Monday, October 6, 2008

NASA Spacecraft Finds the Sun is Not a Perfect Sphere

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Scientists using NASA’s RHESSI spacecraft have measured the roundness of the sun with unprecedented precision. They find that it is not a perfect sphere. During years of high solar activity the sun develops a thin “cantaloupe skin” that significantly increases its apparent oblateness: the sun’s equatorial radius becomes slightly larger than its polar radius. Their results appear the Oct. 2nd edition of Science Express.

“The sun is the biggest and therefore smoothest object in the solar system, perfect at the 0.001% level because of its extremely strong gravity,” says study co-author Hugh Hudson of UC Berkeley. “Measuring its exact shape is no easy task.”

The team accomplished the task by analyzing data from the Reuven Ramaty High-Energy Solar Spectroscopic Imager, RHESSI for short, an x-ray/gamma-ray space telescope launched in 2002 on a mission to study solar flares. Although RHESSI was never intended to measure the roundness of the sun, it has turned out ideal for the purpose. RHESSI observes the solar disk through a narrow slit and spins at 15 rpm. The spacecraft’s rapid rotation and high data sampling rate (necessary to catch fast solar flares) make it possible for investigators to trace the shape of the sun with systematic errors much less than any previous study. Their technique is particularly sensitive to small differences in polar vs. equatorial radius or “oblateness.”

“We have found that the surface of the sun has rough structure: bright ridges arranged in a network pattern, as on the surface of a cantaloupe but much more subtle,” describes Hudson. During active phases of the solar cycle, these ridges emerge around the sun’s equator, brightening and fattening the “stellar waist.” At the time of RHESSI’s measurements in 2004, ridges increased the sun’s apparent equatorial radius by an angle of 10.77 +- 0.44 milli-arcseconds, or about the same as the width of a human hair viewed one mile away.

“That may sound like a very small angle, but it is in fact significant,” says Alexei Pevtsov, RHESSI Program Scientist at NASA Headquarters. Tiny departures from perfect roundness can, for example, affect the sun’s gravitational pull on Mercury and skew tests of Einstein’s theory of relativity that depend on careful measurements of the inner planet’s orbit. Small bulges are also telltale signs of hidden motions inside the sun. For instance, if the sun had a rapidly rotating core left over from early stages of star formation, and if that core were tilted with respect to its outer layers, the result would be surface bulging. “RHESSI’s precision measurements place severe constraints on any such models.”

The “cantaloupe ridges” are magnetic in nature. They outline giant, bubbling convection cells on the surface of the sun called “supergranules.” Supergranules are like bubbles in a pot of boiling water amplified to the scale of a star; on the sun they measure some 30,000 km across (twice as wide as Earth) and are made of seething hot magnetized plasma. Magnetic fields at the center of these bubbles are swept out to the edge where they form ridges of magnetism. The ridges are most prominent during years around Solar Max when the sun’s inner dynamo “revs up” to produce the strongest magnetic fields. Solar physicists have known about supergranules and the magnetic network they produce for many years, but only now has RHESSI revealed their unexpected connection to the sun’s oblateness.

“When we subtract the effect of the magnetic network, we get a ‘true’ measure of the sun’s shape resulting from gravitational forces and motions alone,” says Hudson. “The corrected oblateness of the non-magnetic sun is 8.01 +- 0.14 milli arcseconds, near the value expected from simple rotation.”

Further analysis of RHESSI oblateness data may help researchers detect a long-sought type of seismic wave echoing through the interior of the sun: the gravitational oscillation or “g-mode.” Detecting g-modes would open a new frontier in solar physics—the study of the sun’s internal core.

A Celestial Landscape in Celebration of 10 Years of Stunning Hubble Heritage Images

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The landmark 10th anniversary of the Hubble Space Telescope's Hubble Heritage Project is being celebrated with a "landscape" image from the cosmos. Cutting across a nearby star-forming region are the "hills and valleys" of gas and dust displayed in intricate detail. Set amid a backdrop of soft, glowing blue light are wispy tendrils of gas as well as dark trunks of dust that are light-years in height.

The Hubble Heritage Project, which began in October 1998, has released nearly 130 images mined from the Hubble data archive as well as a number of observations taken specifically for the project. By releasing a new, previously unseen Hubble image every month, the team's intent was to showcase some of the most attractive images ever taken by the Hubble telescope, and share them with a wide audience. The Heritage team continues to create aesthetic images that present the universe from an artistic perspective.

