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Molecular Thermodynamics of Fluid-Phase Equilibria Book

Molecular Thermodynamics of Fluid-Phase Equilibria
Molecular Thermodynamics of Fluid-Phase Equilibria, The classic guide to mixtures, completely updated with new models, theories, examples, and data.
Efficient separation operations and many other chemical processes depend upon a thorough understanding of the properties of gaseous and liquid mixtures. Mo, Molecular Thermodynamics of Fluid-Phase Equilibria has a rating of 2 stars
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Molecular Thermodynamics of Fluid-Phase Equilibria, The classic guide to mixtures, completely updated with new models, theories, examples, and data. Efficient separation operations and many other chemical processes depend upon a thorough understanding of the properties of gaseous and liquid mixtures. Mo, Molecular Thermodynamics of Fluid-Phase Equilibria
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  • Molecular Thermodynamics of Fluid-Phase Equilibria
  • Written by author John M. Prausnitz, Edmundo Gomes de Azevedo, Rudiger N. Lichtenthaler
  • Published by Prentice Hall, 1998/10/22
  • The classic guide to mixtures, completely updated with new models, theories, examples, and data. Efficient separation operations and many other chemical processes depend upon a thorough understanding of the properties of gaseous and liquid mixtures. Mo
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Book Categories

Authors

1. The Phase Equilibrium Problem.

2. Classical Thermodynamics of Phase Equilibria.

3. Thermodynamic Properties from Volumetric Data.

4. Intermolecular Forces, Corresponding States and Osmotic Systems.

5. Fugacities in Gas Mixtures.

6. Fugacities in Liquid Mixtures: Excess Functions.

7. Fugacities in Liquid Mixtures: Models and Theories of Solutions.

8. Polymers: Solutions, Blends, Membranes, and Gels.

9. Electrolyte Solutions.

10. Solubilities of Gases in Liquids.

11. Solubilities of Solids in Liquids.

12. High-Pressure Phase Equilibria.

Appendix A. Uniformity of Intensive Potentials as a Criterion of Phase Equilibrium.

Appendix B. A Brief Introduction to Statistical Thermodynamics.

Appendix C. Virial Coefficients for Quantum Gases.

Appendix D. The Gibbs-Duhem Equation.

Appendix E. Liquid-Liquid Equilibria in Binary and Multicomponent Systems.

Appendix F. Estimation of Activity Coefficients.

Appendix G. A General Theorem for Mixtures with Associating or Solvating Molecules.

Appendix H. Brief Introduction to Perturbation Theory of Dense Fluids.

Appendix I. The Ion-Interaction Model of Pitzer for Multielectrolyte Solutions.

Appendix J. Conversion Factors and Constants.

Index.


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Molecular Thermodynamics of Fluid-Phase Equilibria, The classic guide to mixtures, completely updated with new models, theories, examples, and data.
Efficient separation operations and many other chemical processes depend upon a thorough understanding of the properties of gaseous and liquid mixtures. Mo, Molecular Thermodynamics of Fluid-Phase Equilibria

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Molecular Thermodynamics of Fluid-Phase Equilibria, The classic guide to mixtures, completely updated with new models, theories, examples, and data.
Efficient separation operations and many other chemical processes depend upon a thorough understanding of the properties of gaseous and liquid mixtures. Mo, Molecular Thermodynamics of Fluid-Phase Equilibria

Molecular Thermodynamics of Fluid-Phase Equilibria

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Molecular Thermodynamics of Fluid-Phase Equilibria, The classic guide to mixtures, completely updated with new models, theories, examples, and data.
Efficient separation operations and many other chemical processes depend upon a thorough understanding of the properties of gaseous and liquid mixtures. Mo, Molecular Thermodynamics of Fluid-Phase Equilibria

Molecular Thermodynamics of Fluid-Phase Equilibria

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