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1Shuvalov VA, 2Priymak AI, 3Gubin VV. Simulation of radiative electrization of spacecraft in the ionosphere and magnetosphere. Kosm. nauka tehnol. 1998 ;4(5):28–35.
1Shuvalov VA, 1Tokmak NA, 1Pismennyi NI, 2Kochubey GS. Synergetic effect of atomic oxygen flow and vacuum ultraviolet flux on spacecraft polyimide films. Kosm. nauka tehnol. 2012 ;18(3):10–19.
1Shuvalov VA, 2Bandel KA, 2Priymak AI, 2Kochubey GS. Magnetohydrodynamic deceleration of «magnetized» planets in solar wind plasma. Kosm. nauka tehnol. 2009 ;15(6):03-13.
1Shuvalov VA, 1Kulagin SN, 2Kochubei GS, 1Tokmak NA. Simulation of effects of the MHD-interaction of bodies with the Earth’s atmosphere in a rarified plasma flow. Kosm. nauka tehnol. 2011 ;17(5):29-39.
1Shuvalov VA, 1Tokmak NA, 2Tsokur AG, 3Kochubey GS. Dynamic interaction of a spacecraft with rarefied plasma in motion under a “magnetic sail”. Kosm. nauka tehnol. 2014 ;20(3):14-21.
1Shuvalov VA, 2Korepanov VE, 2Lukenyuk AA, 1Tokmak NA, 3Kochubey GS. Modeling of probe measurements of plasma environment parameters onboard the spacecraft «Sich-2». Kosm. nauka tehnol. 2012 ;18(6):05–13.
1Shuvalov VA, 2Simanov VG, 3Horolsky PG, 1Kulagin SN. Deceleration of an artificially magnetized spacecraft in the ionospheric plasma. Space Science and Technology. 2020 ;26(2):59-71.
1Shuvalov VA, 1Kuchugurnyi Yu.P. Experimental substantiation of effectiveness of conception of artificial mini-magnetosphere as a means of spacecraft motion controlling in the Earth ionosphere. Space Science and Technology. 2018 ;24(2):43-46.
1Shuvalov VA. Proposals for the ISS: «Diagnostics» Experiment Diagnostics, monitoring, and study of a set of parameters of the ionospheric plasma and environment near the ISS. Kosm. nauka tehnol. 2000 ;6(4):060-061.
1Shuvalov VA, 2Tikhii VG, 3Priymak AI, 4Gusarova IA, 1Pismennyi NI, 1Tokmak NA, 3Reznichenko NP, 5Nosikov SV, 3Kochubey GS. Degradation of polymeric materials for covering spacecraft solar arrays under exposure to atomic oxygen flows. Kosm. nauka tehnol. 2005 ;11(5-6):078-086.

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