This month's three-dimensional-looking Hubble image shows the edge of the giant gaseous cavity within the star-forming region called NGC 3324. The glowing nebula has been carved out by intense ultraviolet radiation and stellar winds from several hot, young stars. A cluster of extremely massive stars, located well outside this image in the center of the nebula, is responsible for the ionization of the nebula and excavation of the cavity.

The image also reveals dramatic dark towers of cool gas and dust that rise above the glowing wall of gas. The dense gas at the top resists the blistering ultraviolet radiation from the central stars, and creates a tower that points in the direction of the energy flow. The high-energy radiation blazing out from the hot, young stars in NGC 3324 is sculpting the wall of the nebula by slowly eroding it away.

Located in the Southern Hemisphere, NGC 3324 is at the northwest corner of the Carina Nebula (NGC 3372), home of the Keyhole Nebula and the active, outbursting star Eta Carinae. The entire Carina Nebula complex is located at a distance of roughly 7,200 light-years, and lies in the constellation Carina.

This image is a composite of data taken with two of Hubble's science instruments. Data taken with the Advanced Camera for Surveys (ACS) in 2006 isolated light emitted by hydrogen. More recent data, taken in 2008 with the Wide Field Planetary Camera 2 (WFPC2), isolated light emitted by sulfur and oxygen gas. To create a color composite, the data from the sulfur filter are represented by red, from the oxygen filter by blue, and from the hydrogen filter by green.

The Heritage project has released images using several of Hubble's optical cameras: the Wide Field Planetary Camera (WF/PC), which was installed when the telescope was first deployed in 1990; WFPC2, which replaced WFPC in 1993 and is still in service today; and ACS, which was added in 2002. After the Hubble Servicing Mission, which is scheduled for 2009, the Hubble Heritage team hopes to continue using ACS as well as the newest of the optical cameras, Wide Field Camera 3.

Thursday, October 2, 2008

When it Comes to Galaxies, Diversity is Everywhere

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There's an old saying in astronomy: "Galaxies are like people. They're only normal until you get to know them." That view is supported by a group of astronomers after using NASA's Hubble Space Telescope to study a large number of galaxies in our cosmic backyard.

The detailed survey, called the ACS Nearby Galaxy Survey Treasury (ANGST) program, observed roughly 14 million stars in 69 galaxies. The survey explored a region called the "Local Volume," and the galaxy distances ranged from 6.5 million light-years to 13 million light-years from Earth. The Local Volume resides beyond the Local Group of galaxies, an even nearer collection of a few dozen galaxies within about 3 million light-years of our Milky Way Galaxy.

A typical galaxy contains billions of stars but looks "smooth" when viewed through a telescope, because the stars are blurred together. In contrast, the galaxies in the new survey are close enough to Earth that the sharp "eyes" of Hubble's Advanced Camera for Surveys and Wide Field Planetary Camera 2 can resolve their brightest individual stars. By measuring the brightness and colors of these stars, scientists can derive the local history of star formation within a galaxy and can tease out subtle features in a galaxy's shape.

"Past Hubble observations of the local neighborhood have provided dramatic insights into the star-formation histories of individual galaxies, but the number of galaxies studied in detail has been rather small," said Julianne Dalcanton of the University of Washington in Seattle and leader of the ANGST survey. The survey's results were submitted to The Astrophysical Journal Supplement Series. Another paper that details the star-formation history in galaxy M81 has been submitted to The Astronomical Journal.

"Instead of picking and choosing particular galaxies to study, our survey will be complete by virtue of looking at 'all' the galaxies in the region. This gives us a multi-color picture of when and where all the stars in the local universe formed."

Many stars in nearby galaxies are the fossil equivalents of the active star formation seen in galaxies in the distant universe. "When we look back in time at distant, young galaxies, we see lots of vigorous star formation. However, we can only guess as to what those galaxies might eventually turn into," Dalcanton explained. "Using the galaxies in the nearby universe as a 'fossil record,' we can compare them with young galaxies far away. This comparison gives us a history of star formation and provides a better understanding of the masses, structures, and environments of the galaxies."

Early results of the ANGST survey show the rich diversity of galaxies. Some galaxies are made up entirely of ancient stars, while others have been forming stars nearly continuously during their whole lives. There are even a few examples of galaxies that have only started forming stars in the recent past.

"With these images, we can see what makes each galaxy unique," said team member Benjamin Williams of the University of Washington. "When we look at the distribution and development of stars in each survey galaxy, we can learn how differences in the galaxies' histories have produced the diversity of galaxy shapes and colors."

The ANGST survey also includes maps of many large galaxies, including M81. "With these maps, we can track when the different parts of the galaxy formed," explained Evan Skillman of the University of Minnesota, describing work by students Dan Weisz of the University of Minnesota and Stephanie Gogarten of the University of Washington.

