rover, mars

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CAPE CANAVERAL, Fla. -- Workers unload a container holding the cruise stage, one of the first three elements for NASA's Mars Science Laboratory (MSL) that arrived at NASA Kennedy Space Center's Shuttle Landing Facility aboard an Air Force C-17 cargo plane.       The cruise stage, back shell and heat shield, the first flight elements to arrive for the MSL mission, were taken to the Payload Hazardous Servicing Facility (PHSF) located in the KSC Industrial Area to begin processing. The Curiosity rover will arrive next month.    A United Launch Alliance Atlas V-541 configuration will be used to loft MSL into space. Curiosity’s 10 science instruments are designed to search for evidence on whether Mars has had environments favorable to microbial life, including chemical ingredients for life.  The unique rover will use a laser to look inside rocks and release its gasses so that the rover’s spectrometer can analyze and send the data back to Earth. MSL is scheduled to launch from Cape Canaveral Air Force Station in Florida Nov. 25 with a window extending to Dec. 18 and arrival at Mars Aug. 2012. For more information, visit http://www.nasa.gov/msl. Photo credit: NASA/Troy Cryder KSC-2011-3510

CAPE CANAVERAL, Fla. -- Workers unload a container holding the cruise ...

CAPE CANAVERAL, Fla. -- Workers unload a container holding the cruise stage, one of the first three elements for NASA's Mars Science Laboratory (MSL) that arrived at NASA Kennedy Space Center's Shuttle Landing ... More

Rover Panorama of Entrance to Murray Buttes on Mars

Rover Panorama of Entrance to Murray Buttes on Mars

This 360-degree panorama was acquired by the Mast Camera (Mastcam) on NASA's Curiosity Mars rover as the rover neared features called "Murray Buttes" on lower Mount Sharp. The view combines more than 130 image... More

Rover Panorama Taken Amid Murray Buttes on Mars

Rover Panorama Taken Amid Murray Buttes on Mars

Original Caption Released with Image: This 360-degree panorama was acquired by the Mast Camera (Mastcam) on NASA's Curiosity Mars rover while the rover was in an area called "Murray Buttes" on lower Mount ... More

NASA Mars Underwater Rover Phantom 2 TROV (Telepresences Controlled Remotely Operated Vehicle) cameras ARC-1992-AC92-0007-8

NASA Mars Underwater Rover Phantom 2 TROV (Telepresences Controlled Re...

NASA Mars Underwater Rover Phantom 2 TROV (Telepresences Controlled Remotely Operated Vehicle) cameras

NASA Mars Underwater Rover Phantom 2 TROV (Telepresences Controlled Remotely Operated Vehicle) with Dr. Carol Stoker ARC-1992-AC92-0007-5

NASA Mars Underwater Rover Phantom 2 TROV (Telepresences Controlled Re...

NASA Mars Underwater Rover Phantom 2 TROV (Telepresences Controlled Remotely Operated Vehicle) with Dr. Carol Stoker

NASA Mars Underwater Rover Phantom 2 TROV (Telepresences Controlled Remotely Operated Vehicle) with Dr. Carol Stoker and Owen Gwynne ARC-1992-AC92-0007-1

NASA Mars Underwater Rover Phantom 2 TROV (Telepresences Controlled Re...

NASA Mars Underwater Rover Phantom 2 TROV (Telepresences Controlled Remotely Operated Vehicle) with Dr. Carol Stoker and Owen Gwynne

NASA Mars Underwater Rover Phantom 2 TROV (Telepresences Controlled Remotely Operated Vehicle) -  helmet head piece ARC-1992-AC92-0007-9

NASA Mars Underwater Rover Phantom 2 TROV (Telepresences Controlled Re...

NASA Mars Underwater Rover Phantom 2 TROV (Telepresences Controlled Remotely Operated Vehicle) - helmet head piece

NASA Mars Underwater Rover Phantom 2 TROV (Telepresences Controlled Remotely Operated Vehicle) ARC-1992-AC92-0007-7

NASA Mars Underwater Rover Phantom 2 TROV (Telepresences Controlled Re...

NASA Mars Underwater Rover Phantom 2 TROV (Telepresences Controlled Remotely Operated Vehicle)

NASA Mars Underwater Rover Phantom 2 TROV (Telepresences Controlled Remotely Operated Vehicle) cameras ARC-1992-AC92-0007-10

NASA Mars Underwater Rover Phantom 2 TROV (Telepresences Controlled Re...

NASA Mars Underwater Rover Phantom 2 TROV (Telepresences Controlled Remotely Operated Vehicle) cameras

NASA Mars Underwater Rover Phantom 2 TROV (Telepresences Controlled Remotely Operated Vehicle) ARC-1992-AC92-0007-3

NASA Mars Underwater Rover Phantom 2 TROV (Telepresences Controlled Re...

NASA Mars Underwater Rover Phantom 2 TROV (Telepresences Controlled Remotely Operated Vehicle)

CAPE CANAVERAL, Fla. -- In the Spacecraft Assembly and Encapsulation Facility-2 at NASA's Kennedy Space Center in Florida, Jet Propulsion Laboratory technicians are closing up the metal "petals" of the Mars Pathfinder lander. The Sojourner rover is visible on one of the three petals. Photo Credit: NASA KSC-96PC-1130

CAPE CANAVERAL, Fla. -- In the Spacecraft Assembly and Encapsulation F...

CAPE CANAVERAL, Fla. -- In the Spacecraft Assembly and Encapsulation Facility-2 at NASA's Kennedy Space Center in Florida, Jet Propulsion Laboratory technicians are closing up the metal "petals" of the Mars Pat... More

NASA Space Science. NASA public domain image colelction.

NASA Space Science. NASA public domain image colelction.

