Psyche mission

GPTKB entity

Statements (91)
Predicate Object
gptkbp:instance_of gptkb:spacecraft
gptkbp:bfsLayer 3
gptkbp:bfsParent gptkb:radio_station
gptkb:NASA
gptkbp:collaborations gptkb:Jet_Propulsion_Laboratory
gptkb:University_of_California,_Los_Angeles
gptkb:University_of_Colorado_Boulder
gptkb:Maxar_Technologies
gptkb:University_of_Arizona
gptkb:Arizona_State_University
gptkb:NASA_Ames_Research_Center
gptkb:NASA_Goddard_Space_Flight_Center
gptkbp:community gptkb:NASA_Jet_Propulsion_Laboratory
gptkbp:community_engagement community workshops
educational outreach programs
social media updates
community involvement initiatives
interactive website
live mission events
gptkbp:duration approximately 21 months
gptkbp:elevation heliocentric orbit
gptkbp:events gptkb:streaming_service
gptkb:television_channel
public ceremony
gptkbp:goal understand the building blocks of planet formation
study the asteroid's composition
https://www.w3.org/2000/01/rdf-schema#label Psyche mission
gptkbp:instrument gptkb:video_game
dual frequency radar
thermal emission spectrometer
multispectral imager
thermal infrared spectrometer
dual-frequency radar
gamma ray and neutron spectrometer
gamma-ray and neutron spectrometer
topographic imager
gptkbp:is_a_destination_for gptkb:asteroid_16_Psyche
gptkb:16_Psyche
gptkbp:landing_site 2026
gptkbp:launch_date gptkb:2022
gptkb:2023
August 2022
2023-10-13
gptkbp:launch_site gptkb:2022
gptkb:Kennedy_Space_Center
gptkb:Space_X
gptkbp:launch_vehicle gptkb:Space_X_Falcon_Heavy
gptkb:Falcon_Heavy
gptkbp:launched gptkb:2023
gptkb:NASA
gptkbp:mission gptkb:spacecraft
gptkb:Research_Institute
active
planetary science
planned
robotic exploration
science phase
gptkbp:mission_duration approximately 4 years
approximately 21 months
gptkbp:objective study the metallic asteroid 16 Psyche
investigate the history of planet formation
gptkbp:operational_area gptkb:NASA
gptkbp:outcome insights into the early solar system
advancements in asteroid mining technology
knowledge about planetary core formation
understanding of metallic asteroids
gptkbp:primary_source gptkb:Lindy_Elkins-Tanton
gptkbp:principal gptkb:Lindy_Elkins-Tanton
gptkbp:propulsion gptkb:spacecraft
gptkb:Psyche_spacecraft
gptkb:Psyche
gptkbp:provides_information_on high-resolution images
topographic maps
topographical maps
spectral data
magnetic field measurements
composition analysis
gptkbp:receives_funding_from gptkb:NASA
gptkbp:scientific_goals understand the building blocks of planet formation
determine the asteroid's age
explore the history of planetary cores
investigate the asteroid's surface composition
study the asteroid's magnetic field
gptkbp:significance contributes to planetary science
advances technology for future missions
enhances understanding of asteroid composition
explores the history of the solar system
investigates the nature of metallic asteroids
provides insights into planetary cores
gptkbp:ticket_sales 2026
2029