The Regolith and Environment Science and Oxygen & Lunar Volatile Extraction (RESOLVE) project aims to demonstrate the utility of "in situ resource utilization". In situ resource utilization (ISRU) is a way to rebalance the economics of spaceflight by reducing or eliminating materials that must be brought up from Earth and placed on the surface of the Moon for human use. RESOLVE is developing a rover-borne payload that (1) can locate near subsurface volatiles, (2) excavate and analyze samples of the volatile-bearing regolith, and (3) demonstrate the form, extractability and usefulness of the materials. Such investigations are important not only for ISRU but are also critically important for understanding the scientific nature of these intrig...
Studies of lunar polar volatile depositsare of interest for scientific purposes to understandthe nat...
The RESOLVE Project is a lunar prospecting mission whose primary goal is to characterize water and o...
In-Situ Resource Utilization (ISRU) enables future planetary exploration by using local resources to...
Data gathered from lunar missions within the last two decades have significantly enhanced our unders...
Regolith & Environment Science and Oxygen & Lunar Volatile Extraction (RESOLVE) is an internationall...
Future human exploration of the Moon will likely rely on in situ resource utilization (ISRU) to enab...
The Regolith & Environment Science and Oxygen & Lunar Volatile Extraction (RESOLVE) payload is an ex...
To sustain affordable human and robotic space exploration, the ability to live off the land at the e...
The Resource Prospector is an in-situ resource utilization (ISRU) technology demonstration mission, ...
Both the Moon and Mercury evidently host ice and other volatile compounds in cold traps at the plane...
Over the last two decades a wealth of new observations of the moon have demonstrated a lunar water s...
The Regolith and Environment Science Oxygen and Lunar Volatile Extraction (RESOLVE) payload is part ...
Efficient expansion of human presence beyond low-Earth orbit to asteroids and Mars will require the ...
Over the last two decades a wealth of new observations of the moon have demonstrated a lunar water s...
In Situ Resource Utilization (ISRU) enables future planetary exploration by using local resources to...
Studies of lunar polar volatile depositsare of interest for scientific purposes to understandthe nat...
The RESOLVE Project is a lunar prospecting mission whose primary goal is to characterize water and o...
In-Situ Resource Utilization (ISRU) enables future planetary exploration by using local resources to...
Data gathered from lunar missions within the last two decades have significantly enhanced our unders...
Regolith & Environment Science and Oxygen & Lunar Volatile Extraction (RESOLVE) is an internationall...
Future human exploration of the Moon will likely rely on in situ resource utilization (ISRU) to enab...
The Regolith & Environment Science and Oxygen & Lunar Volatile Extraction (RESOLVE) payload is an ex...
To sustain affordable human and robotic space exploration, the ability to live off the land at the e...
The Resource Prospector is an in-situ resource utilization (ISRU) technology demonstration mission, ...
Both the Moon and Mercury evidently host ice and other volatile compounds in cold traps at the plane...
Over the last two decades a wealth of new observations of the moon have demonstrated a lunar water s...
The Regolith and Environment Science Oxygen and Lunar Volatile Extraction (RESOLVE) payload is part ...
Efficient expansion of human presence beyond low-Earth orbit to asteroids and Mars will require the ...
Over the last two decades a wealth of new observations of the moon have demonstrated a lunar water s...
In Situ Resource Utilization (ISRU) enables future planetary exploration by using local resources to...
Studies of lunar polar volatile depositsare of interest for scientific purposes to understandthe nat...
The RESOLVE Project is a lunar prospecting mission whose primary goal is to characterize water and o...
In-Situ Resource Utilization (ISRU) enables future planetary exploration by using local resources to...