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  1. International Journal of Thermophysics
  2. International Journal of Thermophysics : Volume 28
  3. International Journal of Thermophysics : Volume 28, Issue 2, April 2007
  4. Debye Fluid State Equation
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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 28, Issue 6, December 2007
International Journal of Thermophysics : Volume 28, Issue 5, October 2007
International Journal of Thermophysics : Volume 28, Issue 4, August 2007
International Journal of Thermophysics : Volume 28, Issue 3, June 2007
International Journal of Thermophysics : Volume 28, Issue 2, April 2007
Preface ( International Journal of Thermophysics , Volume 28 , Issue 2 )
Thermophysical Property Measurements: The Journey from Accuracy to Fitness for Purpose
Debye Fluid State Equation
Force Transmission Errors in Magnetic Suspension Densimeters
Thermophysical Properties of a Refrigerant Mixture of R365mfc (1,1,1,3,3-Pentafluorobutane) and Galden$^{®}$ HT 55 (Perfluoropolyether)
Measurements of Specific Heat Capacity of Gaseous R-143a Using a Flow Calorimeter
Solubility of Hydrogen Sulfide in [bmim][PF$_{6}$]
Measurements of the Thermal Conductivity of Molten Lead Using a New Transient Hot-Wire Sensor
Corresponding-States Analysis of the Surface Tension of Simple, Polar, and Ionic Fluids
Sequential Metropolis Algorithms for Fluid Simulations
Solvation Structure of Ions in Water
Normalized Free Energy and Normalized Entropy Applied to Some Lambda (λ) Transitions
First-Principles Calculation of the Air–Water Second Virial Coefficient
Use of a High-Temperature Integrating Sphere Reflectometer for Surface-Temperature Measurements
Temperature-Resolved Infrared Spectral Emissivity of SiC and Pt–10Rh for Temperatures up to 900°C
Radiative Properties of Gold Surfaces with One-Dimensional Microscale Gaussian Random Roughness
Dielectric Spectroscopy of Water Confined Between Aerosil Nanoparticles and in Vycor Nanoporous Glass
Johnson Noise Thermometry near the Zinc Freezing Point Using Resistance-Based Scaling
Factors Affecting the Coverage Dependence of the Diffusivity of One Metal over the Surface of Another
Evaluation of Thermal Conductivity of Hyperstoichiometric UO$_{2+x }$ by Molecular Dynamics Simulation
Measurement of Selected Thermophysical Properties of the NPL Certified Reference Material Stainless Steel 310
Radiance Temperature and Normal Spectral Emittance (in the Wavelength Range of 1.5 to 5 μm) of Nickel at its Melting Point by a Pulse-Heating Technique
Thermophysical Properties and Normal Spectral Emittance of Iridium up to 3500 K
Thermal Diffusivity of the Aluminum Alloy Al–17Si–4Cu (A390) in the Solid and Liquid States
Liquid–Liquid Interfacial Tension in Ternary Monotectic Alloys Al–Bi–Cu and Al–Bi–Si
Surface Position-Resolved Thermophysical Properties for Metallic Alloys
International Journal of Thermophysics : Volume 28, Issue 1, February 2007
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 21
International Journal of Thermophysics : Volume 20
International Journal of Thermophysics : Volume 19
International Journal of Thermophysics : Volume 18

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Debye Fluid State Equation

Content Provider Springer Nature Link
Author Arp, V. Huang, Y. H. Radebaugh, R. Chen, G. B.
Copyright Year 2007
Abstract A new form of a fluid state equation, based on a conceptual extrapolation from the Debye equation for the specific heat of solid materials is described. The Debye characteristic temperature, Θ, which is nominally a constant for solids, becomes a function of the fluid density ρ. Further assuming $${\Theta = c_{1}\rho^{2/3}(1 + c_{2} \rho + c_{3} \rho ^{2} + {\cdots})}$$ yields the conventional fluid virial equation in the high-T and low-ρ limits for a monatomic fluid. Additional terms must be added to describe (a) the compressibility of the dense subcooled fluid and (b) properties in the near-critical range. Discussion of the Gruneisen parameter and other factors is included. This Debye fluid theory was used as a state equation for $^{3}$He, continuous from 0.005 K to above room temperature.
Starting Page 417
Ending Page 428
Page Count 12
File Format PDF
ISSN 0195928X
Journal International Journal of Thermophysics
Volume Number 28
Issue Number 2
e-ISSN 15729567
Language English
Publisher Kluwer Academic Publishers-Plenum Publishers
Publisher Date 2007-01-05
Publisher Place New York
Access Restriction One Nation One Subscription (ONOS)
Subject Keyword Debye theory helium isotope specific heat state equation Physical Chemistry Industrial Chemistry/Chemical Engineering Mechanics Condensed Matter
Content Type Text
Resource Type Article
Subject Condensed Matter Physics
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