Monday, January 30, 2012

Goddard Director Leaving for Ball Aerospace

Robert Strain will leave as director of  NASA’s Goddard Space Flight Center in Greenbelt, Md., to turn out to be chief operating officer of Ball Aerospace & Technologies Corp. Strain’s last day at Goddard will be March 4, NASA spokesman Mark Hess said. damage, who has detained the top post at Goddard for more than three years, announced his acceptance Jan. 30.

 NASA has not yet selected a substitute for Strain, Hess said.

 At Boulder, Colo.-based Ball, Strain will be accountable for day-to-day operation of the company’s Civil and Operational Space, Tactical Solutions, National Defense, and system Engineering Solutions units. He will report in a straight line to David Taylor, president and chief executive of Ball Aerospace.

 Before taking the wheel of Goddard in 2008, Strain was the head of the Space Department at the Johns Hopkins University Applied Physics Lab in Laurel, Md. Prior to joining Hopkins in 2004, Strain exhausted 10 years at Dulles, Va.-based satellite and rocket maker Orbital Sciences Corp., where he was decision-making vice president of space systems.

Ball is working on more than a few big projects being managed by Goddard. Among these is the Joint Polar Satellite System (JPSS), the next-generation of U.S. civil polar-orbiting weather satellites.

Ball is the prime contractor for the JPSS-1 spacecraft, which NASA is procuring for the National Oceanic and Atmospheric management. Ball has a $248 million fixed-price contract to build JPSS-1, and a separate $82.4 million contract to construct a clone of the Ozone map and Profile Suite instrument.

The 2012 budget for JPSS is $924 million.

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Wednesday, January 25, 2012

NASA'S J-2X locomotive kick Off 2012 With Power pack test


A innovative sequence of tests on the locomotive that will help take humans to bottomless space will begin next week at NASA's Stennis Space Center in southern Mississippi. The test on the J-2X engine bring NASA one pace closer to the first human-rated liquid oxygen and liquid hydrogen rocket train to be urbanized in 40 years.

Tests will center on the power pack for the J-2X. This extremely well-organized and versatile higher rocket engine is being intended to power the upper stage of NASA's Space Launch System, a new heavy-lift launch vehicle capable of missions beyond low-Earth orbit. The power pack comprise components on the top portion of the engine, including the gas generator, oxygen and fuel turbo pumps, and related ducts and valves that bring the propellants jointly to make burning and make thrust.



"The J-2X upper stage engine is vital to achieve the full open ability of the heavy-lift Space Launch System," said William Gerstenmaier, NASA's associate manager for the Human examination and Operations Mission Directorate. "The testing today will help ensure that a key force element is ready to support exploration across the solar system."

About a dozen power pack tests of unreliable length are slated now from side to side summer at Stennis' A-1 Test Stand. By unraveling the engine mechanism the thrust chamber assembly, counting the main combustion chamber, main injector and needle engineers can more with no trouble push the various components to function over a wide variety of conditions to ensure the parts' integrity, show the safety margin and better appreciate how the turbopumps operate.

"By anecdotal the pressures, temperatures and flow rates, the power pack test series will evaluate the full range of operating circumstances of the engine components," said Tom Byrd, J-2X engine lead in the SLS Liquid Engines Office at NASA's Marshall Space Flight Center in Huntsville, Ala. "This will enable us to verify the components' design and validate our analytical models against performance data, as well as ensure structural stability and verify the combustion stability of the gas generator."

This is the second power pack test series for J-2X. The powerpack 1A was tested in 2008 with J-2S engine turbo machinery originally developed for the Apollo Program. Engineers tested these heritage components to obtain data to help them modify the design of the turbomachinery to meet the higher performance requirements of the J-2X engine.

"The test engineers on the A-1 test team are excited and ready to begin another phase of testing which will provide critical data in support of the Space Launch System," said Gary Benton, J-2X engine testing project manager at Stennis.J-2X is being developed for Marshall by Pratt & Whitney Rocketdyne of Canoga Park, Calif.

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Thursday, January 19, 2012

Innovative journey 30 team Members open to Station


The Soyuz TMA-03M spacecraft transport three new Expedition 30 journey engineers’ launch from the Baikonur Cosmodrome in Kazakhstan. 

