RAD

E86325

RAD is a radiation assessment detector aboard NASA's Curiosity rover that measures high-energy particles on Mars’ surface to evaluate the planet’s radiation environment and its implications for future human exploration.

AI illustration

How this image was made

AI-generated illustration of RAD

This AI-generated illustration was produced by black-forest-labs/FLUX.2-dev (1024x1024) from a prompt written by openai/gpt-oss-120b from the entity's label + description.

Prompt

Generate an image of RAD (RAD is a radiation assessment detector aboard NASA's Curiosity rover that measures high-energy particles on Mars’ surface to evaluate the planet’s radiation environment and its implications for future human exploration.)

All labels observed (1)

Label Occurrences
RAD canonical 4

How this entity was disambiguated

Statements (48)

Predicate Object
instanceOf Curiosity rover instrument ⓘ
radiation detector ⓘ
scientific instrument ⓘ
aboard Curiosity rover ⓘ
acronymFor Radiation Assessment Detector ⓘ
collects in situ radiation measurements on Mars surface ⓘ
dataUsedBy astrobiology researchers ⓘ
human spaceflight planners ⓘ
radiation transport modelers ⓘ
developedBy Southwest Research Institute ⓘ
developedInCollaborationWith Christian Albrechts University in Kiel ⓘ
linked to: University of Kiel
environmentCharacterized interplanetary cruise radiation environment ⓘ
surface radiation environment on Mars ⓘ
fundedBy NASA Human Exploration and Operations Mission Directorate ⓘ
NASA Science Mission Directorate ⓘ
hasDetectorType cesium iodide scintillator ⓘ
plastic scintillators ⓘ
silicon solid-state detectors ⓘ
hasSubcomponent anti-coincidence shield ⓘ
charged particle telescope ⓘ
neutron detector ⓘ
hostSpacecraft Mars Science Laboratory Curiosity rover ⓘ
landingDateOnMars 2012-08-06 ⓘ
launchDate 2011-11-26 ⓘ
launchVehicle Atlas V 541 ⓘ
locatedOn Mars surface ⓘ
measures dose equivalent ⓘ
dose rate ⓘ
galactic cosmic rays ⓘ
particle energy spectra ⓘ
particle flux ⓘ
secondary particles produced in Martian atmosphere and regolith ⓘ
solar energetic particles ⓘ
mission Mars Science Laboratory ⓘ
operator NASA ⓘ
partOf Curiosity payload ⓘ
primaryObjective assess radiation risks for future human exploration of Mars ⓘ
characterize Martian radiation environment ⓘ
measure high-energy particles on Mars surface ⓘ
providesDataFor assessment of astronaut health risks ⓘ
human mission radiation shielding design ⓘ
planetary habitability assessment ⓘ
space weather studies ⓘ
scienceDiscipline planetary science ⓘ
radiation biology ⓘ
space physics ⓘ
status operational ⓘ
targetBody Mars ⓘ

How these facts were elicited

Referenced by (4)

Full triples — surface form annotated when it differs from this entity's canonical label.