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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: 2241

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: 92314

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: 131492

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: 4020

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: 13455

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: 18335

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: 1008

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: 9319

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: 17916

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: 29844

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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The MAHLI camera on NASA's Curiosity rover is carried at an angle when the rover's arm is stowed for driving. Still, the camera is able to record views of the terrain Curiosity is crossing in Gale Crater.
The MAHLI camera on NASA's Curiosity rover is carried at an angle when the rover's arm is stowed for driving. Still, the camera is able to record views of the terrain Curiosity is crossing in Gale Crater.

View From Curiosity's Arm-Mounted Camera After a Long Drive

The MAHLI camera on NASA's Curiosity rover is carried at an angle when the rover's arm is stowed for driving. Still, the camera is able to record views of the terrain Curiosity is crossing in Gale Crater.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Mars Hand Lens Imager (MAHLI)
Size: 1984 x 1835
ID#: PIA17081
Added: 2013-07-23

Views: 2817

View From Curiosity's Arm-Mounted Camera After a Long Drive

The MAHLI camera on NASA's Curiosity rover is carried at an angle when the rover's arm is stowed for driving. Still, the camera is able to record views of the terrain Curiosity is crossing in Gale Crater.

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NASA's Curiosity Mars rover captured this image on with its Hazcam just after completing a drive that took the mission's total driving distance past the 1 kilometer (0.62 mile) mark.
NASA's Curiosity Mars rover captured this image on with its Hazcam just after completing a drive that took the mission's total driving distance past the 1 kilometer (0.62 mile) mark.

One Down, Many Kilometers to Go

NASA's Curiosity Mars rover captured this image on with its Hazcam just after completing a drive that took the mission's total driving distance past the 1 kilometer (0.62 mile) mark.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Hazard Avoidance Camera (MSL)
Size: 4267 x 4267
ID#: PIA17279
Added: 2013-07-17

Views: 1800

One Down, Many Kilometers to Go

NASA's Curiosity Mars rover captured this image on with its Hazcam just after completing a drive that took the mission's total driving distance past the 1 kilometer (0.62 mile) mark.

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Lower slopes of Mount Sharp appear at the top of this image taken by the right Navigation Camera (Navcam) of NASA's Mars rover Curiosity at the end of a drive of about 135 feet during the 329th Martian day, or sol, of the rover's work on Mars.
Lower slopes of Mount Sharp appear at the top of this image taken by the right Navigation Camera (Navcam) of NASA's Mars rover Curiosity at the end of a drive of about 135 feet during the 329th Martian day, or sol, of the rover's work on Mars.

Heading for Mount Sharp, Sol 329

Lower slopes of Mount Sharp appear at the top of this image taken by the right Navigation Camera (Navcam) of NASA's Mars rover Curiosity at the end of a drive of about 135 feet during the 329th Martian day, or sol, of the rover's work on Mars.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Navigation Camera (MSL)
Size: 1024 x 1024
ID#: PIA17269
Added: 2013-07-11

Views: 1857

Heading for Mount Sharp, Sol 329

Lower slopes of Mount Sharp appear at the top of this image taken by the right Navigation Camera (Navcam) of NASA's Mars rover Curiosity at the end of a drive of about 135 feet during the 329th Martian day, or sol, of the rover's work on Mars.

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NASA's Mars 2020 rover would have capabilities for nested-scale observations and localized composition identification down to microscopic scale.
NASA's Mars 2020 rover would have capabilities for nested-scale observations and localized composition identification down to microscopic scale.

The Importance of Nested Scales of Observations, Fine Scales

NASA's Mars 2020 rover would have capabilities for nested-scale observations and localized composition identification down to microscopic scale.

Target:
Mission: 2020 Mars, Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Chemistry and Camera (ChemCam)
Size: 2880 x 1624
ID#: PIA17276
Added: 2013-07-09

Views: 1315

The Importance of Nested Scales of Observations, Fine Scales

NASA's Mars 2020 rover would have capabilities for nested-scale observations and localized composition identification down to microscopic scale.

