The wind shear theory of the formation of temperature zone sporadic E layers.
Wind shear theory of formation of temperate zone blanketing sporadic E layers, noting motion equation for ions in ionospheric E region
Engineering topics
Publications and source records attributed to Axford, W. I..
Wind shear theory of formation of temperate zone blanketing sporadic E layers, noting motion equation for ions in ionospheric E region
Wind-shear theory of sporadic E layer at temperate zone with single ion and many ions, noting electron density
Fluid dynamic aspects of solar wind interaction with magnetosphere
Anisotropic diffusion of solar cosmic rays due to interplanetary magnetic field
Observations of interplanetary magnetic field by Mariner and Imp spacecraft confirm predictions based on behavior of cosmic rays
Tangential stress effects on magnetosphere tail with regard to magnetic field intensity and direction, trapped particle fluxes and low energy cosmic ray cut-off
Solar wind characteristics such as proton flux, velocities, etc, and cosmic rays, auroras and comet tails
Galactic cosmic ray diffusion and modulation by interplanetary medium
Model of galactic cosmic rays in interplanetary medium taking into account convection and diffusion
Electron density profiles and ionization drift speed relations in wind shear theory of sporadic E
Stability of ionization fronts allowing for absorption of ionizing photons in h region
Interaction of shock wave in medium upstream from nuclei of comets with solar wind may produce green and red lines in comet spectrum
Ionizing photon absorption effects on stability of d type ionization fronts separating h i and h ii regions
Development of gaseous nebula - ionizing radiation absorption in upper atmosphere
Viscous interaction between solar wind and earth magnetosphere
Viscous interaction between the solar wind and the earths magnetosphere
Structure and motion of magnetosphere from image- dipole model and space probe data emphasizing solar wind effect