These two images of Jupiter atmosphere were taken with the violet filter of the Solid State Imaging CCD system aboard NASA Galileo spacecraft. Mesoscale waves can be seen in the center of the upper image. The images were obtained on June 26, 1996.
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These two views of Jupiter obtained by NASA Galileo spacecraft show evidence of strikingly different stratospheric hazes between the polar regions and low or mid latitudes. The Great Red Spot shows in one mosaic taken on June 26, 1996.
Ver en NASA ↗This dramatic view of Jupiter Great Red Spot and its surroundings was obtained by NASA Voyager 1 on Feb. 25, 1979. The colorful, wavy cloud pattern to the left of the Red Spot is a region of extraordinarily complex end variable wave motion.
Ver en NASA ↗This color enhanced image of Jupiter's southern hemisphere was captured by NASA's Juno spacecraft as it performed a close flyby of the gas giant planet on Dec. 16, 2017.
Ver en NASA ↗Mosaic of a belt-zone boundary near Jupiter equator as seen by NASA Galileo orbiter in 1996.
Ver en NASA ↗In this annotated infrared image, six cyclones form a hexagonal pattern around a central cyclone at Jupiter's south pole, as detected by JIRAM aboard NASA's Juno mission.
Ver en NASA ↗This abstract Jovian artwork used data from the JunoCam imager onboard NASA's Juno spacecraft capturing a close-up view of numerous storms in the northern hemisphere of Jupiter.
Ver en NASA ↗NASA's Juno spacecraft was racing away from Jupiter following its seventh close pass of the planet when JunoCam snapped this image on May 19, 2017.
Ver en NASA ↗Small bright clouds dot Jupiter's entire south tropical zone in this image acquired by JunoCam on NASA's Juno spacecraft on May 19, 2017.
Ver en NASA ↗Three of the white oval storms known as the "String of Pearls" are visible near the top of the image.
Ver en NASA ↗NASA's Juno spacecraft captures swirling clouds in the region of the giant planet's northern hemisphere known as "Jet N4."
Ver en NASA ↗This image from NASA's Galileo orbiter taken on May 7, 1997, shows of a pair of vortices in Jupiter's southern hemisphere.
Ver en NASA ↗This illustration depicts findings that Jupiter's atmospheric winds penetrate the planet in a cylindrical manner and parallel to its spin axis.
Ver en NASA ↗The three-dimensional character of Jupiter's cloud decks is captured in this image, taken by NASA's Juno spacecraft, of the planet's North Equatorial Belt.
Ver en NASA ↗This figure gives a look down into Jupiter's Great Red Spot, using data from the microwave radiometer instrument onboard NASA's Juno spacecraft.
Ver en NASA ↗This montage of 10 JunoCam images shows Jupiter growing and shrinking in apparent size before and after NASA's Juno spacecraft made its close approach on August 27, 2016.
Ver en NASA ↗This illustration based on computer modeling and data from NASA's Kepler Space Telescope, represents how hot Jupiters of different temperatures and different cloud compositions might appear while flying over the dayside of these planets on a spaceship.
Ver en NASA ↗Data collected by the JunoCam imager and microwave radiometer from a flyover of the Great Red Spot on July 11, 2017 provides a glimpse of the inner-workings of Jupiter's most iconic anticyclone.
Ver en NASA ↗This image returned NASA Voyager 2 shows one of the long dark clouds observed in the North Equatorial Belt of Jupiter. A high, white cloud is seen moving over the darker cloud, providing an indication of the structure of the cloud layers.
Ver en NASA ↗This is a composite photo, assembled from separate images of Jupiter and comet Shoemaker-Levy 9, as imaged by the NASA/ESA Hubble Space Telescope in 1994.
Ver en NASA ↗A dynamic storm at the southern edge of Jupiter's northern polar region dominates this Jovian cloudscape, courtesy of NASA's Juno spacecraft.
Ver en NASA ↗This image from NASA's Juno spacecraft captures a close-up view of a storm with bright cloud tops in the northern hemisphere of Jupiter, shown here in swirls of rose-colored hues.
Ver en NASA ↗NASA's Juno spacecraft acquired this view of Jupiter south polar region about an hour after closest approach on Aug. 27, 2016, when the spacecraft was about 58,700 miles 94,500 kilometers above the cloud tops.
Ver en NASA ↗This image NASA's Juno spacecraft captures the dynamic nature of Jupiter's northern temperate belt. The view reveals a white, oval-shaped anticyclonic storm called WS-4.
Ver en NASA ↗Contenido y metadatos proporcionados por la NASA Image and Video Library.