Molecular Driving Forces

Molecular Driving Forces pdf epub mobi txt 电子书 下载 2026

出版者:Garland Science
作者:Ken Dill
出品人:
页数:720
译者:
出版时间:2010-12-13
价格:GBP 51.50
装帧:Paperback
isbn号码:9780815344308
丛书系列:
图书标签:
  • 物理化学
  • 化学
  • 物理
  • 生物
  • 热力学
  • 纳米科技
  • 复杂系统
  • thermodynamics
  • 统计热力学
  • 分子模拟
  • 生物物理化学
  • 化学热力学
  • 蛋白质折叠
  • 药物设计
  • 分子动力学
  • 自由能计算
  • 计算化学
  • 生物分子
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具体描述

"Molecular Driving Forces, Second Edition" is an introductory statistical thermodynamics text that describes the principles and forces that drive chemical and biological processes. The second edition includes an additional chapter on thermodynamics and two new chapters: 'Microscopic Dynamics' which explores single molecule experiments, and 'Bio and Nano Machines' which describes the workings of biological molecules including proteins and DNA. New examples and practical applications are integrated throughout the revised and updated text, exploring topics in biology, environmental and energy science, and nanotechnology. It also includes new end-of-chapter problems, and purely mathematical topics are now in appendices. Written in a clear and reader-friendly style, the book provides an excellent introduction to the subject for novices while remaining a valuable resource for experts.

作者简介

Ken A. Dill is Professor of Pharmaceutical Chemistry and Biophysics at the University of California, San Francisco. He received his undergraduate training at MIT, his PhD from the University of California, San Diego, and did postdoctoral work at Stanford. A leading researcher in biopolymer statistical mechanics and protein folding, he has been the President of the Biophysical Society and received the Hans Neurath Award from the Protein Society in 1998.

Sarina Bromberg received her BFA at the Cooper Union for the Advancement of Science and Art, her PhD in molecular biophysics from Wesleyan University, and her postdoctoral training at the University of California, San Francisco. She writes, edits and illustrates scientific textbooks.

目录信息

1: Principles of Probability
2: Extremum Principles Predict Equilibria
3: Heat, Work & Energy
4: Math Tools: Multivariate Calculus
5: Entropy & the Boltzmann Law
6: Thermodynamic Driving Forces
7: The Logic of Thermodynamics
8: Laboratory Conditions & Free Energies
9: Maxwell's Relations & Mixtures
10: The Boltzman Distribution Law
11: The Statistical Mechanics of Simple Gases & Solids
12: What Is Temperature? What Is Heat Capacity?
13: Chemical Equilibria
14: Equilibria Between Liquids, Solids, & Gases
15: Solutions & Mixtures
16: The Solvation & Transfer of Molecules Between Phases
17: Physical Kinetics: Diffusion, Permeation & Flow
18: Microscopic Dynamics
19: Chemical Kinetics & Transition States
20: Coulomb's Law of Electrostatic Forces
21: The Electrostatic Potential
22: Electrochemical Equilibria
23: Salt Ions Shield Charged Objects in Solution
24: Intermolecular Interactions
25: Phase Transitions
26: Cooperativity: The Hexlix-Coil, Isling & Landau Models
27: Adsorption, Binding & Catalysis
28: Multi-site & Cooperative Ligand Binding
29: Bio & Nano Machines
30: Water
31: Water as a Solvent
32: Polymer Solutions
33: Polymer Elasticity & Collapse
34: Polymers Resist Confinement & Deformation
Appendices
· · · · · · (收起)

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图文并茂,不忍释手。。。

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It takes eternity to finish this book.

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