Statements (100)
Predicate | Object |
---|---|
gptkbp:instance_of |
gptkb:space_mission
|
gptkbp:aims_to |
study binary asteroid system
|
gptkbp:analysis |
collaborative research
gravity field surface features asteroid composition |
gptkbp:collaborates_with |
gptkb:NASA
|
gptkbp:collaboration |
gptkb:NASA
gptkb:international_partners global space community |
gptkbp:collection |
impact of DART mission
|
gptkbp:community |
academic institutions
research organizations global collaboration space agencies |
gptkbp:community_engagement |
gptkb:educational_resources
social media campaigns educational outreach outreach programs |
gptkbp:community_outreach |
workshops
online content exhibitions public lectures interactive activities |
gptkbp:duration |
approximately 4 years
|
gptkbp:funding |
gptkb:European_Union
|
https://www.w3.org/2000/01/rdf-schema#label |
Hera mission
|
gptkbp:impact |
gptkb:space_exploration
planetary science asteroid research |
gptkbp:instruments |
gptkb:radar_system
gptkb:camera gptkb:spectrometer |
gptkbp:is_a_destination_for |
gptkb:Didymos_system
|
gptkbp:landing_site |
2026
|
gptkbp:launch_date |
2024
|
gptkbp:launch_site |
gptkb:Guiana_Space_Centre
gptkb:Kourou,_French_Guiana |
gptkbp:launch_vehicle |
gptkb:Ariane_6
|
gptkbp:mission |
gptkb:engineers
gptkb:scientists autonomous navigation high-resolution imaging project managers post-launch test new technologies surface mapping international collaborators enhance planetary defense strategies improve asteroid characterization |
gptkbp:mission_duration |
approximately 4 years
|
gptkbp:mission_type |
planetary defense
|
gptkbp:notable_mission |
gptkb:DART_mission
|
gptkbp:objective |
study binary asteroid system
characterize the asteroid Dimorphos |
gptkbp:operational_status |
planned
|
gptkbp:orbit_type |
gptkb:Didymos
|
gptkbp:orbital_altitude |
study of binary systems
around Dimorphos |
gptkbp:outcome |
scientific publications
detailed asteroid maps enhanced models of asteroid behavior impact simulation data improved risk assessment tools enhanced understanding of binary asteroids improved asteroid deflection strategies |
gptkbp:parent_agency |
gptkb:European_Space_Agency
|
gptkbp:part_of |
gptkb:European_Space_Agency
gptkb:AIDA_collaboration |
gptkbp:production_status |
in development
|
gptkbp:project |
gptkb:European_Space_Agency
|
gptkbp:provides_information_on |
gptkb:scientific_community
|
gptkbp:publications |
gptkb:educational_materials
technical reports scientific findings conference presentations mission overview papers |
gptkbp:scientific_goals |
evaluate potential hazards
contribute to planetary science understand asteroid composition assess surface properties measure impact effects understand binary asteroid dynamics assess impact of kinetic impactor measure asteroid mass |
gptkbp:scientific_instruments |
gptkb:radar_system
gptkb:cosmic_ray_detector gptkb:camera gptkb:Dunmer gptkb:spectrometer dust analyzer thermal imager |
gptkbp:spacecraft |
gptkb:satellite
modular architecture solar-powered |
gptkbp:target_moon |
gptkb:Dimorphos
|
gptkbp:technology |
gptkb:Rubik's_Cube
|
gptkbp:was_a_demonstration_of |
autonomous navigation
|
gptkbp:bfsParent |
gptkb:DART_mission
|
gptkbp:bfsLayer |
4
|