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NASA's Curiosity Mars rover used the Navigation Camera (Navcam) on its mast to catch this look-back eastward at wheel tracks from driving through and past 'Dingo Gap' inside Gale Crater.
NASA's Curiosity Mars rover used the Navigation Camera (Navcam) on its mast to catch this look-back eastward at wheel tracks from driving through and past 'Dingo Gap' inside Gale Crater.

Curiosity Making Headway West of 'Dingo Gap'

NASA's Curiosity Mars rover used the Navigation Camera (Navcam) on its mast to catch this look-back eastward at wheel tracks from driving through and past 'Dingo Gap' inside Gale Crater.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Hazard Avoidance Camera (MSL)
Size: 1024 x 1024
ID#: PIA17939
Added: 2014-02-11

Views: 5199

Curiosity Making Headway West of 'Dingo Gap'

NASA's Curiosity Mars rover used the Navigation Camera (Navcam) on its mast to catch this look-back eastward at wheel tracks from driving through and past 'Dingo Gap' inside Gale Crater.

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This image from NASA's Curiosity Mars rover shows Curiosity at the 'Rocknest' site where the rover scooped up samples of windblown dust and sand.
This image from NASA's Curiosity Mars rover shows Curiosity at the 'Rocknest' site where the rover scooped up samples of windblown dust and sand.

Billion-Pixel View From Curiosity at Rock Nest, Raw Color

This image from NASA's Curiosity Mars rover shows Curiosity at the 'Rocknest' site where the rover scooped up samples of windblown dust and sand.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Mastcam, Navigation Camera (MSL)
Size: 17548 x 3022
ID#: PIA16919
Added: 2013-06-19

Views: 103485

Billion-Pixel View From Curiosity at Rock Nest, Raw Color

This image from NASA's Curiosity Mars rover shows Curiosity at the 'Rocknest' site where the rover scooped up samples of windblown dust and sand.

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This view of the twilight sky and Martian horizon taken by NASA's Curiosity Mars rover includes Earth as the brightest point of light in the night sky. Earth is a little left of center in the image, and our moon is just below Earth.
This view of the twilight sky and Martian horizon taken by NASA's Curiosity Mars rover includes Earth as the brightest point of light in the night sky. Earth is a little left of center in the image, and our moon is just below Earth.

Bright 'Evening Star' Seen from Mars is Earth

This view of the twilight sky and Martian horizon taken by NASA's Curiosity Mars rover includes Earth as the brightest point of light in the night sky. Earth is a little left of center in the image, and our moon is just below Earth.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Mastcam
Size: 3200 x 2000
ID#: PIA17936
Added: 2014-02-06

Views: 174168

Bright 'Evening Star' Seen from Mars is Earth

This view of the twilight sky and Martian horizon taken by NASA's Curiosity Mars rover includes Earth as the brightest point of light in the night sky. Earth is a little left of center in the image, and our moon is just below Earth.

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This frame from an animation from NASA's Mars rover Curiosity shows the rover drilling into rock target 'Cumberland.' The drilling was performed during the 279th Martian day, or sol, of the Curiosity's work on Mars (May 19, 2013).
This frame from an animation from NASA's Mars rover Curiosity shows the rover drilling into rock target 'Cumberland.' The drilling was performed during the 279th Martian day, or sol, of the Curiosity's work on Mars (May 19, 2013).

Curiosity Mars Rover Drilling Into Its Second Rock

This frame from an animation from NASA's Mars rover Curiosity shows the rover drilling into rock target 'Cumberland.' The drilling was performed during the 279th Martian day, or sol, of the Curiosity's work on Mars (May 19, 2013).

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Hazard Avoidance Camera (MSL)
Size: 1279 x 715
ID#: PIA17068
Added: 2013-06-05

Views: 6119

Curiosity Mars Rover Drilling Into Its Second Rock

This frame from an animation from NASA's Mars rover Curiosity shows the rover drilling into rock target 'Cumberland.' The drilling was performed during the 279th Martian day, or sol, of the Curiosity's work on Mars (May 19, 2013).

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The Mast Camera (Mastcam) on NASA's Mars rover Curiosity showed researchers interesting internal color in this rock called 'Sutton_Inlier,' which was broken by the rover driving over it.
The Mast Camera (Mastcam) on NASA's Mars rover Curiosity showed researchers interesting internal color in this rock called 'Sutton_Inlier,' which was broken by the rover driving over it.

