Search Results - "Novikov, M. G."

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  1. 1

    Shock-Wave Compression of Nitrogen Fluid in the Pressure Range 140–250 GPa by Zhernokletov, M. V., Kovalev, A. E., Novikov, M. G., Gryaznov, V. K., Iosilevskii, I. L., Shutov, A. V.

    “…The results of a series of experiments on the shock compression of a dense nitrogen fluid, which is preliminarily statically compressed to an initial density ρ…”
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    Journal Article
  2. 2

    Shock Compression of Titanium Hydride and Titanium, Tantalum, and Zirconium Deuterides by Golubkov, A. N., Gudarenko, L. F., Zhernokletov, M. V., Kayakin, A. A., Novikov, M. G.

    Published in Combustion, explosion, and shock waves (01-07-2021)
    “…This paper presents the results of an experimental study of shock compression of titanium hydride (TiH 2 ) and the deuterides of zirconium (ZrD 2 ),…”
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    Journal Article
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    Effect of Shock-Wave Dusting and Ways to Suppress It by Ogorodnikov, V. A., Erunov, S. V., Blikov, A. O., Kulakov, E. V., Chudakov, E. A., Antipov, M. V., Panov, K. N., Syrunin, M. A., Knyazev, V. N., Davydov, N. B., Georgievskaya, A. B., Yagovkin, A. O., Yurtov, I. V., Zamyslov, D. N., Kovalev, A. E., Kotin, A. V., Blinov, I. A., Novikov, M. G.

    “…The ejection of particles from the free surface of metal liners accelerated to velocities of 4–5 km/s using explosive energy has been investigated. It is shown…”
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    Quasi-isentropic compression of dense gaseous helium at pressures up to 500 GPa by Zhernokletov, M. V., Gryaznov, V. K., Arinin, V. A., Buzin, V. N., Davydov, N. B., Il’kaev, R. I., Iosilevskiy, I. L., Mikhailov, A. L., Novikov, M. G., Khrustalev, V. V., Fortov, V. E.

    Published in JETP letters (01-12-2012)
    “…The thermodynamic parameters—pressure and density—of quasi-isentropically compressed helium have been measured in a pressure range of 100–500 GPa. A…”
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    Journal Article
  7. 7

    Measurement of the sound velocities behind the shock wave front in tin by Zhernokletov, M. V., Kovalev, A. E., Komissarov, V. V., Novikov, M. G., Zocher, M. A., Cherne, F. J.

    “…Results obtained by two methods for the measurement of the sound velocity in tim samples (initial density of 7.28 g/cm 3 and impurities less than 0.085%) are…”
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  8. 8

    Study of cerium phase transitions in shock wave experiments by Zhernokletov, M. V., Kovalev, A. E., Komissarov, V. V., Novikov, M. G., Zocher, M. A., Cherne, F. J.

    “…Cerium has a complex phase diagram that is explained by the presence of structural phase transitions. Experiments to measure the sound velocities in cerium by…”
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