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Vodinchar Gleb Mikhailovich

Publications in Math-Net.Ru

  1. Some methods of additional processing of gpr data on the example of radargrams obtained in the crater of the gorely volcano (Kamchatka)

    Vestnik KRAUNC. Fiz.-Mat. Nauki, 44:3 (2023),  173–194
  2. Elimination of the integral term in the equations of one hereditary system related to the hydromagnetic dynamo

    Vestnik KRAUNC. Fiz.-Mat. Nauki, 42:1 (2023),  180–190
  3. Construction of complex shell models of turbulent systems by computer algebra methods

    Vestnik KRAUNC. Fiz.-Mat. Nauki, 41:4 (2022),  9–31
  4. Criteria for the stress-strain state of the medium and the power law of relaxation

    Vestnik KRAUNC. Fiz.-Mat. Nauki, 2018, no. 4(24),  90–96
  5. Reversal of magnetic field in the dynamic system with stochastic $\alpha\Omega$-generators

    Vestnik KRAUNC. Fiz.-Mat. Nauki, 2017, no. 4(20),  76–82
  6. Detection of the whistlers in the VlF-spectrograms

    Vestnik KRAUNC. Fiz.-Mat. Nauki, 2016, no. 4(15),  43–48
  7. Reversals of the magnetic field in one low-dimensional $\alpha\Omega$-dynamo model

    Vestnik KRAUNC. Fiz.-Mat. Nauki, 2016, no. 4(15),  17–23
  8. About Painleve property of a hydrodynamic system

    Vestnik KRAUNC. Fiz.-Mat. Nauki, 2016, no. 3(14),  29–33
  9. Reversals in the six-jet geodynamo model

    Vestnik KRAUNC. Fiz.-Mat. Nauki, 2016, no. 3(14),  23–28
  10. Solutions of mathematical olympiad «Vitus Bering - 2016»

    Vestnik KRAUNC. Fiz.-Mat. Nauki, 2016, no. 2(13),  73–78
  11. Solutions of mathematical olympiad «Vitus Bering - 2015»

    Vestnik KRAUNC. Fiz.-Mat. Nauki, 2015, no. 2(11),  96–101
  12. Painlevé test of a magnetohydrodynamics system

    Vestnik KRAUNC. Fiz.-Mat. Nauki, 2015, no. 2(11),  61–66
  13. Reversal of magnetic field in the large-scale $\alpha\Omega$-dinamo

    Vestnik KRAUNC. Fiz.-Mat. Nauki, 2015, no. 2(11),  55–60
  14. Reversals in the 6-cells convection driven

    Vestnik KRAUNC. Fiz.-Mat. Nauki, 2015, no. 2(11),  45–54
  15. Manifestation of the worlds’s centers of lightning activity In the whistler in Kamchatka

    Vestnik KRAUNC. Fiz.-Mat. Nauki, 2014, no. 2(9),  44–52
  16. Modeling inversions within low-mode model of large-scale dynamo

    Vestnik KRAUNC. Fiz.-Mat. Nauki, 2014, no. 2(9),  23–29
  17. Correlation analysis of streams of whistlers and lightnings

    Vestnik KRAUNC. Fiz.-Mat. Nauki, 2013, no. 2(7),  59–67
  18. Using modes of free oscillation of a rotating viscous fluid in the large-scale dinamo

    Vestnik KRAUNC. Fiz.-Mat. Nauki, 2013, no. 2(7),  33–42
  19. Characteristics of an algoritm for non-stationary Poisson process estimation

    Vestnik KRAUNC. Fiz.-Mat. Nauki, 2012, no. 1(4),  11–17
  20. Numerical simulation in low moded geodynamo model applying the packages of high precision calculation

    Vestnik KRAUNC. Fiz.-Mat. Nauki, 2011, no. 2(3),  89–95
  21. Orthogonal solutions of a spectral problem in the class of poloidal field

    Vestnik KRAUNC. Fiz.-Mat. Nauki, 2011, no. 1(2),  26–31
  22. Basic systems for the geomagnetic field

    Vestnik KRAUNC. Fiz.-Mat. Nauki, 2010, no. 1(1),  24–30
  23. Model of convection in a rotating spherical layer

    Matem. Mod., 21:7 (2009),  121–128
  24. Geoacoustic emission's zones modeling

    Matem. Mod., 19:11 (2007),  59–64


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