In a separate paper describing the star-formation history in M81, astronomers confirmed that massive spiral galaxies formed most of their stars in the early universe. Analyzing M81's outer disk, the astronomers found that most of the stars formed more than 7 billion years ago, when the universe was half its present age. M81 and other mammoth galaxies also experienced rapid enrichment of heavy elements, such as carbon, through the deaths of massive stars in supernova explosions. "We were surprised by how quickly the elements formed and how the subsequent star-formation rate for the bulk of the stars in M81 changed after that," said Williams, the paper's lead author.

"This rich survey will add to Hubble's legacy, providing a foundation for future studies," Dalcanton said. "The ANGST sample offers superb targets for future multi-wavelength surveys, which will allow us to combine the star-formation maps with the properties of gas and dust in the galaxies. With this information, we will be able to trace the complete cycle of star formation in detail."

NASA EXTENDS INTERNATIONAL SPACE STATION CONTRACT

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NASA has awarded a two-year, $650 million contract extension to The Boeing Co. to continue engineering support of the International Space Station to Sept. 30, 2010.

The action extends the U.S. On-Orbit Segment Acceptance and Vehicle Sustaining Engineering contract, awarded in January 1995. Work under the contract extension will include completion of delivery and on-orbit acceptance of the U.S. segment of the station, sustaining engineering of station hardware and software, support of U.S. hardware and software provided to international partners and participants in the station program, and end-to-end subsystem management for the majority of station systems.

The work will be performed at NASA's Johnson Space Center in Houston, Kennedy Space Center in Florida, Marshall Space Flight Center in Huntsville, Ala., and at other domestic and international locations.

For information about NASA and its programs, visit:

http://www.nasa.gov

NASA TV COVERAGE SET FOR SPACE STATION CREW EXCHANGE

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NASA Television will broadcast the launch of the next International Space Station crew Oct. 12 and the landing of the current crew Oct. 23.

NASA's Expedition 18 Commander and Science Officer Mike Fincke, Soyuz Commander and Flight Engineer Yury Lonchakov and spaceflight participant Richard Garriott, a U.S. citizen, are scheduled to launch Sunday, Oct. 12, at 3:01 a.m. EDT from the Baikonur Cosmodrome in Kazakhstan. Their Soyuz TMA-13 craft will dock to the station on Thursday, Oct. 14. Garriot will fly to the station under an agreement with the Russian Federal Space Agency.

NASA Flight Engineer Greg Chamitoff, who has been on the station since June, will remain with Fincke and Lonchakov until the arrival of space shuttle Endeavour on its STS-126 mission, targeted to launch in November. NASA astronaut Sandy Magnus will arrive on that flight to replace Chamitoff, who will come home on Endeavour.

Expedition 17 and Soyuz Commander Sergei Volkov, Flight Engineer Oleg Kononenko and Garriott will return to Earth Thursday, Oct. 23, at about 11:46 p.m. in their Soyuz TMA-12 spacecraft now docked to the station. Volkov and Kononenko have been aboard the complex since April.

From Oct. 8-11, NASA TV will broadcast video b-roll of crew rotation activities, including training, pre-launch events in Baikonur, the Oct. 10 rollout of the Soyuz TMA-13 spacecraft to the launch pad, and the final pre-launch news conference Oct. 11 at noon.

A joint crew news conference with all six crewmembers is scheduled Monday, Oct. 20 with a multi-center question and answer capability for media at NASA centers. A time for the news conference will be set in the near future. A change of command ceremony for the two crews will be broadcast on NASA TV. The time for that event also will be set soon.

The events to be broadcast on NASA TV's public and media channels include (all times approximate, EDT):

Oct. 12,
Sunday 1:15 a.m. - Expedition 18 / spaceflight participant video b-roll of prelaunch activities
2:00 a.m. - Expedition 18 / spaceflight participant live launch coverage (launch scheduled at 3:01 a.m.)
6 a.m. - Expedition 18 / spaceflight participant postlaunch video file

October 14, Tuesday
4 a.m. - Expedition 18 / spaceflight participant Soyuz docking to station and post-docking news conference live coverage (docking scheduled for 4:38 a.m.)
5:30 a.m. - Expedition 17 / spaceflight participant hatch opening to station live coverage (hatch opening scheduled for 6 a.m.)
9 a.m. - Expedition 17 / spaceflight participant docking & hatch opening video file feed

October 23, Thursday
4:45 p.m. - 5:30 p.m. - Expedition 17 / spaceflight participant farewell & Soyuz hatch closure live coverage (hatch closure scheduled for 5:15 p.m.)
8 p.m. - 8:45 p.m. - Expedition 17 / spaceflight participant Soyuz undocking from the station live coverage (undocking scheduled for 8:20 p.m.)
10:30 p.m. - 1:00 a.m. - Expedition 17 / spaceflight participant Soyuz deorbit burn and landing in Kazakhstan live coverage (deorbit burn scheduled for 10:56 p.m.; landing scheduled for 11:46 p.m.)

