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  • 1
    Publication Date: 2011-08-12
    Description: Asymptotic relations between Thomas-Fermi-Dirac and Thomas-Fermi atom models
    Keywords: PHYSICS, ATOMIC, MOLECULAR, AND NUCLEAR
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  • 2
    Publication Date: 2011-08-16
    Description: A theory is developed for the compressibility and transport properties of liquid metallic hydrogen, near to its melting point and under high pressure. The interionic force law is assumed to be of the screened Coulomb type, because hydrogen has no core electrons. The random phase approximation is used to obtain the structure factor S(k) of the system in terms of the Fourier transform of this force law. The long wavelenth limit of the structure factor S(o) is related to the compressibility, which is much lower than that of alkali metals at their melting points. The diffusion constant at the melting point is obtained in terms of the Debye frequency, using a frequency spectrum analogous with the phonon spectrum of a solid. A similar argument is used to obtain the combined shear and bulk viscosities, but these depend also on S(o). The transport coefficients are found to be about the same size as those of alkali metals at their melting points.
    Keywords: MATERIALS, METALLIC
    Type: Univ. Space Res. Assoc. High Pressure Phys. and Planetary Interiors; p 206-209
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  • 3
    Publication Date: 2019-07-12
    Description: The paper presents an explicit expression for the pair potential in liquid simple metals from low-order density-gradient theory when the superposition of single-center displaced charges is employed. Numerical results are presented for the gradient expansion pair interaction in liquid Na and Be. The low-order density-gradient equation for the pair potential is presented.
    Keywords: INORGANIC AND PHYSICAL CHEMISTRY
    Type: Physical Review A (ISSN 1050-2947); 42; 4884-489
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