. GPS News .




.
MARSDAILY
New Mystery On Mars' Forgotten Plains
by Staff Writers
Boulder CO (SPX) Oct 13, 2011

THEMIS daytime infrared image mosaic (courtesy of ASU/NASA/JPL) of Mars with north is at the top. Image is centered at 116.3 degrees E and 25.0 degrees S

One of the supposedly best understood and least interesting landscapes on Mars is hiding something that could rewrite the planet's history. Or not. In fact, about all that is certain is that decades of assumptions regarding the wide, flat Hesperia Planum are not holding up very well under renewed scrutiny with higher-resolution, more recent spacecraft data.

"Most scientists don't want to work on the flat things," noted geologist Tracy Gregg of University at Buffalo, State University of New York. So after early Mars scientists decided Hesperia Planum looked like a lava-filled plain, no one really revisited the matter and the place was used to exemplify something rather important: The base of a major transitional period in the geologic time scale of Mars. The period is aptly called the Hesperian and it is thought to have run from 3.7 to 3.1 billion years ago.

But when Gregg and her student Carolyn Roberts started looking at this classic Martian lava plain with modern data sets, they ran into trouble.

"There's a volcano in Hesperia Planum that not many people pay attention to because it's very small," Gregg said. "As I started looking closer at the broader region - I can't find any other volcanic vents, any flows. I just kept looking for evidence of lava flows. It's kind of frustrating. There is nothing like that in the Hesperia Planum."

"A likely cause of this trouble is the thick dust that blankets Hesperia Planum," she said. "It covers everywhere like a snowfall."

So she turned her attention to what could be discerned on Hesperia Planum: about a dozen narrow, sinuous channels, called rilles, just a few hundred meters wide and up to hundreds of kilometers long. These rilles have no obvious sources or destinations and it is not at all clear they are volcanic.

"The question I have is what made the channels," said Gregg. Was it water, lava, or something else? "There are some lavas that can be really, really runny. And both are liquids that run downhill." So either is a possibility.

To begin to sort the matter out, Gregg and Roberts are now looking for help on the Moon. Their preliminary findings will be presented Wednesday, 12 October at the Annual Meeting of The Geological Society of America in Minneapolis.

"On the Moon we see these same kinds of features and we know that water couldn't have formed them there," Gregg said. So they are in the process of comparing channels on the Moon and Mars, using similar data sets from different spacecraft, to see if that sheds any light on the matter. She hopes to find evidence that will rule out water or lava on Hesperia Planum.

"Everybody assumed these were huge lava flows," said Gregg. "But if it turns out to be a lake deposit, it's a very different picture of what Mars was doing at that time." It would also make Hesperia Planum a good place to look for life, because water plus volcanic heat and minerals is widely believed to be a winning combination for getting life started.

"The 'volcanic' part is an interpretation that's beginning to fall apart," said Gregg. "What is holding up is that the Hesperian marks a transition between the Noachian (a time of liquid water on the surface and the formation of lots of impact craters) and the Amazonian (a drier, colder Mars)."

She has found that other scientists are interested in her work because of its possible implications on the Mars geological time scale. Gregg is not worried that Mars history will need to be rewritten, but she does suspect that Hesperia Planum is a lot more complicated than people has long thought.

Related Links
Geological Society of America
Mars News and Information at MarsDaily.com
Lunar Dreams and more




.
.
Get Our Free Newsletters Via Email
...
Buy Advertising Editorial Enquiries






.

. Comment on this article via your Facebook, Yahoo, AOL, Hotmail login.

Share this article via these popular social media networks
del.icio.usdel.icio.us DiggDigg RedditReddit GoogleGoogle



MARSDAILY
Wet and Mild: Caltech Researchers Take the Temperature of Mars' Past
Pasadena CA (JPL) Oct 13, 2011
Researchers at the California Institute of Technology (Caltech) have directly determined the surface temperature of early Mars for the first time, providing evidence that's consistent with a warmer and wetter Martian past. By analyzing carbonate minerals in a four-billion-year-old meteorite that originated near the surface of Mars, the scientists determined that the minerals formed at abou ... read more


MARSDAILY
Energy, food security to dominate Rio+20: envoy

Which direction are herbicides heading

Burkina Faso says faces food crisis

Plant genomes may help next generation respond to climate change

MARSDAILY
Point defects in super-chilled diamonds may offer stable candidates for quantum computing bits

New knowledge about 'flawed' diamonds could speed the development of diamond-based quantum computers

Researchers Realize High-Power, Narrowband Terahertz Source at Room Temperature

Rice physicists move one step closer to quantum computer

MARSDAILY
Northrop Grumman Awarded Contract to Provide New Hybrid Navigation System for Cessna Business Jets

Embraer selects French component supplier

EU court backs bloc in airlines emissions fight

EU wins key round in carbon fight with airlines

MARSDAILY
China auto sales up 5.5% in September

Kicking hybrids out of carpool lanes backfires, slowing traffic for all

GM China sales up 15.3% in September

Crash-safe battery protection for electric cars

MARSDAILY
China's trade surplus narrows in September

eBay platform prime for Internet age shopping

China vendors 'riot' online over Taobao fee hike

South African wage deal aims to save textile jobs

MARSDAILY
New study shows how trees clean the air in London

Demonstrators in Bolivia resume march

International bodies to probe crackdown on Bolivia protest

Forest structure, services and biodiversity may be lost even as form remains

MARSDAILY
Astrium signs new Pleiades contract

New program to expand, enhance use of LIDAR sensing technology

Indra Tries In Madrid And Seville Space Technology To Detect Heat Islands

RADA Selected for a SAR Development Program

MARSDAILY
Molecular Depth Profiling Modeled Using Buckyballs and Low-Energy Argon

New form of superhard carbon observed

Pear-shaped 110-carat diamond to go under hammer

NIST polishes method for creating tiny diamond machines


.

The content herein, unless otherwise known to be public domain, are Copyright 1995-2011 - Space Media Network. AFP and UPI Wire Stories are copyright Agence France-Presse and United Press International. ESA Portal Reports are copyright European Space Agency. All NASA sourced material is public domain. Additional copyrights may apply in whole or part to other bona fide parties. Advertising does not imply endorsement,agreement or approval of any opinions, statements or information provided by Space Media Network on any Web page published or hosted by Space Media Network. Privacy Statement