Results 231 to 240 of about 20,805,604 (297)
Blistering barnacles: Space physiology in The Adventures of Tintin
Experimental Physiology, Volume 111, Issue 9, Page 3870-3873, 1 September 2026.
Jacob P. Hartmann +4 more
wiley +1 more source
Constraints on the impactor flux to the Earth-Moon system from oxygen isotopes of the lunar regolith. [PDF]
Gargano AM +6 more
europepmc +1 more source
Emerging Chemical and Biological Materials Technologies in the Extraplanetary Environment. [PDF]
Jiang Q +5 more
europepmc +1 more source
Tianwen-2 mission target asteroid (469219) Kamo'oalewa probably develops an Itokawa-compositional but more space-weathered surface. [PDF]
Zhang P +47 more
europepmc +1 more source
The physiology of survival: Space
Experimental Physiology, Volume 111, Issue 9, Page 3890-3894, 1 September 2026.
Damian M. Bailey, Angelique van Ombergen
wiley +1 more source
Space physiology: Challenges and solutions for a journey to Mars
Experimental Physiology, Volume 111, Issue 9, Page 3863-3869, 1 September 2026.
Damian M. Bailey
wiley +1 more source
Experimental Physiology, Volume 111, Issue 9, Page 3916-3918, 1 September 2026.
Susan P. Mollan, Damian M. Bailey
wiley +1 more source
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IEEE Potentials, 1996
Solar power must become the primary source of commercial power for everyone in the world to achieve the same high standard of living. A power system is needed that is independent of Earth's biosphere and provides abundant energy at low cost. To do this mankind must collect dependable solar power in space and reliably send it to receivers on Earth.
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Solar power must become the primary source of commercial power for everyone in the world to achieve the same high standard of living. A power system is needed that is independent of Earth's biosphere and provides abundant energy at low cost. To do this mankind must collect dependable solar power in space and reliably send it to receivers on Earth.
openaire +3 more sources
Lunar Rover Power Electronic System
The small, light-weight and modular Lunar rover must survive several earth days in harsh environment after its moon landing. Its power electronic system with integrated solar generation needs power for its mission and also to stay warm in very cold ...
Martijn Hubers +2 more
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Design issues for the power system of a lunar rover
The Electrical Power System developed for a lunar rover is presented and the design of the main subsystems is analysed with a view to the AMALIA lunar mission. In particular, an unusual configuration of the battery subsystem, based on a 1S battery and a high-voltage-diversity BCDR was developed and tested. The experimental results demonstrated that any
SCHIRONE, Luigi, MACELLARI, MICHELE
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