Bluish Color in Broken Rock in 'Yellowknife Bay'

The Mast Camera (Mastcam) on NASA's Mars rover Curiosity showed researchers interesting internal color in this rock called 'Sutton_Inlier,' which was broken by the rover driving over it.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Mastcam
Size: 1150 x 1107
ID#: PIA16804
Added: 2013-03-18

Views: 15163

Bluish Color in Broken Rock in 'Yellowknife Bay'

The Mast Camera (Mastcam) on NASA's Mars rover Curiosity showed researchers interesting internal color in this rock called 'Sutton_Inlier,' which was broken by the rover driving over it.

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This image from the Mars Hand Lens Imager on NASA's Mars rover Curiosity shows the patch of rock cleaned by the first use of the rover's Dust Removal Tool (DRT). The tool is a motorized, wire-bristle brush on the turret at the end of the rover's arm.
This image from the Mars Hand Lens Imager on NASA's Mars rover Curiosity shows the patch of rock cleaned by the first use of the rover's Dust Removal Tool (DRT). The tool is a motorized, wire-bristle brush on the turret at the end of the rover's arm.

First Use of Mars Rover Curiosity's Dust Removal Tool

This image from the Mars Hand Lens Imager on NASA's Mars rover Curiosity shows the patch of rock cleaned by the first use of the rover's Dust Removal Tool (DRT). The tool is a motorized, wire-bristle brush on the turret at the end of the rover's arm.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Mars Hand Lens Imager (MAHLI)
Size: 1602 x 1195
ID#: PIA16565
Added: 2013-01-07

Views: 20250

First Use of Mars Rover Curiosity's Dust Removal Tool

This image from the Mars Hand Lens Imager on NASA's Mars rover Curiosity shows the patch of rock cleaned by the first use of the rover's Dust Removal Tool (DRT). The tool is a motorized, wire-bristle brush on the turret at the end of the rover's arm.

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The two bodies in this portion of an evening-sky view by NASA's Mars rover Curiosity are Earth and Earth's moon. The rover's Mast Camera (Mastcam) imaged them in the twilight sky of Curiosity's 529th Martian day, or sol (Jan. 31, 2014).
The two bodies in this portion of an evening-sky view by NASA's Mars rover Curiosity are Earth and Earth's moon. The rover's Mast Camera (Mastcam) imaged them in the twilight sky of Curiosity's 529th Martian day, or sol (Jan. 31, 2014).

Curiosity Mars Rover's First Image of Earth and Earth's Moon

The two bodies in this portion of an evening-sky view by NASA's Mars rover Curiosity are Earth and Earth's moon. The rover's Mast Camera (Mastcam) imaged them in the twilight sky of Curiosity's 529th Martian day, or sol (Jan. 31, 2014).

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Mastcam
Size: 78 x 168
ID#: PIA17935
Added: 2014-02-06

Views: 2227

Curiosity Mars Rover's First Image of Earth and Earth's Moon

The two bodies in this portion of an evening-sky view by NASA's Mars rover Curiosity are Earth and Earth's moon. The rover's Mast Camera (Mastcam) imaged them in the twilight sky of Curiosity's 529th Martian day, or sol (Jan. 31, 2014).

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NASA's Curiosity rover shows the first sample of powdered rock extracted by the rover's drill. The image was taken after the sample was transferred from the drill to the rover's scoop.
NASA's Curiosity rover shows the first sample of powdered rock extracted by the rover's drill. The image was taken after the sample was transferred from the drill to the rover's scoop.

First Curiosity Drilling Sample in the Scoop

NASA's Curiosity rover shows the first sample of powdered rock extracted by the rover's drill. The image was taken after the sample was transferred from the drill to the rover's scoop.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: CHIMRA, Mastcam
Size: 768 x 768
ID#: PIA16729
Added: 2013-02-20

Views: 10581

First Curiosity Drilling Sample in the Scoop

NASA's Curiosity rover shows the first sample of powdered rock extracted by the rover's drill. The image was taken after the sample was transferred from the drill to the rover's scoop.

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This view combines several frames taken by NASA's Mars rover Curiosity, looking into a valley to the west from the eastern side of a dune at the eastern end of the valley.
This view combines several frames taken by NASA's Mars rover Curiosity, looking into a valley to the west from the eastern side of a dune at the eastern end of the valley.

