Homogeneous Nucleation Theory :The Pretransition Theory of Vapor Condensation

Publication subTitle :The Pretransition Theory of Vapor Condensation

Author: Abraham   Farid  

Publisher: Elsevier Science‎

Publication year: 2012

E-ISBN: 9780323158046

P-ISBN(Paperback): 9780120383610

P-ISBN(Hardback):  9780120383610

Subject: O552.6 condensed state and phase change

Language: ENG

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Description

Homogeneous Nucleation Theory: The Pretransition Theory of Vapor Condensation discusses the influence of classical thermodynamics, statistical mechanics, and multistate kinetics on the homogeneous nucleation theory.
This book is organized into 10 chapters and begins with a simple model calculation that yields an important insight into the major physical features governing supersaturated vapor condensation. The following chapters explore the development of the theory of equilibrium thermodynamics pertinent to the study of a nucleation phenomena and a postulatory formulation of statistical mechanics and its relation to the calculation of the thermodynamic potentials. The discussion then shifts to a statistical thermodynamics description of an imperfect gas assuming the droplet model of Band-Bijl-Frenkel and to the development of the multistate kinetics of cluster formation. The book also explores the development of the classical Einstein theory for crystalline solids and generalizes this theory for its applications to planar surfaces of microcrystalline clusters. It also presents a comparison of the exact free energies for the microcrystallites with the predictions of the droplet model using the capillarity approximation. Three distinct approaches for calculating the thermodynamic properties of physical clusters are covered in the concluding chapters.

Chapter

Front Cover

pp.:  1 – 4

Copyright Page

pp.:  5 – 8

Dedication

pp.:  6 – 12

Table of Contents

pp.:  8 – 6

Foreword

pp.:  12 – 14

Preface

pp.:  14 – 16

Chapter 1. The Nature of the Nucleation Process

pp.:  16 – 24

Chapter 2. Thermodynamics of the Vapor-Drop System

pp.:  24 – 46

Chapter 3. Statistical Mechanics of Simple Systems

pp.:  46 – 78

Chapter 4. Statistical Thermodynamics of the Imperfect Vapor

pp.:  78 – 95

Chapter 5. The Multistate Kinetics of Vapor Condensation

pp.:  95 – 124

Chapter 6. Statistical Mechanics of Microcrystallites

pp.:  124 – 167

Chapter 7. An Empirical Theory for the Prediction of Vapor Condensation

pp.:  167 – 187

Chapter 8. Speculations on the Surface Structure of Embryonic Liquid Droplets

pp.:  187 – 208

Chapter 9. A Generalized Theory and Monte Carlo Stimulationof Physical Clusters

pp.:  208 – 240

Appendix: Homogeneous Nucleation of Vapor Condensation

pp.:  240 – 253

Homogeneous Nucleation of Vapor Condensation

pp.:  253 – 272

Subject Index

pp.:  272 – 279

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