| Issue |
Title |
File |
| Vol 55, No 5 (2017) |
The stability of swirling flows with a heat source |
|
|
Zavershinskii I.P., Klimov A.I., Kurushina S.E., Maksimov V.V., Molevich N.E., Sugak S.S.
|
| Vol 55, No 2 (2017) |
The temperature recovery factor in a boundary layer on a permeable plate |
|
|
Leontiev A.I., Lushchik V.G., Makarova M.S.
|
| Vol 56, No 1 (2018) |
The Thermochemistry of Crystalline M3AlF6, NaAlF4, KAlF4 and Gaseous MAlF4 Fluoroaluminates of Alkali Metals, M |
|
|
Nikitin M.I., Skokan E.V.
|
| Vol 56, No 2 (2018) |
The Use of the RANS/ILES Method to Study the Influence of Coflow Wind on the Flow in a Hot, Nonisobaric, Supersonic Airdrome Jet during Its Interaction with the Jet Blast Deflector |
|
|
Benderskii L.A., Lyubimov D.A., Chestnykh A.O., Shabanov B.M., Rubakov A.A.
|
| Vol 56, No 2 (2018) |
The Variational Form of the Mathematical Model of a Thermal Explosion in a Solid Body with Temperature-Dependent Thermal Conductivity |
|
|
Zarubin V.S., Kuvyrkin G.N., Savel’eva I.Y.
|
| Vol 57, No 3 (2019) |
Theory of High-Voltage Glow Discharge with Allowance for the Thermal Emission of Electrons |
|
|
Sapronova T.M., Ul’yanov K.N.
|
| Vol 56, No 3 (2018) |
Thermal Conductivity of CaLa2S4 within the Temperature Range of 80–450 K |
|
|
Luguev S.M., Lugueva N.V., Luguev T.S.
|
| Vol 57, No 6 (2019) |
Thermal Conductivity of CuGaTe2 and CuInTe2 Ternary Compounds in the Temperature Range of 300–800 K |
|
|
Ismailov S.M., Isaev Z.A., Orakova S.M., Yakh’yaeva K.S.
|
| Vol 57, No 1 (2019) |
Thermal Conductivity of Silicicated Silicon Carbide at 1400−2200 K |
|
|
Kostanovskiy A.V., Zeodinov M.G., Kostanovskaya M.E., Pronkin A.A.
|
| Vol 57, No 2 (2019) |
Thermal Destruction of Rubber-Like Heat-Shielding Materials under a Layer of Condensed Phase |
|
|
Mironov V.V., Tolkach M.A.
|
| Vol 56, No 5 (2018) |
Thermal Diffusivity and Thermal Conductivity of Bi1 –xGdxFeO3 (x = 0–0.30) Multiferroics |
|
|
Kallaev S.N., Bakmaev A.G., Khasbulatov S.V., Reznichenko L.A.
|
| Vol 55, No 2 (2017) |
Thermal diffusivity of gadolinium in the temperature range of 287–1277 K |
|
|
Samoshkin D.A., Agazhanov A.S., Savchenko I.V., Stankus S.V.
|
| Vol 54, No 2 (2016) |
Thermal diffusivity of submicro- and nanocrystalline Zr–2.5% Nb and Zr–50% Nb alloys at high temperatures |
|
|
Gorbatov V.I., Polev V.F., Korshunov I.G., Pilyugin V.P., Smirnov A.L., Taluts S.G.
|
| Vol 54, No 2 (2016) |
Thermal diffusivity of Y–Ho system solid solutions at high temperatures |
|
|
Ivliev A.D., Kurichenko A.A., Vekshin I.M.
|
| Vol 55, No 3 (2017) |
Thermal diffusivity of zirconium–niobium alloys at high temperatures |
|
|
Smirnov A.L., Taluts S.G., Ivliev A.D., Gorbatov V.I., Polev V.F., Korshunov I.G.
|
| Vol 57, No 2 (2019) |
Thermal Expansion and Electrical Resistivity of the Intermetallic Compound Ti67Al33 |
|
|
Murlieva Z.K., Palchaev D.K., Iskhakov M.E., Rabadanov M.K., Bagomedova U.U.
|
| Vol 57, No 1 (2019) |
Thermal Expansion of Micro- and Nanocrystalline HfB2 |
|
|
Kovalev D.Y., Shilkin S.P., Konovalikhin S.V., Kalinnikov G.V., Korobov I.I., Kravchenko S.E., Khomenko N.Y., Andrievskii R.A.
|
| Vol 56, No 6 (2018) |
Thermal Expansion of Zirconium Carbide at 1200–2850 K |
|
|
Kostanovskiy A.V., Zeodinov M.G., Kostanovskaya M.E., Pronkin A.A.
|
| Vol 56, No 1 (2018) |
Thermal Hydraulic Studies of Liquid-Metal Coolants in Nuclear-Power Facilities |
|
|
Rachkov V.I., Sorokin A.P., Zhukov A.V.
|
| Vol 54, No 1 (2016) |
Thermal loads of plasma focus chambers |
|
|
Sidorov P.P.
|
| Vol 54, No 2 (2016) |
Thermal properties and phase diagrams of water–hydrocarbon systems |
|
|
Rasulov S.M., Orakova S.M., Isaev I.A.
|
| Vol 54, No 3 (2016) |
Thermal training of functional surfaces fabricated with femtosecond laser pulses |
|
|
Romashevskiy S.A., Agranat M.B., Dmitriev A.S.
|
| Vol 55, No 6 (2017) |
Thermionic multielement single-channel electrogenerating assembly: Prospects of development and application |
|
|
Kozlov O.F., Krasnenkova T.M., Lazba B.A., Mailov G.M.
|
| Vol 56, No 4 (2018) |
Thermodynamic Calculation of the Characteristics of Metal Thermionic Emission |
|
|
Nikitin M.I., Chilingarov N.S., Osina E.L., Osin S.B.
|
| Vol 55, No 2 (2017) |
Thermodynamic functions of germanium oxide molecules in the gaseous phase: GeO2(g), Ge2O2(g), and Ge3O3(g) |
|
|
Osina E.L.
|
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