Chandrayaan-2 Lunar Surface Dust Characterization Experiment
GPTKB entity
Statements (56)
Predicate | Object |
---|---|
gptkbp:instance_of |
gptkb:physicist
|
gptkbp:bfsLayer |
4
|
gptkbp:bfsParent |
gptkb:Chandrayaan-2
|
gptkbp:aims_to |
promote international cooperation
characterize lunar dust foster innovation in space technology enhance scientific collaboration enhance astronaut safety improve landing technologies |
gptkbp:analyzes |
lunar regolith
dust impact on human health dust interaction with equipment dust transport mechanisms |
gptkbp:collaborates_with |
academic institutions
international space agencies |
gptkbp:collection |
lunar dust properties
|
gptkbp:conducted |
gptkb:Indian_Space_Research_Organisation
|
gptkbp:contributed_to |
gptkb:sustainable_lunar_exploration
future lunar missions lunar resource utilization lunar habitat design |
gptkbp:duration |
several months
|
https://www.w3.org/2000/01/rdf-schema#label |
Chandrayaan-2 Lunar Surface Dust Characterization Experiment
|
gptkbp:impact |
gptkb:spacecraft
planetary science astrobiology |
gptkbp:instrument |
gptkb:Company
|
gptkbp:involves |
gptkb:public_outreach
gptkb:Educational_Institution data analysis data sharing remote sensing interdisciplinary research field experiments laboratory studies |
gptkbp:launched |
July 22, 2019
|
gptkbp:location |
gptkb:planet
|
gptkbp:part_of |
gptkb:Chandrayaan-2_mission
|
gptkbp:provides_information_on |
lunar surface processes
lunar environmental conditions dust particle size dust composition lunar dust dynamics dust adhesion properties dust behavior dust electrostatic properties dust thermal properties |
gptkbp:receives_funding_from |
government grants
|
gptkbp:result |
gptkb:academic_journal
|
gptkbp:significance |
understanding lunar environment
|
gptkbp:supports |
gptkb:Research_Institute
|
gptkbp:technology |
gptkb:musician
imaging systems |
gptkbp:utilizes |
advanced algorithms
data visualization tools machine learning techniques |