Martian Valley May Be Curiosity's Route

This view combines several frames taken by NASA's Mars rover Curiosity, looking into a valley to the west from the eastern side of a dune at the eastern end of the valley.

Target:
Mission: Mars Exploration Rover (MER)
Spacecraft: Curiosity
Instrument: Mastcam
Size: 9074 x 2287
ID#: PIA17931
Added: 2014-02-03

Views: 22270

Martian Valley May Be Curiosity's Route

This view combines several frames taken by NASA's Mars rover Curiosity, looking into a valley to the west from the eastern side of a dune at the eastern end of the valley.

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NASA's Curiosity rover used its Mars Hand Lens Imager (MAHLI) to capture a set of 55 high-resolution images, which were stitched together to create a full-color self-portrait.
NASA's Curiosity rover used its Mars Hand Lens Imager (MAHLI) to capture a set of 55 high-resolution images, which were stitched together to create a full-color self-portrait.

High-Resolution Self-Portrait by Curiosity Rover Arm Camera

NASA's Curiosity rover used its Mars Hand Lens Imager (MAHLI) to capture a set of 55 high-resolution images, which were stitched together to create a full-color self-portrait.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Mars Hand Lens Imager (MAHLI)
Size: 5463 x 7595
ID#: PIA16239
Added: 2012-11-01

Views: 32254

High-Resolution Self-Portrait by Curiosity Rover Arm Camera

NASA's Curiosity rover used its Mars Hand Lens Imager (MAHLI) to capture a set of 55 high-resolution images, which were stitched together to create a full-color self-portrait.

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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.
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

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.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Radiation Assessment Detector (RAD)
Size: 3921 x 2769
ID#: PIA16939
Added: 2013-05-30

Views: 1637

Radiation Measurements During Trip From Earth to Mars

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.

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This illustration depicts the two main types of radiation that NASA's Radiation Assessment Detector (RAD) onboard Curiosity monitors, and how the magnetic field around Earth affects the radiation in space near Earth.
This illustration depicts the two main types of radiation that NASA's Radiation Assessment Detector (RAD) onboard Curiosity monitors, and how the magnetic field around Earth affects the radiation in space near Earth.

Sources of Ionizing Radiation in Interplanetary Space

This illustration depicts the two main types of radiation that NASA's Radiation Assessment Detector (RAD) onboard Curiosity monitors, and how the magnetic field around Earth affects the radiation in space near Earth.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Radiation Assessment Detector (RAD)
Size: 824 x 546
ID#: PIA16938
Added: 2013-05-30

Views: 2292

Sources of Ionizing Radiation in Interplanetary Space

This illustration depicts the two main types of radiation that NASA's Radiation Assessment Detector (RAD) onboard Curiosity monitors, and how the magnetic field around Earth affects the radiation in space near Earth.

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Measurements with the MSL's RAD on NASA's Curiosity Mars rover during the flight to Mars and now on the surface of Mars enable an estimate of the radiation astronauts would be exposed to on an expedition to Mars.
Measurements with the MSL's RAD on NASA's Curiosity Mars rover during the flight to Mars and now on the surface of Mars enable an estimate of the radiation astronauts would be exposed to on an expedition to Mars.

Radiation Exposure Comparisons with Mars Trip Calculation

Measurements with the MSL's RAD on NASA's Curiosity Mars rover during the flight to Mars and now on the surface of Mars enable an estimate of the radiation astronauts would be exposed to on an expedition to Mars.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Radiation Assessment Detector (RAD)
Size: 900 x 1017
ID#: PIA17601
Added: 2013-12-09

Views: 1747

Radiation Exposure Comparisons with Mars Trip Calculation

Measurements with the MSL's RAD on NASA's Curiosity Mars rover during the flight to Mars and now on the surface of Mars enable an estimate of the radiation astronauts would be exposed to on an expedition to Mars.

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Micrograys are unit of measurement for absorbed radiation dose. The vertical axis is in micrograys per day. The RAD instrument on NASA's Curiosity Mars rover monitors the natural radiation environment at the surface of Mars.
Micrograys are unit of measurement for absorbed radiation dose. The vertical axis is in micrograys per day. The RAD instrument on NASA's Curiosity Mars rover monitors the natural radiation environment at the surface of Mars.

