Diurnal intensity variation of low-energy electrons observed near the polar cap.
Electron flux and energy spectrum measurements near polar cap investigated for diurnal intensity variations
Engineering topics
Publications and source records attributed to Meyer, P..
Electron flux and energy spectrum measurements near polar cap investigated for diurnal intensity variations
Primary cosmic ray electron spectrum in energy range from 300 MeV to 4 BeV
Balloon sounding data of primary cosmic ray electron component evaluated for long term time variations
Electron-positron components of primary cosmic radiation, noting energy spectrum, flux, charge composition, origin, etc
Flux and energy spectrum of primary electron component measured by balloon at period near solar activity minimum
Flux and energy spectrum of primary electron component measured by balloon at period near solar activity minimum
Balloon measurement of charge ratio of primary cosmic ray electrons in energy level from 100 mev to 3 bev in 1964
Balloon flight data on cosmic ray electron- positron ratio from 100 MeV to 3 BeV
Trapped radiation in magnetosphere and experimental tests for resolution of cosmic ray modulation theories
Cosmic radiation intensity decreases observed at earth and in nearby interplanetary magnetic fields
Changes of cosmic ray intensity determined with eleven year solar activity cycle
Dynamics and structure of Van Allen outer radiation belt
Comparison of neutron decay theory and observed outer radiation belt electron distribution
Experiment giving approximate energy spectrum of electron component in primary cosmic radiation
Positron-electron ratio in primary cosmic radiation measured as function of energy - cosmic ray origin
Balloon-borne spark chamber and magnet system for identifying and measuring momentum of cosmic radiation particles
Spark chamber and deflection magnet to photograph tracks of cosmic ray electrons at balloon altitudes
Ratio of electron to positrons in primary cosmic radiation investigated by balloon-borne instrument over Ft. Churchill