Expedition 30 Flight Engineers Don Pettit, Oleg Kononenko and Andre Kuipers launched at 8:16 a.m. EST on Wednesday, Dec. 21 (7:16 p.m. local time) from the Baikonur Cosmodrome in Kazakhstan. The three new global Space Station crew members launch in their Soyuz TMA-03M spacecraft start a two-day trip to the orbiting settlement.



They are put to dock to the station's Rassvet mini-research module about 10:22 a.m. on Friday, Dec. 23. Expedition 30 Commander Dan Burbank and Flight Engineers Anton Shkaplerov and Anatoly Ivanishin will welcome their original crewmates on board the station a little while later at what time they open the hatches about 1 p.m.

Pettit, Kononenko and Kuipers are planned to live and work aboard the orbit laboratory until May. They will become member of the Expedition 31 crew under the authority of Kononenko when Burbank, Shkaplerov and Ivanishin undock in their Soyuz TMA-22 spaceship in March.

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Monday, January 9, 2012

NASA To Host Media Teleconference On Probes' Moon Orbit Insertion

NASA will hold a media teleconference at 11 a.m. PST on Wednesday, Dec. 28, to preview twin spacecraft being placed in orbit around the moon on New Year's Eve and New Year's Day.
 
NASA's twin lunar Gravity Recovery and Interior Laboratory (GRAIL) probes were launched from Cape Canaveral Air Force Station on Sept. 10, 2011. GRAIL-A is scheduled to arrive in lunar orbit beginning at 1:21 p.m. PST on Saturday, Dec. 31, and GRAIL-B on Sunday, Jan. 1, beginning at 2:05 p.m. PST. After confirmation they are in orbit and operating nominally, the two solar-powered spacecraft will fly in tandem orbits to answer longstanding questions about the moon and give scientists a better understanding of how Earth and other rocky planets in the solar system formed.

Participants are:
- Maria Zuber, principal investigator, Massachusetts Institute of Technology, Cambridge
- David Lehman, project manager, NASA's Jet Propulsion Laboratory (JPL), Pasadena, Calif.

To participate, reporters must contact the JPL Media Relations Office at 818-354-5011 by 10:30 a.m. PST on Dec. 28 for the call-in number and passcode.

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Thursday, December 29, 2011

For NASA Webb Telescope Engineers, COCOA this Winter Means Precision Testing


Engineers working on NASA's James Webb Space Telescope are bringing out the COCOA this winter, but it's not a warm beverage. Rather, it’s a way to check that the mirrors are perfectly shaped and will work in the frosty environment of space.

COCOA stands for "Center of Curvature Optical Assembly." Curvature is important in a mirror, just as the convex side mirrors on your car are shaped to give you a wide field of vision behind and beside your car. COCOA tests on the Webb telescope's concave mirror segments are critical because they will tell engineers if all of the mirrors work together to make a telescope that has the correct shape.

"We need to check that the mirrors are of the right prescription, just like eyeglasses, so the images from our telescope are not blurry," said Lee Feinberg, Webb telescope Optical Telescope Manager at NASA's Goddard Space Flight Center, Greenbelt, Md.

The Webb telescope has 21 mirrors, with 18 of these being six-sided segments working together as one large 21.3-foot (6.5-meter) mirror. Every individual mirror has been previously tested to confirm it has the correct shape, but testing them all together as an assembled telescope with COCOA ensures that the telescope as a whole works correctly.

The COCOA is part of NASA's vacuum cryo equipment that will be used at NASA's Johnson Space Center in Houston to test the performance of the mirrors at operating temperatures. That's important because COCOA tells engineers if the full 18 segment mirror is functioning correctly in "operating temperatures" of 40 degrees Kelvin (-233 Celsius, or -387.4 Fahrenheit) prior to final assembly of the observatory before launch.

COCOA was built by ITT Exelis of Rochester, N.Y., with subcontractor Micro Instruments in Rochester, N.Y. ITT Exelis and Micro Instruments engineers are assembling the large Center of Curvature test system.

