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John Grotzinger (center), Curiosity project scientist, California Institute of Technology in Pasadena, speaks at a news conference presenting findings of the Curiosity rover's analysis of the first sample of rock powder collected on Mars, Tuesday, March 12, 2…

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Paul Mahaffy, principal investigator for Curiosity's Sample Analysis at Mars (SAM) investigation at NASA's Goddard Space Flight Center in Maryland, answer's a reporters question at a news conference, Tuesday, March 12, 2013 at NASA Headquarters in Washington.…

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John Grotzinger, Curiosity project scientist, California Institute of Technology in Pasadena, answers a reporter's question at a news conference where findings of the Curiosity rover's analysis of the first sample of rock powder collected on Mars were present…

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John Grotzinger (second from left), Curiosity project scientist, California Institute of Technology in Pasadena, speaks at a news conference presenting findings of the Curiosity rover's analysis of the first sample of rock powder collected on Mars, Tuesday, M…

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This view from the Mars Hand Lens Imager on the arm of NASA Curiosity Mars rover is a close-up of a two-tone mineral vein at a site called Garden City on lower Mount Sharp. It was taken during night, illuminated by LEDs, on March 25, 2015.

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Arsia Mons, an ancient Martian volcano, was captured before dawn on May 2, 2025, by NASA's 2001 Mars Odyssey orbiter while the spacecraft was studying the Red Planet's atmosphere.

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One crucial step in NASA Mars sample return mission would be to launch the collected sample away from the surface of Mars. This artist concept depicts a Mars ascent vehicle for starting a sample of Mars rocks on their trip to Earth.

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This image from NASA's 2001 Mars Odyssey spacecraft is located southeast of the region of the large sand dune deposit. Here there is still limited amounts of available sand and the dunes formed are smaller individual features.

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This image captured by NASA's 2001 Mars Odyssey spacecraft shows part of the dune field near Meroe Patera. Winds are blowing the dunes across a rough surface of regional volcanic lava flows.

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This image captured by NASA's 2001 Mars Odyssey spacecraft shows part of the Nili Patera dune field. The paterae are calderas on the volcanic complex called Syrtis Major Planum.

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This image from NASA's 2001 Mars Odyssey spacecraft shows part of the dune field near Meroe Patera. Winds are blowing the dunes across a rough surface of regional volcanic lava flows.

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The small crater in the middle of the image is at the upwind side of the dune field. There is a considerable amount of sand within the crater, with a relatively smooth surface and few dune forms. This image is from NASA's 2001 Mars Odyssey spacecraft.

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This image captured by NASA's 2001 Mars Odyssey spacecraft shows part of the dune field near Meroe Patera. The paterae are calderas on the volcanic complex called Syrtis Major Planum.

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This image from NASA's 2001 Mars Odyssey spacecraft shows part of the dune field near Meroe Patera. The paterae are calderas on the volcanic complex called Syrtis Major Planum.

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This is a false color image of the dune field in the Arabia Terra crater captured by NASA's 2001 Mars Odyssey spacecraft. In this combination of bands, sand appears as a blue to dark blue color.

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This false color image from NASA's 2001 Mars Odyssey spacecraft covers the region from Nili Patera at the top of the frame to the dunes near Meroe Patera. The paterae are calderas on the volcanic complex called Syrtis Major Planum.

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This false color image from NASA's 2001 Mars Odyssey spacecraft shows part of the Nili Patera dune field. The paterae are calderas on the volcanic complex called Syrtis Major Planum.

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This image captured by NASA's 2001 Mars Odyssey spacecraft shows part of the Nili Patera dune field. The paterae are calderas on the volcanic complex called Syrtis Major Planum.

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This image captured by NASA's 2001 Mars Odyssey spacecraft shows part of the dune field near Meroe Patera. The paterae are calderas on the volcanic complex called Syrtis Major Planum.

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This false color image from NASA's 2001 Mars Odyssey spacecraft shows part of the Nili Patera dune field. Winds are blowing the dunes across a rough surface of regional volcanic lava flows.

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This image captured by NASA's 2001 Mars Odyssey spacecraft shows part of the Nili Patera dune field. Winds are blowing the dunes across a rough surface of regional volcanic lava flows.

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At the top of this image from NASA's 2001 Mars Odyssey spacecraft crescent shaped dunes are visible. As the dunes approach a break in elevation the forms change to connect the crescents together forming long aligned dune forms.

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This image of the floor of Kaiser Crater captured by NASA's 2001 Mars Odyssey spacecraft contains a large variety of sand dune shapes and sizes. The 'whiter' material is the hard crater floor surface.

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This image from NASA's 2001 Mars Odyssey spacecraft of the floor of Kaiser Crater contains several sand dune shapes and sizes. Kaiser Crater is located in the southern hemisphere in the Noachis region west of Hellas Planitia.

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Contenido y metadatos proporcionados por la NASA Image and Video Library.