The Mars Pathfinder began the journey to Mars with liftoff atop a Delta II expendable launch vehicle from launch Complex 17B on Cape Canaveral Air Station. The Mars Pathfinder traveled on a direct trajectory to... More

360 Degree Panorama Mars Pathfinder Landing Site

360 Degree Panorama Mars Pathfinder Landing Site

This is the first contiguous, uniform 360-degree color panorama taken by the Imager for Mars Pathfinder (IMP) over the course of sols 8, 9, and 10 (Martian days). Different regions were imaged at different time... More

Rover, Airbags & Martian Terrain, Mars Pathfinder Images

Rover, Airbags & Martian Terrain, Mars Pathfinder Images

This picture from Mars Pathfinder was taken at 9:30 AM in the martian morning (2:30 PM Pacific Daylight Time), after the spacecraft landed earlier today (July 4, 1997). The Sojourner rover is perched on one of ... More

Pathfinder Rover, Airbags, & Martian Terrain

Pathfinder Rover, Airbags, & Martian Terrain

This is one of the first pictures taken by the camera on the Mars Pathfinder lander shortly after its touchdown at 10:07 AM Pacific Daylight Time on July 4, 1997. The small rover, named Sojourner, is seen in th... More

Martian Terrain, Unfurled Rover Ramps & Deflated Airbags

Martian Terrain, Unfurled Rover Ramps & Deflated Airbags

The Imager for Mars Pathfinder (IMP) took this image of surrounding terrain in the mid-morning on Mars (2:30 PM Pacific Daylight Time) earlier today. Part of the small rover, Sojourner, is visible on the left s... More

Airbags and Sojourner Rover, Mars Pathfinder Images

Airbags and Sojourner Rover, Mars Pathfinder Images

This image from the Imager for Mars Pathfinder (IMP) camera shows the rear part of the Sojourner rover, the rolled-up rear ramp, and portions of the partially deflated airbags. The Alpha Proton X-ray Spectromet... More

Color Mosaic of Rover & Terrain

Color Mosaic of Rover & Terrain

NASA's Sojourner rover and undeployed ramps onboard the Mars Pathfinder spacecraft can be seen in this image, by the Imager for Mars Pathfinder (IMP) on July 4 (Sol 1). This image has been corrected for the cur... More

Rover, Airbags, & Surrounding Rocks, Mars Pathfinder Images

Rover, Airbags, & Surrounding Rocks, Mars Pathfinder Images

This image of the Martian surface was taken by the Imager for Mars Pathfinder (IMP) before sunset on July 4, 1997 (Sol 1), the spacecraft's first day on Mars. The airbags have been partially retracted, and port... More

Rover Touchdown on Martian Surface

Rover Touchdown on Martian Surface

This picture taken by the IMP (Imager for Mars Pathfinder) aboard the Mars Pathfinder spacecraft depicts the rover Sojourner's position after driving onto the Martian surface. Sojourner has become the first aut... More

Pathfinder Ramp Deploy Image, Mars Pathfinder Images

Pathfinder Ramp Deploy Image, Mars Pathfinder Images

Mars Pathfinder's forward rover ramp can be seen successfully unfurled in this image, taken at the end of Sol 2 by the Imager for Mars Pathfinder (IMP). This ramp was not used for the deployment of the microrov... More

Rover Tracks, Mars Pathfinder Images

Rover Tracks, Mars Pathfinder Images

Tracks made by the Sojourner rover are visible in this image, taken by one of the cameras aboard Sojourner on Sol 3. The tracks represent the rover maneuvering towards the rock dubbed "Barnacle Bill." The rover... More

Lower Portions of Yogi & Rover Wheel

Lower Portions of Yogi & Rover Wheel

Lower Portions of Yogi & Rover Wheel NASA/JPL Public domain photograph of planet Mars surface, free to use, no copyright restrictions image - Picryl description

A Rover Wheel in Soil - Color. NASA public domain image colelction.
Yogi and Rover Tracks, Mars Pathfinder Images

Yogi and Rover Tracks, Mars Pathfinder Images

Yogi and Rover Tracks NASA/JPL Public domain photograph of a solar system, planet, space exploration, free to use, no copyright restrictions image - Picryl description

End of Sol 5 Rover Image. NASA public domain image colelction.

End of Sol 5 Rover Image. NASA public domain image colelction.

End of Sol 5 Rover Image NASA/JPL Public domain photograph of a solar system, planet, space exploration, free to use, no copyright restrictions image - Picryl description

Rover Wheel & Tracks - Color, Mars Pathfinder Images

Rover Wheel & Tracks - Color, Mars Pathfinder Images

Rover Wheel & Tracks - Color NASA/JPL

Diversity of Soils near Rover Deploy Region

Diversity of Soils near Rover Deploy Region

Diversity of Soils near Rover Deploy Region NASA/JPL/Johns Hopkins University

Diversity of Soils near Rover Deploy Region

Diversity of Soils near Rover Deploy Region

Diversity of Soils near Rover Deploy Region NASA/JPL/Johns Hopkins University

New Perspective of Undeployed Rover

New Perspective of Undeployed Rover

New Perspective of Undeployed Rover NASA/JPL Public domain photograph of planet Mars surface, free to use, no copyright restrictions image - Picryl description

Sojourner at "Mermaid Dune", Mars Pathfinder Images

Sojourner at "Mermaid Dune", Mars Pathfinder Images

This is an image of the rover Sojourner at the feature called Mermaid Dune at the MPF landing site. Mermaid is thought to be a low, transverse dune ridge, with its long (approximately 2 meters) axis transverse ... More

Next Target for Rover, Mars Pathfinder Images

Next Target for Rover, Mars Pathfinder Images

Next Target for Rover NASA/JPL Public domain photograph of a solar system, planet, space exploration, free to use, no copyright restrictions image - Picryl description

Rover Camera Mosaic of Lander & Wedge

Rover Camera Mosaic of Lander & Wedge

Rover Camera Mosaic of Lander & Wedge NASA/JPL Public domain photograph of a solar system, planet, space exploration, free to use, no copyright restrictions image - Picryl description

Rover Soil Experiments Near Casper & Shaggy

Rover Soil Experiments Near Casper & Shaggy

Rover Soil Experiments Near Casper & Shaggy NASA/JPL Public domain photograph of a solar system, planet, space exploration, free to use, no copyright restrictions image - Picryl description

Rover Soil Experiments Near Yogi

Rover Soil Experiments Near Yogi

Rover Soil Experiments Near Yogi NASA/JPL

Nancy Warren, supervisor of stamp distribution for the U.S. Post Office, unveils the $3 commemorative Mars Pathfinder postage stamp at Kennedy Space Center's Visitor Complex on the second day of its issue. The stamp was first issued on Dec. 10 at the Jet Propulsion Laboratory, Pasadena, Calif. It depicts the Sojourner rover at rest on the Pathfinder spacecraft with a panoramic Martian view that is based on one of the first mission images sent back to Earth KSC-97PC1796

Nancy Warren, supervisor of stamp distribution for the U.S. Post Offic...