The Webb telescope is the world’s next-generation space observatory and successor to the Hubble Space Telescope. The most powerful space telescope ever built, the Webb telescope will provide images of the first galaxies ever formed, and explore planets around distant stars. It is a joint project of NASA, the European Space Agency and the Canadian Space Agency.

For more information visit http://www.nasa.gov/topics/technology/features/webb-cocoa.html

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No team of reindeer, but radio signals flying clear across the solar system from NASA's Cassini spacecraft have delivered a holiday package of glorious images. The pictures, from Cassini's imaging team, show Saturn's largest, most colorful ornament, Titan, and other icy baubles in orbit around this splendid planet. The release includes images of satellite conjunctions in which one moon passes in front of or behind another. Cassini scientists regularly make these observations to study the ever-changing orbits of the planet's moons. But even in these routine images, the Saturnian system shines. A few of Saturn's stark, airless, icy moons appear to dangle next to the orange orb of Titan, the only moon in the solar system with a substantial atmosphere. Titan's atmosphere is of great interest because of its similarities to the atmosphere believed to exist long ago on the early Earth.

The images are online at: http://www.nasa.gov/cassini, http://saturn.jpl.nasa.gov and http://ciclops.org .

While it may be wintry in Earth's northern hemisphere, it is currently northern spring in the Saturnian system and it will remain so for several Earth years. Current plans to extend the Cassini mission through 2017 will supply a continued bounty of scientifically rewarding and majestic views of Saturn and its moons and rings, as spectators are treated to the passage of northern spring and the arrival of summer in May 2017.

"As another year traveling this magnificent sector of our solar system draws to a close, all of us on Cassini wish all of you a very happy and peaceful holiday season, " said Carolyn Porco, Cassini imaging team lead at the Space Science Institute, Boulder, Colo.

More information about Cassini mission is online at http://www.nasa.gov/cassini and http://saturn.jpl.nasa.gov .

The Cassini-Huygens mission is a cooperative project of NASA, the European Space Agency and the Italian Space Agency. The Jet Propulsion Laboratory, a division of the California Institute of Technology in Pasadena, manages the Cassini-Huygens mission for NASA's Science Mission Directorate, Washington. The Cassini orbiter and its two onboard cameras were designed, developed and assembled at JPL. The imaging team is based at the Space Science Institute in Boulder, Colo.

For more information visit http://www.nasa.gov/mission_pages/cassini/whycassini/cassini20111222.html

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Wednesday, December 28, 2011

Party dresses to make you brighter in parties

Every woman likes to be present at festivities where she can completely explain her loveliness to others. And in parties ladies can be dressed in the majority good-looking dresses which are not good to be dressed in on other events. But several women experience hard to get appropriate party dresses to purchase, because such beautiful wears particularly necessitate women to be suspicious when wearing them for fear that the conflicting effect may be arrived.


Some dresses for women may be pleasant but may be not appropriate for a woman’s skin tone. Some others may be good-looking to wear but may be out of the fashion. Now evening gowns are very common and several women adore them. They give enormous materials of ranges for women to prefer anything they like. Here are some instructions about how to prefer a dress for party.


When selecting party dresses, women must fully think their own skin tone. Women must select the dresses which can make their skin tones appear brighter not darker. Pick the color of the dresses which are darker than women’s skin tones, which will accomplish a fine result and make the skin appear brighter.

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Monday, December 19, 2011

NASA Presents Software of the Year Award


Autonomous Exploration for Gathering Increased Science (AEGIS), novel autonomy software that has been operating on the Mars Exploration Rover Opportunity since December 2009, is NASA's 2011 Software of the Year recipient.

The AEGIS software, developed by NASA's Jet Propulsion Laboratory in Pasadena, Calif., autonomously directs Opportunity's cameras to interesting science targets. AEGIS was developed to enhance the usual targeting process involving scientists on the ground, which can require the rover to stay in the same place for a day or more while data are transmitted to Earth and targets are selected from preliminary images.

With AEGIS, the rover software analyzes images onboard, detects and prioritizes science targets in those images, and autonomously obtains novel, high-quality science data of the selected targets, within 45 minutes, with no communication back to Earth required. AEGIS chooses science targets based on pre-specified criteria set by the mission science team.