Radiation Measurements on Mars

Micrograys are unit of measurement for absorbed radiation dose. The vertical axis is in micrograys per day. The RAD instrument on NASA's Curiosity Mars rover monitors the natural radiation environment at the surface of Mars.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Radiation Assessment Detector (RAD)
Size: 1058 x 793
ID#: PIA17600
Added: 2013-12-09

Views: 1085

Radiation Measurements on Mars

Micrograys are unit of measurement for absorbed radiation dose. The vertical axis is in micrograys per day. The RAD instrument on NASA's Curiosity Mars rover monitors the natural radiation environment at the surface of Mars.

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This graphic shows the daily variations in Martian radiation and atmospheric pressure as measured by NASA's Curiosity rover. As pressure increases, the total radiation dose decreases.
This graphic shows the daily variations in Martian radiation and atmospheric pressure as measured by NASA's Curiosity rover. As pressure increases, the total radiation dose decreases.

Daily Cycles of Radiation and Pressure at Gale Crater

This graphic shows the daily variations in Martian radiation and atmospheric pressure as measured by NASA's Curiosity rover. As pressure increases, the total radiation dose decreases.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Radiation Assessment Detector (RAD), Rover Environmental Monitoring Station (REMS)
Size: 1889 x 1412
ID#: PIA16479
Added: 2012-11-15

Views: 2393

Daily Cycles of Radiation and Pressure at Gale Crater

This graphic shows the daily variations in Martian radiation and atmospheric pressure as measured by NASA's Curiosity rover. As pressure increases, the total radiation dose decreases.

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Testing of the robotic arm on NASA's Mars rover Curiosity on Sept. 3, 2010, included movements of the arm while the rover was on a table tilted to 20 degrees to simulate a sloped surface on Mars.
Testing of the robotic arm on NASA's Mars rover Curiosity on Sept. 3, 2010, included movements of the arm while the rover was on a table tilted to 20 degrees to simulate a sloped surface on Mars.

Tilt-Table Testing for Curiosity's Robotic Arm

Testing of the robotic arm on NASA's Mars rover Curiosity on Sept. 3, 2010, included movements of the arm while the rover was on a table tilted to 20 degrees to simulate a sloped surface on Mars.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Robotic Arm (MSL)
Size: 5880 x 3958
ID#: PIA13390
Added: 2010-09-16

Views: 4439

Tilt-Table Testing for Curiosity's Robotic Arm

Testing of the robotic arm on NASA's Mars rover Curiosity on Sept. 3, 2010, included movements of the arm while the rover was on a table tilted to 20 degrees to simulate a sloped surface on Mars.

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NASA's next Mars rover, Curiosity, stretches its robotic arm upward during tests on a tilt table in a clean room at NASA's Jet Propulsion Labotatory.
NASA's next Mars rover, Curiosity, stretches its robotic arm upward during tests on a tilt table in a clean room at NASA's Jet Propulsion Labotatory.

Arm Stretch by Curiosity Mars Rover

NASA's next Mars rover, Curiosity, stretches its robotic arm upward during tests on a tilt table in a clean room at NASA's Jet Propulsion Labotatory.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Robotic Arm (MSL)
Size: 3633 x 4992
ID#: PIA13389
Added: 2010-09-16

Views: 4443

Arm Stretch by Curiosity Mars Rover

NASA's next Mars rover, Curiosity, stretches its robotic arm upward during tests on a tilt table in a clean room at NASA's Jet Propulsion Labotatory.

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Test operators in a clean room at NASA's Jet Propulsion Laboratory monitor some of the first motions by the robotic arm on the Mars rover Curiosity after installation in August 2010. The arm is shown in a partially extended position.
Test operators in a clean room at NASA's Jet Propulsion Laboratory monitor some of the first motions by the robotic arm on the Mars rover Curiosity after installation in August 2010. The arm is shown in a partially extended position.

Curiosity Mars Rover Flexes its Robotic Arm

Test operators in a clean room at NASA's Jet Propulsion Laboratory monitor some of the first motions by the robotic arm on the Mars rover Curiosity after installation in August 2010. The arm is shown in a partially extended position.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Robotic Arm (MSL)
Size: 5280 x 3908
ID#: PIA13388
Added: 2010-09-16

Views: 4137

Curiosity Mars Rover Flexes its Robotic Arm

Test operators in a clean room at NASA's Jet Propulsion Laboratory monitor some of the first motions by the robotic arm on the Mars rover Curiosity after installation in August 2010. The arm is shown in a partially extended position.

