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Titlebook: Deep Impact Mission: Looking Beneath the Surface of a Cometary Nucleus; Christopher T. Russell Book 2005 Springer Science+Business Media B

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https://doi.org/10.1007/978-3-319-42773-7 crater formation for the Deep Impact mission. The high-resolution instrument (HRI) consists of an ./35 telescope with 10.5mfocal length, and a combined filtered CCD camera and IR spectrometer. The medium-resolution instrument (MRI) consists of an ./17.5 telescope with a 2.1 m focal length feeding a
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Joseph T. O’Leary,Daniel Fesenmaiert velocity will be just over 10 km/s and is expected to excavate a crater approximately 20m deep and 100m wide. The Impactor s/c will be delivered to the vicinity of Tempel 1 by the Flyby s/c, which is also the key observing platform for the event. Following Impactor release, the Flyby will change c
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Stories as a Tourist Experience Design Toolvations for the seven apparitions beginning in 1967 have been fit with an orbit that includes only radial and transverse nongravitational accelerations that model the rocket-like thrusting introduced by the outgassing of the cometary nucleus. The successful nongravitational acceleration model did no
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