PACS numbers

61.20.Ne Structure of simple liquids 66.20.+d Viscosity of liquids; diffusive momentum transport
  1. V.N. Mineev, A.I. Funtikov “Viscosity measurements on metal melts at high pressure and viscosity calculations for the earth’s core47 671–686 (2004)
    62.50.+p, 66.20.+d, 81.30.Bx, 91.35.−x (all)
  2. G.N. Sarkisov “Molecular distribution functions of stable, metastable and amorphous classical models45 597–617 (2002)
    05.20.−y, 61.20.Ne, 64.70.Dv, 64.70.Pf (all)
  3. V.V. Brazhkin, A.G. Lyapin “Universal viscosity growth in metallic melts at megabar pressures: the vitreous state of the Earth’s inner core43 493–508 (2000)
    61.25.Mv, 61.43.−j, 62.50.+p, 66.20.+d, 91.35.Ed (all)
  4. G.N. Sarkisov “Approximate equations of the theory of liquids in the statistical thermodynamics of classical liquid systems42 545–561 (1999)
    05.70.−a, 61.20.Gy, 61.20.Ne, 61.25.Em (all)
  5. I.L. Fabelinskii “Macroscopic and molecular shear viscosity40 689–700 (1997)
    61.20.Gy, 61.25.Em, 66.20.+d (all)
  6. G.M. Arutyunyan, V.I. Gol’danskii et alSergei Petrovich D’yakov and his contributions to science36 (9) 858–864 (1993)
    01.60.+q, 62.50.+p, 01.10.Cr, 66.20.+d (all)
  7. I.L. Fabelinskii, S.V. Krivokhizha, L.L. Chaikov “Experimental studies of solutions with a ’double’ critical point29 572–573 (1986)
    66.20.+d, 64.60.Fr (all)
  8. V.N. Pokrovskii “Stresses, viscosity, and optical anisotropy of a Moving suspension of rigid ellipsoids14 737–746 (1972)
    82.70.Kj, 66.20.+d, 47.10.ad, 78.20.Ci (all)
  9. V.B. Deryagin “New Data on Superdense Water13 305–306 (1970)
    66.20.+d, 68.03.Cd, 65.20.+w (all)
  10. I.L. Fabelinskii “Study of the fine structure of the lines of scattered light and the propagation of hypersound8 637–641 (1966)
    78.35.+c, 62.60.+v, 62.65.+k, 66.20.+d (all)
  11. E.I. Zababakhin “Cumulation of energy and its limits8 295–298 (1965)
    47.55.dp, 47.55.dr, 47.40.Nm, 66.20.+d (all)
  12. I.L. Fabelinskii “Some results of the experimental study of the fine structure of Rayleigh scattering lines in liquids of various viscosities5 667–674 (1963)
    78.35.+c, 61.20.−p, 66.20.+d (all)
  13. I.Z. Fisher “Present state of the theory of liquids5 239–250 (1962)
    61.20.Ne, 66.20.+d (all)
  14. V.P. Peshkov, K.N. Zinov’eva “Experimental research with He32 82–118 (1959)
    67.57.−z, 07.20.Mc, 67.80.Gb, 67.80.Jd, 66.20.+d (all)
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