gptkbp:instance_of
|
gptkb:EP
gptkb:Mars_Rover
|
gptkbp:average_temperature
|
-90 to 0 ° C
-90 to 35 ° C
|
gptkbp:chart_performance
|
gptkb:Billboard_200
gptkb:Billboard_Heatseekers_Albums
|
gptkbp:collaborations
|
gptkb:scientific_institutions
gptkb:international_partners
universities
research organizations
international space agencies
|
gptkbp:communication
|
gptkb:X-band_radio
Direct to Earth
via the Deep Space Network
|
gptkbp:community_engagement
|
educational outreach programs
provides data for educational purposes
shares images and findings with the public
|
gptkbp:critical_reception
|
generally positive
|
gptkbp:data_return
|
over 1 terabyte
|
gptkbp:data_transmission
|
gptkb:Mars_Reconnaissance_Orbiter
gptkb:Mars_Odyssey
via X-band radio
|
gptkbp:discovery
|
clay minerals
organic molecules
methane spikes
Martian soil composition
Martian weather patterns
discovery of organic molecules
evidence of ancient riverbeds
analysis of rock samples
investigation of radiation levels
evidence of ancient water
study of Martian geology
Mars' atmosphere composition
radiation levels on Mars
analysis of Martian atmosphere
discovery of clay minerals
Organic molecules on Mars
investigation of potential habitability
Martian dust composition
discovery of methane spikes
seasonal changes in methane
study of Martian soil
evidence of habitable conditions
discovery of Martian dust
identification of seasonal methane spikes
monitoring of weather patterns
presence of clay minerals
|
gptkbp:distance
|
over 25 kilometers
over 25 km
25.89 km
|
gptkbp:duration
|
13 to 24 minutes
|
gptkbp:emergency_services
|
gptkb:Mars_Rover
gptkb:Mars
gptkb:Gale_Crater
August 6, 2012
|
gptkbp:exhibition
|
Displayed in exhibitions
Taken on October 31, 2012
|
gptkbp:first_analysis_of_martian_soil
|
February 2013
|
gptkbp:first_awarded
|
August 6, 2012
2012-08-06
|
gptkbp:first_drill_date
|
February 2013
|
gptkbp:first_drill_sample
|
February 2013
|
gptkbp:first_drilling
|
February 2013
|
gptkbp:first_drilling_date
|
2013-02-08
|
gptkbp:first_drilling_operation
|
February 2013
|
gptkbp:first_drive_date
|
August 22, 2012
2012-08-22
|
gptkbp:first_dust_storm_observation_date
|
2013-09-01
|
gptkbp:first_evidence_of_water
|
gptkb:2013
|
gptkbp:first_evidence_of_water_date
|
2013-03-12
|
gptkbp:first_image_sent_back
|
August 6, 2012
|
gptkbp:first_image_sent_back_date
|
2012-08-07
|
gptkbp:first_martian_sunset_image_date
|
2013-10-01
|
gptkbp:first_methane_detection
|
gptkb:2013
|
gptkbp:first_methane_detection_date
|
2013-06-16
|
gptkbp:first_organic_molecule_detection_date
|
2013-06-15
|
gptkbp:first_organic_molecules_detected
|
gptkb:2014
|
gptkbp:first_radiation_measurement_date
|
2013-08-12
|
gptkbp:first_rock_sample
|
gptkb:John_Klein
|
gptkbp:first_rover_to_climb_mount_sharp
|
gptkb:true
|
gptkbp:first_sample_analysis
|
gptkb:2013
March 2013
|
gptkbp:first_sample_analysis_date
|
October 2012
2012-10-17
|
gptkbp:first_sample_caching_date
|
2021-09-01
|
gptkbp:first_sample_collected
|
February 2013
|
gptkbp:first_sample_return_date
|
2013-02-24
|
gptkbp:funding
|
$2.5 billion
|
gptkbp:future_plans
|
continue exploration of Gale Crater
investigate new areas of interest on Mars
|
gptkbp:genre
|
gptkb:Pop
|
gptkbp:group_size
|
over 300 scientists
|
gptkbp:has_duration
|
over 10 years
|
gptkbp:has_height
|
2.2 meters
|
gptkbp:has_weapon
|
gptkb:Chemistry_and_Mineralogy_(Che_Min)
gptkb:Radiation_Assessment_Detector_(RAD)
gptkb:Rover_Environmental_Monitoring_Station_(REMS)
gptkb:Thermal_Emission_Imaging_System_(THEMIS)
gptkb:Mast_Cam
gptkb:Dynamic_Albedo_of_Neutrons_(DAN)
gptkb:Chem_Cam
gptkb:Mars_Hand_Lens_Imager_(MAHLI)
gptkb:Sample_Analysis_at_Mars_(SAM)
gptkb:Laser_Induced_Breakdown_Spectroscopy_(LIBS)
gptkb:Navigation_Cameras_(Navcams)
gptkb:Alpha_Particle_X-ray_Spectrometer_(APXS)
Spectrometers
Rover Arm
Dust Removal Tool (DRT)
Environmental Monitoring Sensors
|
gptkbp:height
|
2.2 m
|
