This image shows the nuclei of comets Tempel 1 and Hartley 2, as imaged by NASA Deep Impact spacecraft, which continued as an extended mission known as EPOXI.
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This zoomed-in image from the High-Resolution Instrument on NASA EPOXI mission spacecraft shows the particles swirling in a now storm around the nucleus of comet Hartley 2.
Ver en NASA ↗These two images show the different views of comet Tempel 1 seen by NASA Deep Impact spacecraft left and NASA Stardust spacecraft right.
Ver en NASA ↗The Onboard Scientific Imaging System OSIRIS on the European Space Agency Rosetta spacecraft captured this parting shot of the mission Philae lander after its separation from the mother ship on Nov. 12, 2014.
Ver en NASA ↗Three of NASA contributions to the ESA Rosetta mission are pictured here: an ultraviolet spectrometer called Alice top, the Ion and Electron Sensor IES bottom left, and the Microwave Instrument for Rosetta Orbiter MIRO bottom right.
Ver en NASA ↗This annotated image depicts the backup landing site Site C chosen for ESA Rosetta spacecraft Philae lander.
Ver en NASA ↗This annotated image depicts two of the five potential landing sites for ESA Rosetta mission Philae lander.
Ver en NASA ↗This annotated image depicts four of the five potential landing sites for ESA Rosetta mission Philae lander.
Ver en NASA ↗The Philae lander of the European Space Agency Rosetta mission took this parting shot of its mother ship, Rosetta, shortly after separation on Nov. 12, 2014. The image was taken with the lander CIVA-P imaging system.
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Ver en NASA ↗NASA New Millennium Deep Space 1 spacecraft approaching the comet 19P/Borrelly.
Ver en NASA ↗Comet Hale-Bopp is seen in the constellation Lacerta at 5:18 a.m. on March 9, 1997. North is to the left of the comet in this photograph, which was taken on Merritt Island, Florida, near Kennedy Space Center
Ver en NASA ↗This non-circular pit seen in this image from NASA Mars Reconnaissance Orbiter is due to a low angle impact from an asteroid or comet. The raised plateau west of the crater was where most of the impact debris landed.
Ver en NASA ↗This image layout depicts changes in the surface of comet Tempel 1, observed first by NASA Deep Impact Mission in 2005 top right and again by NASA Stardust-NExT mission on Feb. 14, 2011 bottom right.
Ver en NASA ↗The impact of an asteroid or comet several hundred million years ago left scars in the landscape that are still visible in this spaceborne radar image of an area in the Sahara Desert of northern Chad.
Ver en NASA ↗These images shows comet Tempel 1 as seen through the clear filter of the medium resolution imager camera on NASA Deep Impact. The images were acquired between June 22 and June 24, 2005.
Ver en NASA ↗NASA Deep Impact flyby spacecraft took this image after it turned around to capture last shots of a receding comet Tempel 1. Earlier, the mission probe had smashed into the surface of Tempel 1.
Ver en NASA ↗NASA Galaxy Evolution Explorer discovered an exceptionally long comet-like tail of material trailing behind Mira -- a star that has been studied thoroughly for about 400 years.
Ver en NASA ↗This image shows NASA Deep Impact impactor probe approaching comet Tempel 1. It is made up of images taken by the probe impactor targeting sensor on July 4, 2005. Animation available at the Photojournal.
Ver en NASA ↗Many types of craters exist on Mars. Most are generated by impacts of asteroids and comets. However, in this image captured by NASA Mars Reconnaissance Orbiter, the craters may be due to steam explosions.
Ver en NASA ↗This frame from a movie shows NASA Deep Impact impactor probe approaching comet Tempel 1. It is made up of images taken by the probe impactor targeting sensor in 2005.
Ver en NASA ↗The eastern rim of this unnamed crater in Claritas Fossae is very degraded, as seen in this image from NASA Mars Odyssey, indicating that it very ancient and has been subjected to erosion and bombardment from impactors such as asteroids and comets.
Ver en NASA ↗Contenido y metadatos proporcionados por la NASA Image and Video Library.