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OUTER PLANETS
Pluto's bladed terrain in 3-D
by Staff Writers
Washington DC (SPX) Apr 04, 2016


Image courtesy NASA/JHUAPL/SwRI. For a larger version of this image please go here.

One of the strangest landforms spotted by NASA's New Horizons spacecraft when it flew past Pluto last July was the "bladed" terrain just east of Tombaugh Regio, the informal name given to Pluto's large heart-shaped surface feature.

No geology degree is necessary to see why the terrain is so interesting - just a pair of 3-D glasses will do. The blades are the dominant feature of a broad area informally named Tartarus Dorsa.

They align from north to south, reach hundreds of feet high and are typically spaced a few miles apart. This remarkable landform, unlike any other seen in our solar system, is perched on a much broader set of rounded ridges that are separated by flat valley floors.

On the global image below, the bladed terrain extends far to the east. New Horizons scientists have speculated about (but not yet agreed on) the terrain's origins.

Current theories include erosion from evaporating ices or deposition of methane ices; New Horizons researcher Orkan Umurhan takes an in-depth look at the terrain - and proposes another origin idea - in this recent NASA Web blog.

The amazing stereo view combines two images from the Ralph/Multispectral Visible Imaging Camera (MVIC) taken about 14 minutes apart on July 14, 2015.

The first was taken when New Horizons was 16,000 miles (25,000 kilometers) away from Pluto, the second when the spacecraft was 10,000 miles (about 17,000 kilometers) away. Best resolution is approximately 1,000 feet (310 meters).


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Related Links
New Horizons at NASA
The million outer planets of a star called Sol






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Previous Report
OUTER PLANETS
A frozen pond on Pluto
Laurel MD (SPX) Mar 28, 2016
NASA's New Horizons spacecraft spied several features on Pluto that offer evidence of a time millions or billions of years ago when - thanks to much higher pressure in Pluto's atmosphere and warmer conditions on the surface - liquids might have flowed across and pooled on the surface of the distant world. "In addition to this possible former lake, we also see evidence of channels that may ... read more


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