October 24, Friday
3 a.m. - Expedition 17 / spaceflight participant Soyuz post-landing video file feed

For NASA TV streaming video, downlink and schedule information, visit:

http://www.nasa.gov/ntv

NASA'S MESSENGER SPACECRAFT RETURNS TO MERCURY

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A NASA spacecraft will conduct the second of three flybys of Mercury on Oct. 6 to photograph most of its remaining unseen surface and collect science data.

The MErcury Surface, Space ENvironment, GEochemistry, and Ranging, or MESSENGER, spacecraft will pass 125 miles above the planet's cratered surface, taking more than 1200 pictures. The flyby also will provide a critical gravity assist needed for the probe to become, in March 2011, the first spacecraft to orbit Mercury.

"The results from MESSENGER's first flyby of Mercury resolved debates that are more than 30 years old," said Sean C. Solomon, the mission's principal investigator from the Carnegie Institution of Washington. "This second encounter will uncover even more information about the
planet."

During the spacecraft's first flyby on Jan. 14, its cameras returned images of approximately 20 percent of Mercury's surface never before seen by space probes. Images showed that volcanic eruptions produced many of Mercury's plains, its magnetic field appears to be actively generated in a molten iron core, and the planet has contracted more than previously thought.

"This second flyby will show us a completely new area of Mercury's surface, opposite from the side of the planet we saw during the first," said Louise M. Prockter, instrument scientist for the
spacecraft's Mercury Dual Imaging System at the Johns Hopkins University Applied Physics Laboratory, or APL, in Laurel, Md.

The second flyby is expected to yield more surprises about the unique physical processes governing Mercury's atmosphere, as well as additional information about the charged particles located in and around Mercury's dynamic magnetic field. An altimeter on the spacecraft will measure the planet's topography, allowing scientists, for the first time, to correlate high-resolution topography measurements with high-resolution images.

A major goal of the orbital phase of the mission is to determine the composition of Mercury's surface. Instruments designed to make those measurements will get another peek at Mercury during this flyby.

"We will be able to do the first test of differences in the chemical compositions between the two hemispheres viewed in the two flybys," said Ralph McNutt, the mission's project scientist at APL. "Instruments also will provide information about portions of Mercury's surface in unprecedented detail."

The spacecraft is more than halfway through a 4.9-billion-mile journey to enter orbit around Mercury that includes more than 15 trips around the sun. In addition to flying by Mercury, the spacecraft flew past Earth in August 2005 and past Venus in October 2006 and June 2007. The project is the seventh in NASA's Discovery Program of low-cost, scientifically focused space missions. The spacecraft was designed and built by APL. The mission also is managed and operated by APL for NASA's Science Mission Directorate in Washington.

For more information about the mission, visit:

www.nasa.gov/messenger

Wednesday, October 1, 2008

NASA's X-48B Largest Remote Controlled Plane

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'SMOG BLOG' FOR CENTRAL AMERICA AND CARIBBEAN DEBUTS

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NASA and its partners today unveiled a new way to connect satellite air quality data with communities in Central America and the Caribbean. The MesoAmerican and Caribbean Smog Blog, a Web site interpreting local and regional air quality, was introduced at a news conference in Panama City in conjunction with a Global Earth Observation System of Systems (GEOSS) in the Americas symposium.

The Smog Blog provides timely information about air pollution and its sources in the region, helping the public, governments, and health officials monitor air quality and mitigate negative health impacts. The blog is written by faculty and students at the University of Panama and staff from the Water Center for the Humid Tropics of Latin America and the Caribbean (CATHALAC). It is the newest addition to SERVIR (Spanish for "to serve"), a regional environmental monitoring system that leverages the satellite resources of the United States
and other countries to put Earth observation data and other tools into action in Central America.

"CATHALAC has truly taken a leadership role in understanding how NASA atmospheric research information can benefit the citizens of Mesoamerica," said Teresa Fryberger, associate director of Applied Sciences in NASA's Earth Science Division in Washington and co-chair of the U.S. Group on Earth Observations. "With Smog Blog, Central American environmental and health officials will be able to better communicate warnings about hazardous air conditions so the public can take appropriate precautions."

