PACS numbers

41.20.Cv Electrostatics; Poisson and Laplace equations, boundary-value problems
  1. S.F. Garanin, S.D. Kuznetsov “Irrotational flow (of a magnetic field or incompressible fluid) around a screen with a slotPhys. Usp. 63 1037–1042 (2020)
    02.30.Em, 41.20.Cv, 41.20.Gz, 47.15.Hg, 47.15.km (all)
  2. G.D. Shabanov “On relation between theoretical and experimental components in the papers on ball lightning (reply to M.L. Shmatov's comments [Usp. Fiz. Nauk 190 107 (2020)] on the paper "On the possibility of making natural ball lightning using a new pulse discharge type in the laboratory" [Phys. Usp. 62 92 (2019); Usp. Fiz. Nauk 189 95 (2019)])Phys. Usp. 63 99–100 (2020)
    01.50.My, 01.55.+b, 05.65.+b, 41.20.Cv, 51.50.+v, 52.80.Mg, 92.60.Pw (all)
  3. G.N. Gaidukov, I.N. Gorbatyy “Electromagnetic analogies in electro- and magnetostatics problemsPhys. Usp. 62 413–420 (2019)
    03.50.De, 41.20.Cv, 41.20.Gz (all)
  4. A.I. Zhakin “Electrohydrodynamics of charged surfacesPhys. Usp. 56 141–163 (2013)
    41.20.Cv, 67.25.−k, 68.03.Hj (all)
  5. R.Z. Muratov “Some useful correspondences in classical magnetostatics, and the multipole representations of the magnetic potential of an ellipsoidPhys. Usp. 55 919–928 (2012)
    41.20.Cv, 41.20.Gz (all)
  6. V.A. Saranin “Electrostatic oscillatorsPhys. Usp. 55 700–708 (2012)
    01.50.Pa, 41.20.Cv, 45.50.−j (all)
  7. V.B. Shikin “Instability and reconstruction of a charged liquid surfacePhys. Usp. 54 1203–1225 (2011)
    41.20.Cv, 67.25.−k, 68.03.Hj (all)
  8. M.Ya. Agre “Multipole expansions in magnetostaticsPhys. Usp. 54 167–180 (2011)
    41.20.Cv, 41.20.Gz (all)
  9. V.A. Saranin, V.V. Mayer “Interaction of two charged conducting balls: theory and experimentPhys. Usp. 53 1067–1074 (2010)
    01.50.My, 01.55.+b, 41.20.Cv (all)
  10. V.P. Kazantsev, O.A. Zolotov, M.V. Dolgopolova “The interaction energy of electric multipoles in a plane and a point-multipole approximation for the electric field of conductorsPhys. Usp. 49 517–522 (2006)
    03.50.De, 41.20.Cv (all)
  11. I.I. Sobel’man, V.N. Sorokin “On experiments in search of the T-odd electric dipole moment of atomic 129XePhys. Usp. 48 939–952 (2005)
    06.20.−f, 11.30.Er, 32.10.Dk, 32.60.+i, 41.20.Cv (all)
  12. E.V. Kholopov “Convergence problems of Coulomb and multipole sums in crystalsPhys. Usp. 47 965–990 (2004)
    41.20.Cv, 61.50.Lt, 75.10.−b, 81.40.Rs (all)
  13. V.A. Saranin “Electric field strength of charged conducting balls and the breakdown of the air gap between themPhys. Usp. 45 1287–1292 (2002)
    41.20.Cv, 52.80.−s (all)
  14. V.P. Kazantsev “An example illustrating the potentiality and peculiarities of a variational approach to electrostatic problemsPhys. Usp. 45 325–330 (2002)
    03.50.De, 41.20.Cv (all)
  15. V.A. Saranin “On the interaction of two electrically charged conducting ballsPhys. Usp. 42 385–390 (1999)
    41.20.Cv
  16. M.L. Martinson, A.V. Nedospasov “On the charge density inside a conductor carrying a currentPhys. Usp. 36 (1) 23–24 (1993)
    41.20.Cv
  17. L.N. Kryzhanovskii “Pieter van Musschenbroek (on the tercentenary of his birth)Sov. Phys. Usp. 34 (3) 265–268 (1991)
    01.60.+q, 41.20.Cv, 41.20.Gz (all)
  18. M.A. Miller “Charge and current electrostatics. Nonstationary sources of static fieldsSov. Phys. Usp. 27 69–75 (1984)
    41.20.Cv
  19. L.N. Kaptsov “Lecture demonstration of ponderomotive forces in electrostatics with the aid of a soap filmSov. Phys. Usp. 6 324–324 (1963)
    47.55.D−, 41.20.Cv (all)
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