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Favorite Images From Mars Rover Curiosity

  • Rover Takes Self Portrait
  • High-Resolution Self-Portrait by Curiosity Rover Arm Camera
  • Mars Science Laboratory Guided Entry at Mars, Artist's Concept
  • Mars Science Laboratory Parachute, Artist's Concept
  • Mars Rover Curiosity in Artist's Concept, Wide
  • Mars Rover Curiosity in Artist's Concept, Tall
  • Mars Rover Curiosity in Artist's Concept, Close-up
  • Curiosity and Rover Tracks at 'the Kimberley,' April 2014
  • Differential Erosion at Work on Martian Sandstones
  • Martian Landscape With Rock Rows and Mount Sharp
  • Panoramic View From West of 'Dingo Gap'
  • Curiosity's Color View of Martian Dune After Crossing It
  • Bright 'Evening Star' Seen from Mars is Earth (Annotated)
  • Martian Valley May Be Curiosity's Route (White-Balanced)
  • Martian Rock 'Harrison' in Color, Showing Crystals
  • Curiosity Mars Rover Approaches 'Dingo Gap,' Mastcam View
  • Erosion by Scarp Retreat in Gale Crater (Unannotated)
  • View of Yellowknife Bay Formation, with Drilling Sites (Unannotated)
  • Curiosity Sol 343 Vista With 'Twin Cairns' on Route to Mount Sharp
  • View From Mars Orbiter Showing Curiosity Rover at 'Shaler'
  • View From Curiosity's Arm-Mounted Camera After a Long Drive
  • Billion-Pixel View From Curiosity at Rocknest, White-Balanced
  • Drilled Hole and ChemCam Marks at 'Cumberland'
  • Remnants of Ancient Streambed on Mars (White-Balanced View)
  • Mars View from 'John Klein' to Mount Sharp, Right Eye
  • Mount Sharp Panorama in White-Balanced Colors
  • First Curiosity Drilling Sample in the Scoop
  • Curiosity's Drill in Place for Load Testing Before Drilling
  • Veins in 'Sheepbed' Outcrop (Unannotated)
  • Spherules in 'Yellowknife Bay' (Unannotated)
  • 'Shaler' Unit's Evidence of Stream Flow (Unannotated)
  • Wide View of 'Shaler' Outcrop, Sol 120
  • 'Snake River' Rock Feature Viewed by Curiosity Mars Rover
  • Panoramic View From 'Rocknest' Position of Curiosity Mars Rover
  • Curiosity's First Three Bites Into Martian Ground
  • Curiosity's Location During First Scooping
  • Target: Jake Matijevic Rock
  • Wheel Scuff Mark at 'Rocknest'
  • Link to a Watery Past
  • On the Road to Glenelg (Unannotated)
  • Wheels and a Destination
  • Curiosity Leaves Its Mark
  • Focusing the 34-millimeter Mastcam
  • Focusing the 100-millimeter Mastcam
  • Layers at the Base of Mount Sharp
  • Landing Site Panorama, with the Heights of Mount Sharp
  • Getting to Know Mount Sharp (UNANNOTATED)
  • Destination Mount Sharp
  • Curiosity's Heat Shield in Detail
  • Behold Mount Sharp!
