Thursday, November 3, 2011

NASA Study Of Clay Minerals Suggests Watery Martian Underground

Dwayne Brown
Headquarters, Washington

Guy Webster
Jet Propulsion Laboratory, Pasadena, Calif.

WASHINGTON -- A new NASA study suggests if life ever existed on Mars, the longest lasting habitats were most likely below the Red Planet's surface.

A new interpretation of years of mineral-mapping data, from more than 350 sites on Mars examined by European and NASA orbiters, suggests Martian environments with abundant liquid water on the surface existed only during short episodes. These episodes occurred toward the end of hundreds of millions of years during which warm water interacted with subsurface rocks. This has implications about whether life existed on Mars and how its atmosphere has changed.

"The types of clay minerals that formed in the shallow subsurface are all over Mars," said John Mustard, professor at Brown University in Providence, R.I. Mustard is a co-author of the study in the journal Nature. "The types that formed on the surface are found at very limited locations and are quite rare."

Discovery of clay minerals on Mars in 2005 indicated the planet once hosted warm, wet conditions. If those conditions existed on the surface for a long era, the planet would have needed a much thicker atmosphere than it has now to keep the water from evaporating or freezing. Researchers have sought evidence of processes that could cause a thick atmosphere to be lost over time.

This new study supports an alternative hypothesis that persistent warm water was confined to the subsurface and many erosional features were carved during brief periods when liquid water was stable at the surface.

"If surface habitats were short-term, that doesn't mean we should be glum about prospects for life on Mars, but it says something about what type of environment we might want to look in," said the report's lead author, Bethany Ehlmann, assistant professor at the California Institute of Technology and scientist at NASA's Jet Propulsion Laboratory in Pasadena. "The most stable Mars habitats over long durations appear to have been in the subsurface. On Earth, underground geothermal environments have active ecosystems."

The discovery of clay minerals by the OMEGA spectrometer on the European Space Agency's Mars Express orbiter added to earlier evidence of liquid Martian water. Clays form from the interaction of water with rock. Different types of clay minerals result from different types of wet conditions.

During the past five years, researchers used OMEGA and NASA's Compact Reconnaissance Imaging Spectrometer, or CRISM, instrument on the Mars Reconnaissance Orbiter to identify clay minerals at thousands of locations on Mars. Clay minerals that form where the ratio of water interacting with rock is small generally retain the same chemical elements as the original volcanic rocks later altered by the water.

The study interprets this to be the case for most terrains on Mars with iron and magnesium clays. In contrast, surface environments with higher ratios of water to rock can alter rocks further. Soluble elements are carried off by water, and different aluminum-rich clays form.

Another clue is detection of a mineral called prehnite. It forms at temperatures above about 400 degrees Fahrenheit (about 200 degrees Celsius). These temperatures are typical of underground hydrothermal environments rather than surface waters.

"Our interpretation is a shift from thinking that the warm, wet environment was mostly at the surface to thinking it was mostly in the subsurface, with limited exceptions," said Scott Murchie of Johns Hopkins University Applied Physics Laboratory in Laurel, Md., a co-author of the report and principal investigator for CRISM.

One of the exceptions may be Gale Crater, the site targeted by NASA's Mars Science Laboratory mission. Launching this year, the Curiosity rover will land and investigate layers that contain clay and sulfate minerals.

NASA's Mars Atmosphere and Volatile Evolution Mission, or MAVEN, in development for a 2013 launch, may provide evidence for or against this new interpretation of the Red Planet's environmental history. The report predicts MAVEN findings consistent with the atmosphere not having been thick enough to provide warm, wet surface conditions for a prolonged period.

JPL manages the Mars Reconnaissance Orbiter for NASA's Science Mission Directorate in Washington. APL provided and operates CRISM.

For more information about the Mars Reconnaissance Orbiter, visit http://www.nasa.gov/mro.

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Ten Technologies: A Brief Look at Military Evolution — Observation Balloons

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By Carla Voorhees, Defense Media Activity

This is the first in a series of 10 technologies integral to the United States military since World War I.

Returning from a U-Boat scouting party. Aerial naval observer coming down from a "Blimp" type balloon after a scouting tour somewhere on the Atlantic Coast. Central News Photo Service., ca. 1918

With the birth of the airplane in 1903, one would think by 1917 the use of observation balloons would have fallen out of fashion; however, just the opposite was true. At the time, using airplanes for photo reconnaissance was still in its infancy, and the results were inaccurate and awkward due to the lack of air-to-ground communication systems. A stationary balloon raised to 4,000 feet allowed observers to track troop movements, direct artillery fire, and chart trenches and supply dumps for up to 40 miles, all while being in constant contact to the ground via telephone.

The most used balloon was designed by Lt. Albert Caquot, and could lift two passengers, charting and communications equipment, and its mooring cable from 1,000 to 4,000 feet. These balloons were credited with more than 1,000 enemy airplane sightings, and 400 artillery batteries during WWI.

Balloon technology is still being used today. In 2009, observation balloons were deployed with high-definition video capabilities to monitor the Afghan elections, and prevent violence during the voting.

Wednesday, November 2, 2011

President Obama Meets Final Shuttle Crew

From left, Space Shuttle Atlantis STS-135 Pilot Doug Hurley, Mission Specialist Sandy Magnus, Commander Chris Ferguson and Mission Specialist Rex Walheim watch from the background as Janet Kavandi, Director of Flight Crew Operations at Johnson Space Center, Texas, presents President Obama with a coat from Space Shuttle Atlantis's final mission, in the Oval Office, Nov. 1, 2011.
 
