Items where Author is "Gusak, A."

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Number of items: 19.

Article

Pasichna, V. and Gusak, A. (2021) Alternative algorithms for simultaneous modeling of ordering and intermediate compound growth during reactive diffusion. Computational Materials Science (№ 187). pp. 1-15.

Gusak, A. (2020) Anisotropic Nucleation, Growth and Ripening under Stirring-A Phenomenological Model. Phys Chem Chem Phys., Vol.22 (№ 17). pp. 9740-9748.

Gusak, A. (2020) Elementary models of the ‘‘flux drivenanti-ripening’’ during nanobelt growth. Physical Chemistry Chemical Physics (№ 22). pp. 9740-9748.

Gusak, A. (2020) Extremely rapid grain growth in scallop-tyde Cu6Sn5 during solid-liquid interdiffusion reactions in micro-bump solder joints. Scripta materialia, №179. pp. 45-48.

Huriev, Y. and Gusak, A. (2020) Predator and prey model revisited – influence of external fluxesand noise. Journal of Mathematical Sciences, V. 246 (No. 5). pp. 648-663.

Liu, Y. and Pu, B. and Gusak, A. (2020) Ultra-thin intermetallic compound formation in microbump technology by the control of a low Zn concentration in solder. Acta Materialia, Vol.12. pp. 1-7.

Gusak, A. and Zaporozhets, T. (2018) Martin’s Kinetic Mean-Field Model Revisited—Frequency Noise Approach versus Monte Carlo. Металлофизика и новейшие технологии, Т. 40 (№ 14). pp. 1415-1435.

Erdélyi, Z. and Pasichnyy, M. and Bezpalchuk, V. and Tomán, J. J. and Gajdics, B. and Gusak, A. (2016) Computer Physics Communications. Computer Physics Communications (№ 204). pp. 31-37.

Bezpalchuk, V. and Gusak, A. and Kozubski, R. (2016) Correlations between phase formation morphology and sequence with the temperature profile of exothermic solid-state reactions. Вісник Черкаського університету. Серія Фізико-математичні науки (№ 1). pp. 3-11. ISSN 2076-5908

Pasichnyy, M. and Janczak-Rusch, J. and Jeurgens, L. P. H. and Liashenko, O. and Gusak, A. (2015) Application of the Critical Gradient Concept to First Phase Formation in Cu/Sn Nano-Multilayered Systems. Euromat. pp. 20-24.

Gusak, A. and Wierzba, B. and Danielewski, M. (2015) Electromigration revisited: competition between Kirkendall shift and backstress in pure metals and two-phase alloys. Philosophical Magazine. pp. 1-14.

Pasichnyy, M. and Gusak, A. (2015) Fundamentals of competing phase formation at reacting interfaces. Euromat. p. 1.

Gusak, A. and Kozubski, R. and Tyshchenko, D. (2015) Grain Growth in Open Systems. Diffusion Foundations, Т. 5. pp. 229-244.

Gusak, A. and Wierzba, B. and Danielewski, M. (2014) Competition between Kirkendall shif t and backstress in interdiff usion revisited – simple analytic model. Philosophical Magazine. pp. 1-15.

Gusak, A. and Danielewski, M. and Korbel, A. and Storozhuk, N. (2014) Elementary model of severe plastic deformation by KoBo process. Journal of Applied Physics (№ 115). pp. 1-5.

Hodaj, F. and Gusak, A. and Liashenko, O. (2013) Possibility of a shape phase transition for solidifi cation of tin at scallop-like surfaces of Cu6Sn5. Philosophical Magazine Letters, Т. 93 (№ 3). pp. 166-173.

Hodaj, F. and Gusak, A. and Liashenko, O. (2012) Possibility of a shape phase transition for solidification of tin at scallop-like surfaces of Cu6Sn5. Philosophical Magazine Letters. pp. 1-9.

Hodaj, F. and Liashenko, O. and Gusak, A. and Lyashenko, Y. (2011) Heterogeneous nucleation and depletion effect in nanowire growth. Philosophical Magazine. pp. 1-18.

Desre, P. J. and Gusak, A. (2001) Relaxation of thermal concentration-uctuations in ternary liquids. Philosophical magazine A, Т. 81 (№ 10). pp. 2503-2514.

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