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Observations at large scales, such as panoramas of Martian landscapes, help researchers identify smaller-scale features of special interest for examination in more detail.
Observations at large scales, such as panoramas of Martian landscapes, help researchers identify smaller-scale features of special interest for examination in more detail.

The Importance of Nested Scales of Observations, Large Scales

Observations at large scales, such as panoramas of Martian landscapes, help researchers identify smaller-scale features of special interest for examination in more detail.

Target:
Mission: 2020 Mars, Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Mastcam
Size: 2460 x 1824
ID#: PIA17275
Added: 2013-07-09

Views: 1496

The Importance of Nested Scales of Observations, Large Scales

Observations at large scales, such as panoramas of Martian landscapes, help researchers identify smaller-scale features of special interest for examination in more detail.

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This view from the left Navigation Camera (Navcam) of NASA's Mars Rover Curiosity looks back at wheel tracks made during the first drive away from the last science target in the 'Glenelg' area.
This view from the left Navigation Camera (Navcam) of NASA's Mars Rover Curiosity looks back at wheel tracks made during the first drive away from the last science target in the 'Glenelg' area.

First Leg of Long Trek Toward Mount Sharp

This view from the left Navigation Camera (Navcam) of NASA's Mars Rover Curiosity looks back at wheel tracks made during the first drive away from the last science target in the 'Glenelg' area.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Navigation Camera (MSL)
Size: 1024 x 1024
ID#: PIA17272
Added: 2013-07-08

Views: 1190

First Leg of Long Trek Toward Mount Sharp

This view from the left Navigation Camera (Navcam) of NASA's Mars Rover Curiosity looks back at wheel tracks made during the first drive away from the last science target in the 'Glenelg' area.

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This frame from an animation shows Phobos, the larger of the two moons of Mars, passing overhead, as observed by NASA's Mars rover Curiosity, centered straight overhead starting shortly after sunset.
This frame from an animation shows Phobos, the larger of the two moons of Mars, passing overhead, as observed by NASA's Mars rover Curiosity, centered straight overhead starting shortly after sunset.

Phobos Passing Overhead

This frame from an animation shows Phobos, the larger of the two moons of Mars, passing overhead, as observed by NASA's Mars rover Curiosity, centered straight overhead starting shortly after sunset.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Navigation Camera (MSL)
Size: 511 x 511
ID#: PIA17270
Added: 2013-07-01

Views: 1260

Phobos Passing Overhead

This frame from an animation shows Phobos, the larger of the two moons of Mars, passing overhead, as observed by NASA's Mars rover Curiosity, centered straight overhead starting shortly after sunset.

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This mosaic view from the Mast Camera (Mastcam) on NASA's Mars rover Curiosity shows textural characteristics and shapes of an outcrop called 'Point Lake.' The outcrop is about 20 inches (half a meter) high and pockmarked with holes.
This mosaic view from the Mast Camera (Mastcam) on NASA's Mars rover Curiosity shows textural characteristics and shapes of an outcrop called 'Point Lake.' The outcrop is about 20 inches (half a meter) high and pockmarked with holes.

Puzzling 'Point Lake' Outcrop Revisited

This mosaic view from the Mast Camera (Mastcam) on NASA's Mars rover Curiosity shows textural characteristics and shapes of an outcrop called 'Point Lake.' The outcrop is about 20 inches (half a meter) high and pockmarked with holes.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Mastcam
Size: 11037 x 3592
ID#: PIA17268
Added: 2013-06-25

Views: 1391

Puzzling 'Point Lake' Outcrop Revisited

This mosaic view from the Mast Camera (Mastcam) on NASA's Mars rover Curiosity shows textural characteristics and shapes of an outcrop called 'Point Lake.' The outcrop is about 20 inches (half a meter) high and pockmarked with holes.

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This image from NASA's rover Curiosity shows that many holes in the rock are occupied by what appears to be material different from that of the main rock itself.
This image from NASA's rover Curiosity shows that many holes in the rock are occupied by what appears to be material different from that of the main rock itself.

