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By Deborah Zabarenko

WASHINGTON (Reuters) - An outcast star is zooming out of the Milky Way, the first ever seen escaping the galaxy, astronomers reported on Tuesday.

The star is heading for the emptiness of intergalactic space after being ejected from the heart of the Milky Way following a close encounter with a black hole, said Warren Brown, an astronomer at the Harvard-Smithsonian Center for Astrophysics.

The outcast is going so fast -- over 1.5 million mph -- that astronomers believe it was lobbed out of the galaxy by the tremendous force of a black hole thought to sit at the Milky Way's center. That speed is about twice the velocity needed to escape the galaxy's grip, Brown said by telephone.

"We have never before seen a star moving fast enough to completely escape the confines of our galaxy," he said. "We're tempted to call it the outcast star because it was forcefully tossed from its home."

The star used to be part of a binary pair, waltzing with its companion star close to the rim of the black hole. In this case, "close" is a relative term; the actual distance was probably about 50 times the 93 million-mile distance between Earth and the sun.

As the two stars twirled around each other, they were pulled faster and faster toward the edge of the black hole, one of those monster drains in space whose gravity is so strong that nothing, not even light, can escape once it is consumed.

While the companion star was captured by the black hole, the outcast continued on its whirling path around its edge.

Objects go faster the closer they get to black holes and this star was probably moving at extraordinary speed, perhaps as high as 20 million mph. That very speed, coupled with the speed of its twirling, sent the outcast zooming toward the edge of the Milky Way and beyond.

At this point, the outcast is about 180,000 light-years from Earth, in an outer region of the galaxy known as the halo. A light-year is about 6 trillion miles, the distance light travels in a year.


Posted

Neato.

The generally newspaper published speed of light is 186,000 miles per second. (From school texts I think it's closer to 186,252) Sixty seconds make a minute so 186,000 times 60 = 11,160,000 miles per minute. Sixty minutes make an hour so 11,160,000 times 60 = 669,600,000 miles per hour for the speed of light.

1.5 million miles an hour sounds huge doesn't it? Divide the calculated 669,600,000 mph of the speed of light into the 1,500,000 mph of the velocity of the star and you find that for this very rough calculation the star is travelling at .002240 or .224% the speed of light.

If you use the 20 million mph figure (I'm assuming it was the orbit velocity) it looks like the star was travelling at .02986 (2.9% , 3% if you round up) the speed of light to break orbit of the galaxy. Astounding.

I wonder what other things they are calculating with their figures.

Posted

quote:

Originally posted by Cmdr Chavik:

Neato.

The generally newspaper published speed of light is 186,000 miles per second. (From school texts I think it's closer to 186,252) Sixty seconds make a minute so 186,000 times 60 = 11,160,000 miles per minute. Sixty minutes make an hour so 11,160,000 times 60 = 669,600,000 miles per hour for the speed of light.

1.5 million miles an hour sounds huge doesn't it? Divide the calculated 669,600,000 mph of the speed of light into the 1,500,000 mph of the velocity of the star and you find that for this very rough calculation the star is travelling at .002240 or .224% the speed of light.

If you use the 20 million mph figure (I'm assuming it was the orbit velocity) it looks like the star was travelling at .02986 (2.9% , 3% if you round up) the speed of light to break orbit of the galaxy. Astounding.

I wonder what other things they are calculating with their figures.

It also adds credence to the thought that there is one really big Black Hole at the center of our galaxy.

Guest DocHoliday
Posted

Yup. I thought this would've been proved by now. It makes perfect sense, but common sense isn't always enough

"I wonder what other things they are calculating with their figures."

Stuff like: If the Earth is 8 light minutes away from Sun, and if the Sun's light went out in an instant, we'd see it on Earth about 8 minutes later... Now if the Sun just "dissapeared" (hypothetically), again, we'd see it gone in 8 minutes.. how soon until we'd feel the lack of gravitational pull then?? 8 minutes, instantly, longers.. The general concensus is, that the effect of gravity itself travels at lightspeed.. but I sometimes wonder.

Now imagine what kind of neat/scarry things you can calculate knowing that light-speed is the absolute limit of everything in the universe as we know it now...

Cheers,

Doc

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