segunda-feira, 25 de março de 2013

UTK Professor Obtains Samples Of Russian Meteorite




A University of Tennessee professor has obtained pieces of the meteor that exploded spectacularly over Russia in February.

Larry Taylor, director of the Planetary Geosciences Institute at UTK, told the Knoxville News Sentinel that he obtained three samples with the help of colleagues at the Russian Academy of Sciences.

Taylor and his team are studying one of the samples. He said the meteorite dates back to the very beginnings of our solar system, some 4.56 billion years ago. Taylor gave the other two samples to former members of his research team who are now at the California Institute of Technology and the University of California, San Diego.

Taylor said the California researchers will be able to perform chemical analyses that he doesn't have the equipment to perform at UT.



Source: Newschannel5

terça-feira, 12 de março de 2013

Russia to build anti-meteorite shield



Moscow: Russia would build a system to protect the Earth from meteors and other space debris, Russian federal space agency Roscosmos said Tuesday.

"Roscosmos has formed a working group with experts from the defence ministry and the Russian Academy of Science to create a unified system of early warning and countering space threats," Xinhua quoted Roscosmos head Vladimir Popovkin as saying.

The project, titled "Citadel", would cost about $500 million, and could be implemented only with international cooperation, said Anatoly Zaitsev, head of the Center of Planetary Protection, a scientific and research organisation.


According to RIA Novosti, Popovkin said the Russian Academy of Sciences should be made responsible for developing asteroid threat monitoring systems while Roscosmos should be in charge of monitoring space debris.

The foreign ministry should be entrusted with matters of countering space threats at interstate level, he said.

Popovkin warned that in 20 years, the world might no longer be able to deploy geosynchronous satellites in space because all available orbits would be littered with debris due to their constant disintegration.


According to calculations by Roscosmos, the possibility of collisions between working satellites and debris has risen sharply.

The Russian Aerospace Defense Forces was urged by the government to come up with a plan to protect the country from space "guests" after a meteorite strike injured over 1,200 people and damaged homes in Chelyabinsk region Feb 15.

Civil Defence and Emergencies Minister Vladimir Puchkov said the programme will include early warning systems and public emergency training courses.

Roscosmos is currently trying to identify and classify potentially dangerous space objects, Popovkin said at a session of the Federation Council, the upper house of parliament.

Boris Shustov, director of the Russian Academy of Sciences Institute of Astronomy, said super-powerful telescopes should be used to detect dangerous space objects in good time.

Ground and space-based systems need to be built for this, he said, adding that "regular" telescopes are unable to detect those threats.

In particular, he said, Russia needs to complete construction of a super-wide-angle telescope, the AZT-33, near Lake Baikal, at a cost of 500 million rubles (about $17 million).

Shustov said the "extraterrestrial object" which exploded over Chelyabinsk did not even belong in the class of dangerous objects.

If the Chelyabinsk meteorite had entered the atmosphere at a steeper trajectory, the consequences would have been far worse, he said.

"And if the body had been 50 metres (in diameter), then there would have been no chance," he said, without elaborating.


Source: http://zeenews.india.com

Astrobiologists Find Ancient Fossils in Fireball Fragments

Algae-like structures inside a Sri Lankan meteorite are clear evidence of panspermia, the idea that life exists throughout the universe, say astrobiologists.



On 29 December 2012, a fireball lit up the early evening skies over the Sri Lankan province of Polonnaruwa. Hot, sparkling fragments of the fireball rained down across the countryside and witnesses reported the strong odour of tar or asphalt.

Over the next few days, the local police gathered numerous examples of these stones and sent them to the Sri Lankan Medical Research Institute of the Ministry of Health in Colombo. After noticing curious features inside these stones, officials forwarded the samples to a team of astrobiologists at Cardiff University in the UK for further analysis.

The results of these tests, which the Cardiff team reveal today, are extraordinary. They say the stones contain fossilised biological structures fused into the rock matrix and that their tests clearly rule out the possibility of terrestrial contamination.

In total, Jamie Wallis at Cardiff University and a few buddies received 628 stone fragments collected from rice fields in the region. However, they were able to clearly identify only three as possible meteorites.

The general properties of these three stones immediately mark them out as unusual. One stone, for example, had a density of less than 1 gram per cubic centimetre, less than all known carbonaceous meteorites. It had a partially fused crust, good evidence of atmospheric heating, a carbon content of up to 4 per cent and contained an abundance of organic compounds with a high molecular weight, which is not unknown in meteorites. On this evidence, Wallis and co think the fireball was probably a small comet.

The most startling claims, however, are based on electron microscope images of structures within the stones (see above). Wallis and co. say that one image shows a complex, thick-walled, carbon-rich microfossil about 100 micrometres across that bares similarities with a group of largely extinct marine dinoflagellate algae.

They say another image shows well-preserved flagella that are 2 micrometres in diameter and 100 micrometres long. By terrestrial standards, that’s extremely long and thin, which Wallis and co. interpret as evidence of formation in a low-gravity, low-pressure environment.