Nancy Warren, supervisor of stamp distribution for the U.S. Post Office, unveils the $3 commemorative Mars Pathfinder postage stamp at Kennedy Space Center's Visitor Complex on the second day of its issue. The ... More

Sojourner Rover Near The, Mars Pathfinder Images

Sojourner Rover Near The, Mars Pathfinder Images

Sojourner Rover Near The NASA/JPL Public domain photograph of a solar system, planet, space exploration, free to use, no copyright restrictions image - Picryl description

Sojourner Rover View of Pathfinder Lander

Sojourner Rover View of Pathfinder Lander

Sojourner Rover View of Pathfinder Lander NASA/JPL

Pathfinder Rover Atop Mermaid, Mars Pathfinder Images

Pathfinder Rover Atop Mermaid, Mars Pathfinder Images

Pathfinder Rover Atop Mermaid NASA/JPL Public domain photograph of a solar system, planet, space exploration, free to use, no copyright restrictions image - Picryl description

Sojourner Rover View of Well-Rounded Pebbles in Cabbage

Sojourner Rover View of Well-Rounded Pebbles in Cabbage

Sojourner Rover View of Well-Rounded Pebbles in Cabbage NASA/JPL

Sojourner Rover View of Shark and Half

Sojourner Rover View of Shark and Half

Sojourner Rover View of Shark and Half NASA/JPL Public domain photograph of a solar system, planet, space exploration, free to use, no copyright restrictions image - Picryl description

Sojourner Rover View of Sockets and Pebbles

Sojourner Rover View of Sockets and Pebbles

Sojourner Rover View of Sockets and Pebbles NASA/JPL Public domain photograph of planet Mars surface, free to use, no copyright restrictions image - Picryl description

Sojourner Rover Tracks in Compressible Soil

Sojourner Rover Tracks in Compressible Soil

Sojourner Rover Tracks in Compressible Soil NASA/JPL Public domain photograph of planet Mars surface, free to use, no copyright restrictions image - Picryl description

Sojourner Rover View of Souffle Rock

Sojourner Rover View of Souffle Rock

Sojourner Rover View of Souffle Rock NASA/JPL Public domain photograph of a solar system, planet, space exploration, free to use, no copyright restrictions image - Picryl description

Sojourner Rover View of Cloddy Deposits near Pooh

Sojourner Rover View of Cloddy Deposits near Pooh

Sojourner Rover View of Cloddy Deposits near Pooh NASA/JPL Public domain photograph of a solar system, planet, space exploration, free to use, no copyright restrictions image - Picryl description

Sojourner Rover View of Platy Fragments near Pop-Tart

Sojourner Rover View of Platy Fragments near Pop-Tart

Sojourner Rover View of Platy Fragments near Pop-Tart NASA/JPL

Mars PathFinder Rover Traverse Image

Mars PathFinder Rover Traverse Image

Mars PathFinder Rover Traverse Image NASA/JPL Public domain photograph of planet Mars surface, free to use, no copyright restrictions image - Picryl description

Chimp as Viewed by Rover. NASA public domain image colelction.

Chimp as Viewed by Rover. NASA public domain image colelction.

This anaglyph view of Chimp, south southwest of the lander, was produced by NASA Mars Pathfinder Imager camera. 3D glasses are necessary to identify surface detail. NASA/JPL

Ender as Viewed by the Rover. NASA public domain image colelction.

Ender as Viewed by the Rover. NASA public domain image colelction.

This anaglyph view of Ender, due south of the lander, was produced by NASA Mars Pathfinder Imager camera. 3D glasses are necessary to identify surface detail. NASA/JPL

Flat Top as Viewed by the Rover

Flat Top as Viewed by the Rover

This anaglyph view of Flat Top, due south of the lander, was produced by NASA Mars Pathfinder Imager camera. 3D glasses are necessary to identify surface detail. NASA/JPL

Rover Panorama from Sols 75 & 76

Rover Panorama from Sols 75 & 76

Rover Panorama from Sols 75 & 76 NASA/JPL Public domain photograph of a solar system, planet, space exploration, free to use, no copyright restrictions image - Picryl description

Shark as Viewed by Sojourner Rover

Shark as Viewed by Sojourner Rover

Shark as Viewed by Sojourner Rover NASA/JPL

Souffle as Viewed by the Rover. NASA public domain image colelction.

Souffle as Viewed by the Rover. NASA public domain image colelction.

This anaglyph view of Souffle, to the left of Yogi, was produced by NASA Mars Pathfinder Imager camera. 3D glasses are necessary to identify surface detail. NASA/JPL

Newly Deployed Sojourner Rover, Mars Pathfinder Images

Newly Deployed Sojourner Rover, Mars Pathfinder Images

Newly Deployed Sojourner Rover NASA/JPL Public domain photograph of a solar system, planet, space exploration, free to use, no copyright restrictions image - Picryl description

Sojourner Rover Near Half, Mars Pathfinder Images

Sojourner Rover Near Half, Mars Pathfinder Images

Sojourner Rover Near Half NASA/JPL Public domain photograph of a solar system, planet, space exploration, free to use, no copyright restrictions image - Picryl description

Sojourner Rover Near Half, Mars Pathfinder Images

Sojourner Rover Near Half, Mars Pathfinder Images

Sojourner Rover Near Half NASA/JPL Public domain photograph of a solar system, planet, space exploration, free to use, no copyright restrictions image - Picryl description

Sojourner Rover Backing Away From Moe - Left Eye

Sojourner Rover Backing Away From Moe - Left Eye

Sojourner Rover Backing Away From Moe - Left Eye NASA/JPL Public domain photograph of a solar system, planet, space exploration, free to use, no copyright restrictions image - Picryl description

Sojourner Rover Backing Away from Moe - Right Eye

Sojourner Rover Backing Away from Moe - Right Eye

Sojourner Rover Backing Away from Moe - Right Eye NASA/JPL Public domain photograph of a solar system, planet, space exploration, free to use, no copyright restrictions image - Picryl description

Sojourner Rover Leaving the Rock

Sojourner Rover Leaving the Rock

Sojourner Rover Leaving the Rock NASA/JPL Public domain photograph of a solar system, planet, space exploration, free to use, no copyright restrictions image - Picryl description

Sojourner Rover Leaving the Rock

Sojourner Rover Leaving the Rock

Sojourner Rover Leaving the Rock NASA/JPL Public domain photograph of a solar system, planet, space exploration, free to use, no copyright restrictions image - Picryl description

