Hiển thị các bài đăng có nhãn spies. Hiển thị tất cả bài đăng
Hiển thị các bài đăng có nhãn spies. Hiển thị tất cả bài đăng

Thứ Sáu, 3 tháng 5, 2013

Astronaut spies 'bullet hole' in space station

  • iss-solar-array-bullet-hole

    Chris Hadfield snapped this shot of a "bullet hole" created by a micrometeoroid or piece of space junk in one of the space station's solar arrays.Chris Hadfield (via Twitter as @Cmdr_Hadfield)

Astronauts aboard the International Space Station have dodged a cosmic bullet ... literally.

A small piece of space junk or naturally occurring celestial debris created the tiny hole in one of the space station's wing-like solar arrays at some point in the outpost's 14-year history in orbit. Canadian Space Agency astronaut Chris Hadfield spotted the puncture and posted a photo of it on Twitter on Monday.

"Bullet hole — a small stone from the universe went through our solar array," Hadfield wrote, suspecting the hole was caused by a tiny space rock called a micrometeoroid. "Glad it missed the hull." [Chris Hadfield's Video Guide to Life in Space]

'A 2-mm size particle is expected to hit somewhere every 6 months or so.'

- William Jeffs, a NASA spokesman

NASA experts estimate that millions of micrometeorites and bits of man-made debris orbit the Earth in the range of operational satellites and the space station. These shards of satellites, rockets and rocky debris are traveling at an average speed of 22,000 mph. The space station, for comparison, orbits the Earth at a speed of about 17,500 mph.

"The 'bullet' that created the hole in the solar array was probably due to a 1 mm to 2 mm diameter MMOD [micrometeoroids and orbital debris] impact, assuming the hole was on the order of 0.25 inches in diameter," William Jeffs, a NASA spokesperson told SPACE.com in an email. "A 2-mm size MMOD particle is expected to hit somewhere on [the International Space Station] every 6 months or so."

If the piece of space debris were to collide with the hull, the space station's shielding would probably protect the crew from being adversely impacted, Jeffs added.

NASA scientists regularly track pieces of space debris larger than 4 inches across in order to avoid potentially destructive collisions. Radar systems track these larger pieces of space junk to alert space station operators and satellite controllers to any threats.

"Collision with these particles can cause serious damage or catastrophic failure to spacecraft or satellites and is a life-threatening risk to astronauts conducting extra-vehicular activities in space," NASA officials from the agency's Johnson Space Center wrote on the White Sands Test Facility website.

The International Space Station can maneuver out of the way of larger meteoroids and bits of debris if their orbits are tracked well ahead of time.

Particles smaller than 4 inches and larger than 0.4 inches pose a unique problem for tracking efforts, however.

"Fortunately, small particles less than 1 cm pose less of a catastrophic threat, but they do cause surface abrasions and microscopic holes to spacecraft and satellites," NASA officials said. "The greatest challenge is medium-size particles (objects with a diameter between 1 cm to 10 cm), because they are not easily tracked and are large enough to cause catastrophic damage to spacecraft and satellites."

In total, NASA estimates that about 95 percent of all objects in orbit around the Earth are debris and not active satellites.


View the original article here

Chủ Nhật, 7 tháng 4, 2013

Hubble spies most distant star explosion ever

  • hubble-wilson-sn-distant 1.jpg

    This image shows the Hubble Space Telescope's view of Supernova UDS10Wil more than 10 billion years ago.NASA and ESA

  • hubble-wilson-sn-distant.jpg

    This image shows the Hubble Space Telescope's view of Supernova UDS10Wil more than 10 billion years ago.NASA and ESA

Astronomers have spotted the most distant massive star explosion of its kind, a supernova that could help scientists better understand the nature of the universe.

Using the Hubble Space Telescope, scientists recently caught sight of Supernova UDS10Wil (nicknamed SN Wilson) which exploded more than 10 billion years ago. It took more than 10 billion years for the light of this violent star explosion to reach Earth.

'This opens a window into the early universe.'

- David Jones of Johns Hopkins University

SN Wilson is known as a Type Ia supernova — a particular kind of star explosion that gives scientists a sense of how the universe has expanded over time.

"This new distance record holder opens a window into the early universe, offering important new insights into how these stars explode," research leader David Jones of Johns Hopkins University in Baltimore, Md., said in a statement. "We can test theories about how reliable these detonations are for understanding the evolution of the universe and its expansion." [See Amazing Pictures of Supernovas]

SN Wilson is only four percent more distant than the last most distant supernova of its kind found by Hubble, NASA officials said in a statement. However, that is still 350 million years further back in time than any other previously found star explosion.

By understanding when massive stars began exploding, scientists can get a sense of how quickly the universe was seeded with the elements needed to create planets and other cosmic bodies.

"If supernovae were popcorn, the question is how long before they start popping?" Adam Riess, an astronomer at the Space Telescope Science Institute in Baltimore, Md., said in a statement. "You may have different theories about what is going on in the kernel. If you see when the first kernels popped and how often they popped, it tells you something important about the process of popping corn."

This work also might contribute to other work being done on what triggers these massive explosions, a question that has plagued astronomers since the discovery of Type Ia supernovas.

This discovery is also part of a three-year-initiative by the Hubble program to find the most distant supernovas. Scientists with the program hope to understand if the star explosions have changed in some way since the Big Bang birthed the universe 13.8 billion years ago.

The Hubble Space Telescope was launched in 1990. It is expected to continue functioning for the next five years or so, and its successor, the James Webb Space Telescope, is scheduled for launch in 2018.

The new findings will be published in an upcoming issue of The Astrophysical Journal.


View the original article here