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Plasma Investigations
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An electrode microwave discharge in a static field Yu. A. Lebedev, A. V. Tatarinov, I. L. Epshtein
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325–332 |
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The simulation of the processes of formation and decay of neutral particles in DC discharge plasma in an argon-oxygen mixture S. A. Smirnov, V. V. Rybkin, A. N. Ivanov, V. A. Titov
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333–339 |
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Comparison analysis of processes occurring in $N$-turn and classical railguns A. P. Glinov, A. E. Poltanov, A. K. Kondratenko
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340–346 |
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Thermophysical Properties of Materials
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The thermodynamics of $\mathrm{U}$–$\mathrm{Zr}$–$\mathrm{Fe}$–$\mathrm{O}$ melts V. G. Asmolov, V. N. Zagryazkin, D. F. Tsurikov
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347–354 |
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The structure and thermal stability of polymer materials: A fractal model I. V. Dolbin, A. I. Burya, G. V. Kozlov
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355–358 |
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Thermal conductivity of sandstone at high pressures and temperatures S. N. Emirov, E. N. Ramazanova
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359–362 |
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The melting of fullerites from small or large fullerenes M. N. Magomedov
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363–369 |
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Computer simulation of growth of intermediate liquid phase in a simple eutectic system V. S. Savvin, A. K. Azavi, A. A. Povzner
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370–377 |
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Heat and Mass Transfer and Physical Gasdynamics
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Turbulence and turbulent viscosity in jet flows Yu. V. Polezhaev, A. V. Korshunov, G. V. Gabbasova
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378–383 |
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Integral methods of calculation of heat transfer and drag under conditions of turbulent pipe flow of liquid of variable properties: Steady-state and quasi-steady-state flows in a round pipe with constant temperature on the wall E. P. Valueva
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384–391 |
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Simulation of turbulent heat transfer in application to natural-convection wall flow S. B. Koleshko, Yu. S. Chumakov
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392–399 |
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Mathematical simulation of transient processes in a circular channel with granular layer under conditions of subcooled water boiling. Heating of the wall region B. G. Pokusaev, A. K. Nekrasov, D. A. Nekrasov
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400–407 |
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Wave processes in a vapor-liquid medium, caused by the expansion of vapor cavity V. V. Kuznetsov, O. V. Vitovskii
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408–414 |
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The inclusion of the effect of the evaporation coefficient on the rate of variation of droplet radius M. K. Kuz'min, Yu. I. Yalamov
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415–421 |
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Possible uses of optical methods for determining the structure of nonequilibrium hypersonic flows V. I. Alfyorov, A. S. Bushmin, A. A. Shinelev
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422–428 |
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The effect of particles on the acoustic instability under conditions of combustion of pulverized coal V. R. Pesochin
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429–433 |
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The effect of inelastic collisions on the diatomic gas temperature jump in the vicinity of a solid surface A. B. Poddoskin
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434–439 |
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Numerical simulation of ignition of a hydrogen-oxygen mixture in view of electronically excited components G. D. Smekhov, L. B. Ibragimova, S. P. Karkach, O. V. Skrebkov, O. P. Shatalov
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440–452 |
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Review
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The critical properties of binary mixtures containing carbon dioxide: Krichevskii parameter and related thermodynamic properties A. I. Abdulagatov, G. V. Stepanov, I. M. Abdulagatov
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453–471 |
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Short Communications
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The ambiguity of solution of the Ornstein-Zernike equation in the region of thermodynamically nonequilibrium states of a simple molecular system A. S. Nesterov
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472–475 |
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The density of aqueous solutions of lithium bromide at high temperatures and concentrations S. V. Stankus, R. A. Khairulin, V. A. Gruzdev, O. I. Verba
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475–477 |