Interface phenomena are most fascinating because of the mixing of different scales and the interference of diverse physical processes. This monograph takes a unified approach to answer practical questions dealing with inelastic gas-surface scattering, the kinetics of adsorption layers, the evolution of inhomogeneities and defects at the surface, the Knudsen layer, the development of boundary conditions on the kinetic and gas-dynamical levels, the determination of exchange and slip coefficients, and so on. Applications are taken from the aerodynamics and gas-dynamics of hypersonic flows, the aerothermochemistry of flying vehicles, thin-film growing technologies, biology and ecology. The book's four parts discuss molecule scattering, adsorption kinetics, some pheonomenological models of thin-film growth, and the kinetic boundary conditions and inverse scattering problem.
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Interface phenomena are most fascinating because of the mixing of different scales and the interference of diverse physical processes. This makes it necessary to use different levels of description: microscopic, kinetic, and gas-dynamical. A unified quasiclassical approach is used to answer practical questions dealing with inelastic gas-surface scattering, the kinetics of adsorption layers, the evolution of inhomogeneities and defects at the surface, the Knudsen layer, the development of boundary conditions on the kinetic and gas-dynamical levels, the determination of exchange and slip coefficients, and so on.
Interface phenomena are most fascinating because of the mixing of different scales and the interference of diverse physical processes. This monograph takes a unified approach to answer practical questions dealing with inelastic gas-surface scattering, the kinetics of adsorption layers, the evolution of inhomogeneities and defects at the surface, the Knudsen layer, the development of boundary conditions on the kinetic and gas-dynamical levels, the determination of exchange and slip coefficients, and so on. Applications are taken from the aerodynamics and gas-dynamics of hypersonic flows, the aerothermochemistry of flying vehicles, thin-film growing technologies, biology and ecology. The book's four parts discuss molecule scattering, adsorption kinetics, some pheonomenological models of thin-film growth, and the kinetic boundary conditions and inverse scattering problem.
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