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- W2040818889 abstract "Model solutions of nondegenerate Fermi-Dirac systems in Bose-Einstein liquids, as proposed previously by Heer and Daunt, are discussed. A discussion is given of the physical basis for the excess partial vapor pressure of the F --- D component, which is shown to be due to the degeneracy of the B --- E liquid. The theory is applied to solutions of ${mathrm{He}}^{3}$ in liquid ${mathrm{He}}^{4}$, and a tentative explanation is given for the empirical hypothesis proposed by Taconis in accounting for the observed partial vapor pressures of such solutions. The results of computations of the distribution coefficient $frac{{C}_{v}}{{C}_{L}}$ and the total vapor pressure for strong solutions of ${mathrm{He}}^{3}$ in liquid ${mathrm{He}}^{4}$ are presented, these computations having been made using (a) the laws for perfect classical solutions, (b) the theory of Heer and Daunt, and (c) the theory of de Boer and Gorter. A comparison with the experimental values of $frac{{C}_{v}}{{C}_{L}}$ and of total vapor pressures for strong solutions is given, and it is deduced that the Heer and Daunt model of a quantum solution is in good agreement with the observations at temperatures below about 1.8ifmmode^circelsetextdegreefi{}K and that above this temperature the model gives qualitatively the correct trend but that owing to vapor imperfections exact numerical agreement cannot be expected." @default.
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- W2040818889 date "1952-06-15" @default.
- W2040818889 modified "2023-09-27" @default.
- W2040818889 title "Further Considerations Regarding the Theory of Bose-Einstein Liquids" @default.
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- W2040818889 doi "https://doi.org/10.1103/physrev.86.911" @default.
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