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385, Oxford University Press: Oxford, England, 1987. S. P. Protsenko and V. G. Baidakov, Densities of coexisting phases in the micro-heterogeneous liquid gas system, High Temp 26(2), 183–187, 1988. F. B. Baimbetov and T. Ramazanov, Dielectric permittivity of and bremsstrahlung in dense plasma, High Temp 30(5), 1025– 1028, 1992. F. B. Baimbetov and K. T. Nurekenov, Viscosity and heat conductivity of weekly ionized plasma, High Temp 30(6), 1217–1220, 1992. D. Frenkel and B. Smit, Understanding Molecular Simulation: From Algorithms to Applications, p.
Vaganov, and G. V. Gadiyak, Modeling Cluster Evaporation in Vacuum, Reprint of IGG RAS, 9, 20, 1985. B. M. Bedanov, V. S. Vaganov, G. V. Gadiyak, G. G. Kuznetsov, and E. A. Rubakhin, Equilibrium vapor pressure over a nucleus of clusters, Sov J Chem Phys 6, 1960–1967, 1987. W. C. Schieve and H. W. Harrison, Molecular dynamics study of dimer formation in three dimensions, J Chem Phys 61, 700–703, 1974. M. Yamashita, T. Sato, and S. Kotake, Kinetic analysis of dimer formation of rare gases, J Chem Phys 61, 700–703, 1974.
L. Thompson, Cluster dynamics: A classical study of A * n → An-1 + A, J Chem Phys 74(2), 1026– 1028, 1981. P. J. Robinson and K. A. Holbrook, Unimolecular Reactions, Wiley: London, UK, 1972. 50. S. F. Chekmarev and F. S. Lyu, Some aspects of dynamic chaos in small Lennard-Jones clusters, Z Phys D 20, 231–233, 1991. F. S. Lyu and S. F. Chekmarev, Application of the molecular dynamics methods for studying characteristics of small clusters, Preprint of Inst Therm Phys 89, 25, 1988. B. M. Bedanov, V.