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Thermal physics concepts: Thermodynamics and Statistical Physics (2nd edition)(Chinese Edition)

BU LONG DAI ER (Stephen J. Blundell)

ISBN 10: 7302294070 / ISBN 13: 9787302294078
Nuevos Condición: New Encuadernación de tapa blanda
Librería: liu xing (JiangSu, JS, China)

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Ship out in 2 business day, And Fast shipping, Free Tracking number will be provided after the shipment.Paperback. Pub Date :2012-08-01 Pages: 493 Publisher: Tsinghua University Press title: the concept of thermal physics: Thermodynamics and Statistical Physics (2nd Edition) List Price: 55.00 yuan Author: Blondel (Stephen J. Blundell) Publisher: Tsinghua University Press Publication Date: August 1. 2012 ISBN: 9787302294078 words: Page: 493 Edition: 1st Edition Binding: Paperback: Weight: 739 g Editor's Choice concept of thermophysical : Thermodynamics and Statistical Physics (2nd edition) as a comprehensive university or normal universities physics and related professional Thermodynamics and Statistical Physics course materials. Executive Summary thermophysical concept: Thermodynamics and Statistical Physics (2nd edition) details some of the main principles of thermodynamics and statistical physics based. and their applications. The book introduces a very clear manner. and discuss some of the core concepts of the thermodynamics and statistical physics. by the very rich examples to illustrate new concepts. methods and principles for the historical background and the discovery process is also made more specific description. Thermal physics concepts: Thermodynamics and Statistical Physics (2nd edition) about the application of the concepts. principles and methods involved in many disciplines such as astrophysics. atmospheric physics. information and communication theory. condensed matter physics. reflects the basic theory and method broad applicability. In addition. the end of each chapter contains a summary-depth study of literature profiles as well as many of the exercises. will help to deepen the understanding of the concepts. principles and methods. Contents Preface 2 Preface I prepared to knowledge 1 Introduction 1.1 What is the mole? The exercises 2 heat heat 2.1 1.2 thermodynamic limit of 1.3 combination of ideal gas 1.4 1.5 book plan definition 2.2 heat capacity 3.4 Variance 3.5 linear transformation and variance 3.6 Exercise 3 probability 3.1 discrete probability distribution 3.2 Continuous Probability Distributions 3.3 linear transformation independent variable 3.7 the binomial distribution FURTHER READING practice temperature and the Boltzmann factor 4.1 heat balance 4.5 4.2 4.3 microstates the macrostate 4.4 temperature statistics thermometer defined ensemble canonical ensemble 4.6 4.7 Boltzmann distribution applications FURTHER READING practice II gas kinetic theory 5 Maxwell-Boltzmann collision cross-section exercises average collision time of the mean free path and collision 8.1 8.2 8.3 average 7.1 current density 7.2 5.2 rate distribution of the velocity distribution of the distribution of 5.1 5.3 experimental validation exercises 6.3 Dolton's law practice 7 6 pressure of 6.1 molecules distributed 6.2 ideal gas law molecular effusion effusion free path III transport and thermal diffusion the 9 gas transport properties of 9.1 sticky 9.2 thermal conductivity of 9.3 heat diffusion equation in practice 10 thermal diffusion equation 10.1 Export 10.2 one-dimensional thermal diffusion equation 10.3 steady-state diffusion 9.4 more detailed theoretical FURTHER READING 10.6 Prandtl number of 10.5 Newton's law of cooling of the the 10.4 ball thermal diffusion equation 10.7 heat source 10.8 particle diffusion exercises the first law energy 11.1 some 12 isothermal process and adiabatic process. the first law of thermodynamics definition 11.2 11.3 heat capacity exercises 12.1 reversibility 12.2 ideal gas isothermal 13.5 thermal expansion of 12.3 adiabatic expansion of an ideal gas 12.4 the adiabatic atmospheric practice second law of 13 heat engines and the second law of 13.1 thermodynamic second law 13.2 Carnot heat engine 13.3 Carnot to Theorem 13.4 Clausius formulation with Kelvin expressed equivalent machine instances 13.6 reverse running hot definition 14.2 13.7 Clausius Theorem FURTHER READING practice 14 Entropy 14.1 Ent. N° de ref. de la librería FT023463

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Título: Thermal physics concepts: Thermodynamics and...

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