T-theoreticity of the single-case propensity conception of probability.

1985
Grünberg, David

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In this study we obtain a T-P phase diagram of ice using the mean-field theory. We fit our calculated phase line equations to the experimental T-P phase diagram. By choosing appropriately the coefficients in the free-energy expansions, our calculated phase diagram agrees well with the experimentally observed phase diagram of ice. Some thermodynamic functions are calculated using the free energy for the transitions studied here.
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By employing a mean field model, calculation of the T-P phase diagram of molecular nitrogen is performed at high pressures up to 200 GPa. Experimental data from the literature are used to fit a quadratic function in T and P, describing the phase line equations which have been derived using the mean field model studied here for N-2, and the fitted parameters are determined. Our model study gives that the observed T-P phase diagram can be described satisfactorily for the first-order transitions between the ph...
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Using the mean field theory, we obtain the phase line equations for the liquid-solid I, liquid-solid II and solid I-solid II transitions in (NH4)(2)SO4/H2O. We fit our phase line equations to the experimental T-X phase diagram of this system. Thus, we are able to obtain the temperature and concentration dependencies of the order parameters and the free energies in this system.
Citation Formats
D. Grünberg, “T-theoreticity of the single-case propensity conception of probability.,” Middle East Technical University, 1985.