  • Destination Gale Crater in August 2012
  • Oblique View of Gale Crater, Mars, with Vertical Exaggeration
  • Mars Science Laboratory Spacecraft During Cruise, Artist's Concept
Rover Takes Self Portrait High-Resolution Self-Portrait by Curiosity Rover Arm Camera Mars Science Laboratory Guided Entry at Mars, Artist's Concept Mars Science Laboratory Parachute, Artist's Concept Mars Rover Curiosity in Artist's Concept, Wide Mars Rover Curiosity in Artist's Concept, Tall Mars Rover Curiosity in Artist's Concept, Close-up Curiosity and Rover Tracks at 'the Kimberley,' April 2014 Differential Erosion at Work on Martian Sandstones Martian Landscape With Rock Rows and Mount Sharp Panoramic View From West of 'Dingo Gap' Curiosity's Color View of Martian Dune After Crossing It Bright 'Evening Star' Seen from Mars is Earth (Annotated) Martian Valley May Be Curiosity's Route (White-Balanced) Martian Rock 'Harrison' in Color, Showing Crystals Curiosity Mars Rover Approaches 'Dingo Gap,' Mastcam View Erosion by Scarp Retreat in Gale Crater (Unannotated) View of Yellowknife Bay Formation, with Drilling Sites (Unannotated) Curiosity Sol 343 Vista With 'Twin Cairns' on Route to Mount Sharp View From Mars Orbiter Showing Curiosity Rover at 'Shaler' View From Curiosity's Arm-Mounted Camera After a Long Drive Billion-Pixel View From Curiosity at Rocknest, White-Balanced Drilled Hole and ChemCam Marks at 'Cumberland' Remnants of Ancient Streambed on Mars (White-Balanced View) Mars View from 'John Klein' to Mount Sharp, Right Eye Mount Sharp Panorama in White-Balanced Colors First Curiosity Drilling Sample in the Scoop Curiosity's Drill in Place for Load Testing Before Drilling Veins in 'Sheepbed' Outcrop (Unannotated) Spherules in 'Yellowknife Bay' (Unannotated) 'Shaler' Unit's Evidence of Stream Flow (Unannotated) Wide View of 'Shaler' Outcrop, Sol 120 'Snake River' Rock Feature Viewed by Curiosity Mars Rover Panoramic View From 'Rocknest' Position of Curiosity Mars Rover Curiosity's First Three Bites Into Martian Ground Curiosity's Location During First Scooping Target: Jake Matijevic Rock Wheel Scuff Mark at 'Rocknest' Link to a Watery Past On the Road to Glenelg (Unannotated) Wheels and a Destination Curiosity Leaves Its Mark Focusing the 34-millimeter Mastcam Focusing the 100-millimeter Mastcam Layers at the Base of Mount Sharp Landing Site Panorama, with the Heights of Mount Sharp Getting to Know Mount Sharp (UNANNOTATED) Destination Mount Sharp Curiosity's Heat Shield in Detail Behold Mount Sharp! Destination Gale Crater in August 2012 Oblique View of Gale Crater, Mars, with Vertical Exaggeration Mars Science Laboratory Spacecraft During Cruise, Artist's Concept

Mars Rover Curiosity: Press Release Images

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Concretions at 'Cumberland'
Concretions at 'Cumberland' (Annotated)
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'Point Lake' Outcrop in Gale Crater, Raw Color
'Point Lake' Outcrop in Gale Crater, Raw Color
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This is a sequence of images from the Front Hazard-Avoidance Camera on NASA's Mars rover Curiosity that shows the rover drilling into rock target "Cumberland."
Curiosity Mars Rover Drilling Into Its Second Rock
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From 'Glenelg' to Mount Sharp
From 'Glenelg' to Mount Sharp
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The Radiation Assessment Detector (RAD) on NASA's Curiosity Mars rover monitors high-energy atomic and subatomic particles coming from the sun, distant supernovae and other sources.
Sources of Ionizing Radiation in Interplanetary Space
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This graphic shows the level of natural radiation detected by the Radiation Assessment Detector shielded inside NASA's Mars Science Laboratory on the trip from Earth to Mars from December 2011 to July 2012.
Radiation Measurements During Trip From Earth to Mars
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The relationship between charged-particle radiation dose measured with silicon sensors and the dose that biological tissue would receive in the same setting is assessed as a function of how much energy the charged particles would deposit in water (which serves as a proxy for biological tissue).
Calculating Radiation Dose for Biological Tissue
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This graphic compares the radiation dose equivalent for several types of experiences, including a calculation for a trip from Earth to Mars based on measurements made by the Radiation Assessment Detector instrument shielded inside NASA's Mars Science Laboratory spacecraft during the flight from Earth to Mars in 2011 and 2012.
Comparison of Some Radiation Exposures to Mars-Trip Level
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This stereo view from NASA's Mars rover Curiosity shows a rock called "Link," which bears rounded pebbles that provide evidence about vigorous flow of water in a stream on ancient Mars.
Evidence About a Martian Streambed (Stereo - Raw Color)
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This stereo view from NASA's Mars rover Curiosity shows a rock called "Link," which bears rounded pebbles that provide evidence about vigorous flow of water in a stream on ancient Mars.