Detail in 'Point Lake' Outcrop

This image from NASA's rover Curiosity shows that many holes in the rock are occupied by what appears to be material different from that of the main rock itself.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Mars Hand Lens Imager (MAHLI)
Size: 1584 x 1184
ID#: PIA17267
Added: 2013-06-25

Views: 1891

Detail in 'Point Lake' Outcrop

This image from NASA's rover Curiosity shows that many holes in the rock are occupied by what appears to be material different from that of the main rock itself.

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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: 92314

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 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, White-Balanced

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#: PIA16918
Added: 2013-06-19

Views: 1542

Billion-Pixel View From Curiosity at Rock Nest, White-Balanced

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 image from an animation shows how repeated laser shots from the ChemCam instrument on NASA's Mars rover Curiosity cause a pit to form at the target point in Martian soil.
This image from an animation shows how repeated laser shots from the ChemCam instrument on NASA's Mars rover Curiosity cause a pit to form at the target point in Martian soil.

Pitting in Martian Soil During Repeated Laser Shots From Mars Rover

This image from an animation shows how repeated laser shots from the ChemCam instrument on NASA's Mars rover Curiosity cause a pit to form at the target point in Martian soil.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Chemistry and Camera (ChemCam)
Size: 514 x 514
ID#: PIA17262
Added: 2013-06-17

Views: 1176

Pitting in Martian Soil During Repeated Laser Shots From Mars Rover

This image from an animation shows how repeated laser shots from the ChemCam instrument on NASA's Mars rover Curiosity cause a pit to form at the target point in Martian soil.

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This image from NASA's Curiosity was taken by the right (telephoto-lens) camera of the Mast Camera (Mastcam) on the rover during the 193rd Martian day, or sol, of Curiosity's work on Mars (Feb. 20, 2013) in the 'Glenelg' area.
This image from NASA's Curiosity was taken by the right (telephoto-lens) camera of the Mast Camera (Mastcam) on the rover during the 193rd Martian day, or sol, of Curiosity's work on Mars (Feb. 20, 2013) in the 'Glenelg' area.

'Point Lake' Outcrop in Gale Crater

This image from NASA's Curiosity was taken by the right (telephoto-lens) camera of the Mast Camera (Mastcam) on the rover during the 193rd Martian day, or sol, of Curiosity's work on Mars (Feb. 20, 2013) in the 'Glenelg' area.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Mastcam
Size: 1408 x 1200
ID#: PIA17071
Added: 2013-06-05

Views: 2797

'Point Lake' Outcrop in Gale Crater

This image from NASA's Curiosity was taken by the right (telephoto-lens) camera of the Mast Camera (Mastcam) on the rover during the 193rd Martian day, or sol, of Curiosity's work on Mars (Feb. 20, 2013) in the 'Glenelg' area.

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The Chemistry and Camera (ChemCam) instrument on NASA's Mars rover Curiosity was used to check the composition of gray tailings from the hole in rock target 'Cumberland' that the rover drilled on May 19, 2013.
The Chemistry and Camera (ChemCam) instrument on NASA's Mars rover Curiosity was used to check the composition of gray tailings from the hole in rock target 'Cumberland' that the rover drilled on May 19, 2013.

Drilled Hole and ChemCam Marks at 'Cumberland'

The Chemistry and Camera (ChemCam) instrument on NASA's Mars rover Curiosity was used to check the composition of gray tailings from the hole in rock target 'Cumberland' that the rover drilled on May 19, 2013.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Chemistry and Camera (ChemCam), Mastcam
Size: 936 x 786
ID#: PIA17069
Added: 2013-06-05

Views: 2301

Drilled Hole and ChemCam Marks at 'Cumberland'

The Chemistry and Camera (ChemCam) instrument on NASA's Mars rover Curiosity was used to check the composition of gray tailings from the hole in rock target 'Cumberland' that the rover drilled on May 19, 2013.

