File:Periodic Layering in Becquerel Crater, Mars.jpg

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English: Climate cycles persisting for millions of years on ancient Mars left a record of rhythmic patterns in thick stacks of sedimentary rock layers, revealed in three-dimensional detail by a telescopic camera on NASA's Mars Reconnaissance Orbiter.

Researchers using the High Resolution Imaging Science Experiment camera report the first measurement of a periodic signal in the rocks of Mars. This pushes climate-cycle fingerprints much earlier in Mars' history than more recent rhythms seen in Martian ice layers. It also may rekindle debates about some patterns of rock layering on Earth.

Layers of similar thickness repeat dozens to hundreds of times in rocks exposed inside four craters in the Arabia Terra region of Mars. In one of the craters, Becquerel, bundles of a 10-layer pattern repeat at least 10 times, which could correspond to a known 10-to-one pattern of changes in the tilt of the planet's rotation axis.

"Each layer has weathered into a stair step in the topography where material that's more resistant to erosion lies on top of material that's less resistant to erosion," said Kevin Lewis of the California Institute of Technology, Pasadena, who is the lead author of a report on the periodic layering published in the Dec. 5 edition of the journal Science.
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Source http://marsprogram.jpl.nasa.gov/msl/newsroom/pressreleases/20081204a.html
Author NASA HiRISE camera, Mars Reconnaissance Orbiter.
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Public domain 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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current04:19, 26 January 2014Thumbnail for version as of 04:19, 26 January 20142,024 × 2,572 (2.33 MB)Tillman{{Information |Description ={{en|1=Climate cycles persisting for millions of years on ancient Mars left a record of rhythmic patterns in thick stacks of sedimentary rock layers, revealed in three-dimensional detail by a telescopic camera on NASA's M...
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