Official White House Photo by Pete Souza

Web Site Helps Troops Vote

There’s a website out there that helps troops and their family members exercise their right to vote.

The Federal Voting Assistance Program’s website provides online wizards for the federal postcard application and the federal write-in absentee ballots, and provides voters direct access to their states’ voting systems, said Mr. Bob Carey, FVAP director, during a recent DODLive Bloggers’ Roundtable interview. The site also includes links relevant to the user’s local elections.

“So if the state has an online voter registration system for military and overseas voters, [voters] can go [to the site] thru FVAP,” he said. “They don’t even have to use our form. If the state has an online ballot delivery system, [the site] will send them directly there. And hopefully it will be seamless, intuitive, quick.”

This website is especially important, since the FVAP 2010 post-election report showed that  29% of the military never received their ballots, and 44% of local election officials sent out ballots after the 45-day deadline.  On the plus side, there was a 21% increase in military voting, a 27% increase in military voters receiving ballots, and a 24% increase in military voters casting ballots.  It also showed broad increases in voter awareness of available voting assistance resources. This is good news, especially considering that the program hopes to roll out some type of eVoting site in the future.

“The Department of Defense has a mandate to do an Internet voting demonstration project for military voting — for military voters. And we are working towards figuring out how to be able to do that,” said Mr. Carey. He said the program must consider a few issues, though, while developing such a site.

“There are inherent security risks with that,” he said. “But there are also inherent security risks with the current system, such as 112,000 people who think they’re going to get a ballot, don’t get it. That’s a risk. There’s not going to be any electronic voting system that’s ever going to be 100 percent secure, but also the current paper-based system is not 100 percent reliable, either. So we’ve got to accept that.”

Some states will very likely run Internet voting systems for military and overseas voters in the 2012 election, he said.  The FVAP site will make sure the voters are aware of them.

He said the ultimate goal is for fvap.gov to be the one-stop shop for military voters.

Tuesday, November 1, 2011

Mars' Newton Crater

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This image, which combines orbital imagery with 3-D modeling, shows flows that appear in spring and summer on a slope inside Mars' Newton Crater. Sequences of observations recording the seasonal changes at this site and a few others with similar flows might be evidence of salty liquid water active on Mars today. Evidence for that possible interpretation is presented in a report by McEwen et al. in the Aug. 5, 2011, edition of Science.
 
This image has been reprojected to show a view of a slope as it would be seen from a helicopter inside the crater, with a synthetic Mars-like sky. The source observation was made May 30, 2011, by the High Resolution Imaging Science Experiment (HiRISE) camera on NASA's Mars Reconnaissance Orbiter. Color has been enhanced. The season was summer at the location, 41.6 degrees south latitude, 202.3 degrees east longitude.
 
The flow features are narrow (one-half to five yards or meters wide), relatively dark markings on steep (25 to 40 degree) slopes at several southern hemisphere locations. Repeat imaging by HiRISE shows the features appear and incrementally grow during warm seasons and fade in cold seasons.
 
Image Credit: NASA/JPL-Caltech/Univ. of Arizona

NASA Hosting Media Teleconference About Antarctic Ice Mission

Dwayne Brown
Headquarters, Washington

Rob Gutro
Goddard Space Flight Center, Greenbelt, Md.

WASHINGTON -- NASA will host a media teleconference at 1 p.m. EDT, on Thursday, Nov. 3, to discuss the largest airborne campaign ever to study the dynamics of Earth's polar regions. Operation IceBridge is enhancing scientists' understanding and predictions of how glaciers contribute to global sea level rise.

The survey began in 2009 using instruments to map Arctic and Antarctic areas once a year for six years. From their location in Chile -- where this year's observation flights take place – NASA Project Scientist Michael Studinger and NASA Mission Director Walter Klein will preview the discovery of a massive Glacier crevasse that suggests an iceberg soon may fall from it. They also will discuss new information from this year's observations and newly visualized data from previous years.

To participate in the teleconference, journalists may call 210-234-8217 or 888-989-9822 and use the passcode ICEBRIDGE. Any inquiries prior to the teleconference should be sent to Patrick Lynch onsite in Chile at: patrick.lynch@nasa.gov.

Briefing materials will be available shortly before the start of the teleconference at http://www.nasa.gov/icebridge.

For more information about Operation IceBridge, visit http://www.espo.nasa.gov/oib.

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NASA's Fermi to Reveal New Findings About Pulsars

Trent J. Perrotto
Headquarters, Washington                                        

WASHINGTON -- NASA will hold a media teleconference at 2 p.m. EDT on Thursday, Nov. 3, to discuss new discoveries about pulsars by the Fermi Gamma-ray Space Telescope.

A pulsar is the closest thing to a black hole astronomers can observe directly. Pulsars are capable of crushing half a million times more mass than Earth into a sphere no larger than a city. Some of these objects spin tens of thousands of revolutions per minute, faster than the blades of a kitchen blender.

Participants are:

- Paulo Freire, astrophysicist, Max Planck Institute for Radio Astronomy in Bonn, Germany
- Pablo Saz Parkinson, astrophysicist, University of California at Santa Cruz
- Bruce Allen, director, Max Planck Institute for Gravitational Physics in Hannover, Germany
- Victoria Kaspi, physics professor, McGill University in Montreal

For dial-in information, media representatives should e-mail their name, media affiliation and telephone number to Trent Perrotto at trent.j.perrotto@nasa.gov.

Audio of the teleconference will be streamed live on NASA's website at http://www.nasa.gov/newsaudio.

For more information about NASA's Fermi Gamma-ray Space Telescope, visit http://www.nasa.gov/fermi.

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