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In the middle of this image taken at the Jet Propulsion Laboratory, the long robotic arm of NASA's Mars Science Laboratory rises straight up toward the ceiling of the lab where it is being tested.
In the middle of this image taken at the Jet Propulsion Laboratory, the long robotic arm of NASA's Mars Science Laboratory rises straight up toward the ceiling of the lab where it is being tested.

Engineers Flex Curiosity's Robotic Arm and Tools

In the middle of this image taken at the Jet Propulsion Laboratory, the long robotic arm of NASA's Mars Science Laboratory rises straight up toward the ceiling of the lab where it is being tested.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Robotic Arm (MSL)
Size: 2304 x 3456
ID#: PIA12837
Added: 2010-02-16

Views: 3264

Engineers Flex Curiosity's Robotic Arm and Tools

In the middle of this image taken at the Jet Propulsion Laboratory, the long robotic arm of NASA's Mars Science Laboratory rises straight up toward the ceiling of the lab where it is being tested.

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In this image, engineers from NASA's Jet Propulsion Laboratory test and 'flex' Curiosity's robotic arm and tools. A video can be viewed at the Photojournal.
In this image, engineers from NASA's Jet Propulsion Laboratory test and 'flex' Curiosity's robotic arm and tools. A video can be viewed at the Photojournal.

Curiosity's Robotic Arm and Tools

In this image, engineers from NASA's Jet Propulsion Laboratory test and 'flex' Curiosity's robotic arm and tools. A video can be viewed at the Photojournal.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Robotic Arm (MSL)
Size: 637 x 360
ID#: PIA12839
Added: 2010-02-16

Views: 4056

Curiosity's Robotic Arm and Tools

In this image, engineers from NASA's Jet Propulsion Laboratory test and 'flex' Curiosity's robotic arm and tools. A video can be viewed at the Photojournal.

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In the middle of this image taken at the Jet Propulsion Laboratory, the long robotic arm of NASA's Mars Science Laboratory is bent at nearly a 90-degree angle.
In the middle of this image taken at the Jet Propulsion Laboratory, the long robotic arm of NASA's Mars Science Laboratory is bent at nearly a 90-degree angle.

Curiosity's Robotic Arm Bent at Nearly a 90-degree Angle

In the middle of this image taken at the Jet Propulsion Laboratory, the long robotic arm of NASA's Mars Science Laboratory is bent at nearly a 90-degree angle.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Robotic Arm (MSL)
Size: 3456 x 2304
ID#: PIA12459
Added: 2010-02-16

Views: 4001

Curiosity's Robotic Arm Bent at Nearly a 90-degree Angle

In the middle of this image taken at the Jet Propulsion Laboratory, the long robotic arm of NASA's Mars Science Laboratory is bent at nearly a 90-degree angle.

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NASA's Mars rover Curiosity extended its robotic arm on Aug. 20, 2012, for the first time on Mars and used its Navigation Camera (Navcam) to capture this view of the extended arm.
NASA's Mars rover Curiosity extended its robotic arm on Aug. 20, 2012, for the first time on Mars and used its Navigation Camera (Navcam) to capture this view of the extended arm.

Curiosity Extends Arm for First Time on Mars

NASA's Mars rover Curiosity extended its robotic arm on Aug. 20, 2012, for the first time on Mars and used its Navigation Camera (Navcam) to capture this view of the extended arm.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Robotic Arm (MSL)
Size: 1104 x 380
ID#: PIA15692
Added: 2012-08-20

Views: 2318

Curiosity Extends Arm for First Time on Mars

NASA's Mars rover Curiosity extended its robotic arm on Aug. 20, 2012, for the first time on Mars and used its Navigation Camera (Navcam) to capture this view of the extended arm.

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This full-resolution image from NASA's Curiosity shows the turret of tools at the end of the rover's extended robotic arm on Aug. 20, 2012. The Navigation Camera captured this view.
This full-resolution image from NASA's Curiosity shows the turret of tools at the end of the rover's extended robotic arm on Aug. 20, 2012. The Navigation Camera captured this view.

End of Curiosity's Extended Arm, Full-Resolution

This full-resolution image from NASA's Curiosity shows the turret of tools at the end of the rover's extended robotic arm on Aug. 20, 2012. The Navigation Camera captured this view.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Robotic Arm (MSL)
Size: 1024 x 1024
ID#: PIA16085
Added: 2012-08-21

Views: 5971

End of Curiosity's Extended Arm, Full-Resolution

This full-resolution image from NASA's Curiosity shows the turret of tools at the end of the rover's extended robotic arm on Aug. 20, 2012. The Navigation Camera captured this view.

