Description

Book Synopsis
The science of statistical mechanics is concerned with defining the thermodynamic properties of a macroscopic sample in terms of the properties of the microscopic systems of which it is composed. The aim of this book is to provide a clear, logical, and self-contained treatment of equilibrium statistical mechanics starting from Boltzmann's two statistical assumptions, and to present a wide variety of applications to diverse physical assemblies. The coverage is enhanced and extended through an extensive set of accessible problems. An appendix provides an introduction to non-equilibrium statistical mechanics through the Boltzmann equation and its extensions. The book assumes introductory courses in classical and quantum mechanics, as well as familiarity with multi-variable calculus and the essentials of complex analysis. Some knowledge of thermodynamics is assumed, although the book starts with an appropriate review of that topic. The targeted audience is first-year graduate students, and advanced undergraduates, in physics, chemistry, and the related physical sciences. The goal of this text is to help the reader obtain a clear working knowledge of the very useful and powerful methods of equilibrium statistical mechanics and to enhance the understanding and appreciation of the more advanced texts.

Table of Contents
Introduction; The Microcanonical Ensemble; Applications of the Microcanonical Ensemble; The Canonical Ensemble; Applications of the Canonical Ensemble; The Grand Canonical Ensemble; Applications of the Grand Canonical Ensemble; Special Topics; Problems.

Introduction To Statistical Mechanics

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    A Hardback by John Dirk Walecka

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      View other formats and editions of Introduction To Statistical Mechanics by John Dirk Walecka

      Publisher: World Scientific Publishing Co Pte Ltd
      Publication Date: 18/08/2011
      ISBN13: 9789814366205, 978-9814366205
      ISBN10: 981436620X

      Description

      Book Synopsis
      The science of statistical mechanics is concerned with defining the thermodynamic properties of a macroscopic sample in terms of the properties of the microscopic systems of which it is composed. The aim of this book is to provide a clear, logical, and self-contained treatment of equilibrium statistical mechanics starting from Boltzmann's two statistical assumptions, and to present a wide variety of applications to diverse physical assemblies. The coverage is enhanced and extended through an extensive set of accessible problems. An appendix provides an introduction to non-equilibrium statistical mechanics through the Boltzmann equation and its extensions. The book assumes introductory courses in classical and quantum mechanics, as well as familiarity with multi-variable calculus and the essentials of complex analysis. Some knowledge of thermodynamics is assumed, although the book starts with an appropriate review of that topic. The targeted audience is first-year graduate students, and advanced undergraduates, in physics, chemistry, and the related physical sciences. The goal of this text is to help the reader obtain a clear working knowledge of the very useful and powerful methods of equilibrium statistical mechanics and to enhance the understanding and appreciation of the more advanced texts.

      Table of Contents
      Introduction; The Microcanonical Ensemble; Applications of the Microcanonical Ensemble; The Canonical Ensemble; Applications of the Canonical Ensemble; The Grand Canonical Ensemble; Applications of the Grand Canonical Ensemble; Special Topics; Problems.

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