Plasma Investigations
|
|
Optical properties of burning gases. Mixtures of $\mathrm{CO}_2$ + $\mathrm{N}_2$ I. V. Avilova, L. M. Biberman, V. S. Vorob'ev, V. M. Zamalin, G. A. Kobzev, A. Kh. Mnatsakanyan, H. E. Norman
|
1–11 |
|
Theory of a plasma cathode K. N. Ulyanov
|
12–16 |
|
Measurement of radiative losses in a pulsed plasma accelerator, using the bolometric method V. A. Derevshchikov, N. V. Rusakov
|
17–21 |
|
Effect of nonhomogeneous interatomic electrical fields on a radiative atom in a low-temperature plasma L. I. Grechikhin
|
22–28 |
|
Current density at the cathode spot of an arc discharge V. I. Rahovskii
|
29–32 |
|
Rotational relaxation of diatomic molecules taking account of the interaction of electronic states A. Kh. Mnatsakanyan, L. I. Podlubnyi
|
33–39 |
|
Kinetics of the initial ionization of a monoatomic gas behind the front of a shock wave Ò. V. Zhikhareva, G. K. Tumakaev
|
40–45 |
|
Thermophysical Properties of Materials
|
|
Equation of state of a monoatomic liquid at high densities V. A. Rabinovich, V. A. Abovskiy
|
46–54 |
|
Heat capacity of tungsten near the melting point I. Ya. Dichter, S. V. Lebedev
|
55–58 |
|
Investigations of isochoric heat capacity A. M. Kerimov, M. K. Alieva
|
59–65 |
|
Structure and molecular-thermal properties of water S. S. Bagdasaryan
|
66–71 |
|
Thermophysical and Thermodynamic Properties of Liquid Alloys of Iron and Chromium I. A. Pavars, B. A. Baum, P. V. Geld
|
72–76 |
|
Determination of the rate of vaporization of congruently vaporizing compositions of the monocarbide phase of niobium T. A. Nikol'skaya, R. G. Avarbe, Yu. N. Vil'k
|
77–80 |
|
Comparative study of the equations of state of the explosions of organic liquids I. M. Voskoboinikov, V. M. Bogomolov
|
81–87 |
|
Forms of existence of a hydrogen impurity in a liquid eutectic melt of sodium and potassium M. N. Arnol'dov, M. N. Ivanovskii, V. A. Morozov, S. S. Pletenets
|
88–92 |
|
Heat Transfer, Fluid Mechanics, Gas and Plasma
|
|
Calculation of hydrodynamic properties with the turbulent flow of a liquid in concentric annular channels V. M. Kashcheev, V. E. Nomofilov
|
93–100 |
|
Distribution of pulsation energy near the wall L. A. Vulis, Ê. E. Dzhauzashtin
|
101–105 |
|
Diffusion of heat with the turbulent flow of liquids with different Prandtl numbers V. P. Bobkov, M. Kh. Ibragimov
|
106–110 |
|
Heat transfer in a rarefied gas, complicated by mass transfer V. V. Kharitonov
|
111–115 |
|
Reaction between a graphite surface and a turbulent flow of gas under conditions of the existence of nonisothermicity and in the presence of a screen of neutral gas È. P. Volchkov, E. G. Zaulichnyi, A. I. Leont'ev, E. I. Sinaiko
|
116–122 |
|
Breakaway parameter of the turbulent magnetohydrodynamic boundary layer A. B. Vatazhin, A. V. Gotovtsev
|
123–129 |
|
Study of boiling in flat inclined containers, modeling weak gravitational fields Yu. A. Kirichenko, M. L. Dolgoi
|
130–135 |
|
Self-similar variables. $\text{I}$. A. A. Gukhman, A. A. Zaitsev
|
136–146 |
|
Contact unsteady-state heat transfer through a vacuum cavity A. P. Machilskii
|
147–153 |
|
Methods of Experimental Researches and Methods of Measurements
|
|
The possibilities of a shock tube in obtaining and investigating dense low-temperature plasma B. N. Lomakin, V. E. Fortov, O. E. Shchekotov
|
154–158 |
|
Expansion of the measurement limits of the concentration of electrons in a plasma using a laser interferometer with phase modulation of the optical signal L. A. Dushin, V. I. Privezentsev
|
159–162 |
|
Analysis of the spatial resolution of a double electron-optical transformer L. M. Diamant, A. M. Iskol`dskiy, M. I. Kudr`ashov, Yu. E. Nesterikhin
|
163–168 |
|
Investigation of Knudsen uncompensated operating conditions of a cesium diode E. P. Busygin, V. G. Grigor'yants, B. G. Zhukov, I. P. Yavor
|
169–173 |
|
High Temperature Apparatuses and Structures
|
|
Choice of a working body for single-component liquid-metal magnetohydrodynamic units of the condensation type É. É. Shpil'rain, V. M. Boldyrev, I. N. Postnikova
|
174–176 |
|
Electrogasdynamic generator with neutralization of the space charge A. M. Borok
|
177–181 |
|
Use of a turbulent washer for removal of an ionizing additive in open-cycle magnetohydrodynamic power generators A. Yu. Val'dberg, I. L. Mostinskii, R. S. Nekhoroshev
|
182–188 |
|
Modeling of the characteristics of the channel of a conduction-type direct-current magnetohydrodynamic machine D. S. Kovner
|
189–192 |
|
Laws governing the operation of the metallic electrodes of a magnetohydrodynamic generator Yu. M. Zelikson, V. V. Kirillov, E. P. Reshetov, B. D. Flid
|
193–202 |
|
Short Communications
|
|
Radiative energy losses from a dense xenon plasma S. I. Andreev, V. E. Gavrilov
|
203–205 |
|
Stability of the current in a weakly ionized plasma R. V. Ganefel'd
|
205–207 |
|
Electrical conductivity of a xenon plasma A. A. Bakeev, R. E. Rovinskiĭ
|
207–209 |
|
Investigation of the thermal conductivity of finely fibrous materials based on kaolin and basalt fibers B. N. Egorov, V. I. Kondratenkov
|
209–211 |
|
Emission characteristics of some high-melting metals with mixed adsorbed films of $\mathrm{Cs}$ and $\mathrm{Ba}$ V. D. Bondarenko, A. I. Loshkarev, B. Sh. UPmasbaev
|
211–213 |
|
Thermal conductivity of complex semiconducting compounds $\text{A}^{\text{I}}\text{B}^{\text{V}}\text{C}_2^{\text{VI}}$ in the solid and liquid states G. G. Gadzhiev, Ya. B. Magomedov, Sh. M. Ismailov
|
213–215 |
|
Determination of emission coefficients of tantalum – tungsten alloys A. A. Mazaev
|
216–217 |
|
Heat transfer with the boiling of freon-$113$ on the surface of a vertical cylindrical rod S. A. Kovalev, V. M. Zhukov, G. M. Kazakov
|
217–219 |
|
Effect of secondary roughness on the emissive properties of solid bodies S. G. Agababov
|
220–222 |
|
Methods for increasing the reliability of boiling liquid-metal loops Yu. A. Zeigarnik, V. D. Litvinov
|
222–224 |
|
Conditions for the reciprocal approximation of heat-propagation processes in the region of the ordered period G. P. Boikov
|
224–226 |
|
New Instruments for Thermophysical Researches
|
|
New instruments for thermophysical measurements L. A. Novitskii, N. N. Erhardt
|
227–229 |