Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Statistical Physics and Thermodynamics

View through CrossRef
Statistical physics and thermodynamics describe the behaviour of systems on the macroscopic scale. Their methods are applicable to a wide range of phenomena: from heat engines to chemical reactions, from the interior of stars to the melting of ice. Indeed, the laws of thermodynamics are among the most universal ones of all laws of physics. Yet this subject can prove difficult to grasp. Many view thermodynamics as merely a collection of ad hoc recipes, or are confused by unfamiliar novel concepts, such as the entropy, which have little in common with the theories to which students have got accustomed in other areas of physics. This text provides a concise yet thorough introduction to the key concepts which underlie statistical physics and thermodynamics. It begins with a review of classical probability theory and quantum theory, as well as a careful discussion of the notions of information and entropy, prior to embarking on the development of statistical physics proper. The crucial steps leading from the microscopic to the macroscopic domain are rendered transparent. In particular, the laws of thermodynamics are shown to emerge as natural consequences of the statistical framework. While the emphasis is on clarifying the basic concepts, the text also contains many applications and classroom-tested exercises, covering all major topics of a standard course on statistical physics and thermodynamics. The text is suited both for a one-semester course at the advanced undergraduate or beginning graduate level and as a self-contained tutorial guide for students in physics, chemistry, and engineering.
Oxford University Press
Title: Statistical Physics and Thermodynamics
Description:
Statistical physics and thermodynamics describe the behaviour of systems on the macroscopic scale.
Their methods are applicable to a wide range of phenomena: from heat engines to chemical reactions, from the interior of stars to the melting of ice.
Indeed, the laws of thermodynamics are among the most universal ones of all laws of physics.
Yet this subject can prove difficult to grasp.
Many view thermodynamics as merely a collection of ad hoc recipes, or are confused by unfamiliar novel concepts, such as the entropy, which have little in common with the theories to which students have got accustomed in other areas of physics.
This text provides a concise yet thorough introduction to the key concepts which underlie statistical physics and thermodynamics.
It begins with a review of classical probability theory and quantum theory, as well as a careful discussion of the notions of information and entropy, prior to embarking on the development of statistical physics proper.
The crucial steps leading from the microscopic to the macroscopic domain are rendered transparent.
In particular, the laws of thermodynamics are shown to emerge as natural consequences of the statistical framework.
While the emphasis is on clarifying the basic concepts, the text also contains many applications and classroom-tested exercises, covering all major topics of a standard course on statistical physics and thermodynamics.
The text is suited both for a one-semester course at the advanced undergraduate or beginning graduate level and as a self-contained tutorial guide for students in physics, chemistry, and engineering.

Related Results

Preface
Preface
Abstract The 18th IUPAC International Conference on Chemical Thermodynamics (ICCT-2004), concurrent with the 12th National Conference on Chemical Thermodynamics and ...
Preface
Preface
Abstract The 19th International Conference on Chemical Thermodynamics (ICCT-19) took place as part of THERMO International 2006, together with the 16th Symposium on ...
Modified Friedmann equations and fractal Black Hole thermodynamics
Modified Friedmann equations and fractal Black Hole thermodynamics
The general relativity unification and quantum theory is a significant open problem in theoretical physics. This problem arises from the fact that these two fundamental theories, w...
FAIR Digital Objects in Official Statistics
FAIR Digital Objects in Official Statistics
Introduction*1 Statistical offices on national and international scale provide statistics on demography, labour, income, society, economy, environment and othe...
RELATIONSHIP OF NON-EQUILIBRIUM THERMODYNAMICS IN THE HETEROGENEOUS PERMEABLE THERMOELEMENTS
RELATIONSHIP OF NON-EQUILIBRIUM THERMODYNAMICS IN THE HETEROGENEOUS PERMEABLE THERMOELEMENTS
A significant number of thermoelectric processes are described with fundamental law of thermodynamics. This paper describes thermoelectric processes in the permea...
Thermodynamics—A Model Subject
Thermodynamics—A Model Subject
The teaching of thermodynamics, not to mention the writing of a book on thermodynamics, presents a great challenge for anyone foolhardy enough to undertake it. How to present the s...
Information and thermodynamics
Information and thermodynamics
(English) The modern understanding of physics is deeply linked with the concept of information. The revival of the study of quantum mechanics in the form of quantum information is ...

Back to Top