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Nearly ten years after its launch, the New Horizons spacecraft will reach its closest encounter with Pluto on July 14, 2015. NASA and the world science community will celebrate the landmark at the Applied Physics Laboratory (APL) at Johns Hopkins University, as well as at “PlutoPalooza” events around the world.
Three months ago, I posted an article explaining what to expect during the flyby. This is a revised version of the same post, with some errors corrected, the expected sizes of Nix and Hydra updated, and times of press briefings added.
May 2016 will be yet another month of fairly routine operations across the solar system -- if you can ever use the word "routine" to describe autonomous robots exploring other planets. ExoMars' cruise to Mars has started smoothly, and Juno is only two months away from Jupiter orbit insertion. Earthlings will witness a Mercury transit of the Sun on May 9.
January 24 was the 30th anniversary of the Voyager flyby of Uranus. Uranian moons have been on my mind ever since New Horizons sent us close-up images of Charon. On the occasion of the anniversary, Ted Stryk produced latest-and-greatest versions of the Voyager views of these worlds.
New Horizons—what will be NASA’s greatest success of 2015—was cancelled multiple times in its early life, and many times before that in its previous incarnations. A mission to Pluto was not inevitable, despite the overwhelming scientific and public excitement.
Casey is the public face of The Planetary Society's efforts to advance planetary exploration, planetary defense, and the search for life. He is a trusted expert in space policy and works to demystify the political and policy processes behind space exploration.
The left picture is a color image taken by New Horizons' Ralph MVIC instrument. The middle one is a LORRI image taken near the same time. The right image combines the two. It is an enhanced color image, featuring infrared, red, and blue channels. It was taken at a distance of 137,000 kilometers on 1 January 2019 at 04:08 UT, slightly more than an hour before closest approach. Note the reduced red coloring at the neck of the object.
The Long-Range Reconnaissance Imager (LORRI) took this photo of 2014 MU69 on 1 January 2019 at 5:01 UT, just 30 minutes before closest approach, from a range of 28,000 kilometers, with an original scale of 140 meters per pixel. It has been sharpened and enlarged.
This photo combines a color image taken by New Horizons' Ralph MVIC instrument with a LORRI image taken near the same time. It is an enhanced color image, featuring infrared, red, and blue channels. It was taken at a distance of 137,000 kilometers on 1 January 2019 at 04:08 UT, slightly more than an hour before closest approach. Note the reduced red coloring at the neck of the object.
Binary systems formed when aggregates of pebbles accreted into separated binaries under the force of gravity. Eventually, the orbit destabilized and the two pieces came into contact at a very slow speed of 80 centimeters per second or so.