We imaged at two different geometries, looking directly down at the poleĪnd looking at closest range at a more oblique angle, to see which would give See which would be best for the polar region and a very high TDI level (longĮxposure) to try to detect Jupiter’s aurora. The time-delayed-integration (TDI), which determines the integration time, to For example, we took 4 images of the north Were designed to find optimal viewing geometries and camera settings. The first perijove pass of Jupiter was a test run for Other tips about the gallery click on the “Gallery Organization” tab. Left, select your favorite artist(s), and then click on “Filter”. If you have a favorite “artist” you can create your own We are writing papers for scientific journalsĪnd using your contributions – always with appropriate attribution ofĪnd we are working out ways to showcase them as art. I have used them to report to the scientific community. Particular atmospheric feature, as well as adding your own color enhancements,Ĭreating collages and adding advanced color reconstruction.įor those of you who have contributed – thank you! Your labors of love have illustrated articles We’d love to see range from simply cropping an image to highlighting a Your creations for us to enjoy and share. We invite you toĭownload them, do your own image processing, and we encourage you to upload Which will produce four-color images of Jupiter's cloud tops looking for convective clouds and lightning in thunderstorms.This is where we will post raw images. The Imaging Node archives JunoCam science data. Jupiter Energetic Particle Detector Instrument (JEDI).Jovian Auroral Distributions Experiment (JADE).At the end of the mission Juno will be deorbited and burn up in Jupiter's atmosphere. Due to the intense radiation environment close to Jupiter, the mission will receive a critical dosage fairly rapidly and is planned to last for 37 orbits. The spacecraft will be rotating at 2 rpm during the science orbit. The science orbit will be a 14 day near-polar (90 +- 10 degrees) orbit with a perijove of roughly 1.05 Jovian radii (about 4200 km above the cloud tops at its closest) and an apojove of 39 Jovian radii. Juno was inserted into its initial 53.5 day Jupiter polar orbit on 5 July 2016, with confirmation of the completion of the 35 minute engine burn received at Earth at 03:53 UT (11:53 p,m, EDT, July 4). Juno made one Earth flyby on 9 October 2013 with a closest approach of about 559 km at 19:21 UT (3:21 p.m. Juno was the second mission chosen for the New Frontiers program. Juno carries eight experiments to achieve these objectives. The primary scientific objectives of the mission are to collect data to investigate: (1) the formation and origin of Jupiter's atmosphere and the potential migration of planets through the measurement of Jupiter's global abundance of oxygen (water) and nitrogen (ammonia) (2) variations in Jupiter's deep atmosphere related to meteorology, composition, temperature profiles, cloud opacity, and atmospheric dynamics (3) the fine structure of Jupiter's magnetic field, providing information on its internal structure and the nature of the dynamo (4) the gravity field and distribution of mass inside the planet and (5) Jupiter's three-dimensional polar magnetosphere and aurorae. The launch vehicle was an Atlas V 551 with a Centaur upper stage. EDT) from Cape Canaveral Air Force Station to study Jupiter from polar orbit for approximately one year beginning in 2016. The Juno mission was launched on 05 August 2011 at 16:25 UTC (12:25 p.m. HST Wide Field Coverage for Juno (WFCJ).
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