Sojourner Rover Behind Chimp - Left Eye

Sojourner Rover Behind Chimp - Left Eye

Sojourner Rover Behind Chimp - Left Eye NASA/JPL Public domain photograph of a solar system, planet, space exploration, free to use, no copyright restrictions image - Picryl description

Sojourner Rover Behind Chimp - Right Eye

Sojourner Rover Behind Chimp - Right Eye

Sojourner Rover Behind Chimp - Right Eye NASA/JPL Public domain photograph of a solar system, planet, space exploration, free to use, no copyright restrictions image - Picryl description

Mars Rover Opportunity Panorama of Marathon Valley Stereo

Mars Rover Opportunity Panorama of Marathon Valley Stereo

"Marathon Valley" on Mars opens northeastward in this stereo scene from the panoramic camera (Pancam) of NASA's Mars Exploration Rover Opportunity. The image combines views from the left eye and right eye of t... More

Mars Rover Opportunity Panorama of Marathon Valley (Enhanced Color)

Mars Rover Opportunity Panorama of Marathon Valley (Enhanced Color)

"Marathon Valley" on Mars opens northeastward to a view across the floor of Endeavour Crater in this scene from the panoramic camera (Pancam) of NASA's Mars Exploration Rover Opportunity. In this version of the... More

Mars Rover Opportunity Panorama of Marathon Valley

Mars Rover Opportunity Panorama of Marathon Valley

"Marathon Valley" on Mars opens northeastward to a view across the floor of Endeavour Crater in this scene from the panoramic camera (Pancam) of NASA's Mars Exploration Rover Opportunity. The scene merges mult... More

Curiosity Rover Will Study Dunes on Route up Mountain

Curiosity Rover Will Study Dunes on Route up Mountain

This view from the Mast Camera (Mastcam) on NASA's Curiosity Mars rover shows a dark sand dune in the middle distance. The rover's examination of dunes on the way toward higher layers of Mount Sharp will be the... More

Artist Concept of Mars Exploration Rover

Artist Concept of Mars Exploration Rover

Artist concept of NASA Artist concept of Mars Exploration Rover MER from December, 2002. http://photojournal.jpl.nasa.gov/catalog/PIA04239 NASA/JPL

Artist Concept of Mars Exploration Rover

Artist Concept of Mars Exploration Rover

Artist concept of NASA Artist concept of Mars Exploration Rover MER from December, 2002. http://photojournal.jpl.nasa.gov/catalog/PIA04240 NASA/JPL

KENNEDY SPACE CENTER, FLA. -- In the Payload Hazardous Servicing Facility, workers get ready to remove the plastic covering from the Mars Exploration Rover -2. Set to launch in 2003, the Mars Exploration Rover Mission will consist of two identical rovers designed to cover roughly 110 yards (100 meters) each Martian day. Each rover will carry five scientific instruments that will allow it to search for evidence of liquid water that may have been present in the planet's past.  The rovers will be identical to each other, but will land at different regions of Mars.  The first rover has a launch window opening May 30, 2003, and the second rover a window opening June 25, 2003. KSC-03pd0210

KENNEDY SPACE CENTER, FLA. -- In the Payload Hazardous Servicing Facil...

KENNEDY SPACE CENTER, FLA. -- In the Payload Hazardous Servicing Facility, workers get ready to remove the plastic covering from the Mars Exploration Rover -2. Set to launch in 2003, the Mars Exploration Rover ... More

KENNEDY SPACE CENTER, FLA. -- The Mars Exploration Rover -2 is moved to a workstand in the Payload Hazardous Servicing Facility. Set to launch in 2003, the Mars Exploration Rover Mission will consist of two identical rovers designed to cover roughly 110 yards (100 meters) each Martian day. Each rover will carry five scientific instruments that will allow it to search for evidence of liquid water that may have been present in the planet's past.  The rovers will be identical to each other, but will land at different regions of Mars.  The first rover has a launch window opening May 30, 2003, and the second rover a window opening June 25, 2003. KSC-03pd0212

KENNEDY SPACE CENTER, FLA. -- The Mars Exploration Rover -2 is moved t...

KENNEDY SPACE CENTER, FLA. -- The Mars Exploration Rover -2 is moved to a workstand in the Payload Hazardous Servicing Facility. Set to launch in 2003, the Mars Exploration Rover Mission will consist of two ide... More

KENNEDY SPACE CENTER, FLA. - In the Payload Hazardous Servicing Facility, workers lift the cover from the Mars Exploration Rover -2. Set to launch in 2003, the Mars Exploration Rover Mission will consist of two identical rovers designed to cover roughly 110 yards (100 meters) each Martian day. Each rover will carry five scientific instruments that will allow it to search for evidence of liquid water that may have been present in the planet's past.  The rovers will be identical to each other, but will land at different regions of Mars.  The first rover has a launch window opening May 30, 2003, and the second rover a window opening June 25, 2003. KSC-03pd0209

KENNEDY SPACE CENTER, FLA. - In the Payload Hazardous Servicing Facili...

KENNEDY SPACE CENTER, FLA. - In the Payload Hazardous Servicing Facility, workers lift the cover from the Mars Exploration Rover -2. Set to launch in 2003, the Mars Exploration Rover Mission will consist of two... More

KENNEDY SPACE CENTER, FLA. - Workers in the Payload Hazardous Servicing Facility move the Mars Exploration Rover -2 to a workstand in the high bay. Set to launch in 2003, the Mars Exploration Rover Mission will consist of two identical rovers designed to cover roughly 110 yards (100 meters) each Martian day. Each rover will carry five scientific instruments that will allow it to search for evidence of liquid water that may have been present in the planet's past.  The rovers will be identical to each other, but will land at different regions of Mars.  The first rover has a launch window opening May 30, 2003, and the second rover a window opening June 25, 2003. KSC-03pd0213

KENNEDY SPACE CENTER, FLA. - Workers in the Payload Hazardous Servicin...

