system itself was simple (Chapter 4). From this chapter through the rest of the book we shall be dealing with nonsolvable systems. Liquids, even the simplest ones consisting of har
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Theory of Solutions,utions. We begin by generalizing some concepts and relationships from the theory of pure liquids and proceed with aspects that are specific to mixtures and solutions. The terms “mixture” and “solution” are used here almost synonymously. The latter is traditionally used when one component (the solute
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