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  1. International Journal of Thermophysics
  2. International Journal of Thermophysics : Volume 22
  3. International Journal of Thermophysics : Volume 22, Issue 1, January 2001
  4. Fluctuation Theorem for Heat Flow
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International Journal of Thermophysics : Volume 38
International Journal of Thermophysics : Volume 37
International Journal of Thermophysics : Volume 36
International Journal of Thermophysics : Volume 35
International Journal of Thermophysics : Volume 34
International Journal of Thermophysics : Volume 33
International Journal of Thermophysics : Volume 32
International Journal of Thermophysics : Volume 31
International Journal of Thermophysics : Volume 30
International Journal of Thermophysics : Volume 29
International Journal of Thermophysics : Volume 28
International Journal of Thermophysics : Volume 27
International Journal of Thermophysics : Volume 26
International Journal of Thermophysics : Volume 25
International Journal of Thermophysics : Volume 24
International Journal of Thermophysics : Volume 23
International Journal of Thermophysics : Volume 22
International Journal of Thermophysics : Volume 22, Issue 6, November 2001
International Journal of Thermophysics : Volume 22, Issue 5, September 2001
International Journal of Thermophysics : Volume 22, Issue 4, July 2001
International Journal of Thermophysics : Volume 22, Issue 3, May 2001
International Journal of Thermophysics : Volume 22, Issue 2, March 2001
International Journal of Thermophysics : Volume 22, Issue 1, January 2001
Preface ( International Journal of Thermophysics , Volume 22 , Issue 1 )
The Laboratory Founded by Van der Waals
What is Different in Mixtures? From Critical Point to High Pressures
Viscosity and Surface Tension of Saturated Toluene from Surface Light Scattering (SLS)
Viscosity of Natural-Gas Mixtures: Measurements and Prediction
Viscosity Prediction for Natural Gas Mixtures
Critical Frequency Dependence of the Shear Viscosity
Ion Solvation in Water–Acetonitrile Mixtures
Simulating Retention in Gas–Liquid Chromatography: Benzene, Toluene, and Xylene Solutes
Fluctuation Theorem for Heat Flow
Nonequilibrium Molecular Dynamics Studies of Heat Flow in One-Dimensional Systems
The Zeno (Z=1) Behavior of Water: A Molecular Simulation Study
A Molecular Dynamics Simulation Study of the Self-Diffusion Coefficient and Viscosity of the Lennard–Jones Fluid
Correlations in Interfaces with Surfactants
Isochoric Heat Capacity Measurements for Light and Heavy Water Near the Critical Point
Thermophysical Properties of Ammonia–Water Mixtures for Prediction of Heat Transfer Areas in Power Cycles
TRC SOURCE Database: A Unique Tool for Automatic Production of Data Compilations
Window-Based Applications of TRC Databases: Structure and Internet Distribution
Impact of Experimental Timescale and Geometry on Thin-Film Thermal Property Measurements
Theory of Thermal Conduction in Thin Ceramic Films
Anisotropic Thermal Properties of Solid Polymers
Thermal Diffusivity Measurement of High-Conductivity Materials by Dynamic Grating Radiometry
Measurement of the Thermal Diffusivity of an Anisotropic Graphite Sheet Using a Laser-Heating AC Calorimetric Method
Announcement: SIXTH ASIAN THERMOPHYSICAL PROPERTIES CONFERENCE ( International Journal of Thermophysics , Volume 22 , Issue 1 )
Announcement: SIXTH INTERNATIONAL WORKSHOP ON SUBSECOND THERMOPHYSICS ( International Journal of Thermophysics , Volume 22 , Issue 1 )
Announcement: SECOND INTERNATIONAL WORKSHOP ON THERMOCHEMICAL, THERMODYNAMIC, AND TRANSPORT PROPERTIES OF HALOGENATED HYDROCARBONS AND MIXTURES
International Journal of Thermophysics : Volume 21
International Journal of Thermophysics : Volume 20
International Journal of Thermophysics : Volume 19
International Journal of Thermophysics : Volume 18

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Fluctuation Theorem for Heat Flow

Content Provider Springer Nature Link
Author Searles, D. J. Evans, D. J.
Copyright Year 2001
Abstract Thermal conduction in a classical many-body system which is in contact with two isothermal reservoirs maintained at different temperatures is considered. The probability that when observed for a finite time, the heat flux of a finite system flows in the reverse direction to that required by the Second Law of Thermodynamics is calculated from first principles. Analytical expressions are given for the probability of observing Second Law violating fluctuations in this system. These expressions constitute an application of the fluctuation theorem to the problem of thermal conduction. The expressions are tested using nonequilibrium molecular dynamics simulations of heat flow between thermostated walls.
Starting Page 123
Ending Page 134
Page Count 12
File Format PDF
ISSN 0195928X
Journal International Journal of Thermophysics
Volume Number 22
Issue Number 1
e-ISSN 15729567
Language English
Publisher Kluwer Academic Publishers-Plenum Publishers
Publisher Date 2001-01-01
Publisher Place New York
Access Restriction One Nation One Subscription (ONOS)
Subject Keyword Physical Chemistry Industrial Chemistry/Chemical Engineering Mechanics Condensed Matter
Content Type Text
Resource Type Article
Subject Condensed Matter Physics
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