PACS numbers

44.25.+f Natural convection
  1. A.N. Vulfson, O.O. Borodin “The system of convective thermals as a generalized ensemble of Brownian particlesPhys. Usp. 59 109–120 (2016)
    05.10.Gg, 05.40.Jc, 44.25.+f, 92.60.Fm, 92.60.hk (all)
  2. B.Ya. Shmerlin, M.V. Kalashnik “Rayleigh convective instability in the presence of phase transitions of water vapor. The formation of large-scale eddies and cloud structuresPhys. Usp. 56 473–485 (2013)
    44.25.+f, 47.20.Bp, 47.27.De, 47.55.P−, 92.60.Ox, 92.60.Qx (all)
  3. L.Kh. Ingel, M.V. Kalashnik “Nontrivial features in the hydrodynamics of seawater and other stratified solutionsPhys. Usp. 55 356–381 (2012)
    44.25.+f, 47.20.Bp, 47.20.Dr, 47.54.Bd, 47.55.−t, 92.10.−c (all)
  4. L.A. Bol’shov, P.S. Kondratenko, V.F. Strizhov “Natural convection in heat-generating fluidsPhys. Usp. 44 999–1016 (2001)
    28.90.+t, 44.25.+f
  5. R.Kh. Zeytounian “The Benard-Marangoni thermocapillary-instability problemPhys. Usp. 41 241–267 (1998)
    44.25.+f, 44.30.+v, 47.10.+g, 47.27.+i (all)
  6. L.Kh. Ingel’ “Self-action of a heat-releasing admixture in a liquid mediumPhys. Usp. 41 95–99 (1998)
    44.25.+f, 47.27.+i
  7. L.Kh. Ingel’ “’Anticonvection’Phys. Usp. 40 741–745 (1997)
    44.25.+f, 47.20.Bp (all)
  8. E.D. Eidel’man “Excitation of an electric instability by heatingPhys. Usp. 38 1231–1246 (1995)
    44.25.+f, 47.20.−k, 47.65.+a (all)
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