https://www.w3.org/2000/01/rdf-schema#label
|
Curiosity
|
gptkbp:instrument
|
gptkb:Chemistry_and_Mineralogy_(Che_Min)
gptkb:Rover_Environmental_Monitoring_Station_(REMS)
gptkb:Dynamic_Albedo_of_Neutrons_(DAN)
gptkb:Chem_Cam
gptkb:Mars_Hand_Lens_Imager_(MAHLI)
gptkb:Sample_Analysis_at_Mars_(SAM)
gptkb:Laser_Induced_Breakdown_Spectroscopy_(LIBS)
gptkb:Alpha_Particle_X-ray_Spectrometer_(APXS)
Rover Imaging System (Rover Cam)
|
gptkbp:is_a_destination_for
|
gptkb:Mars
|
gptkbp:is_part_of
|
gptkb:NASA's_rover_program
|
gptkbp:label
|
gptkb:Atlantic_Records
|
gptkbp:landing_distance
|
gptkb:Mars
gptkb:Gale_Crater
August 6, 2012
|
gptkbp:landing_site
|
gptkb:Gale_Crater
August 6, 2012
2012-08-06
|
gptkbp:launch_date
|
November 26, 2011
2011-11-26
|
gptkbp:launch_vehicle
|
gptkb:Atlas_V_541
|
gptkbp:launched
|
gptkb:NASA
November 26, 2011
|
gptkbp:launched_in
|
gptkb:2011
|
gptkbp:legacy
|
paving the way for human exploration
|
gptkbp:length
|
3 m
3 meters
24:12
|
gptkbp:manufacturer
|
gptkb:Jet_Propulsion_Laboratory
gptkb:NASA
|
gptkbp:mass
|
899 kg
|
gptkbp:mission
|
gptkb:Mars_Science_Laboratory
gptkb:NASA_Jet_Propulsion_Laboratory
study Martian climate
study Martian geology
investigate Martian climate
prepare for future human exploration
assess past habitability
search for organic compounds
analyze Martian geology
assess the biological potential of Mars
Assess habitability of Mars
|
gptkbp:mission_duration
|
ongoing
Over 10 years
over 10 years
Ongoing since 2012
ongoing since 2012
originally planned for 2 years
at least 687 Earth days
planned for at least two Earth years
|
gptkbp:mission_type
|
gptkb:exploration
gptkb:Mars_Rover
Astrobiology
|
gptkbp:notable_achievements
|
Provided data for future missions
Analyzed methane levels
Conducted radiation measurements
Confirmed presence of water in the past
Contributed to understanding of Mars' habitability
Explored Gale Crater
Identified diverse mineralogy
Investigated Martian dust
Studied Martian atmosphere
Studied rock formations
|
gptkbp:notable_work
|
discovery of organic molecules
evidence of ancient riverbeds
detection of organic molecules
discovery of ancient riverbeds
study of Martian rocks
study of radiation levels on Mars
analysis of Martian soil
evidence of past habitable conditions
study of Martian atmosphere
analysis of Martian atmosphere
investigation of potential habitability
analysis of Martian climate history
discovery of methane spikes
study of Martian dust devils
analysis of Martian surface chemistry
analysis of surface materials
investigation of Mars' potential for life
investigation of Martian dust
investigation of seasonal changes on Mars
study of Gale Crater's geology
study of Martian meteorology
study of ancient environments on Mars
study of water history on Mars
|
gptkbp:number_of_tracks
|
gptkb:5
|
gptkbp:objective
|
investigate Martian geology
Assess past habitability of Mars
study Martian climate
monitor radiation levels
analyze soil and rock samples
test new technology
search for organic compounds
|
gptkbp:operated_by
|
gptkb:Jet_Propulsion_Laboratory
|
gptkbp:operational_area
|
Martian surface
|
gptkbp:operational_challenges
|
radiation exposure
dust storms
communication delays
temperature extremes
|
gptkbp:operational_period
|
2012-present
|
gptkbp:operational_status
|
Active
active
operational
|
gptkbp:operational_use
|
Martian surface
|
gptkbp:part_of
|
gptkb:Mars_Science_Laboratory_(MSL)
|
gptkbp:payload_capacity
|
gptkb:Chemistry_and_Mineralogy_(Che_Min)
gptkb:Radiation_Assessment_Detector_(RAD)
gptkb:Rover_Environmental_Monitoring_Station_(REMS)
gptkb:Mars_Science_Laboratory_(MSL)
gptkb:Dynamic_Albedo_of_Neutrons_(DAN)
gptkb:Mars_Hand_Lens_Imager_(MAHLI)
gptkb:Sample_Analysis_at_Mars_(SAM)
gptkb:Laser_Induced_Breakdown_Spectroscopy_(LIBS)
gptkb:Alpha_Particle_X-ray_Spectrometer_(APXS)
Rover Imaging System (Rover Cam)
Chem Cam (Chemistry and Camera)
|
gptkbp:photography
