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Publications in Math-Net.Ru
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Initiation of nanothermites by electric spark
Fizika Goreniya i Vzryva, 59:4 (2023), 85–92
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Laser ablation of a titanium target in water silver nitrate solution
Kvantovaya Elektronika, 53:6 (2023), 464–468
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Specificity of micro- and nanoproducts of titanium laser ablation in pure water
Kvantovaya Elektronika, 52:6 (2022), 587–592
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Deposition of silver on the surface of microparticles of zirconium and molybdenum oxides during their synthesis by laser ablation in liquid
Kvantovaya Elektronika, 51:6 (2021), 544–548
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Electrical resistivity of liquid gadolinium $($with carbon content of $29$ at $\%)$ at temperatures of $2000$–$4250$ K
TVT, 58:1 (2020), 148–151
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Composition, morphology characteristics and optical properties of molybdenum oxide nanostructures synthesized by the laser ablation method in liquid
TVT, 55:6 (2017), 700–703
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Investigation of the high-temperature properties of zirconium nitride by impulse current heating method
TVT, 53:3 (2015), 478–480
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Formation of hollow micro- and nanostructures of zirconia by laser ablation of metal in liquid
TVT, 53:1 (2015), 98–104
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Optical, structural and morphological properties of zirconia nanoparticles prepared by laser ablation in liquids
Kvantovaya Elektronika, 44:9 (2014), 845–851
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Influence of UV and visible laser light on the structure and composition of layered organic – inorganic zinc and copper nanocomposites
Kvantovaya Elektronika, 43:6 (2013), 563–566
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Phase transitions of partially stabilized zirconia under stepwise shock-wave loading
TVT, 51:5 (2013), 711–716
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Synthesis of a layered organo-inorganic copper nanocomposite by laser ablation in liquid media
TVT, 51:2 (2013), 311–314
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The features of the synthesis of $\mathrm{ZnO}$ nanostructures by laser ablation of zinc in water-surfactant solutions
TVT, 50:3 (2012), 392–400
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A Ceramic Based on Partially Stabilized Zirconia: Synthesis, Structure, and Properties under Dynamic Load
TVT, 49:5 (2011), 707–712
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Investigation of the Characteristics of a Colloidal Solution and Its Solid Phase Obtained through Ablation of Zinc in Water by High-Power Radiation from a Copper Vapor Laser
TVT, 49:5 (2011), 701–706
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Rapid Solidification of $\mathrm{ZrO}_2$–$8$ mol $\%$ $\mathrm{Y}_2\mathrm{O}_3$ Melt under Conditions of Stepwise Reduction of Heating. Determination of the Liquidus and Solidus Temperatures
TVT, 40:1 (2002), 61–67
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Rapid solidification of $\mathrm{ZrO}_2$–$8$ mol $\%$ $\mathrm{Y}_2\mathrm{O}_3$ melt
TVT, 39:6 (2001), 910–920
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Thermal radiative properties of ceramic of cubic $\mathrm{ZrO}_2$ stabilized with $\mathrm{Y}_2\mathrm{O}_3$ at high temperatures
TVT, 39:2 (2001), 263–273
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Investigation of the melting and solidification temperatures of magnesia during radiant heating with a $\mathrm{CO}_2$ laser
TVT, 30:5 (1992), 923–929
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Некоторые результаты рентгенографических и рентгеноспектральных исследований воздействия высокотемпературной плазмы МГД-канала на электроды (№ 2476 Деп. от 1 VII 1976)
TVT, 14:4 (1976), 916
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