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Τρίτη 7 Φεβρουαρίου 2017

Fireball! Amazing Midwest Meteor Caght By Police Dashcam, Rooftop Camera | Video



A brilliant, bright-green meteor blazed through the sky just north of Milwaukee early this morning (Feb. 6), and likely sprinkled space rocks into Lake Michigan.

The falling space rock likely burned up in the sky about 10 to 20 miles (16 to 32 kilometers) north of Milwaukee, or about 100 miles (160 km) north of Chicago, according to the American Meteorological Society (AMS). More than 220 people have filed reports with the AMS claiming to have seen the fireball at about 1:25 a.m. CST (2:25 a.m. EST/0725 GMT), according to the NASA Meteor Watch Facebook page.

Most of the eye-witness reports came from people in and around Chicago and Milwaukee, but reports have also come in from witnesses in Michigan, Indiana, Ohio, Iowa, New York, Kentucky, Minnesota and Ontario, according to the AMS website. At least a dozen videos of the fireball racing through the sky have appeared online or have been sent to the AMS, Mike Hankey, operations manager for AMS, told Space.com. [5 Amazing Fireballs Caught on Video]




"In this profession, we see so many things that the public doesn't" get to see, Dexter said in a written statement from the Lisle Police Department. "Sometimes that's good sometimes that's bad. I'm just glad that in this instance I was able to capture this for everyone to see."

Another video of the fireball streaking through the sky was captured by a camera on the roof of the University of Wisconsin-Madison's atmospheric, oceanic and space sciences building. The various videos of the event reveal that the meteor was exceptionally bright, which means it qualifies as a "fireball."

"Cameras in the region indicate that the meteor originated 62 miles [100 lm] above West Bend, Wisconsin and moved northeast at about 38,000 miles per hour [61,155 km/h]," a post from the NASA Meteor Watch Facebook page states. The meteor appears to have broken up into smaller pieces "about 21 miles [34 km] above Lake Michigan, approximately 9 miles [14 km] east of the town of Newton," the post says.

The meteor also created a sonic boom, which occurs when an object moves faster than sound waves in Earth's atmosphere. Hankey said meteorites create a sonic boom only when they remain intact long enough to travel to relatively low altitudes, where Earth's atmosphere is sufficiently dense. Most fireball meteors do not create a sonic boom, Hankey said; they burn up or break up into small pieces before they reach those low altitudes.

The sonic boom created by this fireball was "recorded on an infrasound station in Manitoba [Canada], some 600 miles [965 km] away," according to the NASA Meteor Watch page, indicating that the explosive breakup of the meteor released at least the energy equivalent of 10 tons of TNT. (Hankey noted that people who heard a noise as the meteor moved overhead could have been hearing the sonic boom or the explosion of the rock.)

All of this information has helped meteor scientists get a better understanding of what this falling space rock looked like before it hit the atmosphere. It was likely an asteroid fragment "weighing at least 600 pounds [272 kg] and 2 feet [0.6 meters] in diameter," according to the NASA Meteor Watch page. Hankey said he thinks that's a low estimate for the meteor's size.

Based on radar data, it is likely that bits of the meteor reached the ground (these are called meteorites), Hankey said. However, the space rocks would have been sprinkled over Lake Michigan, which means they can't be collected for study, he added.

A meteor large enough to leave meteorites on the ground typically flies over the U.S. about three or four times per year, Hankey said.

The meteor also might have been spotted via radar by the National Weather Service's Milwaukee office. The office tweeted a radar picture showing the possible location of the meteor over Lake Michigan at 1:31 a.m. CST (0731 GMT). Sarah Marquardt, a meteorologist at the Milwaukee office, told Space.com that the radar instruments likely identified the space rock as it broke up into very small pieces. The radar instruments are designed to detect primarily water droplets, but the radar showed that the object or objects in that area were not made of ice or water, she said.


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