Posts are made at least three times a week by trained personnel using information from satellites, air quality forecast models and soon-to-be-operational ground-based monitors. Satellites from NASA and the National Oceanic and Atmospheric Administration (NOAA) provide air quality information of use to the region. Data from NASA's Terra and Aqua satellites provide a variety of atmospheric measurements. The NASA-French Cloud-Aerosol Lidar and Infrared Pathfinder Satellite Observation (CALIPSO) satellite mission provides bloggers with data about regional airborne particles. NOAA's Geostationary Operational Environmental Satellites provides continuous monitoring of Earth necessary for timely, intensive data analysis. Another NOAA data asset providing material is a Hazard Mapping System that detects wildfires from space and tracks the smoke they produce.

"The Smog Blog and other activities reflect the work of many partners in supporting the realization of GEOSS in the Western Hemisphere," said Emilio Sempris, director of CATHALAC. "In our region, this exciting initiative is going to improve the quality of life in vital sectors, including public health, energy, weather, climate, and agriculture."

A U.S. Smog Blog has been operated for five years by a team at the University of Maryland Baltimore County. The site draws 35,000 visits a month, mainly state and local air quality forecasters. It is a daily resource for "big picture" analysis of nationwide air quality and insights into how national trends may affect communities locally. Through a NASA cooperative agreement, the U.S. Smog Blog team is working with the SERVIR collaboration to bring this communications tool to Central America.

"The Smog Blog has been a powerful communications tool here in the United States," said Erica Zell, co-developer of the Smog Blog and research scientist for Battelle Memorial Institute. "We hope through sharing real-time air quality information in this region we will make an impact in preventing future harm. Pollution and acid rain have damaged ancient Mayan ruins and air quality has immense public health impacts in this region."

Support for the new Smog Blog is provided by CATHALAC, the University of Panama, the University of Maryland Baltimore County, Panama's national environmental authority, the World Bank and Battelle Memorial Institute. NASA, the U.S. Environmental Protection Agency and the U.S. Agency for International Development fund this initiative.

The Group on Earth Observations is coordinating intergovernmental efforts to build GEOSS, a network designed to better understand, monitor and forecast changes in the global environment. Driven by the 75-government Group on Earth Observations, GEOSS in the Americas is working as a catalyst for regional initiatives by advancing the use of Earth observations, encouraging shared use of data, and leveraging regional assets.

The SERVIR system, developed by researchers at NASA's Marshall Space Flight Center, Huntsville, Ala., was introduced in 2005 in Panama at CATHALAC. SERVIR takes a global approach to environmental challenges by pooling Earth observation tools and data.

To read the MesoAmerican and Caribbean Smog Blog, visit:

http://www.nasa.gov/servir

NASA ASSIGNS CREW FOR SPACE SHUTTLE DISCOVERY'S STS-129 MISSION

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NASA has assigned the crew for space shuttle Discovery's STS-129 mission. The flight will deliver two experiment racks to the International Space Station.

Marine Col. Charlie Hobaugh will command the mission, which is targeted to launch in October 2009. Navy Capt. Barry Wilmore will serve as the pilot. Mission Specialists are Robert Satcher, Navy Capt. Michael Foreman, Marine Lt. Col. Randy Bresnik and Leland Melvin. Wilmore, Satcher and Bresnik will be making their first trips to space.

The mission will return Canadian Space Agency astronaut and station crew member Robert Thirsk to Earth. This is slated to be the final space shuttle crew rotation flight to or from the space station.

Discovery will deliver parts to the space station, including two spare gyroscopes. The mission will feature four spacewalks. Hobaugh flew as the pilot on STS-104 in 2001 and STS-118 in 2007. He was born in Bar Harbor, Maine. Hobaugh earned a bachelor's degree in aerospace engineering from the U.S. Naval Academy. He was selected as an astronaut in 1996.

Wilmore was born in Murfreesboro, Tenn., and grew up in Mt. Juliet. He has bachelor's and master's degrees in electrical engineering from Tennessee Technological University, and a master's degree in aviation systems from University of Tennessee. He was selected as an astronaut in 2000.

Foreman was born in Columbus, Ohio, but considers Wadsworth his hometown. He earned a bachelor's degree in aerospace engineering from the U.S. Naval Academy and a master's degree in aeronautical engineering from the U.S. Naval Postgraduate School. Foreman flew as a mission specialist on STS-123 in 2008 and performed three spacewalks. He was selected as an astronaut in 1998.

