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RELEASE
:
12-289
NASA Launches Radiation Belt Storm Probes Mission
WASHINGTON ? NASA?s Radiation Belt Storm Probes (RBSP), the first twin-spacecraft mission designed to explore our planet?s radiation belts, launched into the predawn skies at 4:05a.m. EDT Thursday from Cape Canaveral Air Force Station, Fla.
?Scientists will learn in unprecedented detail how the radiation belts are populated with charged particles, what causes them to change and how these processes affect the upper reaches of the atmosphere around Earth,? said John Grunsfeld, associate administrator for NASA?s Science Mission Directorate at Headquarters in Washington. ?The information collected from these probes will benefit the public by allowing us to better protect our satellites and understand how space weather affects communications and technology on Earth.?
The two satellites, each weighing just less than 1,500 pounds, comprise the first dual-spacecraft mission specifically created to investigate this hazardous regions of near-Earth space, known as the radiation belts. These two belts, named for their discoverer, James Van Allen, encircle the planet and are filled with highly charged particles. The belts are affected by solar storms and coronal mass ejections and sometimes swell dramatically. When this occurs, they can pose dangers to communications, GPS satellites and human spaceflight.
?We have never before sent such comprehensive and high-quality instruments to study high radiation regions of space,? said Barry Mauk, RBSP project scientist at the Johns Hopkins University?s Applied Physics Laboratory (APL) in Laurel, Md. ?RBSP was crafted to help us learn more about, and ultimately predict, the response of the radiation belts to solar inputs.?
The hardy RBSP satellites will spend the next 2 years looping through every part of both Van Allen belts. By having two spacecraft in different regions of the belts at the same time, scientists finally will be able to gather data from within the belts themselves, learning how they change over space and time. Designers fortified RBSP with special protective plating and rugged electronics to operate and survive within this punishing region of space that other spacecraft avoid. In addition, a space weather broadcast will transmit selected data from those instruments around the clock, giving researchers a check on current conditions near Earth.
?The excitement of seeing the spacecraft in orbit and beginning to perform science measurements is like no other thrill,? said Richard Fitzgerald, RBSP project manager at APL. ?The entire RBSP team, from across every organization, worked together to produce an amazing pair of spacecraft.?
RBSP was lifted into orbit aboard an Atlas V 401 rocket from Space Launch Complex-41, as the rocket?s plume lit the dark skies over the Florida coast. The first RBSP spacecraft is scheduled to separate from the Atlas rocket?s Centaur booster 1 hour, 18 minutes, 52 seconds after launch. The second RBSP spacecraft is set to follow 12 minutes, 14 seconds later. Mission controllers using APL?s 60-foot satellite dish will establish radio contact with each probe immediately after separation.
During the next 60 days, operators will power up all flight systems and science instruments and deploy long antenna booms, two of which are more than 54 yards long. Data about the particles that swirl through the belts, and the fields and waves that transport them, will be gathered by five instrument suites designed and operated by teams at the New Jersey Institute of Technology in Newark; the University of Iowa in Iowa City; University of Minnesota in Minneapolis; and the University of New Hampshire in Durham; and the National Reconnaissance Office in Chantilly, Va. The data will be analyzed by scientists across the nation almost immediately.
RBSP is the second mission in NASA?s Living With a Star (LWS) program to explore aspects of the connected sun-Earth system that directly affect life and society. LWS is managed by the agency?s Goddard Space Flight Center in Greenbelt, Md. APL built the RBSP spacecraft and will manage the mission for NASA. NASA?s Launch Services Program at Kennedy is responsible for launch management. United Launch Alliance provided the Atlas V launch service.
For more information about NASA?s RBSP mission, visit:
http://www.nasa.gov/rbsp
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Calcutta News.Net Saturday 1st September, 2012
Shares of social networking giant Facebook hit a new low after another investment firm cut the social media company's target price, and the firm's co-founder sold his shares.
BMO Capital Markets cut Facebook's price target to 15 dollars, down from 25 dollars, saying that the "investor views of the company are lower."
Facebook's stock dropped 5.39 percent to 18.06 dollars on Friday, less than half of its offer price of 38 dollars during its May IPO, ABC News reports.
According to the latest filing made by Facebook co-founder and Mark Zuckerberg's former Harvard roommate Dustin Moskovitz, he has sold over 1.35 million shares for proceeds of 26.2 million dollars, at a stock price of 18.79 to 20.08 dollars, which have affected the social site's share price in the stock market.
Earlier, Moskovitz had sold over 450,000 Facebook shares, earning himself a total of 8.7 million dollars.
Both Facebook and Moskovitz remained unavailable for comment. (ANI)
Source: http://www.calcuttanews.net/index.php?sid/208796139/scat/63e88d54af0cf473
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ScienceDaily (Aug. 31, 2012) ? Prostate cancer in African-American men is associated with specific changes in the IL-16 gene, according to researchers at the University of Illinois at Chicago College of Medicine.
The study, published online in the journal Cancer Epidemiology, Biomarkers & Prevention, establishes the association of IL-16 with prostate cancer in men of both African and European descent.
"This provides us with a new potential biomarker for prostate cancer," says principal investigator Rick Kittles, UIC associate professor of medicine in hematology/oncology.
Previously identified changes in the gene for IL-16, an immune system protein, were associated with prostate cancer in men of European descent. But the same changes in the gene's coded sequence -- called "polymorphisms" -- did not confer the same risk in African Americans.
Doubt was cast on IL-16's role in prostate cancer when researchers were unable to confirm that the IL-16 polymorphisms identified in whites were also important risk factors in African Americans, Kittles said.
Kittles and his colleagues used a technique called imputation -- a type of statistical extrapolation -- that allowed them to see new patterns of association and identify new places in the gene to look for polymorphisms. They found changes elsewhere in the IL-16 gene that were associated with prostate cancer and that were unique to African Americans.
Polymorphisms result from DNA mutations and emerge in the ancestral history of different populations. People of African descent are much more genetically diverse than whites, Kittles said, making the search for polymorphisms associated with disease more difficult.
Although the effect of the particular changes to the gene appear to be different in men of African versus European descent, it is likely that several of the polymorphisms in the gene alter the function of the IL-16 protein.
"This confirms the importance of IL-16 in prostate cancer and leads us in a new direction," Kittles said. "Very little research has been done on IL-16, so not much is known about it."
"We now need to explore the functional role of IL-16 to understand the role it is playing in prostate cancer," he said.
Ken Batai, graduate student in the UIC Institute for Human Genetics, was first author of the study. Other authors were Ebony Shah, Jennifer Newsome, and Maria Ruden of the UIC Institute for Human Genetics; Adam Murphy of Northwestern University; and Chiledum Ahaghotu of Howard University Hospital in Washington, D.C.
The study was supported by grants from the Department of Defense (DAMD W81XWH-07-1-0203) and National Cancer Institute/National Institutes of Health (RC2-CA148085-01 and U01-CA136792-02S1.)
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