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Sensors on two finger-like mini-booms extending horizontally from the mast of NASA's Mars rover Curiosity will monitor wind speed, wind direction and air temperature; image taken during installation of the instrument inside a clean room at NASA's JPL.
Sensors on two finger-like mini-booms extending horizontally from the mast of NASA's Mars rover Curiosity will monitor wind speed, wind direction and air temperature; image taken during installation of the instrument inside a clean room at NASA's JPL.

Weather Sensors from Spain on Mars Rover Curiosity

Sensors on two finger-like mini-booms extending horizontally from the mast of NASA's Mars rover Curiosity will monitor wind speed, wind direction and air temperature; image taken during installation of the instrument inside a clean room at NASA's JPL.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Rover Environmental Monitoring Station (REMS)
Size: 2544 x 1734
ID#: PIA13646
Added: 2010-11-30

Views: 4435

Weather Sensors from Spain on Mars Rover Curiosity

Sensors on two finger-like mini-booms extending horizontally from the mast of NASA's Mars rover Curiosity will monitor wind speed, wind direction and air temperature; image taken during installation of the instrument inside a clean room at NASA's JPL.

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This graph shows the atmospheric pressure at the surface of Mars, as measured by the Rover Environmental Monitoring Station on NASA's Curiosity rover. Pressure is a measure of the amount of air in the whole column of atmosphere sitting above the rover.
This graph shows the atmospheric pressure at the surface of Mars, as measured by the Rover Environmental Monitoring Station on NASA's Curiosity rover. Pressure is a measure of the amount of air in the whole column of atmosphere sitting above the rover.

Pressure Cycles on Mars

This graph shows the atmospheric pressure at the surface of Mars, as measured by the Rover Environmental Monitoring Station on NASA's Curiosity rover. Pressure is a measure of the amount of air in the whole column of atmosphere sitting above the rover.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Rover Environmental Monitoring Station (REMS)
Size: 2999 x 2249
ID#: PIA16477
Added: 2012-11-15

Views: 2930

Pressure Cycles on Mars

This graph shows the atmospheric pressure at the surface of Mars, as measured by the Rover Environmental Monitoring Station on NASA's Curiosity rover. Pressure is a measure of the amount of air in the whole column of atmosphere sitting above the rover.

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Twenty-one times during the first 12 weeks that NASA's Mars rover Curiosity worked on Mars, the rover's Rover Environmental Monitoring Station (REMS) detected brief dips in air pressure that could be caused by a passing whirlwind.
Twenty-one times during the first 12 weeks that NASA's Mars rover Curiosity worked on Mars, the rover's Rover Environmental Monitoring Station (REMS) detected brief dips in air pressure that could be caused by a passing whirlwind.

Signs of a Whirlwind in Gale Crater

Twenty-one times during the first 12 weeks that NASA's Mars rover Curiosity worked on Mars, the rover's Rover Environmental Monitoring Station (REMS) detected brief dips in air pressure that could be caused by a passing whirlwind.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Rover Environmental Monitoring Station (REMS)
Size: 2154 x 1986
ID#: PIA16476
Added: 2012-11-15

Views: 2129

Signs of a Whirlwind in Gale Crater

Twenty-one times during the first 12 weeks that NASA's Mars rover Curiosity worked on Mars, the rover's Rover Environmental Monitoring Station (REMS) detected brief dips in air pressure that could be caused by a passing whirlwind.

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This graphic shows the pattern of winds predicted to be swirling around and inside Gale Crater, where NASA's Curiosity rover landed on Mars. Modeling the winds gives scientists a context for the data from Curiosity's Rover Environmental Monitoring Station
This graphic shows the pattern of winds predicted to be swirling around and inside Gale Crater, where NASA's Curiosity rover landed on Mars. Modeling the winds gives scientists a context for the data from Curiosity's Rover Environmental Monitoring Station

Mountain Winds at Gale Crater

This graphic shows the pattern of winds predicted to be swirling around and inside Gale Crater, where NASA's Curiosity rover landed on Mars. Modeling the winds gives scientists a context for the data from Curiosity's Rover Environmental Monitoring Station

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Rover Environmental Monitoring Station (REMS)
Size: 2004 x 1250
ID#: PIA16475
Added: 2012-11-15

Views: 2688

Mountain Winds at Gale Crater

This graphic shows the pattern of winds predicted to be swirling around and inside Gale Crater, where NASA's Curiosity rover landed on Mars. Modeling the winds gives scientists a context for the data from Curiosity's Rover Environmental Monitoring Station

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This graph compares a typical daily pattern of changing atmospheric pressure (blue) with the pattern during a regional dust storm hundreds of miles away (red). The data are by the Rover Environmental Monitoring Station (REMS) on NASA's Curiosity rover.
This graph compares a typical daily pattern of changing atmospheric pressure (blue) with the pattern during a regional dust storm hundreds of miles away (red). The data are by the Rover Environmental Monitoring Station (REMS) on NASA's Curiosity rover.

