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Ring structure of beams accompanying self-action of electromagnetic waves in a plasma A. F. Mastryukov
|
3–7 |
|
Transformation of the Bennet distribution in a rarefied gas Yu. B. Movsesyants, A. S. Chikhachev
|
7–12 |
|
Cathodic voltage drop in a non-self-sustained discharge N. M. Maslennikov
|
12–18 |
|
Photoelectronic method for measuring time-of-flight signals A. E. Belikov, E. S. Voronel', Ya. Ya. Tomsons, S. Ya. Khmel', R. G. Sharafutdinov
|
18–24 |
|
Extension of the dynamic range for recording images with microchannel plates A. F. Sorokin
|
24–28 |
|
Limitation of cumulative processes in the collapse of a bubble in a liquid V. V. Ermakov
|
28–30 |
|
Flow about a cylinder in a narrow gap at high velocities V. D. Zhak, V. E. Nakoryakov, S. A. Safonov
|
30–34 |
|
Determination of conditions of cavitation inception on bodies in a flow with separation and attachment of the boundary layer È. L. Amromin, V. K. Aleksandrov, Yu. L. Levkovskii
|
34–40 |
|
Vortex structure of a wake behind a sphere in a stratified fluid E. Ya. Sysoeva, Yu. D. Chashechkin
|
40–46 |
|
Model of the penetration of an upper uniform layer into a stratified fluid V. Yu. Lyapidevskii
|
47–52 |
|
Modeling of equilibrium forms of liquid drops in graphoepitaxy from solutions Yu. V. Apanovich, V. I. Klykov
|
52–59 |
|
Nonstationary thermocapillary drift of a drop of viscous liquid L. K. Antanovskii, B. K. Kopbosynov
|
59–64 |
|
Stability of steady-state flow of a liquid with a heavy impurity A. B. Burmistrova, O. N. Dementiev
|
65–68 |
|
Nonisothermal Couette flow of a non-Newtonian fluid under a pressure gradient G. V. Zhizhin
|
69–71 |
|
Modeling cascade processes in two-dimensional turbulent convection P. G. Frick
|
71–79 |
|
Modeling turbulent transfer in a channel by means of point vortices P. I. Geshev, B. S. Ezdin
|
79–84 |
|
Solution of coupled heat-transfer problems in flow about bodies of different shapes V. I. Zinchenko, E. N. Putyatina
|
85–93 |
|
Continuum-discrete model of a mixture of gas and solid particles for small concentration of particles S. P. Kiselev, V. M. Fomin
|
93–101 |
|
Calculation of the nonequilibrium parameters of air at the surfaces of models and in the wakes behind them for the conditions of aeroballistic experiments I. G. Eremeytsev, N. N. Pilyugin
|
101–111 |
|
Intensely radiating, supercritical shock waves I. V. Nemtchinov, I. A. Trubetskaya, V. V. Shuvalov
|
112–119 |
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Gasdynamic mechanism of pressure limitation behind focusing shock waves A. V. Potapkin, Yu. N. Yudintsev
|
119–125 |
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Optimal control of one-dimensional impact onto an inhomogeneous porous material È. I. Andriankin, A. L. Glebov
|
125–133 |
|
Shock wave structure in a mixture of gas and melting particles A. V. Fedorov, V. M. Fomin
|
133–138 |
|
Time-frequency characteristics of an elastic wave radiated by a camouflet explosion A. A. Zverev, E. E. Lovetskii, V. S. Fetisov
|
139–143 |
|
Penetration of a target by an explosion in the impulse-hydrodynamic mode A. V. Rubinovskii
|
143–146 |
|
Dynamic failure in the extensive plastic-strain range A. G. Ivanov
|
146–151 |
|
Stability of an expanding viscoelastic shell subject to aging N. Kh. Arutyunyan, M. N. Mikhailov, V. D. Potapov
|
151–160 |
|
Growth of plastic strain at the vertex of a crack in a crystal in antiplanar shearing D. N. Karpinskii, S. V. Sannikov
|
160–164 |