Description

Book Synopsis
Contains introduction to the principles of liquid-state theory. This title presents the modern, molecular theory of the structural, thermodynamic interfacial and dynamical properties of the liquid phase of materials constituted of atoms, small molecules or ions.

Trade Review
"The structure of this revised and updated fourth edition is similar to that of the previous one but there are significant shifts in emphasis and much new material has been added. Major changes and key features in content include: Expansion of existing sections on simulation methods, liquid-vapour coexistence, the hierarchical reference theory of criticality,…" --Zentralblatt MATH, 1277.00030 "The editions have kept up with the fields, and this fourth contains many new sections of such matters as binary systems, the asymptotic decay of the pair correlation function, fluid flows at the interface with a solid, and the thermodynamics of supercooled liquids. The new chapter on applications to soft matter shows the recent and gradual convergence between two fields that have evolved separately." --ProtoView.com, January 2014

Table of Contents
Chapter 1. Introduction Chapter 2. Statistical Mechanics Chapter 3. Static Properties of Liquids: Thermodynamics and Structure Chapter 4. Distribution function Theories Chapter 5. Perturbation Theory Chapter 6. Inhomogeneous Fluids Chapter 7. Time-dependent Correlation and Response Functions Chapter 8. Hydrodynamics and Transport Coefficients Chapter 9. Theories of Time correlation Functions Chapter 10.Ionic Liquids Chapter 11.Molecular LiquidsChapter 12.Applications to Soft MatterAppendix A. FluctuationsAppendix B. Two Theorems in Density Functional TheoryAppendix C. Lemmas on DiagramsAppendix D. Solution of the PY Equation for Hard SpheresAppendix E. Scaled Particle TheoryAppendix F. An Exact Integral Equation for p(1)(r)Appendix G. Some Basic Properties of PolymersAppendix H. Density Profile of a Polymer Brush

Theory of Simple Liquids

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    A Paperback by I.R. McDonald, I.R. McDonald

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      Publisher: Elsevier Science
      Publication Date: 8/16/2013 12:00:00 AM
      ISBN13: 9780123870322, 978-0123870322
      ISBN10: 0123870321

      Description

      Book Synopsis
      Contains introduction to the principles of liquid-state theory. This title presents the modern, molecular theory of the structural, thermodynamic interfacial and dynamical properties of the liquid phase of materials constituted of atoms, small molecules or ions.

      Trade Review
      "The structure of this revised and updated fourth edition is similar to that of the previous one but there are significant shifts in emphasis and much new material has been added. Major changes and key features in content include: Expansion of existing sections on simulation methods, liquid-vapour coexistence, the hierarchical reference theory of criticality,…" --Zentralblatt MATH, 1277.00030 "The editions have kept up with the fields, and this fourth contains many new sections of such matters as binary systems, the asymptotic decay of the pair correlation function, fluid flows at the interface with a solid, and the thermodynamics of supercooled liquids. The new chapter on applications to soft matter shows the recent and gradual convergence between two fields that have evolved separately." --ProtoView.com, January 2014

      Table of Contents
      Chapter 1. Introduction Chapter 2. Statistical Mechanics Chapter 3. Static Properties of Liquids: Thermodynamics and Structure Chapter 4. Distribution function Theories Chapter 5. Perturbation Theory Chapter 6. Inhomogeneous Fluids Chapter 7. Time-dependent Correlation and Response Functions Chapter 8. Hydrodynamics and Transport Coefficients Chapter 9. Theories of Time correlation Functions Chapter 10.Ionic Liquids Chapter 11.Molecular LiquidsChapter 12.Applications to Soft MatterAppendix A. FluctuationsAppendix B. Two Theorems in Density Functional TheoryAppendix C. Lemmas on DiagramsAppendix D. Solution of the PY Equation for Hard SpheresAppendix E. Scaled Particle TheoryAppendix F. An Exact Integral Equation for p(1)(r)Appendix G. Some Basic Properties of PolymersAppendix H. Density Profile of a Polymer Brush

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