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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: 4020

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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This image demonstrates how engineers place the drill carried by NASA's Mars rover Curiosity onto rock targets. They first set down the drill's two stabilizing prongs near the target, as shown by the dashed line.
This image demonstrates how engineers place the drill carried by NASA's Mars rover Curiosity onto rock targets. They first set down the drill's two stabilizing prongs near the target, as shown by the dashed line.

Checking Contact Points for Curiosity's Drill

This image demonstrates how engineers place the drill carried by NASA's Mars rover Curiosity onto rock targets. They first set down the drill's two stabilizing prongs near the target, as shown by the dashed line.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Mars Hand Lens Imager (MAHLI)
Size: 1612 x 1200
ID#: PIA17067
Added: 2013-06-05

Views: 1180

Checking Contact Points for Curiosity's Drill

This image demonstrates how engineers place the drill carried by NASA's Mars rover Curiosity onto rock targets. They first set down the drill's two stabilizing prongs near the target, as shown by the dashed line.

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This image taken by the Mars Hand Lens Imager (MAHLI) on NASA's Mars rover Curiosity shows the texture of the patch of flat-lying bedrock called 'Cumberland,' which was the mission's second target for use of the rover's sample-collecting drill.
This image taken by the Mars Hand Lens Imager (MAHLI) on NASA's Mars rover Curiosity shows the texture of the patch of flat-lying bedrock called 'Cumberland,' which was the mission's second target for use of the rover's sample-collecting drill.

Concretions at 'Cumberland'

This image taken by the Mars Hand Lens Imager (MAHLI) on NASA's Mars rover Curiosity shows the texture of the patch of flat-lying bedrock called 'Cumberland,' which was the mission's second target for use of the rover's sample-collecting drill.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Mars Hand Lens Imager (MAHLI)
Size: 1608 x 1200
ID#: PIA17066
Added: 2013-06-05

Views: 1385

Concretions at 'Cumberland'

This image taken by the Mars Hand Lens Imager (MAHLI) on NASA's Mars rover Curiosity shows the texture of the patch of flat-lying bedrock called 'Cumberland,' which was the mission's second target for use of the rover's sample-collecting drill.

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This image produced from software used for planning drives of NASA's Mars rover Curiosity depicts the location and size of the rover when it was driven into position for drilling into rock target 'Cumberland.'
This image produced from software used for planning drives of NASA's Mars rover Curiosity depicts the location and size of the rover when it was driven into position for drilling into rock target 'Cumberland.'

Position of Curiosity for Drilling at 'Cumberland'

This image produced from software used for planning drives of NASA's Mars rover Curiosity depicts the location and size of the rover when it was driven into position for drilling into rock target 'Cumberland.'

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Navigation Camera (MSL)
Size: 1372 x 1104
ID#: PIA17065
Added: 2013-06-05

Views: 1147

Position of Curiosity for Drilling at 'Cumberland'

This image produced from software used for planning drives of NASA's Mars rover Curiosity depicts the location and size of the rover when it was driven into position for drilling into rock target 'Cumberland.'

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This map shows where NASA's Mars rover Curiosity landed in August 2012 at 'Bradbury Landing.' All of these features are inside Gale Crater. Curiosity's next major destination, the entry point to the base of Mount Sharp.
This map shows where NASA's Mars rover Curiosity landed in August 2012 at 'Bradbury Landing.' All of these features are inside Gale Crater. Curiosity's next major destination, the entry point to the base of Mount Sharp.

From 'Glenelg' to Mount Sharp

This map shows where NASA's Mars rover Curiosity landed in August 2012 at 'Bradbury Landing.' All of these features are inside Gale Crater. Curiosity's next major destination, the entry point to the base of Mount Sharp.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: High Resolution Imaging Science Experiment (HiRISE)
Size: 3300 x 2550
ID#: PIA17064
Added: 2013-06-05

Views: 1402

From 'Glenelg' to Mount Sharp

This map shows where NASA's Mars rover Curiosity landed in August 2012 at 'Bradbury Landing.' All of these features are inside Gale Crater. Curiosity's next major destination, the entry point to the base of Mount Sharp.

