Thermodynamics of fluids for imperfect gases with Lennard-Jones interaction potential. I.
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Publication:1048603
DOI10.1134/S0001434609090296zbMath1181.82065WikidataQ126261701 ScholiaQ126261701MaRDI QIDQ1048603
Publication date: 12 January 2010
Published in: Mathematical Notes (Search for Journal in Brave)
Statistical mechanics of polymers (82D60) Statistical mechanics of liquids (82D15) Continuum models (systems of particles, etc.) arising in equilibrium statistical mechanics (82B21) Statistical mechanics of gases (82D05)
Related Items (12)
Mathematical aspects of integral optics. ⋮ Thermodynamics of fluids for imperfect gases with Lennard-Jones interaction potential. II: Law of redestribution of energies ⋮ Existence theorem of the critical isotherm in mathematical linguistics ⋮ Phase transitions in real gases and ideal Bose gases ⋮ Undistinguishing statistics of objectively distinguishable objects: thermodynamics and superfluidity of classical gas ⋮ Thermodynamics of fluids for imperfect gases with Lennard-Jones interaction potential. III ⋮ The \(\lambda \)-point in helium-4 and nonholonomic clusters ⋮ Comparison of the supercritical states of fluids for imperfect gases and for a fractal ideal gas ⋮ Mixture of new ideal gases and the solution of the Gibbs and Einstein paradoxes ⋮ Gibbs paradox, liquid phase as an alternative to the Bose condensate, and homogeneous mixtures of new ideal gases ⋮ Tropical mathematics and the financial catastrophe of the 17th century. Thermoeconomics of Russia in the early 20th century ⋮ Fluid thermodynamics, energy redistribution law, two-dimensional condensate, and \(T\) map
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- Theory of chaos and its application to the crisis of debts and the origin of inflation
- On the \(\lambda \)-point for classical gases and superfluidity in nanotubes
- Nonlinear averages in economics
- Probability and Finance
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