Evidence About a Martian Streambed (Stereo)
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NASA's Curiosity rover found evidence for an ancient, flowing stream on Mars at a few sites, including the rock outcrop pictured here, which the science team has named "Hottah" after Hottah Lake in Canada's Northwest Territories.
Remnants of Ancient Streambed on Mars (White-Balanced View)
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This self-portrait of NASA's Mars rover Curiosity combines dozens of exposures taken by the rover's Mars Hand Lens Imager (MAHLI) during the 177th Martian day, or sol, of Curiosity's work on Mars (Feb. 3, 2013), plus three exposures taken during Sol 270 (May 10, 2013) to update the appearance of part of the ground beside the rover.
Updated Curiosity Self-Portrait at 'John Klein'
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This pair of images from the Mars Hand Lens Imager (MAHLI) on NASA's Mars rover Curiosity shows the rock target "Cumberland" before and after Curiosity drilled into it to collect a sample for analysis.
Before-and-After Blink of 'Cumberland' Drilling
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NASA's Mars rover Curiosity drilled into this rock target, "Cumberland," during the 279th Martian day, or sol, of the rover's work on Mars (May 19, 2013) and collected a powdered sample of material from the rock's interior.
'Cumberland' Target Drilled by Curiosity
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This chart illustrates comparisons among the distances driven by various wheeled vehicles on the surface of Earth's moon and Mars.
Out-of-this-World Records
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NASA's Mars rover Curiosity used its front left Hazard-Avoidance Camera for this image of the rover's arm over the drilling target "Cumberland" during the 275th Martian day, or sol, of the rover's work on Mars (May 15, 2013).
Curiosity at 'Cumberland'
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NASA's Mars Science Laboratory mission, which landed the rover Curiosity on Mars in August 2012, accepts the Robert J. Collier Trophy from the National Aeronautic Association at a ceremony in Arlington, Va., on May 9, 2013.
2013 Collier Trophy Awarded to Curiosity's Team
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The men and women behind the dramatic landing of NASA's Curiosity rover on Mars in August 2012 were honored with the 2013 Robert J. Collier Trophy from the National Aeronautics Association.
Team Behind Curiosity Receives Collier Trophy
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This patch of bedrock, called "Cumberland," has been selected as the second target for drilling by NASA's Mars rover Curiosity.
'Cumberland' Target for Drilling by Curiosity Mars Rover
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This map shows the location of "Cumberland," the second rock-drilling target for NASA's Mars rover Curiosity, in relation to the rover's first drilling target, "John Klein," within the southwestern lobe of a shallow depression called "Yellowknife Bay."
'Cumberland' Selected as Curiosity's Second Drilling Target
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The leader of the entry, descent and landing team of NASA's Mars Science Laboratory project, Adam Steltzner of JPL (left), accepts the 2013 Trophy for Current Achievement from the Smithsonian National Air and Space Museum from museum director Gen. J. R. "Jack" Dailey on April 24, 2013.
National Air and Space Museum Trophy for NASA's Mars Science Laboratory
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The entry, descent and landing team of NASA's Mars Science Laboratory project received the 2013 Trophy for Current Achievement from the Smithsonian National Air and Space Museum on April 24, 2013.
Curiosity's Entry, Descent and Landing Team at National Air and Space Museum
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This right-eye member of a stereo pair of images from the Navigation Camera (Navcam) on NASA's Curiosity Mars rover shows a full 360-degree view of the rover's surroundings at the site where it first drilled into a rock.
Mars View from 'John Klein' to Mount Sharp, Right Eye
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This left-eye member of a stereo pair of images from the Navigation Camera (Navcam) on NASA's Curiosity Mars rover shows a full 360-degree view of the rover's surroundings at the site where it first drilled into a rock.
Mars View from 'John Klein' to Mount Sharp, Left Eye
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Left and right eyes of the Navigation Camera (Navcam) in NASA's Curiosity Mars rover took the dozens of images combined into this stereo scene of the rover and its surroundings.
Mars Stereo View from 'John Klein' to Mount Sharp, Raw
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