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Publications in Math-Net.Ru
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Localized states in melts of light rare-earth metals
TVT, 42:5 (2004), 709–713
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Estimation of the effective electron mass in cerium from the data of optical experiment
TVT, 41:6 (2003), 870–876
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Theory of transport in liquid metals: Calculation of dynamic viscosity
TVT, 41:6 (2003), 860–869
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The Optical Properties of Light Rare-Earth Metals in the Liquid State
TVT, 40:1 (2002), 50–60
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Oxidation of powdered alloys of aluminum and cerium during heating in air
Fizika Goreniya i Vzryva, 37:4 (2001), 53–57
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Optical properties of liquid aluminum and $\mathrm{Al}$–$\mathrm{Ce}$ alloy
TVT, 39:3 (2001), 412–415
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Effect of conditions under which powdered lanthanum is heated on its interaction with air
Fizika Goreniya i Vzryva, 35:1 (1999), 85–88
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The optical properties of liquid ytterbium
TVT, 37:3 (1999), 515–517
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Mechanism of oxidation of powdered metals during heating in air
Fizika Goreniya i Vzryva, 34:1 (1998), 45–49
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Effect of sodium and potassium polyvanadates on aluminum-powder oxidation
Fizika Goreniya i Vzryva, 32:4 (1996), 91–94
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Optical properties of liquid gadolinium
TVT, 34:2 (1996), 234–237
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Effect of the size factor and alloying on oxidation of aluminum powders
Fizika Goreniya i Vzryva, 30:5 (1994), 68–71
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Ellipsometric investigations of the optical properties of liquid praseodymium
TVT, 32:6 (1994), 825–828
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Density and surface-tension of liquid lanthanum, cerium, and praseodymium
TVT, 27:3 (1989), 478–481
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Analysis of data on the densities of liquid rare-earth-metals from thermodynamic parameters
TVT, 25:3 (1987), 481–486
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$S-f$-обменный вклад в поверхностную энергию РЗМ
TVT, 24:4 (1986), 803–806
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Температурные зависимости термодинамических свойств жидких редкоземельных металлов
TVT, 23:5 (1985), 1025–1027
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Calculation of the structure and thermodynamic properties of liquid rare-earth-metals
TVT, 23:2 (1985), 300–304
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Приближенный расчет поверхностного натяжения расплавов на основе галлия и индия
TVT, 11:2 (1973), 439–441
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О вязкости и электросопротивлении жидкого алюминия
TVT, 7:2 (1969), 265–268
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