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NASA's Curiosity rover found evidence for an ancient, flowing stream on Mars at a few sites, including a rock which the science team has named 'Hottah' after Hottah Lake in Canada's Northwest Territories. 3-D glasses are needed.
NASA's Curiosity rover found evidence for an ancient, flowing stream on Mars at a few sites, including a rock which the science team has named 'Hottah' after Hottah Lake in Canada's Northwest Territories. 3-D glasses are needed.

Evidence About a Martian Streambed (Stereo)

NASA's Curiosity rover found evidence for an ancient, flowing stream on Mars at a few sites, including a rock which the science team has named 'Hottah' after Hottah Lake in Canada's Northwest Territories. 3-D glasses are needed.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Mastcam
Size: 2498 x 1126
ID#: PIA17063
Added: 2013-05-30

Views: 1635

Evidence About a Martian Streambed (Stereo)

NASA's Curiosity rover found evidence for an ancient, flowing stream on Mars at a few sites, including a rock which the science team has named 'Hottah' after Hottah Lake in Canada's Northwest Territories. 3-D glasses are needed.

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NASA's Curiosity rover found evidence for an ancient, flowing stream on Mars at a few sites, including a rock which the science team has named 'Hottah' after Hottah Lake in Canada's Northwest Territories.
NASA's Curiosity rover found evidence for an ancient, flowing stream on Mars at a few sites, including a rock which the science team has named 'Hottah' after Hottah Lake in Canada's Northwest Territories.

Remnants of Ancient Streambed on Mars (White-Balanced View)

NASA's Curiosity rover found evidence for an ancient, flowing stream on Mars at a few sites, including a rock which the science team has named 'Hottah' after Hottah Lake in Canada's Northwest Territories.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Mastcam
Size: 4372 x 5883
ID#: PIA17062
Added: 2013-05-30

Views: 3032

Remnants of Ancient Streambed on Mars (White-Balanced View)

NASA's Curiosity rover found evidence for an ancient, flowing stream on Mars at a few sites, including a rock which the science team has named 'Hottah' after Hottah Lake in Canada's Northwest Territories.

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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 RAD instrument shielded inside NASA's Mars Science Laboratory spacecraft.
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 RAD instrument shielded inside NASA's Mars Science Laboratory spacecraft.

Comparison of Some Radiation Exposures to Mars-Trip Level

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 RAD instrument shielded inside NASA's Mars Science Laboratory spacecraft.

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Radiation Assessment Detector (RAD)
Size: 3651 x 4301
ID#: PIA17061
Added: 2013-05-30

Views: 1331

Comparison of Some Radiation Exposures to Mars-Trip Level

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 RAD instrument shielded inside NASA's Mars Science Laboratory spacecraft.

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This graph based on data from the RAD instrument onboard NASA's Mars Science Laboratory spacecraft shows the flux of energetic particles (vertical axis) as a function of the estimated energy deposited in water (horizontal axis).
This graph based on data from the RAD instrument onboard NASA's Mars Science Laboratory spacecraft shows the flux of energetic particles (vertical axis) as a function of the estimated energy deposited in water (horizontal axis).

Calculating Radiation Dose for Biological Tissue

This graph based on data from the RAD instrument onboard NASA's Mars Science Laboratory spacecraft shows the flux of energetic particles (vertical axis) as a function of the estimated energy deposited in water (horizontal axis).

Target:
Mission: Mars Science Laboratory (MSL)
Spacecraft: Curiosity
Instrument: Radiation Assessment Detector (RAD)
Size: 3920 x 3032
ID#: PIA17060
Added: 2013-05-30

Views: 1305

Calculating Radiation Dose for Biological Tissue

This graph based on data from the RAD instrument onboard NASA's Mars Science Laboratory spacecraft shows the flux of energetic particles (vertical axis) as a function of the estimated energy deposited in water (horizontal axis).

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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: 1130

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: 1596

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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