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Arrival at Jupiter: July 4, 2016. Goal: Understand origin and evolution of Jupiter, look for solid planetary core, map magnetic field, measure water and ammonia in deep atmosphere, observe auroras. Juno Mission Website. The Juno spacecraft, which successfully entered the orbit of Jupiter on July 4, 2016, will for the first time peer below the dense cover of clouds to answer questions about the gas giant and the origins of our solar system. Juno's primary goal is to reveal the story of Jupiter's formation and evolution. Using long-proven technologies on a spinning Some 66 feet (20 meters) wide, the Juno spacecraft is a dynamic engineering marvel, spinning to keep itself stable as it makes sweeping elliptical (oval-shaped) orbits around Jupiter. At their widest point, these carry Juno far from the giant planet and its moons, keeping it mostly clear of heavy radiation regions.
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The spacecraft was launched from Cape Canaveral Air Force Station on August 5, 2011. The latest image, seen below, was captured on December 30, 2020, during Juno's 31st close flyby of Jupiter. 2020-01-29 · English: Images taken by the Juno spacecraft, a NASA mission to Jupiter. All images are taken by the JunoCam instrument unless otherwise noted.
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Juno was launched on the 5th of August, 2011, and entered into orbit about Jupiter on July 4th 2016 and was planned to study the planet until February 2018 when it was to de-orbited and crashed into Jupiter. However an extension to the mission means the spacecraft will survive until July 2021.
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At their widest point, these carry Juno far from the giant planet and its moons, keeping it mostly clear of heavy radiation regions. Jupiter's turbulent southern hemisphere captured by NASA's Juno spacecraft after a close flyby of the gas giant planet on Dec. 21, 2018. Juno's Latest Flyby of Jupiter Captures Two Massive Storms Upcoming 16th science pass of Jupiter marks Juno’s halfway point in prime mission data collection. Juno uses a spinning, solar-powered spacecraft in a highly elliptical polar orbit that avoids most of Jupiter’s high-radiation regions. Although the main spacecraft was built by Lockheed Martin , Juno’s instruments and components came from all over the world. Juno will be the second spacecraft to orbit Jupiter, following the Galileo probe which orbited from 1995–2003. The Juno spacecraft is powered by solar arrays , commonly used by satellites orbiting Earth and working in the inner Solar System, whereas radioisotope thermoelectric generators are commonly used for missions to the outer Solar System and beyond.
Jupiter's turbulent southern hemisphere captured by NASA's Juno spacecraft after a close flyby of the gas giant planet on Dec. 21, 2018. Juno's Latest Flyby of Jupiter Captures Two Massive Storms Upcoming 16th science pass of Jupiter marks Juno’s halfway point in prime mission data collection. Juno uses a spinning, solar-powered spacecraft in a highly elliptical polar orbit that avoids most of Jupiter’s high-radiation regions.
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Unlike previous probes to the outer solar system, Juno is solar-powered. De senaste tweetarna från @NASAJuno 2020-10-12 · NASA’s Juno spacecraft could perform the first close flybys since the early 2000s of three of Jupiter’s largest moons, including Europa, if the space agency grants the mission an extension 2021-03-11 · Serendipitous Juno Spacecraft Detections Shatter Ideas About Origin of Zodiacal Light: Mars.
NASA's Juno spacecraft returns 20 years after shows NASA was probably warned off by aliens when they discovered alien spacecraft on the moon.
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7,992 pounds (3,625 kilograms) Destinations Explored. Jupiter. Mission Design and Management. NASA / JPL-Caltech. Launch Vehicle. Atlas V 551 (AV-029) Launch Date and Time. Aug. 5, 2011 / 26:25:00 UT. Launch Site.
The vehicle utilizes composite panel and clip construction for decks, central cylinder and gusset panels. Juno has a liftoff mass of 3,625 Kilograms and is equipped with a variety of subsystems. New data from NASA's Juno spacecraft suggests that these "hot spots" are much wider and deeper than anticipated. The findings on Jupiter's hot spots, along with an update on Jupiter's polar Launched in 2011, the Juno spacecraft arrived at Jupiter on July 4, 2016, with a planned mission completion in July 2021. Along for the ride has been a radio- and plasma-wave instrument designed and built at Iowa. The power of sunlight at Jupiter is 25 times dimmer than on Earth, so the four-ton Juno spacecraft has three massive 30-foot-long/9-meter solar arrays hosting a whopping18,698 solar cells. Despite Launched in 2011, Juno is the first solar-powered spacecraft designed to operate at such a great distance from the sun.