Satcher was selected as an astronaut in 2004. He earned a doctorate in chemical engineering from the Massachusetts Institute of Technology. He also is a graduate of Harvard Medical School. He was born in Hampton, Va.

Bresnik, also selected as an astronaut in 2004. He was born in Fort Knox, Ky., but considers Santa Monica, Calif., his hometown. Bresnik earned a bachelor's degree in mathematics from The Citadel and a master's degree in aviation systems from the University of Tennessee.

Melvin flew as a mission specialist on the STS-122 mission in 2008. He was born in Lynchburg, Va. Melvin earned a bachelor's degree in chemistry from the University of Richmond and a master's degree in materials science engineering from the University of Virginia. He was selected as an astronaut in 1998.

Thirsk will be concluding his long-duration stay on the station when STS-129 launches. He is scheduled to arrive at the complex in May 2009 aboard a Soyuz spacecraft and serve as a flight engineer during parts of Expeditions 20 and 21.

Video of the STS-129 crew members will air on NASA Television's Video File. For downlink and scheduling information and links to streaming video, visit:

http://www.nasa.gov/ntv

For complete astronaut biographical information, visit:

http://www.jsc.nasa.gov/Bios

For more information about NASA's Space Shuttle Program, visit:

http://www.nasa.gov/shuttle

NASA CHALLENGES STUDENTS TO DESIGN TOOLS FOR MOON ROVERS

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A new NASA contest challenges college-level students to design tools or instrument packages that could be used on the next generation of human-driven moon rovers. Student will have the
opportunity to engage in NASA's return to the moon by designing equipment that will help astronauts accomplish tasks on the lunar surface.

Moon explorers will need to navigate in darkness around the moon's south pole and collect lunar regolith, or moon dust, for on-site analysis and radiation detection. They will need to communicate with Earth, a lunar outpost and spacecraft orbiting the moon. Moon inhabitants also will conduct video surveys of the moon's surface for transmission back to Earth, and practice rescue and the safe return of astronauts to their outpost from sorties.

Moon dust has the potential to serve as an on-site resource for building materials, water and oxygen. However, because of its structure, the dust can damage space suits, rovers and other
equipment. The particles have sharp, jagged edges and contain microscopic shards of glass. Tool or instrument designs that can withstand the sharp-edged particles could help future astronauts and might earn students an internship at a NASA facility.

The contest is open to full-time students enrolled in accredited post-secondary institution such as universities, colleges, trade schools, community colleges and professional schools in the United
States or its territories. Individuals or teams may apply, and interdisciplinary teams from across departments and institutions are encouraged.

NASA plans to invite contest winners to the next set of lunar technology mission tests planned for the summer or fall of 2009. Paid internships also are planned as student awards. The contest continues NASA's tradition of investing in the nation's education programs and ties into the agency's goal of strengthening NASA and America's future workforce.

To participate in the contest, students must submit a notice of intent to NASA by Dec. 15, 2008, with final papers due May 15, 2009. Specific details about how participation in the NASA University Design Contest in Exploration Systems, including submission requirements, can be found on the Web at:

http://moontasks.larc.nasa.gov

The contest is sponsored by NASA's Exploration Systems Mission Directorate. For more information about the directorate, visit:

http://www.nasa.gov/exploration

CABANA TO SUCCEED PARSONS AS KENNEDY SPACE CENTER DIRECTOR

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NASA announced Tuesday that William Parsons, director of the John F. Kennedy Space Center in Florida, is leaving the agency in mid-October to pursue opportunities in the private sector. Parsons will be succeeded by former astronaut Robert Cabana, currently director of NASA's John C. Stennis Space Center in Mississippi.

Gene Goldman, Stennis' deputy director, will become the acting center director.

Parsons, who joined NASA in 1990, also has served as director of Stennis. His other NASA assignments have included launch site support manager, manager of the Space Station Hardware Integration Office, chief of operations of the Propulsion Test Directorate, Space Shuttle Program manager and deputy director of the Johnson Space Center in Houston.

"It has been my distinct privilege to have gotten to know and work with Bill Parsons since joining NASA as the administrator," NASA Administrator Michael Griffin said. "In managing both centers and programs for NASA, Bill has demonstrated unswerving dedication to the mission and unshakable loyalty to his teammates. I have learned to expect that from marines, and Bill's early training is always in evidence. While wishing him well in his new endeavors, I will miss him greatly."

His successor, Cabana, is a native of Minnesota. He graduated from the U.S. Naval Academy in 1971 with a bachelor of science degree in mathematics and was commissioned as an officer in the U.S. Marine Corps. Cabana is a distinguished graduate of the U.S. Naval Test Pilot School and has logged over 7,000 hours in 36 different aircraft.