KENNEDY SPACE CENTER, FLA. - Workers in the Payload Hazardous Servicing Facility move the Mars Exploration Rover -2 to a workstand in the high bay. Set to launch in 2003, the Mars Exploration Rover Mission will... More

KENNEDY SPACE CENTER, FLA. - After being cleaned up, the Mars Exploration Rover -2 is ready to be moved to a workstand in the Payload Hazardous Servicing Facility. Set to launch in 2003, the Mars Exploration Rover Mission will consist of two identical rovers designed to cover roughly 110 yards (100 meters) each Martian day. Each rover will carry five scientific instruments that will allow it to search for evidence of liquid water that may have been present in the planet's past.  The rovers will be identical to each other, but will land at different regions of Mars.  The first rover has a launch window opening May 30, 2003, and the second rover a window opening June 25, 2003. KSC-03pd0211

KENNEDY SPACE CENTER, FLA. - After being cleaned up, the Mars Explorat...

KENNEDY SPACE CENTER, FLA. - After being cleaned up, the Mars Exploration Rover -2 is ready to be moved to a workstand in the Payload Hazardous Servicing Facility. Set to launch in 2003, the Mars Exploration Ro... More

KENNEDY SPACE CENTER, FLA. - Workers in the Payload Hazardous Servicing Facility help guide the Mars Exploration Rover (MER) aeroshell as it is lowered toward a rotation stand.  Set to launch in 2003, the MER Mission will consist of two identical rovers designed to cover roughly 110 yards (100 meters) each Martian day. Each rover will carry five scientific instruments that will allow it to search for evidence of liquid water that may have been present in the planet's past.  The rovers will be identical to each other, but will land at different regions of Mars.  The first rover has a launch window opening May 30, and the second rover a window opening June 25, 2003. KSC-03pd0235

KENNEDY SPACE CENTER, FLA. - Workers in the Payload Hazardous Servicin...

KENNEDY SPACE CENTER, FLA. - Workers in the Payload Hazardous Servicing Facility help guide the Mars Exploration Rover (MER) aeroshell as it is lowered toward a rotation stand. Set to launch in 2003, the MER M... More

KENNEDY SPACE CENTER, FLA. - In the Payload Hazardous Servicing Facility, the Mars Exploration Rover (MER) aeroshell is being prepared for transfer to a rotation stand.  Set to launch in 2003, the MER Mission will consist of two identical rovers designed to cover roughly 110 yards (100 meters) each Martian day. Each rover will carry five scientific instruments that will allow it to search for evidence of liquid water that may have been present in the planet's past.  The rovers will be identical to each other, but will land at different regions of Mars.  The first rover has a launch window opening May 30, and the second rover a window opening June 25, 2003. KSC-03pd0230

KENNEDY SPACE CENTER, FLA. - In the Payload Hazardous Servicing Facili...

KENNEDY SPACE CENTER, FLA. - In the Payload Hazardous Servicing Facility, the Mars Exploration Rover (MER) aeroshell is being prepared for transfer to a rotation stand. Set to launch in 2003, the MER Mission w... More

KENNEDY SPACE CENTER, FLA. -- Workers in the Payload Hazardous Servicing Facility help guide the Mars Exploration Rover (MER) aeroshell onto a rotation stand.  Set to launch in 2003, the MER Mission will consist of two identical rovers designed to cover roughly 110 yards (100 meters) each Martian day. Each rover will carry five scientific instruments that will allow it to search for evidence of liquid water that may have been present in the planet's past.  The rovers will be identical to each other, but will land at different regions of Mars.  The first rover has a launch window opening May 30, and the second rover a window opening June 25, 2003. KSC-03pd0236

KENNEDY SPACE CENTER, FLA. -- Workers in the Payload Hazardous Servici...

KENNEDY SPACE CENTER, FLA. -- Workers in the Payload Hazardous Servicing Facility help guide the Mars Exploration Rover (MER) aeroshell onto a rotation stand. Set to launch in 2003, the MER Mission will consis... More

KENNEDY SPACE CENTER, FLA. -- In the Payload Hazardous Servicing Facility, an overhead crane lowers the Mars Exploration Rover (MER) aeroshell toward a rotation stand.  Set to launch in 2003, the MER Mission will consist of two identical rovers designed to cover roughly 110 yards (100 meters) each Martian day. Each rover will carry five scientific instruments that will allow it to search for evidence of liquid water that may have been present in the planet's past.  The rovers will be identical to each other, but will land at different regions of Mars.  The first rover has a launch window opening May 30, and the second rover a window opening June 25, 2003. KSC-03pd0234

KENNEDY SPACE CENTER, FLA. -- In the Payload Hazardous Servicing Facil...

KENNEDY SPACE CENTER, FLA. -- In the Payload Hazardous Servicing Facility, an overhead crane lowers the Mars Exploration Rover (MER) aeroshell toward a rotation stand. Set to launch in 2003, the MER Mission wi... More

KENNEDY SPACE CENTER, FLA. - Suspended by an overhead crane in the Payload Hazardous Servicing Facility, the Mars Exploration Rover (MER) aeroshell is guided by workers as it moves to a rotation stand.  Set to launch in 2003, the MER Mission will consist of two identical rovers designed to cover roughly 110 yards (100 meters) each Martian day. Each rover will carry five scientific instruments that will allow it to search for evidence of liquid water that may have been present in the planet's past.  The rovers will be identical to each other, but will land at different regions of Mars.  The first rover has a launch window opening May 30, and the second rover a window opening June 25, 2003. KSC-03pd0233

KENNEDY SPACE CENTER, FLA. - Suspended by an overhead crane in the Pay...

KENNEDY SPACE CENTER, FLA. - Suspended by an overhead crane in the Payload Hazardous Servicing Facility, the Mars Exploration Rover (MER) aeroshell is guided by workers as it moves to a rotation stand. Set to ... More

KENNEDY SPACE CENTER, FLA. -- In the Payload Hazardous Servicing Facility, an overhead crane lifts the Mars Exploration Rover (MER) aeroshell for transfer to a rotation stand.  Set to launch in 2003, the MER Mission will consist of two identical rovers designed to cover roughly 110 yards (100 meters) each Martian day. Each rover will carry five scientific instruments that will allow it to search for evidence of liquid water that may have been present in the planet's past.  The rovers will be identical to each other, but will land at different regions of Mars.  The first rover has a launch window opening May 30, and the second rover a window opening June 25, 2003. KSC-03pd0232

KENNEDY SPACE CENTER, FLA. -- In the Payload Hazardous Servicing Facil...

