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Jupiter Icy Satellite Europa

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Haze observations near Jupiter Limb 60 degrees North, 295 degrees West

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This infrared image of the southern hemisphere of Jupiter's moon Io was derived from data collected by the Jovian Infrared Auroral Mapper (JIRAM) instrument aboard NASA's Juno spacecraft on Dec. 16, 2017.

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Europa, taken from Voyager 1 to Jupiter. JPL Reference # P-21163.

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Striking atmospheric features in Jupiter's northern hemisphere are captured in this series of color-enhanced images from NASA's Juno spacecraft.

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This image is one of two images from NASA Hubble Space Telescope comparing the movement of Jupiter clouds.

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Citizen scientist Eric Jorgensen created this Jovian artwork with a JunoCam image taken when NASA's Juno spacecraft was at an altitude of 11,100 miles 17,800 kilometers above Jupiter cloudtops on Dec. 11, 2016.

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In this animation, forces created by movement toward the south pole of a circumpolar cyclone results in the temporary shift in location by the polar cyclone and the four other circumpolar cyclones.

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This striking image of Jupiter was captured on Sept. 1, 2017 by NASA's Juno spacecraft as it performed its eighth flyby of the gas giant planet.

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This mosaic taken on December 17, 1996 by NASA's Galileo spacecraft shows an equatorial hotspot on Jupiter.

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This image, captured by the JunoCam imager aboard NASA's Juno spacecraft, shows two cyclones merging in the N3 jet stream.

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This image is one of seven from the narrow-angle camera on NASA Cassini spacecraft assembled as a brief movie of high-altitude cloud movements on Jupiter. It was taken in early October 2000.

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The JunoCam instrument aboard NASA's Juno spacecraft captured this color-enhanced view of the giant planet's northern hemisphere, during its 61st close flyby of Jupiter on May 12, 2024.

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During its close flyby of Jupiter on August 27, 2016, the Waves instrument on NASA's Juno spacecraft received radio signals associated with the giant planet very intense auroras.

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This enhanced-color image of Jupiter's Great Red Spot was created by citizen scientist Kevin Gill using data from the JunoCam imager on NASA's Juno spacecraft.

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During a flyby of Jupiter in July 2019, mission scientists conducted an experiment measuring minute velocity changes in the Juno spacecraft as a result in the gravity field near the Great Red Spot.

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This computer-generated image based on data from the ovian Infrared Auroral Mapper (JIRAM) instrument aboard the Juno spacecraft shows the structure of the cyclonic pattern observed over Jupiter's south pole.

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NASA's Juno spacecraft captured these images of Clyde's Spot over two different dates.

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These three images of Jupiter, taken through the narrow angle camera of NASA Cassini spacecraft from a distance of 77.6 million kilometers 48.2 million miles on October 8, reveal more than is apparent to the naked eye through a telescope.

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See Jupiter's Great Red Spot as you've never seen it before in this new Jovian work of art using data from NASA's Juno imager.

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This false color mosaic shows a belt-zone boundary near Jupiter equator. The images that make up the four quadrants of this mosaic were taken within a few minutes of each other. These images were taken on Nov. 5, 1996 by NASA Galileo orbiter.

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These images, taken on February 19, 1997 by NASA Galileo orbiter, show two of the three long-lived White Ovals that formed to the south of the Jupiter Great Red Spot.

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These images, taken on February 19, 1997 by NASA Galileo orbiter, show two of the three long-lived White Ovals that formed to the south of the Jupiter Great Red Spot.

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These images, taken on February 19, 1997 by NASA Galileo orbiter, show two of the three long-lived White Ovals that formed to the south of the Jupiter Great Red Spot.

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