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Дата публикацииНазваниеАвторы
2020Thermodynamic Analysis of Radioactive Graphite Oxidation in NiO-NaCl-KCl-Na2CO3-K2CO3 Melt in the Atmosphere of ArgonBarbin, N. M.; Kobelev, A. M.; Terent’ev, D. I.; Alekseev, S. G.
2020THERMODYNAMIC AND MAGNETIC PROPERTIES OF ONE-DIMENSIONAL DECORATED CHAIN IN ISING MODELTsuvarev, E. S.; Kassan-Ogly, F. A.; Proshkin, A. I.
2018Thermodynamic aspects of describing the contribution of spontaneous magnetism of electrons to the Hall resistanceOkulov, V.; Pamyatnykh, E.
2021Thermodynamic aspects of dioxin precursors neutralization by plasma methodsMatushkin, A.; Kharina, G.; Anakhov, S.
2018Thermodynamic assessment of oxide system In2O3‑SnO2‑ZnOJantzen, T.; Hack, K.; Yazhenskikh, E.; Müller, M.
2018Thermodynamic database for multicomponent oxide systemsDecterov, S. A.
2018Thermodynamic database for multicomponent oxide systems. Preparation, Structure and Physicochemical Properties of La0.95Bi0.05Mn1–yCuyO3+δ (у = 0.1 – 0.4) and Composites with Bi2O3‑Based ElectrolytesKaimieva, O. S.; Danilova, V. V.; Buyanova, E. S.; Petrova, S. A.; Nikolaenko, I. V.
2019Thermodynamic Estimation of the Effect of Halcogenizer and Ligand on the Chemical Deposition of PbSe FilmsBelceva, A. V.; Yurk, V. M.; Zarubin, I. V.; Maskaeva, L. N.; Markov, V. F.
2019Thermodynamic evidence of fractionalized excitations in α-RuC l3Widmann, S.; Tsurkan, V.; Prishchenko, D. A.; Mazurenko, V. G.; Tsirlin, A. A.; Loidl, A.
2022Thermodynamic features of the 1D dilute Ising model in the external magnetic fieldShadrin, A. V.; Panov, Y. D.
2023Thermodynamic method of calculating the contact units of HVAC systems based on the humidity potential theoryShiryaeva, N.; Gvozdkov, A.; Suslova, O.
2013A thermodynamic model of thermal end elastic properties of curiumPovzner, A. A.; Filanovich, A. N.; Oskina, V. A.
2019Thermodynamic modeling of cogeneration mini CHP using air conversion of diesel fuel and electrochemical generatorShcheklein, S. E.; Dubinin, A. M.; Щеклеин, С. Е.; Дубинин, А. М.
2019Thermodynamic Modeling of Cogeneration Mini CHP Using Air Conversion of Diesel Fuel and Electrochemical GeneratorShcheklein, S. E.; Dubinin, A. M.; Щеклеин, С. Е.; Дубинин, А. М.
2020Thermodynamic Modeling of Iron and Nickel Reduction from B2O3-CaO-FeO-NiO MeltsVusikhis, A. S.; Leontiev, L. I.; Selivanov, E. N.; Chentsov, V. P.
2013Thermodynamic modeling of the Pb + Bi melt evaporation under various pressures and temperaturesBarbin, N.; Terentiev, D.; Alexeev, S.; Barbina, T.
2012Thermodynamic parameters of the interaction of cellulose ethers with low-molecular-mass liquidsVshivkov, S. A.; Adamova, L. V.; Lirova, B. I.
2013Thermodynamic properties of lanthanum in gallium-indium eutectic based alloysShchetinskiy, A. V.; Dedyukhin, A. S.; Volkovich, V. A.; Yamshchikov, L. F.; Maisheva, A. I.; Osipenko, A. G.; Kormilitsyn, M. V.
2013Thermodynamic properties of uranium in Ga-In based alloysVolkovich, V. A.; Maltsev, D. S.; Yamshchikov, L. F.; Melchakov, S. Yu.; Shchetinskiy, A. V.; Osipenko, A. G.; Kormilitsyn, M. V.
2014Thermodynamic properties, electron spin resonance, and underlying spin model in Cu3 Y(SeO3)2 O2ClZakharov, K. V.; Zvereva, E. A.; Berdonosov, P. S.; Kuznetsova, E. S.; Dolgikh, V. A.; Clark, L.; Black, C.; Lightfoot, P.; Kockelmann, W.; Pchelkina, Z. V.; Streltsov, S. V.; Volkova, O. S.; Vasiliev, A. N.