PACS numbers

47.20.−k Flow instabilities 47.27.wj Turbulent mixing layers 47.40.−x Compressible flows; shock waves
  1. I.S. Aranson “Topological defects in active liquid crystals62 892–909 (2019)
    42.70.Df, 47.20.−k, 47.63.Gd (all)
  2. E.P. Kurbatov, D.V. Bisikalo, P.V. Kaygorodov “On the possible turbulence mechanism in accretion disks in nonmagnetic binary stars57 787–798 (2014)
    47.20.−k, 47.27.−i, 95.30.Lz (all)
  3. Celebrating the 65th anniversary of the Russian Federal Nuclear Center — All-Russian Research Institute of Experimental Physics (Scientific session of the Physical Sciences Division of the Russian Academy of Sciences, 6 October 2010)54 387–427 (2011)
    01.10.Fv, 01.65.+g, 05.70.Ce, 07.35.+k, 07.55.Db, 28.52.−s, 28.70.+y, 42.55.−f, 42.62.−b, 47.20.−k, 47.27.wj, 47.40.−x, 52.57.−z, 61.05.C−, 64.30.−t, 74.25.−q, 84.30.Ng, 84.70.+p, 85.70.−w (all)
  4. A.L. Mikhailov, N.V. Nevmerzhitskii, V.A. Raevskii “Hydrodynamic instabilities54 392–397 (2011)
    47.20.−k, 47.27.wj, 47.40.−x (all)
  5. R.F. Trunin “Extreme states of metals: investigation using shock wave techniques54 397–403 (2011)
    05.70.Ce, 07.35.+k, 47.40.−x (all)
  6. A.M. Podurets “Pulsed X-ray diffraction structure study of shocked materials54 408–414 (2011)
    07.35.+k, 47.40.−x, 61.05.C− (all)
  7. A.M. Fridman “Prediction and discovery of extremely strong hydrodynamic instabilities due to a velocity jump: theory and experiments51 213–229 (2008)
    47.20.−k, 47.80.−v, 98.52.Nr (all)
  8. E.N. Avrorin, V.A. Simonenko, L.I. Shibarshov “Physics research during nuclear explosions49 432–437 (2006)
    01.10.Fv, 28.70.+y, 47.40.−x, 62.50.+p (all)
  9. B.A. Klumov, V.V. Kim et alDeep Impact experiment: possible observable effects48 733–742 (2005)
    47.40.−x, 62.50.+p, 82.20.Wt, 96.35.−j, 96.50.Gn (all)
  10. L.V. Al’tshuler, R.F. Trunin et alDevelopment of dynamic high-pressure techniques in Russia42 261–280 (1999)
    28.70.+y, 47.40.−x, 62.20.Fe (all)
  11. L.P. Feoktistov “Thermonuclear detonation41 1139–1147 (1998)
    44.90.+c, 47.40.−x (all)
  12. A.I. Funtikov “Explosive laboratory devices for the measurement of the dynamic compressibility of porous substances in the pressure range from 0.1 to 1 TPa40 1067–1068 (1997)
    28.70.+y, 47.40.−x, 62.20.Fe (all)
  13. L.V. Al’tshuler, Ya.B. Zel’dovich, Yu.M. Styazhkin “Investigation of isentropic compression and equations of state of fissionable materials40 101–102 (1997)
    01.60.+q, 28.70.+y, 47.40.−x (all)
  14. A.I. Osipov, A.V. Uvarov “Stability problems in a nonequilibrium gas39 597–608 (1996)
    47.20.−k, 51.90.+r (all)
  15. L.V. Al’tshuler, R.F. Trunin et alExplosive laboratory devices for shock wave compression studies39 539–544 (1996)
    28.70.+y, 47.40.−x, 62.20.Fe (all)
  16. E.D. Eidel’man “Excitation of an electric instability by heating38 1231–1246 (1995)
    44.25.+f, 47.20.−k, 47.65.+a (all)
  17. A.M. Fridman “Modified criterion for the Landau stabilization of the instability of a tangential velocity discontinuity in a compressible medium33 (10) 865–867 (1990)
    47.20.−k, 47.40.Dc, 47.40.Ki, 47.10.A− (all)
  18. N.M. Kuznetsov “Stability of shock waves32 993–1012 (1989)
    47.40.Nm, 47.20.−k (all)
  19. V.B. Baranov, B.V. Bunkin et alGeorgii Ivanovich Petrov (Obituary)30 918–919 (1987)
    01.60.+q, 47.20.−k (all)
  20. A.G. Merzhanov, É.N. Rumanov “Nonlinear effects in macroscopic kinetics30 293–316 (1987)
    47.35.Fg, 47.70.Pq, 82.33.Vx, 47.20.−k (all)
  21. A.S. Monin “Hydrodynamic instability29 843–868 (1986)
    47.20.−k, 47.85.Dh (all)
  22. A.V. Timofeev “Oscillations of inhomogeneous flows of plasma and liquids13 632–646 (1971)
    52.30.−q, 52.35.Py, 47.20.−k, 47.10.ab, 52.65.Vv (all)
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