KENNEDY SPACE CENTER, FLA. -- In the Payload Hazardous Servicing Facility, an overhead crane lifts the Mars Exploration Rover (MER) aeroshell for transfer to a rotation stand. Set to launch in 2003, the MER Mi... More

Mars Exploration Rover (MER) aeroshell

Mars Exploration Rover (MER) aeroshell

In the Payload Hazardous Servicing Facility, workers prepare the Mars Exploration Rover (MER) aeroshell for transfer to a rotation stand. Set to launch in 2003, the MER Mission will consist of two identical rov... More

KENNEDY SPACE CENTER, FLA. - Shown are the Lander pedals for MER-1.  These pedals fold up covering the Rover, which will be attached to the base pedal (not shown--empty spot in the center.) Set to launch in 2003, the MER Mission will consist of two identical rovers designed to cover roughly 110 yards each Martian day. Each rover will carry five scientific instruments that will allow it to search for evidence of liquid water that may have been present in the planet's past.  The rovers will be identical to each other, but will land at different regions of Mars.  The first rover has a launch window opening May 30, and the second rover a window opening June 25, 2003. KSC-03pd0441

KENNEDY SPACE CENTER, FLA. - Shown are the Lander pedals for MER-1. T...

KENNEDY SPACE CENTER, FLA. - Shown are the Lander pedals for MER-1. These pedals fold up covering the Rover, which will be attached to the base pedal (not shown--empty spot in the center.) Set to launch in 200... More

KENNEDY SPACE CENTER, FLA. - During processing, workers in the Payload Hazardous Servicing Facility work on part of the aeroshell for Mars Exploration Rover 2. Set to launch in 2003, the MER Mission will consist of two identical rovers designed to cover roughly 110 yards each Martian day. Each rover will carry five scientific instruments that will allow it to search for evidence of liquid water that may have been present in the planet's past.  The rovers will be identical to each other, but will land at different regions of Mars.  The first rover has a launch window opening May 30, and the second rover a window opening June 25, 2003. KSC-03pd0440

KENNEDY SPACE CENTER, FLA. - During processing, workers in the Payload...

KENNEDY SPACE CENTER, FLA. - During processing, workers in the Payload Hazardous Servicing Facility work on part of the aeroshell for Mars Exploration Rover 2. Set to launch in 2003, the MER Mission will consis... More

KENNEDY SPACE CENTER, FLA. -- During processing, workers in the Payload Hazardous Servicing Facility work on part of the aeroshell for Mars Exploration Rover 2. Set to launch in 2003, the MER Mission will consist of two identical rovers designed to cover roughly 110 yards each Martian day. Each rover will carry five scientific instruments that will allow it to search for evidence of liquid water that may have been present in the planet's past.  The rovers will be identical to each other, but will land at different regions of Mars.  The first rover has a launch window opening May 30, and the second rover a window opening June 25, 2003. KSC-03pd0442

KENNEDY SPACE CENTER, FLA. -- During processing, workers in the Payloa...

KENNEDY SPACE CENTER, FLA. -- During processing, workers in the Payload Hazardous Servicing Facility work on part of the aeroshell for Mars Exploration Rover 2. Set to launch in 2003, the MER Mission will consi... More

KENNEDY SPACE CENTER, FLA. -- The aeroshell for Mars Exploration Rover 2 rests on end after rotation in the Payload Hazardous Servicing Facility. Set to launch in 2003, the MER Mission will consist of two identical rovers designed to cover roughly 110 yards each Martian day. Each rover will carry five scientific instruments that will allow it to search for evidence of liquid water that may have been present in the planet's past.  The rovers will be identical to each other, but will land at different regions of Mars.  The first rover has a launch window opening May 30, and the second rover a window opening June 25, 2003. KSC-03pd0439

KENNEDY SPACE CENTER, FLA. -- The aeroshell for Mars Exploration Rover...

KENNEDY SPACE CENTER, FLA. -- The aeroshell for Mars Exploration Rover 2 rests on end after rotation in the Payload Hazardous Servicing Facility. Set to launch in 2003, the MER Mission will consist of two ident... More

KENNEDY SPACE CENTER, FLA. --   The aeroshell for Mars Exploration Rover 2 rests on a rotation stand in the Payload Hazardous Servicing Facility.  Set to launch in 2003, the MER Mission will consist of two identical rovers designed to cover roughly 110 yards each Martian day. Each rover will carry five scientific instruments that will allow it to search for evidence of liquid water that may have been present in the planet's past.  The rovers will be identical to each other, but will land at different regions of Mars.  The first rover has a launch window opening May 30, and the second rover a window opening June 25, 2003. KSC-03pd0438

KENNEDY SPACE CENTER, FLA. -- The aeroshell for Mars Exploration Rov...

KENNEDY SPACE CENTER, FLA. -- The aeroshell for Mars Exploration Rover 2 rests on a rotation stand in the Payload Hazardous Servicing Facility. Set to launch in 2003, the MER Mission will consist of two iden... More

KENNEDY SPACE CENTER, FLA. -- Technicians maneuver the aeroshell for Mars Exploration Rover 2 onto a workstand in the Payload Hazardous Servicing Facility. Set to launch in 2003, the MER Mission will consist of two identical rovers designed to cover roughly 110 yards each Martian day. Each rover will carry five scientific instruments that will allow it to search for evidence of liquid water that may have been present in the planet's past. The rovers will be identical to each other, but will land at different regions of Mars. The first rover has a launch window opening May 30, and the second rover, a window opening June 25, 2003. KSC-03pd0456

KENNEDY SPACE CENTER, FLA. -- Technicians maneuver the aeroshell for M...

KENNEDY SPACE CENTER, FLA. -- Technicians maneuver the aeroshell for Mars Exploration Rover 2 onto a workstand in the Payload Hazardous Servicing Facility. Set to launch in 2003, the MER Mission will consist of... More

KENNEDY SPACE CENTER, FLA. -- Technicians maneuver the aeroshell for Mars Exploration Rover 2 onto a workstand in the Payload Hazardous Servicing Facility. Set to launch in 2003, the MER Mission will consist of two identical rovers designed to cover roughly 110 yards each Martian day. Each rover will carry five scientific instruments that will allow it to search for evidence of liquid water that may have been present in the planet's past. The rovers will be identical to each other, but will land at different regions of Mars. The first rover has a launch window opening May 30, and the second rover, a window opening June 25, 2003. KSC-03pd0455

KENNEDY SPACE CENTER, FLA. -- Technicians maneuver the aeroshell for M...

