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March 1, 1954The Journal of Chemical Physics

Markoff Random Processes and the Statistical Mechanics of Time-Dependent Phenomena. II. Irreversible Processes in Fluids

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Authors

MGMelville S. GreenUniversity of Maryland, College Park

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Implication

Randomized trial investigates irreversible processes in fluids, suggesting relationships between measurable properties.

Key Points

  • The study aims to apply previous methodologies to understand irreversible processes in fluids using statistical mechanics.
  • Applied methodologies from a prior study to analyze irreversible processes in fluids.
  • Identified gross variables based on plane-wave expansion coefficients of particle densities.
  • Derived phenomenological equations for viscosity, diffusion, and heat conductivity.
  • Derived expressions for viscosity, diffusion, and heat conductivity in terms of autocorrelation coefficients.
  • Results align with Chapman-Enskog expressions for dilute gases, validating the approach.
  • Expressed findings applicable to both liquids and gases.

Cite This Study

Melville S. Green (1954) studied this question.

synapsesocial.com/papers/69d90e60cc20f7a91c3aff00https://doi.org/10.1063/1.1740082
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Also Consider

Synapse has enriched 4 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1The Statistical Mechanical Theory of Transport Processes. IV. The Equations of Hydrodynamics1950 · 2,561 citations
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  3. 3The Statistical Mechanical Theory of Transport Processes I. General Theory1946 · 1,167 citations
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