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The induction period in exothermic decomposition reactions with energy acceleration I. S. Zaslonko, S. M. Kogarko, E. V. Mozzhukhin
|
339–344 |
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Flow of a hydrogen halide mixture Í$_2$ – Ñl$_2$ – Ar behind a detached shock wave S. M. Gilinskii, V. P. Shkadova, T. S. Novikova
|
345–351 |
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Gasdynamic processes in shock tubes during production of inversion V. N. Kroshko, R. I. Soloukhin, N. A. Fomin
|
352–362 |
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Possibility of the crystallization of condensed combustion products in nozzles M. Yu. Reizer, V. A. Strunin, G. B. Manelis
|
363–369 |
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Combustion of a graphite surface in a transverse inert gas draft È. P. Volchkov, P. V. Nikitin
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369–375 |
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Interaction between a burning powder and an acoustic field with equilibrium chemical reactions behind the flame Yu. A. Gostintsev, L. A. Sukhanov, P. F. Pokhil
|
376–380 |
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Note on similarity relationships in the problem of the unsteady-state combustion of powders Yu. S. Ryazantsev, V. E. Tul'skikh
|
380–384 |
|
Combustion of a solid fuel in a gaseous oxidizer flow Yu. S. Kichin, S. A. Osvetimskii, N. N. Bachman
|
384–387 |
|
Spectroscopic investigation of supersonic heterogeneous flows with a burning condensed phase E. G. Karpunov, L. M. Negrutsak, A. B. Ryzhik, S. I. Fraerman, Yu. A. Yurmanov
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387–391 |
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Combustion of liquid explosives in a field of inertial forces S. K. Ordzhonikidze, A. D. Margolin, P. F. Pokhil, E. Yu. Skuridin
|
391–395 |
|
Comparative investigation of the combustion of 6,5,4- and 3-amines of cobalt(III) nitrate V. V. Gorbunov, A. A. Shidlovskii, L. F. Shmagin
|
395–398 |
|
Buildup of catalyst on the surface of a charge during combustion I. N. Lobanov, V. N. Chuvaev, N. N. Bachman
|
398–404 |
|
Concentration and combination limits of heterogeneous ignition V. N. Bertsun, A. M. Grishin
|
404–409 |
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Thermographic investigation of the thermal decomposition of dinitroxydiethylnitramine (dina) using a digital computer Z. S. Andrianova, A. I. Vol'pert, E. P. Goncharov, A. N. Ivanova, A. G. Merzhanov, A. S. Steinberg
|
409–416 |
|
Decomposition of formaldehyde under adiabatic compression in the presence of oxygen G. B. Barannik, V. S. Babkin
|
416–420 |
|
Study of the process of initiation of detonation of explosives by shock waves using the method of electrical conductivity A. N. Dremin, A. N. Mikhaĭlov
|
420–424 |
|
Stability of “low-velocity detonation” in powdered solid explosives K. K. Shvedov, S. A. Koldunov, A. N. Dremin
|
424–428 |
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Effect of the casing of the charge on the stability of low-velocity detonation in powdered trotyl A. V. Dubovik, A. A. Denisaev, V. K. Bobolev
|
428–432 |
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The thermal wave before a shock wave front in metals V. F. Nesterenko, A. M. Staver, B. K. Styron
|
433–436 |
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Structure of shock and rarefaction waves in iron A. V. Anan'in, A. N. Dremin, G. I. Kanel'
|
437–443 |
|
Work hardening of copper, nickel, and G31 alloy by compression and explosion A. I. Zharov, M. S. Mikhalev, R. Z. Kats, V. S. Dmitrieva
|
443–447 |
|
Instability of the interface between colliding metals I. V. Yakovlev
|
447–452 |
|
Disconnecting high-current circuits by means of explosives P. I. Zubkov, L. A. Luk'yanchikov
|
453–455 |
|
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Brief Communications
|
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Burnup of H$_2$ near the first combustion limit V. V. Azatyan, E. N. Aleksandrov, M. S. Khachatryan
|
456–457 |
|
Anomalous effect of impurities on CS$_2$–O$_2$ flame laser emission V. A. Dudkin
|
458–459 |