AEGIS can be used as soon as the rover reaches a new area and is especially beneficial during and after long drives. It enables high-quality data to be collected more often and in a significantly reduced time frame. The incorporation of AEGIS in the Mars Science Laboratory flight software is in progress, and it is also being considered for future NASA missions.

The AEGIS capability was developed as part of a larger autonomous science framework called OASIS (short for Onboard Autonomous Science Investigation System), which is designed to allow a rover to identify and react to serendipitous science opportunities. The AEGIS system takes advantage of the OASIS ability to detect and characterize interesting terrain features in rover images. This technology was created with assistance from NASA's Mars Exploration Rover Project and with funding from the New Millennium Program, the Mars Technology Program, the JPL Research and Technology Development Program, the JPL Interplanetary Network Development Program and the Intelligent Systems Program.

For more information visit http://www.nasa.gov/topics/technology/features/tech20111208.html

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NASA recently began a pilot using Google Apps, a suite of applications that brings services such as Gmail, Google Docs and other products together to help workers in today's business environment. NASA IT Labs, a part of the Office of the Chief Information Officer (CIO), sponsored the pilot to meet the growing demand from workers to access resources on any device.

About 600 IT staff from 11 NASA centers and facilities are participating in the pilot, which offers cost savings by managing user's identities, credentials and access via cloud computing using on-demand software. Cloud computing refers to resources and applications that are available on the Internet from nearly any Internet-connected device. No sensitive NASA data is being placed in the cloud.

Under the pilot, NASA users can connect to Google Apps for Government using an existing NASA work ID, which also functions as a smart card in the card reader of compatible computers. The card was created as a common identification standard for federal employees and contractors to increase security and reduce opportunities for identify fraud.

The pilot complies with the Federal Information Security Management Act of 2002, which is designed to protect the nation's critical information infrastructure. Because no new ID or credential is needed, NASA complies with the law and workers can access secure materials from any smart device.

NASA also accepts and electronically verifies personal identity verification (PIV) credentials issued by other federal agencies through a credential registration process. With this capability, any authorized federal PIV card, which includes the DoD Common Access Card, may be used today for authentication to the Google Apps for Government NASA site.

For more information visit http://www.nasa.gov/topics/technology/features/google_apps.html

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Friday, December 16, 2011

Curiosity and the Solar Storm


On Nov. 26, 2011, Curiosity blasted off from Cape Canaveral atop an Atlas 5 rocket. Riding a plume of fire through the blue Florida sky, the car-sized rover began a nine month journey to search for signs of life Mars.

Meanwhile, 93 million miles away, a second lesser-noticed Mars launch was underway. Around the time that Curiosity's rocket was breaking the bonds of Earth, a filament of magnetism erupted from the sun, hurling a billion-ton cloud of plasma (a coronal mass ejection or CME) toward the Red Planet.

There was no danger of a collision -- Mars rover vs. solar storm. Racing forward at 2 million mph, the plasma cloud outpaced Curiosity's rocket by a wide margin.

Next time could be different, however. With solar activity on the upswing (Solar Max is expected in 2012-2013) it's only a matter of time before a CME engulfs the Mars-bound rover.

That suits some researchers just fine. As Don Hassler of the Southwest Research Institute (SWRI) in Boulder, Colorado, explains, "We look forward to such encounters because Curiosity is equipped to study solar storms."

Hassler is the principal investigator for Curiosity's Radiation Assessment Detector --"RAD" for short. The instrument, developed at SWRI and Christian Albrechts University in Kiel, Germany, counts cosmic rays, neutrons, protons and other particles over a wide range of energies. Tucked into the left front corner of the rover, RAD is about the size of a coffee can and weighs only three pounds, but has capabilities of Earth-bound instruments nearly 10 times its size.

Encounters with CMEs pose little danger to Curiosity. By the time a CME reaches the Earth-Mars expanse, it is spread so thin that it cannot truly buffet the spacecraft. Nevertheless, RAD can sense what happens as the CME passes by.

"RAD will be able to detect energetic particles accelerated by shock waves in some CMEs," says Arik Posner of NASA's Heliophysics Division in Washington DC. "This could give us new insights into the inner physics of these giant clouds."

