THE PLASMA IN INTERPLANETARY SPACE
Plasma in interplanetary space - spatial and temporal distribution and plasma dynamics
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Plasma in interplanetary space - spatial and temporal distribution and plasma dynamics
Mariner ii magnetometer data analysis indicates persistent interplanetary magnetic field
Optimum interplanetary rendezvous with power limited vehicles
Design of unmanned spacecraft for interplanetary travel and scientific observations
Discussion of the design and operation of command systems for remote control of interplanetary spacecraft
Discussion of prospects and requirements for manned interplanetary flights to mars and venus during the first half of the 1970s
Protection requirements for the resistance of meteorite penetration damage for various interplanetary spacecraft systems
Effect of a weak interplanetary magnetic field on solar wind-geomagnetic field interaction
Sizing requirements of nuclear orbit launch boosters for interplanetary flyby and stopover missions
Solar wind distribution of neutral interplanetary hydrogen by interaction with solar protons
Direct-ascent and parking-orbit trajectories for lunar and interplanetary space flight for both powered-flight and coasting phases
Parametric measurement of interplanetary dust particles obtained by means of the microphone system on explorer viii
Interplanetary dust studies are summarized, noting ground-based and space experimental results concerning particle concentration and influx rate
Preliminary analysis of early interplanetary flyby and capture missions to evaluate launch year variation, trip duration, propulsion systems, and entry modes
Iteration method using offset-aim technique to determine exact initial conditions for interplanetary ballistic trajectories
Linear perturbation technique for orbit determination and guidance correction, for earth- based guidance of unmanned lunar and interplanetary flight
Heliocentric transfer orbit and launch hyperbolic excess velocity analyses are included in a study of interplanetary ballistic trajectories
Calculation of atomic hydrogen distribution in interplanetary space based on solar wind measurements