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  2. Magnetometer (Juno) - Wikipedia

    en.wikipedia.org/wiki/Magnetometer_(Juno)

    That is one of the questions Juno may answer. [6] In addition to studying Jupiter, the MAG also returned data on the Earth's magnetosphere. [7] The MAG instrument was delivered to Lockheed Martin Space Systems' facility in Denver, Colorado, United States for integration into the Juno spacecraft by NASA's Goddard Spaceflight Center (GFSC) in ...

  3. Waves (Juno) - Wikipedia

    en.wikipedia.org/wiki/Waves_(Juno)

    Juno would go on to enter Jupiter's orbit in July 2016. [3] The magnetosphere blocks the charged particles of the solar wind, with the number of solar wind particles Juno encountered dropping 100-fold when it entered the Jovian magnetosphere. [3] Before Juno entered it, it was encountering about 16 solar wind particles per cubic inch of space. [3]

  4. Microwave Radiometer (Juno) - Wikipedia

    en.wikipedia.org/wiki/Microwave_Radiometer_(Juno)

    Microwave Radiometer (MWR) is an instrument on the Juno orbiter sent to planet Jupiter. [2] MWR is a multi-wavelength microwave radiometer for making observations of Jupiter's deep atmosphere. [3] MWR can observe radiation from 1.37 to 50 cm in wavelength, from 600 MHz to 22 GHz in frequencies.

  5. Magnetosphere - Wikipedia

    en.wikipedia.org/wiki/Magnetosphere

    The magnetosphere of Jupiter is the largest planetary magnetosphere in the Solar System, extending up to 7,000,000 kilometers (4,300,000 mi) on the dayside and almost to the orbit of Saturn on the nightside. [17] Jupiter's magnetosphere is stronger than Earth's by an order of magnitude, and its magnetic moment is approximately 18,000 times ...

  6. Juno (spacecraft) - Wikipedia

    en.wikipedia.org/wiki/Juno_(spacecraft)

    Juno in launch configuration. Juno is a NASA space probe orbiting the planet Jupiter.It was built by Lockheed Martin and is operated by NASA 's Jet Propulsion Laboratory.The spacecraft was launched from Cape Canaveral Air Force Station on August 5, 2011 UTC, as part of the New Frontiers program. [6]

  7. Magnetosphere particle motion - Wikipedia

    en.wikipedia.org/wiki/Magnetosphere_particle_motion

    The Earth's "plasma fountain", showing oxygen, helium, and hydrogen ions which gush into space from regions near the Earth's poles. The faint yellow area shown above the north pole represents gas lost from Earth into space; the green area is the aurora borealis-or plasma energy pouring back into the atmosphere. [2

  8. Ganymede (moon) - Wikipedia

    en.wikipedia.org/wiki/Ganymede_(moon)

    On 2019 December 25, Juno performed a distant flyby of Ganymede during its 24th orbit of Jupiter, at a range of 97,680 to 109,439 kilometers (60,696 to 68,002 mi). This flyby provided images of the moon's polar regions. [119] [120] In June 2021, Juno performed a second flyby, at a closer distance of 1,038 kilometers (645 mi).

  9. Magnetopause - Wikipedia

    en.wikipedia.org/wiki/Magnetopause

    Solar wind particles can enter the planet's magnetosphere through the cusp region. Because the solar wind exists at all times and not just times of solar flares, the magnetopause is a permanent feature of the space near any planet with a magnetic field. The magnetic field lines of the planet's magnetic field are not stationary.