Atmospheric Pressure Patterns Before and During Dust Storm

This graph compares a typical daily pattern of changing atmospheric pressure (blue) with the pattern during a regional dust storm hundreds of miles away (red). The data are by the Rover Environmental Monitoring Station (REMS) on NASA's Curiosity rover.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Rover Environmental Monitoring Station (REMS)
Size: 2999 x 2249
ID#: PIA16455
Added: 2012-11-27

Views: 2864

Atmospheric Pressure Patterns Before and During Dust Storm

This graph compares a typical daily pattern of changing atmospheric pressure (blue) with the pattern during a regional dust storm hundreds of miles away (red). The data are by the Rover Environmental Monitoring Station (REMS) on NASA's Curiosity rover.

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This image maps the traverse of NASA's Mars rover Curiosity from 'Bradbury Landing' to 'Yellowknife Bay,' with an inset documenting a change in the ground's thermal properties with arrival at a different type of terrain.
This image maps the traverse of NASA's Mars rover Curiosity from 'Bradbury Landing' to 'Yellowknife Bay,' with an inset documenting a change in the ground's thermal properties with arrival at a different type of terrain.

Curiosity's Traverse into Different Terrain

This image maps the traverse of NASA's Mars rover Curiosity from 'Bradbury Landing' to 'Yellowknife Bay,' with an inset documenting a change in the ground's thermal properties with arrival at a different type of terrain.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Rover Environmental Monitoring Station (REMS)
Size: 3300 x 2550
ID#: PIA16708
Added: 2013-01-15

Views: 2347

Curiosity's Traverse into Different Terrain

This image maps the traverse of NASA's Mars rover Curiosity from 'Bradbury Landing' to 'Yellowknife Bay,' with an inset documenting a change in the ground's thermal properties with arrival at a different type of terrain.

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This graphic tracks the maximum relative humidity and the temperature at which that maximum occurred each Martian day, or sol, for about one-fourth of a Martian year, as measured by REMS on NASA's Curiosity Mars rover.
This graphic tracks the maximum relative humidity and the temperature at which that maximum occurred each Martian day, or sol, for about one-fourth of a Martian year, as measured by REMS on NASA's Curiosity Mars rover.

Humidity in Gale Crater: Scant and Variable

This graphic tracks the maximum relative humidity and the temperature at which that maximum occurred each Martian day, or sol, for about one-fourth of a Martian year, as measured by REMS on NASA's Curiosity Mars rover.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Rover Environmental Monitoring Station (REMS)
Size: 831 x 637
ID#: PIA16915
Added: 2013-04-08

Views: 1734

Humidity in Gale Crater: Scant and Variable

This graphic tracks the maximum relative humidity and the temperature at which that maximum occurred each Martian day, or sol, for about one-fourth of a Martian year, as measured by REMS on NASA's Curiosity Mars rover.

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The Rover Environmental Monitoring Station (REMS) on NASA's Curiosity Mars rover has detected dozens of whirlwinds, or vortex events, causing brief dips in atmospheric pressure, and sometimes other measurable effects.
The Rover Environmental Monitoring Station (REMS) on NASA's Curiosity Mars rover has detected dozens of whirlwinds, or vortex events, causing brief dips in atmospheric pressure, and sometimes other measurable effects.

Whirlwind Detection by Curiosity in Gale Crater

The Rover Environmental Monitoring Station (REMS) on NASA's Curiosity Mars rover has detected dozens of whirlwinds, or vortex events, causing brief dips in atmospheric pressure, and sometimes other measurable effects.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Rover Environmental Monitoring Station (REMS)
Size: 890 x 639
ID#: PIA16914
Added: 2013-04-08

Views: 1652

Whirlwind Detection by Curiosity in Gale Crater

The Rover Environmental Monitoring Station (REMS) on NASA's Curiosity Mars rover has detected dozens of whirlwinds, or vortex events, causing brief dips in atmospheric pressure, and sometimes other measurable effects.

