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Plasma Investigations
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Calculation of plasma conductivity V. S. Rogov
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689–694 |
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Experimental investigations of unsteady-state processes in a nonequilibrium mixture of cesium and argon D. N. Novichkov, Â. B. Glebov
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695–706 |
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Characteristics of a reduced-pressure induction discharge in nitrogen B. E. Zhestkov, A. I. Omelik, Z. T. Orlova
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707–711 |
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The conditions for the appearance of ionization instability in non-steady-state plasma in the absence of the two-temperature approximation N. A. Kruzhilin, I. T. Yakubov
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712–715 |
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Determination of the averaged diffuse electron–mercury atom cross section V. A. Ovcharenko, S. M. Chernyshev
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716–720 |
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The temperature profile of the plasma column of an induction discharge in argon at atmospheric pressure E. S. Trekhov, A. F. Fomenko, Yu. M. Khoshev
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721–730 |
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Investigation of the space and time characteristics of the plasma beyond the muzzle of a pulsed electromagnetic accelerator L. E. Ivanova
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731–735 |
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Heavy current pulse discharge in lithium A. D. Klementov, G. V. Mikhailov, F. A. Nikolaev, V. B. Rozanov, Yu. P. Sviridenko
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736–740 |
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Radiation transfer in homogeneous layers by a spectral line of impact profile S. Ya. Bronin, A. N. Lagarkov
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741–748 |
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Thermophysical Properties of Materials
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Thermodynamic properties of molecular hydrogen in the perfect-gas state R. I. Artym, A. B. Matveev
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749–753 |
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Transfer properties of chemically reacting gases. $\text{I}$. Coefficients of the approximating functions for the effective cross sections of the components of gas mixtures containing $\mathrm{H}$, $\mathrm{C}$, $\mathrm{N}$ and $\mathrm{O}$ atoms and their compounds E. V. Samuilov, N. N. Tsitelauri
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754–761 |
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Method of calculating isotopic effects in the thermodynamic properties of simple gases and liquids S. P. Malyshenko, V. G. Shvalb
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762–769 |
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Effect of the roughness factor on radiation properties of solids (experimental check) S. G. Agababov
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770–773 |
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Emissivity, thermal conductivity, and electrical conductivity of remelted zirconium at high temperatures V. E. Peletskii, V. P. Druzhinin, Ya. G. Sobol'
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774–779 |
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Some physical properties of vanadium L. K. Voronin, A. N. Merkul`ev, B. E. Neimark
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780–783 |
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Measurement of the heat conductivity of tungsten at high temperatures using the “two bridge” method V. A. Vertogradskii, V. Ya. Chekhovskoi
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784–788 |
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Experimental determination of the compressibility of neon and argon at $300$ and $720^{\circ}$K for pressures up to $500$ bar V. A. Rabinovich, L. A. Tokina, V. M. Berezin
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789–794 |
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Thermal diffusivity of pyrolytic zirconium carbide B. A. Fridlender, V. S. Neshpor
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795–798 |
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Heat Transfer, Fluid Mechanics, Gas and Plasma
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Criteria for commencement of convection in a liquid close to the critical point M. Sh. Giterman, V. A. Shteinberg
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799–805 |
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Statistical investigation of the temperature field during turbulent flow of water in a pipe V. P. Bobkov, S. P. Beschastnov, Yu. I. Gribanov, M. Kh. Ibragimov, P. K. Karpov
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806–812 |
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Measurement of the heat evolution in the quartz envelope of a self-compressing discharge in inert gases A. Ya. Balagurov, V. V. Kubyshkin, V. S. Prokudin, T. G. Cheburkina
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813–816 |
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Heat transfer and drag in a circular tube during the laminar flow of a gas with variableproperties. $\text{II}$. Results of analysis at constant wall temperature V. D. Vilenskii, B. S. Petukhov, B. E. Kharin
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817–827 |
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Approximate method for solution of the kinetic equation near the boundary. $\text{I}$. Slip Yu. Yu. Abramov
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828–832 |
