Interaction of internal gravity waves with the ionospheric F2-layer
Traveling ionospheric disturbances excitation in F 2 layer by passing acoustic gravity waves
Engineering topics
Publications and source records attributed to Yeh, K. C..
Traveling ionospheric disturbances excitation in F 2 layer by passing acoustic gravity waves
Electron content spatial and temporal variation during ionospheric storm of 8 March 1970 after total solar eclipse
Traveling ionospheric disturbances dynamic properties, calculating horizontal phase velocity from triangulation data
Radio wave scattering from random electron density fluctuations in cold anisotropic magnetoplasma
Internal gravity wave propagation in neutral wind stratified atmospheric model
Electromagnetic wave trapping by nonlinear resonant interactions involving ion sound wave and two electromagnetic waves in isotropic plasma
Diurnal variations of meridional winds by dynamo electric field in troposphere, comparing with Thomson scattering
Ionospheric electron density disturbance heights measured via radio signal scintillation from earth satellite, using spaced receiver method
Ionospheric electron content at temperate latitudes during solar cycle increasing phase by radio beacon satellite, discussing diurnal, seasonal and latitudinal variations
Nonlinear oscillations averaging method applied to resonant interactions of acoustic gravity waves
Ion drag effects on acoustic gravity waves propagation in isothermal F region, discussing indicated wave damping
Fokker-Planck equation applied to probability density for finding rays larger than correlation distance during propagation in random medium
Rays associated Fokker-Planck relation for isotropic turbulence diffusion equation, discussing logarithmic refractive index, moments and path length
Generalized stochastic equations of probability density distribution for particle system in random electric field, noting relationship to Fokker-Planck equation
Scintillation of signals from Explorer 22 observed at medium latitude geomagnetically conjugate stations, noting differences for night and day
Faraday and Doppler methods for obtaining ionospheric electron content
Mathematical models of light ray propagation in random media
Traveling ionospheric disturbances found responsible for irregular variations in electron content using Faraday rotation observations at stations situated by triangulation