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This pair of graphs shows about one-fourth of a Martian year's record of temperatures (in degrees Celsius) measured by the Rover Environmental Monitoring Station (REMS) on NASA's Curiosity rover.
This pair of graphs shows about one-fourth of a Martian year's record of temperatures (in degrees Celsius) measured by the Rover Environmental Monitoring Station (REMS) on NASA's Curiosity rover.

Steady Temperatures at Mars' Gale Crater

This pair of graphs shows about one-fourth of a Martian year's record of temperatures (in degrees Celsius) measured by the Rover Environmental Monitoring Station (REMS) on NASA's Curiosity rover.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Rover Environmental Monitoring Station (REMS)
Size: 700 x 534
ID#: PIA16913
Added: 2013-04-08

Views: 1734

Steady Temperatures at Mars' Gale Crater

This pair of graphs shows about one-fourth of a Martian year's record of temperatures (in degrees Celsius) measured by the Rover Environmental Monitoring Station (REMS) on NASA's Curiosity rover.

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This graph shows about one-fourth of a Martian year's pattern atmospheric pressure at the surface of Mars, as measured by the Rover Environmental Monitoring Station on NASA's Curiosity rover.
This graph shows about one-fourth of a Martian year's pattern atmospheric pressure at the surface of Mars, as measured by the Rover Environmental Monitoring Station on NASA's Curiosity rover.

Seasonal Pressure Curve Peaks at Gale Crater

This graph shows about one-fourth of a Martian year's pattern atmospheric pressure at the surface of Mars, as measured by the Rover Environmental Monitoring Station on NASA's Curiosity rover.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Rover Environmental Monitoring Station (REMS)
Size: 664 x 531
ID#: PIA16912
Added: 2013-04-08

Views: 1710

Seasonal Pressure Curve Peaks at Gale Crater

This graph shows about one-fourth of a Martian year's pattern atmospheric pressure at the surface of Mars, as measured by the Rover Environmental Monitoring Station on NASA's Curiosity rover.

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The Sample Analysis at Mars (SAM) instrument will analyze samples of Martian rock and soil collected by the rover's arm to assess carbon chemistry through a search for organic compounds, and to look for clues about planetary change.
The Sample Analysis at Mars (SAM) instrument will analyze samples of Martian rock and soil collected by the rover's arm to assess carbon chemistry through a search for organic compounds, and to look for clues about planetary change.

Sample Analysis at Mars for Curiosity

The Sample Analysis at Mars (SAM) instrument will analyze samples of Martian rock and soil collected by the rover's arm to assess carbon chemistry through a search for organic compounds, and to look for clues about planetary change.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Sample Analysis at Mars
Size: 3264 x 2448
ID#: PIA13463
Added: 2010-10-08

Views: 3491

Sample Analysis at Mars for Curiosity

The Sample Analysis at Mars (SAM) instrument will analyze samples of Martian rock and soil collected by the rover's arm to assess carbon chemistry through a search for organic compounds, and to look for clues about planetary change.

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In this photograph, technicians and engineers inside a clean room at NASA's Jet Propulsion Laboratory, Pasadena, Calif., position NASA's Sample Analysis at Mars (SAM) above the mission's Mars rover, Curiosity, for installing the instrument.
In this photograph, technicians and engineers inside a clean room at NASA's Jet Propulsion Laboratory, Pasadena, Calif., position NASA's Sample Analysis at Mars (SAM) above the mission's Mars rover, Curiosity, for installing the instrument.

Lowering SAM Instrument into Curiosity Mars Rover

In this photograph, technicians and engineers inside a clean room at NASA's Jet Propulsion Laboratory, Pasadena, Calif., position NASA's Sample Analysis at Mars (SAM) above the mission's Mars rover, Curiosity, for installing the instrument.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft:
Instrument: Sample Analysis at Mars (SAM)
Size: 600 x 900
ID#: PIA13793
Added: 2011-01-18

Views: 3562

Lowering SAM Instrument into Curiosity Mars Rover

In this photograph, technicians and engineers inside a clean room at NASA's Jet Propulsion Laboratory, Pasadena, Calif., position NASA's Sample Analysis at Mars (SAM) above the mission's Mars rover, Curiosity, for installing the instrument.

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