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Juno maneuvering its way to Jupiter

Saturday, September 1, 2012 17:30
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(Before It's News)

NASA’s Juno spacecraft, launched on 5th August 2011 with a mission to understand the origin and evolution of Jupiter; has traveled 478 million miles since launch, approximately 25% of the total distance it would cover between launch and arrival at Jupiter. As a planned maneuver on August 30, it fired its engine successfully for about 30 minutes to refine its trajectory which will help the spacecraft in setting up earth flyby gravity assist maneuver in October of next year. Its course of maneuvers will complete on September 4, when engine shall be fired again for similar duration.

According to NASA officials, this maneuver will set Juno towards Earth’s orbit, when it will utilize Earth’s gravity for a “slingshot” and spacecraft will head towards Jupiter. Such technique is being used because Juno’s rocket is not powerful enough to boost it directly to Jupiter. Juno will arrive Jupiter in July 2016 and will orbit it 33 times for about a year, thereby de-orbiting into Jupiter.

Juno's interplanetary trajectory.

Juno's interplanetary trajectory. Image credit: NASA/JPL

This $1.1 billion mission managed by NASA’s JPL will help in determining how much water is there in Jupiter’s atmosphere, which in turn will help deciding which planet formation theory is correct or if new theories are needed. Juno, with its science instruments will analyze Jupiter’s magnetic and gravity fields, will reveal planet’s deep structure. Such analysis is expected to help scientists understanding how solar system was formed. It shall also check Jupiter’s atmosphere to measure composition, temperature and will attempt to determine whether planet’s core is solid or gaseous.

View of Juno’s position on Aug. 30 from Eyes on the Solar System

See Juno’s current position and velocity using NASA’s Eyes on the Solar System 3D interactive or the NASA/JPL Solar System Simulator.

Source: Juno mission

Featured image: NASA/JPL 

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Juno maneuvering its way to Jupiter




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