On empirical models of the upper atmosphere in the polar regions
Modified expression for exospheric temperature in Jacchia static diffusion models of upper atmosphere in polar regions
Engineering topics
Publications and source records attributed to Harris, I..
Modified expression for exospheric temperature in Jacchia static diffusion models of upper atmosphere in polar regions
Numerical integration of steady state heat conduction equations representing diurnal variations in upper atmosphere
Semiannual density variations in thermosphere and exosphere as function of mixtopause height variations
Diurnal variation for structure and energy balance of thermosphere, noting effect of global wind pattern
Semiannual density variation in thermosphere and exosphere
Thermosphere diurnal variation relationship to structure and energy balance, noting horizontal energy transport by pressure gradients from wind system
Structure of thermosphere and its diurnal variations
Diurnal variation of upper atmosphere by satellite drag measurements
Diurnal variation of upper atmosphere density and temperature as affected by solar heating and atmospheric heat transfer
Earth atmosphere, discussing properties of high altitude neutral atmosphere combined with measurement of solar output variations
COSPAR reference atmosphere models of variations in atmospheric properties of thermosphere and exosphere at different heights and times for ten levels of solar activity
Solar cycle variations of upper atmospheric properties, comparing air density observations with theoretical models
Relation between theoretical and observational models of atmospheric properties and changes during decreasing solar activity
Theoretical time-dependent model of the upper atmosphere through solutions to heat conduction equation for an equilibrium gas in a gravitational field
Theoretical models for the solar-cycle variation of the upper atmosphere
Theoretical models for solar-cycle variation of upper atmosphere
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Interaction of a charged artificial satellite with the ionosphere