![]() This process is experimental and the keywords may be updated as the learning algorithm improves. These keywords were added by machine and not by the authors. These instruments collect science data during both the satellite encounter and the Jupiter-Orbit cruise phases. Most are mounted on the science boom that extends outward from the spacecraft main bus. All (except the EUV) are fields and particles science instruments. The remaining seven science instruments are located on the spacecraft spun section. These instruments perform remote sensing optical scientific observations during every satellite encounter. BQ: Aquaris V Plus, Aquaris V, Aquaris X5 Plus, Aquaris X, Aquaris X Pro. Below, a complete list of Galileo-enabled phones: Apple: iPhone 8 Plus, iPhone 8, iPhone 10/X. Four of the eleven science instruments are mounted on a 2-degree-of-freedom scan platform located on the spacecraft despun section. This means a vast majority of the new-generation of phones such as Apple’s iPhone X, Samsung’s S8, Huawei’s Mate 10 and Google’s Pixel 2 are all Galileo-enabled. Also, radio science data are collected using the downlink radio frequency signal generated by an ultra-stable oscillator in the spacecraft radio frequency subsystem (RFS). ![]() The encounter data from eleven science instruments are stored on a single tape recorder with a usable capacity of about 750 million bits. Science data are recorded at several rates from 7.68 kbps to 806.4 kbps and later returned to Earth at downlink telemetry rates ranging from 8 to 160 bps. Because of loss of use of the high-gain antenna, most of the scientific data collected during each of the satellite closest approaches is recorded on the tape recorder for later playback to Earth. On December 7, 1995, the Galileo spacecraft arrived at Jupiter to begin intensive scientific observations of Jupiter, its satellites, and its magnetosphere. ![]()
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