KENNEDY SPACE CENTER, FLA. -- Technicians maneuver the aeroshell for Mars Exploration Rover 2 onto a workstand in the Payload Hazardous Servicing Facility. Set to launch in 2003, the MER Mission will consist of... More

KENNEDY SPACE CENTER, FLA. -- Technicians move the aeroshell for Mars Exploration Rover 2 to a workstand in the Payload Hazardous Servicing Facility. Set to launch in 2003, the MER Mission will consist of two identical rovers designed to cover roughly 110 yards each Martian day. Each rover will carry five scientific instruments that will allow it to search for evidence of liquid water that may have been present in the planet's past. The rovers will be identical to each other, but will land at different regions of Mars. The first rover has a launch window opening May 30, and the second rover, a window opening June 25, 2003. KSC-03pd0454

KENNEDY SPACE CENTER, FLA. -- Technicians move the aeroshell for Mars ...

KENNEDY SPACE CENTER, FLA. -- Technicians move the aeroshell for Mars Exploration Rover 2 to a workstand in the Payload Hazardous Servicing Facility. Set to launch in 2003, the MER Mission will consist of two i... More

KENNEDY SPACE CENTER, FLA. -- Technicians secure the aeroshell for Mars Exploration Rover 2 to a workstand in the Payload Hazardous Servicing Facility. Set to launch in 2003, the MER Mission will consist of two identical rovers designed to cover roughly 110 yards each Martian day. Each rover will carry five scientific instruments that will allow it to search for evidence of liquid water that may have been present in the planet's past. The rovers will be identical to each other, but will land at different regions of Mars. The first rover has a launch window opening May 30, and the second rover, a window opening June 25, 2003. KSC-03pd0457

KENNEDY SPACE CENTER, FLA. -- Technicians secure the aeroshell for Mar...

KENNEDY SPACE CENTER, FLA. -- Technicians secure the aeroshell for Mars Exploration Rover 2 to a workstand in the Payload Hazardous Servicing Facility. Set to launch in 2003, the MER Mission will consist of two... More

KENNEDY SPACE CENTER, FLA. - At NASA's Family & Community Mars Exploration Day held in Cape Canaveral, Fla., students look at a remote-controlled model of the Mars Exploration Rover.  The event informed students and the general public about Florida's key role as NASA's "Gateway to Mars" and offered an opportunity to meet with scientists, engineers, educators and others working Mars exploration missions.  The Mars Exploration Rovers are being prepared for launch this spring aboard Boeing Delta II rockets from the Cape Canaveral Air Force Station.  They will land on Mars and start exploring  in January 2004. KSC-03pd0514

KENNEDY SPACE CENTER, FLA. - At NASA's Family & Community Mars Explora...

KENNEDY SPACE CENTER, FLA. - At NASA's Family & Community Mars Exploration Day held in Cape Canaveral, Fla., students look at a remote-controlled model of the Mars Exploration Rover. The event informed student... More

KENNEDY SPACE CENTER, FLA.  - At NASA's Family & Community Mars Exploration Day, held in Cape Canaveral, Fla., James Garvin, lead scientist for the Mars Exploration Program, talks to students about the Mars Exploration Rover.  Garvin is standing next to a replica of the Rover. The event informed students and the general public about Florida's key role as NASA's "Gateway to Mars" and offered an opportunity to meet with scientists, engineers, educators and others working Mars exploration missions.  The Mars Exploration Rovers are being prepared for launch this spring aboard Boeing Delta II rockets from the Cape Canaveral Air Force Station.  They will land on Mars and start exploring  in January 2004. KSC-03pd0516

KENNEDY SPACE CENTER, FLA. - At NASA's Family & Community Mars Explor...

KENNEDY SPACE CENTER, FLA. - At NASA's Family & Community Mars Exploration Day, held in Cape Canaveral, Fla., James Garvin, lead scientist for the Mars Exploration Program, talks to students about the Mars Exp... More

KENNEDY SPACE CENTER, FLA. --  In a demonstration of the agility of the Mars Exploration Rover, a model of the Rover rolls over the prone bodies of two volunteer students during NASA's Family & Community Mars Exploration Day held in Cape Canaveral, Fla. The event informed students and the general public about Florida's key role as NASA's "Gateway to Mars" and offered an opportunity to meet with scientists, engineers, educators and others working Mars exploration missions.  The Mars Exploration Rovers are being prepared for launch this spring aboard Boeing Delta II rockets from the Cape Canaveral Air Force Station.  They will land on Mars and start exploring  in January 2004. KSC-03pd0515

KENNEDY SPACE CENTER, FLA. -- In a demonstration of the agility of th...

KENNEDY SPACE CENTER, FLA. -- In a demonstration of the agility of the Mars Exploration Rover, a model of the Rover rolls over the prone bodies of two volunteer students during NASA's Family & Community Mars E... More

KENNEDY SPACE CENTER, FLA. -  The aeroshell for the Mars Exploration Rover-1 mission is offloaded at KSC's Multi-Payload Processing Facility.  While at KSC, the rovers, aeroshells and landers will undergo a full mission simulation. All of these flight elements will then be integrated together. After spin balance testing,  each spacecraft will be mated to a solid propellant upper stage booster that will propel the spacecraft out of Earth orbit. Approximately 10 days before launch they will be transported to the launch pad for mating with their respective Boeing Delta II rockets. The rovers will serve as robotic geologists to seek answers about the evolution of Mars, particularly  for a history of water. The rovers will be identical to each other, but will land at different regions of Mars.  Launch of the MER-1 is scheduled for May 30.  MER-2 will follow June 25. KSC-03pd0538

KENNEDY SPACE CENTER, FLA. - The aeroshell for the Mars Exploration R...

KENNEDY SPACE CENTER, FLA. - The aeroshell for the Mars Exploration Rover-1 mission is offloaded at KSC's Multi-Payload Processing Facility. While at KSC, the rovers, aeroshells and landers will undergo a ful... More

KENNEDY SPACE CENTER, FLA. -- Another component of the Mars Exploration Rover-1 mission is moved into KSC's Multi-Payload Processing Facility.  While at KSC, the rovers, aeroshells and landers will undergo a full mission simulation. All of these flight elements will then be integrated together. After spin balance testing,  each spacecraft will be mated to a solid propellant upper stage booster that will propel the spacecraft out of Earth orbit. Approximately 10 days before launch they will be transported to the launch pad for mating with their respective Boeing Delta II rockets. The rovers will serve as robotic geologists to seek answers about the evolution of Mars, particularly  for a history of water. The rovers will be identical to each other, but will land at different regions of Mars.  Launch of the MER-1 is scheduled for May 30.  MER-2 will follow June 25. KSC-03pd0541

KENNEDY SPACE CENTER, FLA. -- Another component of the Mars Exploratio...

