Statistical mechanics. /

This classic text, first published in 1972, is designed for graduate physics courses in statistical mechanics. The second edition, published in 1996, incorporated three comprehensive chapters on phase transitions and critical phenomena. This third edition includes new sections on Bose-Einstein conde...

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Detalles Bibliográficos
Autor principal: Pathria, R. K.
Otros Autores: Beale, Paul D.
Formato: Libro
Lenguaje:
Publicado: Boston : Elsevier, 2011.
Edición:3rd ed.
Materias:
Acceso en línea:Tapa
Indice
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245 1 0 |a Statistical mechanics. /  |c R.K. Pathria [and] Paul D. Beale. 
250 # # |a 3rd ed. 
260 # # |a Boston :  |b Elsevier,  |c 2011. 
300 # # |a xxvi, 718p. :  |b il. ;  |c 24 cm. 
504 # # |a Incluye referencias bibliográficas e índices. 
505 8 # |a Machine generated contents note: Historical introduction; The statistical basis of thermodynamics; Elements of the ensemble theory; The canonical ensemble; The grand canonical ensemble; Formulation of quantum statistics; The theory of simple gases; Ideal Bose systems; Ideal Fermi systems; Statistical mechanics of interacting systems: The method of cluster explansions, the method of quantized fields; Phase transitions: critically, universality and scaling, exact (or almost exact) results for the various models, the renormalization group approach; Fluctuations. 
520 # # |a This classic text, first published in 1972, is designed for graduate physics courses in statistical mechanics. The second edition, published in 1996, incorporated three comprehensive chapters on phase transitions and critical phenomena. This third edition includes new sections on Bose-Einstein condensation and degenerate Fermi behavior of ultracold atomic gases, and two new chapters on computer simulation methods and the thermodynamics of the early universe. We have also added new sections on chemical and phase equilibrium, and expanded our discussions of correlations and scattering, quantized fields, finite-size effects and the fluctuation-dissipation theorem. We hope this new edition will continue to provide new generations of students with a solid training in the methods of statistical physics. -Bose-Einstein condensation in atomic gases -Thermodynamics of the early universe -Computer simulations: Monte Carlo and molecular dynamics -Correlation functions and scattering -Fluctuation-dissipation theorem and the dynamical structure factor -Chemical equilibrium -Exact solution of the two-dimensional Ising model for finite systems -Degenerate atomic Fermi gases -Exact solutions of one-dimensional fluid models -Interactions in ultracold Bose and Fermi gases -Brownian motion of anisotropic particles and harmonic oscillators 
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700 1 # |a Beale, Paul D. 
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