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The sequence combines 41 JunoCam still images digitally projected onto a sphere, with a virtual "camera" providing views of Jupiter from different angles as the spacecraft speeds by. The original JunoCam images were taken on June 2, 2020, between 2:47 a.m. PDT (5:47 a.m. EDT) and 4:25 a.m. PDT (7:25 a.m. EDT).
The camera and the mission were not designed to study the moons of Jupiter. [12] JunoCam has a field of view that is too wide to resolve any detail in the Jovian moons except during close flybys. Jupiter itself may only appear to be 75 pixels across from JunoCam when Juno reaches the furthest point of its orbit around the planet. [3]
SpaceEngine is an interactive 3D planetarium and astronomy software [2] initially developed by Russian astronomer and programmer Vladimir Romanyuk. [3] Development is now continued by Cosmographic Software, an American company founded by Romanyuk and the SpaceEngine Team in February 2022, based in Connecticut.
NASA's Juno spacecraft captured this view of Jupiter during the mission's 54th close flyby of the giant planet Sept. 7, 2023. ... as Earth’s orbit swings our planet between Jupiter and the sun ...
Hubble image of the scar taken on 23 July 2009 during the 2009 Jupiter impact event, showing a blemish of about 8,000 kilometres long. [1] In recorded history, the planet Jupiter has experienced impact events and has been probed and photographed by several spacecraft.
NASA launched a spacecraft from Florida on Monday on a mission to examine whether Jupiter's moon Europa has conditions suitable to support life, with a focus on the large subsurface ocean believed ...
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It is estimated to be about eleven times the mass of Jupiter and is located about 738 AU away from its host star. [4] HD 106906 b is an oddity; while its mass estimate is nominally consistent with identifying it as an exoplanet, it appears at a much wider separation from its parent star than thought possible for in-situ formation from a ...