There's more to this, however, than pure heliophysics. Future human astronauts will directly benefit from RAD's measurements during the cruise phase.

"Curiosity is nestled inside its spacecraft, just like a real astronaut would be," notes Frank Cucinotta, Chief Scientist for NASA's Space Radiation Program at the Johnson Space Center. "RAD will give us an idea of the kind of radiation a human can expect to absorb during a similar trip to Mars."

Of particular interest are secondary particles. Galactic cosmic rays and solar energetic particles hit the walls of the spacecraft, creating an inward spray of even more biologically dangerous neutrons and atomic nuclei. RAD will analyze the spray from the only realistic place to make such measurements—inside the spaceship.

In this way, "RAD is a bridge between the science and exploration sides of NASA," says Hassler. "The two objectives are equally exciting."

RAD was activated on Dec. 6, 2011. Of the rover's ten science instruments, it will be the only one active during the cruise to Mars. Daily transmissions to Earth will let Hassler and colleagues monitor what's going on "out there."

"We're very excited about the possibility of more solar storms," he adds.

As important as RAD’s cruise phase measurements are, the instrument’s primary mission doesn’t really begin until it lands on the Red Planet.

Mars has a very thin atmosphere and no global magnetic field to protect it from space radiation. Energetic particles reaching ground level might be dangerous to life--both future human astronauts and extant Martian microbes. RAD will find out how much shielding human explorers need on the surface of Mars. RAD will also help researchers estimate how far below ground a microbe might have to go to reach a radiation "safe zone."

For more information visit http://www.nasa.gov/mission_pages/sunearth/news/curiosity-cme.html

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Wednesday, December 14, 2011

NASA Mars-Bound Rover Begins Research in Space


NASA's car-sized Curiosity rover has begun monitoring space radiation during its 8-month trip from Earth to Mars. The research will aid in planning for future human missions to the Red Planet.

Curiosity launched on Nov. 26 from Cape Canaveral, Fla., aboard the Mars Science Laboratory. The rover carries an instrument called the Radiation Assessment Detector (RAD) that monitors high-energy atomic and subatomic particles from the sun, distant supernovas and other sources.

These particles constitute radiation that could be harmful to any microbes or astronauts in space or on Mars. The rover also will monitor radiation on the surface of Mars after its August 2012 landing.

"RAD is serving as a proxy for an astronaut inside a spacecraft on the way to Mars," said Don Hassler, RAD's principal investigator from the Southwest Research Institute in Boulder, Colo. "The instrument is deep inside the spacecraft, the way an astronaut would be. Understanding the effects of the spacecraft on the radiation field will be valuable in designing craft for astronauts to travel to Mars."

Previous monitoring of energetic-particle radiation in space has used instruments at or near the surface of various spacecraft. The RAD instrument is on the rover inside the spacecraft and shielded by other components of Mars Science Laboratory, including the aeroshell that will protect the rover during descent through the upper atmosphere of Mars.

Spacecraft structures, while providing shielding, also can contribute to secondary particles generated when high-energy particles strike the spacecraft. In some circumstances, secondary particles could be more hazardous than primary ones.

These first measurements mark the start of the science return from a mission that will use 10 instruments on Curiosity to assess whether Mars' Gale Crater could be or has been favorable for microbial life.

"While Curiosity will not look for signs of life on Mars, what it might find could be a game-changer about the origin and evolution of life on Earth and elsewhere in the universe," said Doug McCuistion, director of the Mars Exploration Program at NASA Headquarters in Washington. "One thing is certain: The rover's discoveries will provide critical data that will impact human and robotic planning and research for decades."

As of 9 a.m. PST (noon EST) on Dec. 14, the spacecraft will have traveled 31.9 million miles (51.3 million kilometers) of its 352-million-mile (567-million-kilometer) flight to Mars. The first trajectory correction maneuver during the trip is being planned for mid-January.

Southwest Research Institute, together with Christian Albrechts University in Kiel, Germany, built RAD with funding from the Human Exploration and Operations Mission Directorate, NASA Headquarters, Washington, and Germany's national aerospace research center, Deutsches Zentrum für Luft- und Raumfahrt.

For more information visit http://www.nasa.gov/mission_pages/msl/news/msl20111213.html

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