AFTER NOW, WHAT THEN IN SPACE QUES
Space sciences for interplanetary travel - space radiation, satellites and extraterrestrial life
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Search indexed NASA NTRS and DOE OSTI research on propulsion, heat transfer, battery materials and energy systems. Follow report and document links to the original sources.
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Space sciences for interplanetary travel - space radiation, satellites and extraterrestrial life
Life-support systems for long-term interplanetary missions and shorter-term missions
Subsystems for mars mission module
Asteroid belt and Jupiter flyby mission study
Nuclear rocket engine for interplanetary missions to Mars and Venus - lunar transfer mission
Venus swingby used to decelerate manned spacecraft returning from Mars
Spacecraft, missions and instrumentation for space probes and interplanetary exploration
Research and technology implications for Orbiting Launch Facility for manned interplanetary and lunar ferry missions
Celestial-inertial navigation for interplanetary electrical propulsion vehicle
Launch opportunities and advantages of gravity- assisted multiple missions to specific solar system targets
The Working Group on Extraterrestrial Resources is composed of people from the National Aeronautics and Space Administration (NASA), the U. S. Air Force, the U. S. Navy, Office of Engineers of the U. S. Army, U S. Geological Survey, the Department of Agriculture, and the Rand Corporation. It was organized for the following function: "To evaluate the feasibility and usefulness of the employment of extraterrestrial resources with the objective of reducing dependence of lunar and planetary exploration on terrestrial supplies; to advise cognizant agencies on requirements pertinent to these objectives, and to point out the implications affecting these goals. "
Manned Venus and Mars flybys and Mars landings using only Saturn-Apollo hardware
Stochastic optimal control problem solution by dynamic programming and relation to interplanetary guidance
Venus swingby used to decelerate manned spacecraft returning from Mars
Advanced communications techniques and control capability studies for Deep Space Network
Photovoltaic power system design optimization and procedures for five interplanetary missions
Navigation and guidance requirement analyses during midcourse and orbital phases of 1975 round-trip Mars mission
Power system configurations and reliability for interplanetary missions to Mercury, Venus, Mars, and Jupiter