Entropy and Free Energy in Structural Biology:From Thermodynamics, Statistical Mechanics and Computer Simulation(Foundations of Biochemistry and Biophysics)

结构生物学中的熵与自由能:热力学、统计力学与计算机模拟

生物数学

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1149.00
发货周期:预计5-7周发货
作      者
出  版 社
出版时间
2020年08月18日
装      帧
精装
ISBN
9780367406929
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页      码
252
开      本
8-1/2 x 11
语      种
英文
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图书简介
Computer simulation has become the main engine of development in statistical mechanics. In structural biology, computer simulation constitutes the main theoretical tool for structure determination of proteins and for calculation of the free energy of binding, which are important in drug design. Entropy and Free Energy in Structural Biology leads readers to the simulation technology in a systematic way. The book, which is structured as a course, consists of four parts: Part I is a short course on probability theory emphasizing (1) the distinction between the notions of experimental probability, probability space, and the experimental probability on a computer, and (2) elaborating on the mathematical structure of product spaces. These concepts are essential for solving probability problems and devising simulation methods, in particular for calculating the entropy. Part II starts with a short review of classical thermodynamics from which a non-traditional derivation of statistical mechanics is devised. Theoretical aspects of statistical mechanics are extensively reviewed. Part III covers several topics in non-equilibrium thermodynamics and statistical mechanics close to equilibrium, such as Onsager relations, the two Fick’s laws, and the Langevin and master equations. The Monte Carlo and molecular dynamics procedures are also discussed. Part IV presents advanced simulation methods for polymers and protein systems, including techniques for conformational search and for calculating the potential of mean force and the chemical potential. Thermodynamic integration, methods for calculating the absolute entropy, and methodologies for calculating the absolute free energy of binding are evaluated. Enhanced by a number of solved problems and examples, this volume is a valuable resource for advanced undergraduate and
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