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Images from NASA Cassini spacecraft using three different filters reveal cloud structures and movements at different depths in the atmosphere around Jupiter south pole.

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This projection of the radial magnetic field of Jupiter (top) uses a new magnetic field model based on data from Juno's orbits during its prime mission.

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The southern edge of Jupiter's north polar region is captured in this view from NASA's Juno spacecraft.

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In this view of a vortex near Jupiter's north pole, NASA's Juno mission observed the glow from a bolt of lightning.

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NASA's Juno spacecraft obtained this color view on June 21, 2016. As Juno makes its initial approach, the giant planet four largest moons, Io, Europa, Ganymede and Callisto, are visible.

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Roughly true color image of the Great Red Spot of Jupiter as taken by NASA Galileo spacecraft on June 26, 1996.

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JOHN TUCKER AND HIS THREE GRANDSONS VIEW JUPITER SIMULATION THROUGH TELESCOPES

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Scientists spotted what appear to be thunderheads on Jupiter bright white cumulus clouds similar to those that bring thunderstorms on Earth, at the outer edges of Jupiter Great Red Spot. The photos were taken by NASA Galileo orbiter on June 26, 1996.

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This image, taken by NASA Galileo spacecraft, shows the darkside of Jupiter, the part not illuminated by sunlight. The curved line crossing from the lower left to the upper right is the auroral arc on the horizon.

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Intricate cloud patterns in the northern hemisphere of Jupiter are seen in this view taken by NASA's Juno spacecraft on April 1, 2018.

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This image, created with data from Juno's Ultraviolet Imaging Spectrometer (UVS), marks the path of Juno's readings of Jupiter's auroras.

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This image of Jupiter was taken by the Cassini Imaging Science narrow angle camera through the blue filter centered at 445 nanometers on October 1, 2000, 15:26 UTC at a distance of 84.1million km from Jupiter.

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This image, taken by the JunoCam imager on NASA's Juno spacecraft, highlights a swirling storm just south of one of the white oval storms on Jupiter.

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This is the final view taken by the JunoCam instrument on NASA's Juno spacecraft before Juno instruments were powered down in preparation for orbit insertion.

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This graphic shows a new radiation zone NASA's Juno spacecraft detected surrounding Jupiter, located just above the atmosphere near the equator.

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Citizen scientist Thomas Thomopoulos created this enhanced-color image using raw data from the JunoCam instrument.

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This animation depicts the invisible forces at work at Jupiter's south pole that keep the five circumpolar cyclones there in position relative to each other and to the polar cyclone.

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This image of Jupiter's southern hemisphere was captured by NASA's Juno spacecraft on the outbound leg of a close flyby of the gas-giant planet.

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Rings of Jupiter

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Scientists used red, blue and yellow to infuse this infrared image of Jupiter's atmosphere, which was recorded by the Subaru Telescope on the summit of Mauna Kea, Hawaii on Jan. 12, 2017.

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Colorful swirling cloud belts dominate Jupiter's southern hemisphere in this image captured by NASA's Juno spacecraft on Dec 16, 2017.

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First evidence of a ring around the planet Jupiter is seen in this photograph taken by NASA's Voyager 1 on March 4, 1979. The multiple exposure of the extremely thin faint ring appears as a broad light band crossing the center of the picture.

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Three waves can be seen in this excerpt of a JunoCam image taken on Feb. 2, 2017, during Juno's fourth flyby of Jupiter. The region imaged in this picture is part of the visibly dark band just north of Jupiter's equator known as the North Equatorial Belt.

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In the final minutes of a recent close flyby of Jupiter, a departing view of the planet's swirling southern hemisphere was captured in this image from NASA's Juno spacecraft.

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