Galactic cosmic rays in the interplanetary medium.
Model of galactic cosmic rays in interplanetary medium taking into account convection and diffusion
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Model of galactic cosmic rays in interplanetary medium taking into account convection and diffusion
Unified interplanetary diffusion model for time behavior of intensity of several solar cosmic ray events, accounting for decay phases
Solar wind plasma and interplanetary magnetic field influence on propagation of nonlinear wave phenomena
Steepest descent method to compute powered flight trajectory optimization for lunar and interplanetary transfer
The studies reported herein were prepared by Lockheed Missiles & Space Company for the George C. Marshall Space Flight Center, Huntsville, Ala., under Contract No. NAS 8-5024. The results of the Early Manned Interplanetary Mission Study are reported in two volumes. Volume 1 contains the unclassified portion of the studies and Volume 2 presents the classified (CRD) studies relating to orbital escape propulsion systems.
Quasi-stationary co-rotating structure in interplanetary field observed with IMP-I SATELLITE during three solar rotations
Proton and helium nuclei within interplanetary magnetic regions which corotate with sun - cosmic radiation
Interplanetary navigation and guidance study
Optimization of high thrust double-conic interplanetary trajectories - one-way planet- to-planet space flight
Open cycle life support system for manned interplanetary space flight
Measurements of magnetic fields in interplanetary space and magnetosphere by satellites and space probes
Design parameters for ballistic interplanetary trajectories to Mercury and Jupiter
Correlation of interplanetary geometry with propulsion requirements for optimal low-thrust missions
Equilibrium electric potential of bodies in upper atmosphere and interplanetary space calculated for determination of spacecraft behavior and trajectory
Computer analysis of interplanetary monitoring platform spacecraft performance
Extension of photospheric magnetic field into interplanetary space
First order control for low thrust interplanetary vehicles based on calculus of variations and Weierstrass E-function
Dry heat inactivation of Bacillus globigii spores encapsulated in Lucite to simulate interplanetary spacecraft conditions