After his selection as an astronaut candidate in June of 1985, Cabana completed his training in 1986. He has flown four space shuttle missions, serving as the pilot of Discovery missions STS-41 in October 1990 and STS-53 in December 1992, commander of Columbia on STS-65 in July 1994, and commander of Endeavour on STS-88 - the first International Space Station assembly mission - in December 1998.

Before being named the director at Stennis in October 2007, Cabana served as deputy director of Johnson. In addition, Cabana has worked as chief of NASA's Astronaut Office; manager of international operations of the International Space Station Program; director of NASA's Human Space Flight Program in Russia; deputy director of the International Space Station Program; and director of Flight Crew Operations.

"Bob Cabana is long-time colleague, and another whose marine training has redounded to NASA's benefit," Griffin said. "Bob has seen it all and done it all in human spaceflight, and done it with an open, collaborative style. There is just no better teammate. He will be a terrific successor to Bill Parsons as Director of KSC."

For more information about NASA and agency programs, visit:

http://www.nasa.gov

NASA TO PREVIEW SECOND MERCURY FLYBY

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NASA will host a media teleconference at 1 p.m. EDT on Wednesday, Oct. 1, to preview the Oct. 6 flyby of Mercury by the MErcury Surface, Space ENvironment, GEochemistry, and Ranging, or MESSENGER, spacecraft.

This second of three planned flybys will photograph most of the planet's remaining unseen surface. The spacecraft will pass 125 miles above Mercury's cratered surface, taking more than 1,200 pictures and collecting a variety of data. The flyby also will provide a critical gravity assist needed for the probe to become, in March 2011, the first spacecraft to orbit Mercury.

Briefing participants are:
- Marilyn M. Lindstrom, program scientist, NASA Headquarters in Washington
- Daniel J. O'Shaughnessy, lead for guidance and control subsystem, Johns Hopkins University Applied Physics Laboratory in Laurel, Md.
- Scott L. Murchie, co-investigator, Johns Hopkins University Applied Physics Laboratory
- Sean C. Solomon, principal investigator, Carnegie Institution of Washington

To participate in the teleconference, reporters in the United States should call 1-888-398-6118 and use the pass code Mercury. International reporters should call 1-312-470-7417.

Audio of the teleconference will be streamed live at:

http://www.nasa.gov/newsaudio

Related images for the briefing will be available at:

http://messenger.jhuapl.edu/news_room/index.html

NASA TO DISCUSS HUBBLE ANOMALY AND SERVICING MISSION LAUNCH DELAY

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NASA will host a media teleconference at 6 p.m. EDT today to discuss a significant Hubble Space Telescope anomaly that occurred this weekend affecting the storage and transmittal of science data to Earth. Fixing the problem will delay next month's space shuttle Atlantis' Hubble servicing mission.

The briefing participants are:
- Ed Weiler, associate administrator of the Science Mission Directorate at NASA Headquarters in Washington
- John Shannon, Shuttle Program manager at NASA's Johnson Space Center in Houston
- Preston Burch, Hubble manager at NASA's Goddard Space Flight Center in Greenbelt, Md.

To participate in the teleconference, reporters in the U.S. should call 1-800-369-6087 and use the pass code Hubble. International reporters should call 1-773-756-0843.

As a result of the launch delay, NASA has postponed the planned Oct. 3 Flight Readiness Review and subsequent news conference. The review will occur at a later date.

The malfunctioning system is Hubble's Control Unit/Science Data Formatter - Side A. Shortly after 8 p.m. on Saturday, Sept. 27, the telescope's spacecraft computer issued commands to safe the payload computer and science instruments when errors were detected within the Science Data Formatter. An attempt to reset the formatter and obtain a dump of the payload computer's memory was unsuccessful.

Additional testing demonstrates Side A no longer supports the transfer of science data to the ground. A transition to the redundant Side B should restore full functionality to the science instruments and operations.

The transition to Side B operations is complex. It requires that five other modules used in managing data also be switched to their B-side systems. The B-sides of these modules last were activated during ground tests in the late 1980's and/or early 1990, prior to launch. The Hubble operations team has begun work on the Side B transition and believes it will be ready to reconfigure Hubble later this week. The transition will happen after the team completes a readiness review.

Hubble could return to science operations in the immediate future if the reconfiguration is successful. Even so, the agency is investigating the possibility of flying a back-up replacement system, which could be installed during the servicing mission.

