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Publications in Math-Net.Ru
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Effect of pore size parameters for mechanisms of nanofilm coatings on substrates of porous alumina
Vestnik YuUrGU. Ser. Mat. Model. Progr., 10:2 (2017), 83–97
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About the structure of deposited Zn-S nanofilms on substrates of aluminum oxide
CPM, 18:3 (2016), 349–360
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Research of thermal properties of nanomaterials on the silicon basis by the Green-Kubo method using the EDIP potential
CPM, 18:2 (2016), 187–198
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Simulation of the deposition process on a substrate nanofilms of porous alumina
CPM, 17:4 (2015), 511–522
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Hydrodynamic modeling of electrocodeposition on a rotating cylinder electrode. Part 4. The kinetics of the process of nanoparticles adsorption
CPM, 17:3 (2015), 343–352
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Nanoparticles Young's modulus determination on the basis of numerical simulation and experimental investigations. Part 2. Procedure for reconciliation of elastic experiments and numerical calculations
CPM, 17:2 (2015), 214–218
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Mathematical simulation of the dynamic interaction of solids. Part 2. The simulation of physical destruction of bodies
CPM, 17:1 (2015), 73–80
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Investigation of dynamic interactions of solids by methods of mathematical simulations
Vestnik YuUrGU. Ser. Mat. Model. Progr., 8:1 (2015), 53–65
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Phase size effect in thin Ge–Se polycrystalline films
Zhurnal Tekhnicheskoi Fiziki, 83:9 (2013), 50–55
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Spontaneous explosive crystallization and phase formation in a nanosized selenide/indium heterostructure
Pisma v Zhurnal Tekhnicheskoi Fiziki, 39:23 (2013), 34–38
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Spontaneous explosive crystallization and phase transformations in a selenium/copper bilayer nanofilm
Pis'ma v Zh. Èksper. Teoret. Fiz., 95:9 (2012), 514–517
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Numerical analysis of the atomic structure and shape of metal nanoparticles
Zh. Vychisl. Mat. Mat. Fiz., 47:10 (2007), 1774–1783
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Elastic reaction simulation of nanoparticles to force effect
Izv. IMI UdGU, 2006, no. 2(36), 125–128
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Simulation of hydrogen molecules adsorption on alone fullerenes
Izv. IMI UdGU, 2006, no. 2(36), 121–124
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The finite element analysis of powder materials compression
Mat. Model., 9:2 (1997), 117–121
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