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portada Perturbation Theories for the Thermodynamic Properties of Fluids and Solids
Type
Physical Book
Publisher
Year
2013
Language
Inglés
Pages
406
Format
Hardcover
Dimensions
23.4 x 16.3 x 2.8 cm
Weight
0.70 kg.
ISBN
1439807752
ISBN13
9781439807750

Perturbation Theories for the Thermodynamic Properties of Fluids and Solids

J. R. Solana (Author) · CRC Press · Hardcover

Perturbation Theories for the Thermodynamic Properties of Fluids and Solids - Solana, J. R.

Physical Book

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Synopsis "Perturbation Theories for the Thermodynamic Properties of Fluids and Solids"

This book, Perturbation Theories for the Thermodynamic Properties of Fluids and Solids, provides a comprehensive review of current perturbation theories--as well as integral equation theories and density functional theories--for the equilibrium thermodynamic and structural properties of classical systems. Emphasizing practical applications, the text avoids complex theoretical derivations as much as possible. It begins with discussions of the nature of intermolecular forces and simple potential models. The book also presents a summary of statistical mechanics concepts and formulae. In addition, it reviews simulation techniques, providing background for the performance analyses of theories executed throughout the text using simulation data. Chapters describe integral equation theories, theoretical approaches for hard-sphere fluid or solid systems, and perturbation theories for simple fluids and solids for monocomponent and multicomponent systems. They also cover density functional theories for inhomogeneous systems and perturbative and nonperturbative approaches to describe the structure and thermodynamics of hard-body molecular fluids. The final chapter examines several more challenging systems, such as fluids near the critical point, liquid metals, molten salts, colloids, and aqueous protein solutions. This book offers a thorough account of the available equilibrium theories for the thermodynamic and structural properties of fluids and solids, with special focus on perturbation theories, emphasizing their applications, strengths, and weaknesses. Appropriate for experienced researchers as well as postgraduate students, the text presents a wide-ranging yet detailed view and provides a useful guide to the application of the theories described.

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