KENNEDY SPACE CENTER, FLA. -- Another component of the Mars Exploration Rover-1 mission is moved into KSC's Multi-Payload Processing Facility. While at KSC, the rovers, aeroshells and landers will undergo a fu... More

KENNEDY SPACE CENTER, FLA. -- The cruise stage, aeroshell and lander for the Mars Exploration Rover-1 mission and the MER-2 rover arrive at KSC. The same flight hardware for the MER-2 rover arrived Jan. 27; however, the MER-2 rover is scheduled to arrive at KSC in March. While at KSC, each of the two rovers, the aeroshells and the landers will undergo a full mission simulation. All of these flight elements will then be integrated together. After spin balance testing,  each spacecraft will be mated to a solid propellant upper stage booster that will propel the spacecraft out of Earth orbit. Approximately 10 days before launch they will be transported to the launch pad for mating with their respective Boeing Delta II rockets. The rovers will serve as robotic geologists to seek answers about the evolution of Mars, particularly  for a history of water. The rovers will be identical to each other, but will land at different regions of Mars.  Launch of the MER-1 is scheduled for May 30.  MER-2 will follow June 25. KSC-03pd0536

KENNEDY SPACE CENTER, FLA. -- The cruise stage, aeroshell and lander f...

KENNEDY SPACE CENTER, FLA. -- The cruise stage, aeroshell and lander for the Mars Exploration Rover-1 mission and the MER-2 rover arrive at KSC. The same flight hardware for the MER-2 rover arrived Jan. 27; how... More

KENNEDY SPACE CENTER, FLA. -- The cruise stage, aeroshell and lander for the Mars Exploration Rover-1 mission and the MER-2 rover arrive at KSC's Multi-Payload Processing Facility. The same flight hardware for the MER-2 rover arrived Jan. 27; however, the MER-2 rover is scheduled to arrive at KSC in March. While at KSC, each of the two rovers, the aeroshells and the landers will undergo a full mission simulation. All of these flight elements will then be integrated together. After spin balance testing,  each spacecraft will be mated to a solid propellant upper stage booster that will propel the spacecraft out of Earth orbit. Approximately 10 days before launch they will be transported to the launch pad for mating with their respective Boeing Delta II rockets. The rovers will serve as robotic geologists to seek answers about the evolution of Mars, particularly  for a history of water. The rovers will be identical to each other, but will land at different regions of Mars.  Launch of the MER-1 is scheduled for May 30.  MER-2 will follow June 25. KSC-03pd0537

KENNEDY SPACE CENTER, FLA. -- The cruise stage, aeroshell and lander f...

KENNEDY SPACE CENTER, FLA. -- The cruise stage, aeroshell and lander for the Mars Exploration Rover-1 mission and the MER-2 rover arrive at KSC's Multi-Payload Processing Facility. The same flight hardware for ... More

KENNEDY SPACE CENTER, FLA. -- The aeroshell for the Mars Exploration Rover-1 mission is moved into KSC's Multi-Payload Processing Facility.  While at KSC, the rovers, aeroshells and landers will undergo a full mission simulation. All of these flight elements will then be integrated together. After spin balance testing,  each spacecraft will be mated to a solid propellant upper stage booster that will propel the spacecraft out of Earth orbit. Approximately 10 days before launch they will be transported to the launch pad for mating with their respective Boeing Delta II rockets. The rovers will serve as robotic geologists to seek answers about the evolution of Mars, particularly  for a history of water. The rovers will be identical to each other, but will land at different regions of Mars.  Launch of the MER-1 is scheduled for May 30.  MER-2 will follow June 25. KSC-03pd0539

KENNEDY SPACE CENTER, FLA. -- The aeroshell for the Mars Exploration R...

KENNEDY SPACE CENTER, FLA. -- The aeroshell for the Mars Exploration Rover-1 mission is moved into KSC's Multi-Payload Processing Facility. While at KSC, the rovers, aeroshells and landers will undergo a full ... More

KENNEDY SPACE CENTER, FLA. --  Another component of the Mars Exploration Rover-1 mission is offloaded at KSC's Multi-Payload Processing Facility.  While at KSC, the rovers, aeroshells and landers will undergo a full mission simulation. All of these flight elements will then be integrated together. After spin balance testing,  each spacecraft will be mated to a solid propellant upper stage booster that will propel the spacecraft out of Earth orbit. Approximately 10 days before launch they will be transported to the launch pad for mating with their respective Boeing Delta II rockets. The rovers will serve as robotic geologists to seek answers about the evolution of Mars, particularly  for a history of water. The rovers will be identical to each other, but will land at different regions of Mars.  Launch of the MER-1 is scheduled for May 30.  MER-2 will follow June 25. KSC-03pd0540

KENNEDY SPACE CENTER, FLA. -- Another component of the Mars Explorati...

KENNEDY SPACE CENTER, FLA. -- Another component of the Mars Exploration Rover-1 mission is offloaded at KSC's Multi-Payload Processing Facility. While at KSC, the rovers, aeroshells and landers will undergo a... More

Artist Concept of Rover on Mars

Artist Concept of Rover on Mars

An artist concept portrays a NASA Mars Exploration Rover on the surface of Mars. Two rovers were launched in 2003 and arrived at sites on Mars in January 2004. NASA/JPL/Cornell University

KENNEDY SPACE CENTER, FLA. -- A worker in the Payload Hazardous Servicing Facility examines the Mars Exploration Rover-2.The rover , aeroshell and lander will undergo a full mission simulation while at KSC.  All flight elements will then be integrated.  After spin balance testing, each spacecraft will be mated to a solid propellant upper stage booster that will propel it out of Earth orbit.  The rovers will serve as robotic geologists to seek answers about the evolution of Mars, particularly  for a history of water. The rovers will be identical to each other, but will land at different regions of Mars.  Launch of the MER-1 is scheduled for May 30.  MER-2 will follow June 25. KSC-03pd0598

KENNEDY SPACE CENTER, FLA. -- A worker in the Payload Hazardous Servic...

KENNEDY SPACE CENTER, FLA. -- A worker in the Payload Hazardous Servicing Facility examines the Mars Exploration Rover-2.The rover , aeroshell and lander will undergo a full mission simulation while at KSC. Al... More

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