This composite graphic illustrates the use of the Shallow Radar instrument on NASA Mars Reconnaissance Orbiter for mapping underground ice-rich layers of the north polar layered terrain on Mars.
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NASA CRISM onboard the Mars Reconnaissance Orbiter shows Mars seasonal caps consist of frozen carbon dioxide mixed with smaller amounts of water ice frost and dust.
Ver en NASA ↗NASA Curiosity Mars rover caught its own shadow in this image taken just after completing a drive of 329 feet 100.3 meters on the 547th Martian day, or sol, of the rover work on Mars Feb. 18, 2014.
Ver en NASA ↗Researchers used the Pancam on NASA Mars Exploration Rover Opportunity to capture this view of comet C/2013 A1 Siding Spring as it flew near Mars on Oct. 19, 2014.
Ver en NASA ↗This image from NASA Mars Reconnaissance Orbiter shows the west-facing side of an impact crater in the mid-latitudes of Mars northern hemisphere. This crater has gullies along its walls that are composed of alcoves, channels and debris aprons.
Ver en NASA ↗Here is a rover eye view of driving, scooping and drilling during Curiosity first year on Mars, August 2012 through July 2013 taken by NASA Mars rover Navigation Camera Navcam.
Ver en NASA ↗The shape of the tip of the bit in the drill of NASA Mars rover Curiosity is apparent in this view recorded by the remote micro-imager in the rover ChemCam instrument on Mars. Jan. 29, 2012; the bit is about 0.6 inch 1.6 centimeters wide.
Ver en NASA ↗A dance-step pattern is visible in the wheel tracks near the left edge of this scene recorded by NASA Mars Exploration Rover Opportunity on Mars on April 1, 2011. 3D glasses are necessary to view this image.
Ver en NASA ↗This radio hardware, the Electra UHF Transceiver on NASA MAVEN mission to Mars, is designed to provide communication relay support for robots on the surface of Mars.
Ver en NASA ↗This illustration shows NASA's Mars Perseverance rover on the surface of the Red Planet.
Ver en NASA ↗This is one of three research drones that NASA’s Jet Propulsion Laboratory in Southern California used in September 2025 to test navigation software that could be used by future rotorcraft on Mars.
Ver en NASA ↗In this photograph, technicians and engineers inside a clean room at NASA Jet Propulsion Laboratory, Pasadena, Calif., position NASA Sample Analysis at Mars SAM above the mission Mars rover, Curiosity, for installing the instrument.
Ver en NASA ↗Two instruments at the end of the robotic arm on NASA Mars rover Curiosity will use calibration targets attached to a shoulder joint of the arm. The penny is a size reference giving the public a familiar object for perceiving size on Mars easily.
Ver en NASA ↗Members of NASA Mars Science Laboratory team carefully steer the hoisted Chemistry and Mineralogy CheMin instrument during its June 15, 2010, installation into the mission Mars rover, Curiosity.
Ver en NASA ↗In this photograph, technicians and engineers inside a clean room at NASA Jet Propulsion Laboratory, Pasadena, Calif., position NASA Sample Analysis at Mars SAM above the mission Mars rover, Curiosity, for installing the instrument.
Ver en NASA ↗This image shows preparation for March 2011 testing of the Mars Science Laboratory rover, Curiosity, in a space-simulation chamber; the rover will go through operational sequences in environmental conditions similar to what it will experience on Mars.
Ver en NASA ↗An in-flight camera check produced this out-of-focus image when NASA Mars Science Laboratory spacecraft turned on illumination sources that are part of the Curiosity rover Mars Hand Lens Imager MAHLI instrument.
Ver en NASA ↗This artist concept features NASA Mars Science Laboratory Curiosity rover, a mobile robot for investigating Mars past or present ability to sustain microbial life. Curiosity is being tested in preparation for launch in the fall of 2011.
Ver en NASA ↗During pre-flight testing, the Mars Hand Lens Imager MAHLI camera on NASA Mars rover Curiosity took this image of the MAHLI calibration target from a distance of 3.94 inches 10 centimeters away from the target.
Ver en NASA ↗This schematic illustration for NASA Mars Science Laboratory Sample Analysis at Mars SAM instrument shows major components of the microwave-oven-size instrument, which will examine samples of Martian rocks, soil and atmosphere.
Ver en NASA ↗The arm and the remote sensing mast of the Mars rover Curiosity each carry science instruments and other tools for NASA Mars Science Laboratory mission. This image shows the arm on the left and the mast just right of center.
Ver en NASA ↗This artist concept features NASA Mars Science Laboratory Curiosity rover, a mobile robot for investigating Mars past or present ability to sustain microbial life. Curiosity is being tested in preparation for launch in the fall of 2011.
Ver en NASA ↗This image shows preparation for March 2011 testing of the Mars Science Laboratory rover, Curiosity, in a space-simulation chamber; the rover will go through operational sequences in environmental conditions similar to what it will experience on Mars.
Ver en NASA ↗NASA Sample Analysis at Mars SAM instrument, largest of the 10 science instruments for NASA Mars Science Laboratory mission, will examine samples of Martian rocks, soil and atmosphere for information about chemicals that are important to life.
Ver en NASA ↗Contenido y metadatos proporcionados por la NASA Image and Video Library.