File:PIA19716 Alice Solar Occultation (cropped).jpg
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editDescriptionPIA19716 Alice Solar Occultation (cropped).jpg |
English: This figure shows how the Alice instrument count rate changed over time during the sunset and sunrise observations. The count rate is largest when the line of sight to the sun is outside of the atmosphere at the start and end times. Molecular nitrogen (N2) starts absorbing sunlight in the upper reaches of Pluto's atmosphere, decreasing as the spacecraft approaches the planet's shadow. As the occultation progresses, atmospheric methane and hydrocarbons can also absorb the sunlight and further decrease the count rate. When the spacecraft is totally in Pluto's shadow the count rate goes to zero. As the spacecraft emerges from Pluto's shadow into sunrise, the process is reversed. By plotting the observed count rate in the reverse time direction, it is seen that the atmospheres on opposite sides of Pluto are nearly identical. The Johns Hopkins University Applied Physics Laboratory in Laurel, Maryland, designed, built, and operates the New Horizons spacecraft, and manages the mission for NASA's Science Mission Directorate. The Southwest Research Institute, based in San Antonio, leads the science team, payload operations and encounter science planning. New Horizons is part of the New Frontiers Program managed by NASA's Marshall Space Flight Center in Huntsville, Alabama. |
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Author | National Aeronautics and Space Administration (NASA) |
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This file is in the public domain in the United States because it was solely created by NASA. NASA copyright policy states that "NASA material is not protected by copyright unless noted". (See Template:PD-USGov, NASA copyright policy page or JPL Image Use Policy.) | ![]() |
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current | 02:28, 14 November 2018 | ![]() | 771 × 606 (207 KB) | PhilipTerryGraham (talk | contribs) | File:PIA19716 Alice Solar Occultation.jpg cropped 40 % horizontally, 16 % vertically using CropTool with precise mode. |
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Orientation | Normal |
Number of components | 3 |
Horizontal resolution | 72 dpi |
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Software used | Adobe Photoshop CC 2014 (Macintosh) |
File change date and time | 20:49, 16 July 2015 |
Exif version | 2.21 |
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Date and time of digitizing | 15:26, 16 July 2015 |
Date metadata was last modified | 16:49, 16 July 2015 |
Unique ID of original document | uuid:c03433e5-63ac-de41-82fd-a310d423c88d |