Audio of the teleconference will be streamed live at:

http://www.nasa.gov/newsaudio

Related images for the briefing will be available at:

http://www.nasa.gov/hubble

For more information about the Space Shuttle Program, visit:

http://www.nasa.gov/shuttle

NASA MARS LANDER SEES FALLING SNOW, SOIL DATA SUGGEST LIQUID PAST

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NASA's Phoenix Mars Lander has detected snow falling from Martian clouds. Spacecraft soil tests experiments also have provided evidence of past interaction between minerals and liquid water, processes that occur on Earth.

A laser instrument designed to gather knowledge of how the atmosphere and surface interact on Mars, detected snow from clouds about 2.5 miles above the spacecraft's landing site. Data show the snow vaporizing before reaching the ground.

"Nothing like this view has ever been seen on Mars," said Jim Whiteway, of York University, Toronto, lead scientist for the Canadian-supplied Meteorological Station on Phoenix. "We'll be looking for signs that the snow may even reach the ground." Phoenix experiments also yielded clues pointing to calcium carbonate, the main composition of chalk, and particles that could be clay. Most carbonates and clays on Earth form only in the presence of liquid water.

"We are still collecting data and have lots of analysis ahead, but we are making good progress on the big questions we set out for ourselves," said Phoenix Principal Investigator Peter Smith of the University of Arizona, Tucson.

Since landing on May 25, Phoenix already has confirmed that a hard subsurface layer at its far-northern site contains water-ice. Determining whether that ice ever thaws would help answer whether the environment there has been favorable for life, a key aim of the mission.

The evidence for calcium carbonate in soil samples from trenches dug by the Phoenix robotic arm comes from two laboratory instruments called the Thermal and Evolved Gas Analyzer, or TEGA, and the wet chemistry laboratory of the Microscopy, Electrochemistry and Conductivity Analyzer, or MECA.

"We have found carbonate," said William Boynton of the University of Arizona, lead scientist for the TEGA. "This points toward episodes of interaction with water in the past."

The TEGA evidence for calcium carbonate came from a high-temperature release of carbon dioxide from soil samples. The temperature of the release matches a temperature known to decompose calcium carbonate and release carbon dioxide gas, which was identified by the
instrument's mass spectrometer.

The MECA evidence came from a buffering effect characteristic of calcium carbonate assessed in wet chemistry analysis of the soil. The measured concentration of calcium was exactly what would be expected for a solution buffered by calcium carbonate.

Both TEGA, and the microscopy part of MECA have turned up hints of a clay-like substance. "We are seeing smooth-surfaced, platy particles with the atomic-force microscope, not inconsistent with the appearance of clay particles," said Michael Hecht, MECA lead scientist at NASA's Jet Propulsion Laboratory in Pasadena, Calif.

The Phoenix mission, originally planned for three months on Mars, now is in its fifth month. However, it faces a decline in solar energy that is expected to curtail and then end the lander's activities before the end of the year. Before power ceases, the Phoenix team will attempt to activate a microphone on the lander to possibly capture sounds on Mars.

"For nearly three months after landing, the sun never went below the horizon at our landing site." said Barry Goldstein, JPL Phoenix project manager. "Now it is gone for more than four hours each night, and the output from our solar panels is dropping each week. Before the end of October, there won't be enough energy to keep using the robotic arm."

The Phoenix mission is led by Smith at the University of Arizona. Project management is the responsibility of JPL with development partnership by Lockheed Martin in Denver. International contributions come from the Canadian Space Agency; the University of Neuchatel, Switzerland; the universities of Copenhagen and Aarhus, Denmark; Max Planck Institute, Germany; and the Finnish Meteorological Institute.

For more about Phoenix, visit:

http://www.nasa.gov/phoenix

NASA UPDATES AVIATION SAFETY DATA WEB SITE

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NASA will update its National Aviation Operations Monitoring Service, or NAOMS, Web site Tuesday to add more information from pilot survey responses.

The data files are essentially the same files posted to the Web site in late 2007 and early 2008. However, the files are packaged differently and contain fewer redactions than the original postings. Therefore, they provide more information from the NAOMS aviation safety surveys. The surveys were conducted from 2001 through 2004.

This release, in Microsoft Excel format, fulfills NASA's commitment to provide as much information as possible without compromising the anonymity and confidentiality promised to survey participants or the commercial confidentiality of the airlines and organizations involved. It also ensures that aviation safety researchers and the public have access to additional information that may be used to develop future models for safety systems to monitor the National Airspace System. NASA has no plans to post any additional NAOMS information after Sept. 30.

Additional information and the survey responses from the NAOMS project are available at:

http://www.nasa.gov/news/reports/NAOMS.html