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Showing results 2439 to 2458 of 47412 < previous   next >
Issue DateTitleAuthor(s)
2021Machine learning-based strength prediction for refractory high-entropy alloys of the Al-Cr-Nb-Ti-V-Zr systemKlimenko, D.; Stepanov, N.; Jia Li; Qihong Fang; Zherebtsov, S. V.
2014Machine translation technologies used in online translation industryGimazitdinov, E. I.; Morel Morel, D. A.
2020Macro-regional zoning as a mechanism for the development of the national economyErmachenko, F. M.; Chistnikova, I. V.; Serova, E. G.; Skliarenko, I. A.; Alekhina, E. S.
2019Macrofauna of hydrobionts in the Gubkinsko-Starooskolsky mining area: the case of the Oskolets RiverPrisny, A. V.; Kornilov, A. G.; Prisniy, Yu. A.; Kolmykov, S. N.
2021Mafusol and its combination with REXOD as correctors of reduced blood circulation in the skin associated with normoglycemia or diabetes mellitus complicated by exogenous hypercholesterolemiaGulevskaya, O. N.; Galenko-Yaroshevsky, P. A.; Lebedeva, S. A.; Sukoyan, G. V.; Pavlyuchenko, I. I.
2021Magnesium acetyltaurate prevents retinal damage and visual impairment in rats through suppression of NMDA-induced upregulation of NF-κB, p53 and AP-1 (c-Jun/c-Fos)Lambuk, L.; Lezhitsa, I.; Renu Agarwal; Peresypkina, A.; Pobeda, A.
2021Magnetic materials based on layered double hydroxidesNestroinaya, O. V.; Ryltsova, I. G.; Tarasenko, E. A.; Yapryntsev, M. N.; Soloveva, A. A.; Lebedeva, O. E.
1999Magnetic MnAs nanoclusters in the diluted magnetic semiconductor (Zn₁₋xMnx)₃As₂Laiho, R.; Lisunov, K. G.; Zakhvainskii, V. S.
2006Magnetic properties of CdSb doped with NiLaiho, R.; Lahderanta, E.; Lashkul, A. V.; Lisunov, K. G.; Zakhvalinskii, V. S.
2011Magnetic properties of nanodispersed ferrite powders with cryochemical prehistoryOlkhovika, L. P.; Shurinova, E. V.; Blazhevich, S. V.; Kuzmicheva, T. G.; Chernikov, S. V.
1999Magnetic properties of the new diluted magnetic semiconductor Zn₁₋ₓMnₓAs₂: evidence of MnAs clustersLaiho, R.; Landeranta, E.; Lisunov, K. G.; Zakhvalinskii, V. S.
1998Magnetic soliton motion in a nonuniform magnetic fieldKosevich A. M.; Gann V. V.; Zhukov A. I.; Voronov V. P.
2020Magnetic surveys locate Late Bronze Age corralsSmekalova, T.; Bevan, B.; Kashuba, M.; Lisetskii, F.; Borisov, A.
2004Magnetic-field-driven x≈1/8 anomaly of superconductivity in La₂₋x₋ySrxMnyCuO₄Laiho, R.; Salminen, J.; Zakhvalinskii, V.
1997Magnetization and Shubnikov-de Haas effect in diluted magnetic semiconductors (Cd₁₋x₋yZnxMny)₃As₂Laiho, R.; Lisunov, K. G.; Zakhvalinskii, V. S.
2022Magnetization of Cd3As2-30 mol % MnAs composite at high pressureSaypulaeva, L. A.; Arslanov, T. R.; Alibekov, A. G.; Khizriev, K. Sh.; Zakhvalinskii, V. S.
1995Magnetoresistance of (Zn₁₋xMnx)₃As₂ in region of hopping conductivityLaiho, R.; Lisunov, K.; Zahvalinsky, V.
2018Magnetotransport properties of InSb-MnSb nanostructured filmsKochura, A.; Marenkin, S.; Novodvorsky, O.; Mikhalevsky, V.; Zakhvalinskii, V.
2017Mahonia aquifolium as a promising raw material for the food industrySorokopudov, V. N.; Myachikova, N. I.; Georgescu, C.
2019Main approaches to the definition of essence of a state power: evolution and current stateBelyaeva, G. S.; Belousova, K. A.; Abgarov, S. S.; Kornev, A. V.; Zmerzly, B. V.