|
gptkb:Rover_Environmental_Monitoring_Station_(REMS)
gptkb:Mast_Cam
gptkb:Chem_Cam
|
gptkbp:portrait
|
gptkb:Gale_Crater
|
gptkbp:power_source
|
gptkb:Radioisotope_Thermoelectric_Generator
nuclear
nuclear power
|
gptkbp:primary_mission
|
gptkb:Mars_2020_Perseverance_rover
gptkb:Mars_2020
ongoing
|
gptkbp:producer
|
gptkb:Hayley_Kiyoko
gptkb:Jesse_Shatkin
gptkb:Drew_Pearson
gptkb:Kiyoko_Productions
|
gptkbp:publications
|
hundreds of peer-reviewed papers
over 100 peer-reviewed papers
|
gptkbp:release_date
|
2018-03-30
|
gptkbp:resolution
|
1600 x 1200 pixels
|
gptkbp:scientific_goals
|
Search for signs of life
Prepare for human exploration
prepare for human exploration
study Martian climate
study Martian geology
search for past life
search for organic compounds
assess the habitability of Mars
characterize the Martian atmosphere
Study climate and geology of Mars
study climate and geology
collect and analyze soil samples
|
gptkbp:scientific_instruments
|
gptkb:Chemistry_and_Mineralogy_(Che_Min)
gptkb:Radiation_Assessment_Detector_(RAD)
gptkb:Rover_Environmental_Monitoring_Station
gptkb:Rover_Environmental_Monitoring_Station_(REMS)
gptkb:Mars_Science_Laboratory_(MSL)
gptkb:Mars_Science_Laboratory
gptkb:Rover_Imaging_System_(RIS)
gptkb:Dynamic_Albedo_of_Neutrons_(DAN)
gptkb:Alpha_Particle_X-ray_Spectrometer
gptkb:Chem_Cam
gptkb:Mars_Hand_Lens_Imager
gptkb:Radiation_Assessment_Detector
gptkb:Mars_Hand_Lens_Imager_(MAHLI)
gptkb:Sample_Analysis_at_Mars_(SAM)
gptkb:Rover_Imaging_System
gptkb:Laser_Induced_Breakdown_Spectroscopy_(LIBS)
gptkb:Alpha_Particle_X-ray_Spectrometer_(APXS)
Sample Analysis at Mars
Chemistry and Mineralogy
Dynamic Albedo of Neutrons
Mars Science Laboratory Environmental Monitoring System
|
gptkbp:self-portrait_analysis
|
Used for scientific documentation
|
gptkbp:self-portrait_color
|
True color
|
gptkbp:self-portrait_comparison
|
Compared to earlier rovers
|
gptkbp:self-portrait_context
|
Part of ongoing Mars mission
|
gptkbp:self-portrait_cultural_impact
|
Inspired art and literature
|
gptkbp:self-portrait_date
|
October 31, 2012
|
gptkbp:self-portrait_educational_use
|
Used in educational materials
|
gptkbp:self-portrait_features
|
Rover and Martian landscape
|
gptkbp:self-portrait_follow_up
|
Subsequent images taken
|
gptkbp:self-portrait_future_exploration
|
Guided future missions to Mars
|
gptkbp:self-portrait_image_size
|
1.3 MB
|
gptkbp:self-portrait_impact
|
Increased interest in Mars exploration
|
gptkbp:self-portrait_legacy
|
Influenced future rover designs
|
gptkbp:self-portrait_media
|
Shared on social media
|
gptkbp:self-portrait_public_response
|
Widely shared and discussed
|
gptkbp:self-portrait_publication
|
Published by NASA
|
gptkbp:self-portrait_purpose
|
To assess the rover's condition
|
gptkbp:self-portrait_resolution
|
High resolution
|
gptkbp:self-portrait_scientific_value
|
Contributed to Mars research
|
gptkbp:self-portrait_significance
|
Showcases rover's capabilities
|
gptkbp:self-portrait_technological_advancement
|
Showcased advancements in robotics
|
gptkbp:self-portrait_technology
|
gptkb:Mast_Cam
|
gptkbp:self-portrait_viewer
|
Public and scientists
|
gptkbp:service
|
analyze Martian soil
first rover to drill into Martian rock
climb a Martian mountain
detect organic molecules on Mars
drive on Mars
send high-resolution images from Mars
first rover to land in Gale Crater
first rover to use a laser to analyze rocks
|
gptkbp:size
|
1,000 kg
|
gptkbp:status
|
active
operational
|
gptkbp:successor
|
gptkb:Mars_2020_Perseverance_rover
|
gptkbp:team
|
gptkb:Jet_Propulsion_Laboratory
over 300 scientists
|
gptkbp:terrain
|
Martian surface
|
gptkbp:track
|
gptkb:I_Wish
gptkb:Feelings
Curious
Sleepover
He'll Never Love You
|
gptkbp:type
|
gptkb:Mars_Rover
|
gptkbp:updates
|
regularly performed
|
gptkbp:weight
|
899 kg
|
gptkbp:width
|
2.7 m
2.7 meters
|
gptkbp:bfsParent
|
gptkb:NASA
|
gptkbp:bfsLayer
|
3
|