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Explosive boiling of liquids and fluctuation nucleus formation V. P. Skripov, P. A. Pavlov
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833–839 |
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Absorption of thermal radiation in medium with a band spectrum S. P. Detkov
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840–846 |
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Self-similar variables. $\text{II}$ A. A. Gukhman, A. A. Zaitsev
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847–855 |
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Methods of Experimental Researches and Methods of Measurements
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Measurement of temperature conductivity by the cyclic heating method R. P. Yurchak, G. F. Tkach, G. I. Petrunin
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856–858 |
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Ultrasonic heating of rods Yu. F. Balalaev
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859–862 |
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Determination of the rate of movement of the drops of a two-phase flow using the transit-time method G. V. Tsiklauri, V. M. Batenin, I. I. Klimovskii, V. K. Shanin
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863–867 |
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Use of a small probe for determining the temperature and total pressure profiles in a dense plasma flow M. D. Petrov, V. A. Sepp
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868–874 |
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Experimental method of determining thermal conductivity and emittance of coatings E. V. Smirnov
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875–878 |
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High Temperature Apparatuses and Structures
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The cycle of a one-component liquid-metal magnetohydrodynamic converter with vapor separation ahead of the magnetohydrodynamic generator and mixing of the flow beyond the magnetohydrodynamic generator D. D. Kalafati, V. B. Kozlov
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879–884 |
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Effect of leakages on the characteristics of a magnetohydrodynamic generator V. A. Bityurin
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885–889 |
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Review
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Analysis of experimental data on the viscosity of gases in the high-temperature range E. I. Asinovskii, E. P. Pakhomov
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890–897 |
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Short Communications
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Electron temperature on the surface of metals under the effect of powerful heat fluxes A. P. Nevskii
|
898–899 |
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Possibility of suppressing current-convective instability of a positive column in a magnetic field by means of a system of feedbacks V. V. Arsenin
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899–901 |
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Light-scattering spectra calculated on an electronic computer for a plasma having various parameters L. N. Pyatnitskiĭ, Ê. K. Olevinskii
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901–905 |
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Spectral intensities of the radiation from air and carbon dioxide plasmas E. I. Asinovskii, A. V. Kirillin, V. L. Nizovskiy, V. I. Shabashov
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905–908 |
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Measurement of the cross section for ionization of a cesium atom by an excited mercury atom V. B. Brodskii, A. T. Voronchev, Ò. V. Kreneva, V. L. Fedorov
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908–910 |
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Determination of the enthalpy and specific heat of tantalum and niobium disilicides in the $1200$–$2100^{\circ}$K temperature range V. P. Bondarenko, V. I. Zmiy, E. N. Fomichev, A. A. Kalashnik, N. P. Slyusar'
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910–912 |
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Thermal conductivity of fused salts V. I. Fedorov, V. I. Machuev
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912–914 |
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Role of heat-transfer conditions at the boundary of specimens in the case of using the dilatometric method of determining the thermal diffusivity of solids V. S. Batalov, L. N. Linnik
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914–915 |
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Characteristics of the specific heat of liquid alkali metals É. É. Shpil'rain, D. N. Kagan
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916–917 |
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Calculation of thermodynamic properties of condensed gases using tabulated virial coefficients for the Lennard-Jones $6$–$12$ potential V. I. Nedostup, A. G. Slynko
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917–919 |
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Thermal properties of iridium at high temperatures L. N. Trukhanova, L. P. Filippov
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919–920 |
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Work function of titanium and niobium carbides in the homogeneity region G. V. Samsonov, L. N. Okhremchuk, G. Sh. Upadkhay, V. Ya. Naumenko
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921–922 |
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Calculation of heat fluxes in a dispersed layer permeable for gas A. I. Gorin
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923–925 |
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Bibliography
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926 |