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Vakhrushev, A. , & Fedotov, A. Y. Issledovanie verojatnostnyh zakonov raspredelenija strukturnyh harakteristik nanochastic, modeliruemyh metodom molekuljarnoj dinamiki [Investigation of probability distribution laws of the structural characteristics of nanoparticles, simulated by molecular dynamics]. Vychislitel’naja mehanika sploshnyh sred – Computational continuum mechanics, 2009, vol. 2, no. 14–21. 32. Vakhrushev, A. , Golubchikov, V. , Fedotov, A. , & Zhivotkov, A. V. Mnogourovnevoe modelirovanie processov kondensacii molekuljarnoj smesi v ajerozol’nyh ognetushiteljah [Multilevel simulation of molecular mixture condensation aerosol fire extinguishers].
The formation of nanoscale photovoltaic structures on the surface of the substrate is greatly influenced by mismatch lattices deposited material and the substrate. Depending on the parameter mismatch have different mechanisms of growth. The experimental and theoretical studies  it is known that the formation of three-dimensional islands requires parameter lattice mismatch in the deposited material/substrate was large enough (ε0>2%). Moreover, the more the value of the lattice mismatch, the sooner the formation of coherent islands .
A, 1924, vol. 106, pp. 463–477. Lennard-Jones, J. E. Wave Functions of Many-Electron Atoms. Proc. Camb. Phil. , 1931, vol. 27, pp. 469–480. Zinenko, V. , Sorokin, B. , & Turchin, P. P. Osnovy fiziki tverdogo tela [Fundamentals of Solid State Physics]. , 2001, 336 p. Stoddard, S. , & Ford J. Numerical Experiments on the Stochastic Behavior of a Lennard-Jones Gas System. Phys. Rev. A, 1973, vol. 8, no. 3, pp. 1504–1512. Krivcov, A. , & Krivcova, N. V. Metod chastic i ego ispol’zovanie v mehanike deformiruemogo tverdogo tela [Particle method and its use in solid mechanics].