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Basic Equations The Nature of
Some Remarks on Microprocesses
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absence of absorption amplitude applicable approximation of geometric arbitrary assumed calculation Cherenkov radiation clear coefficient of reflection condition consideration considered const corresponding cos2 curves damping derivative direction disregarded effect electron equa equal example expression extraordinary wave F-layer follows frequency geometric optics group velocity homogeneous medium incident wave inequality inhomogeneous integral interaction ionosphere ions isotropic medium isotropic plasma linear layer longitudinal longitudinal waves magnetic field magnetoactive plasma magnetohydrodynamic molecules normal incidence normal waves number of collisions oblique incidence obtain ordinary wave oscillations parabolic layer parameter particles permittivity phase phase velocity plasma waves polarization pole problem propagation of waves quantity quasi-hydrodynamic radiation reflection point refractive index region resonance result satisfied Section signal sin2 solar corona spatial dispersion taken into account tensor thermal motion tion trajectory transverse transverse waves valid values wave equation wave propagation wave vector waves in plasma z-axis zero