Wallis and co. also measured the abundance of various elements in the samples to determine their origin. They say that low levels of nitrogen in particular rule out the possibility of contamination by modern organisms which would have a much higher nitrogen content. The fact that these samples are also buried within the rock matrix is further evidence, they say.

Wallis and co. are convinced that the lines of evidence they have gathered are powerful and persuasive. “This provides clear and convincing evidence that these obviously ancient remains of extinct marine algae found embedded in the Polonnaruwa meteorite are indigenous to the stones and not the result of post-arrival microbial contaminants,” they conclude.

There’s no question that a claim of this kind is likely to generate controversy. Critics have already pointed out that the stones could have been formed by lightning strikes on Earth although Wallis and co. counter by saying there was no evidence of lightning at the time of the fireball and that in any case, the stones do not bear the usual characteristics of this kind of strike. What’s more, the temperatures generated by lightning would have destroyed any biological content.

Nevertheless, extraordinary claims require extraordinary evidence and Wallis and co. will need to make their samples and evidence available to the scientific community for further study before the claims will be taken seriously.

If the paper is taken at face value, one obvious question that arises is where these samples came from. Wallis and c.o have their own ideas: “The presence of fossilized biological structures provides compelling evidence in support of the theory of cometary panspermia first proposed over thirty years ago,” they say.

This is an idea put forward by Fred Hoyle and Chandra Wickramasinghe, the latter being a member of the team who has carried out this analysis.

There are other explanations, of course. One is that the fireball was of terrestrial origin, a remnant of one of the many asteroid impacts in Earth’s history that that have ejected billions of tonnes of rock and water into space, presumably with biological material inside. Another is that the structures are not biological and have a different explanation.

Either way, considerably more work will have to be done before the claims from this team can be broadly accepted. Exciting times ahead!

Ref: arxiv.org/abs/1303.1845: The Polonnaruwa Meteorite: Oxygen isotope, Crystalline and Biological Composition
Source: technologyreview.com

quinta-feira, 28 de fevereiro de 2013

SCIENTISTS AT PRINCESS ELISABETH ANTARCTICA DISCOVER 18KG ANTARCTIC METEORITE

A team of scientists working at Princess Elisabeth Antarctica have recently discovered a meteorite weighing 18kg embedded in the East Antarctic ice sheet, the largest such meteorite found in the region since 1988.

The eight members of the SAMBA project, from Université Libre de Bruxelles (ULB) and Vrije Universiteit Brussel (VUB), Japan’s National Institute of Polar Research (NIPR) and Tokyo University were searching for meteorites scattered across the Nansen Ice Field on January 28, when they found the 18kg ordinary chondrite. The team discovered a total of 425 meteorites, with a total weight of 75kg during the 40 day expedition, at an altitude of 2,900m, 140km south of Belgium’s Princess Elisabeth Antarctica research base.

“This meteorite was a very unexpected find for us, not only due to its weight, but because we don’t normally find such large meteorites in Antarctica”, said Vinciane Debaille, a geologist from Université Libre de Bruxelles, who led the Belgian team during the expedition. “This is the biggest meteorite found in East Antarctica for 25 years, so it’s a very special discovery for us, only made possible by the existence and location of Princess Elisabeth Antarctica.”

The SAMBA project contributesto the US and Japan-led global collection of Antarctic meteorites, and is an initiative of VUB and ULB, in collaboration with the Japanese Institute of Polar Research. SAMBA is supported by the Belgian Science Policy (BELSPO) and the International Polar Foundation.

Initial field analysis by the scientists suggests that the 18kg meteorite is an ordinary chondrite, the most abundant kind of meteorite. The fusion crust – the meteorite’s outer casing - was eroded, allowing the scientists to inspect the rock underneath. The meteorite is currently undergoing a special thawing process in Japan – to ensure water doesn’t get inside the rock - but will be brought to Belgium in the future.

“We study meteorites in order to better understand how the solar system formed, how it evolved, how the Earth became such a unique planet in our solar system”, said Debaille. “This season’s SAMBA mission was a success both in terms of the number and weight of the meteorites we found. Two years ago, we found less than 10kg. This year, we found so much that we had to call the travel agency – because we had 75kg of meteorites to take home”.

Princess Elisabeth Antarctica is the world’s first zero emission polar research station, and is operated by the International Polar Foundation, in partnership with the Belgian Polar Secretariat. Princess Elisabeth Antarctica’s design and construction seamlessly integrates passive building technologies, renewable wind and solar energy, water treatment facilities, continuously monitored power demand and a smart grid for maximising energy efficiency. Located in East Antarctica’s Sør Rondane Mountains, Princess Elisabeth Antarctica welcomes scientists from around the world to conduct research in this little-studied and pristine environment.

“Both Princess Elisabeth Antarctica and the International Polar Foundation are proud to support the research work of the Belgian and Japanese meteorite team”, said expedition leader Alain Hubert. “By providing solid logistics and field accomodation solutions to scientists working on the ice, we can ensure they can concentrate on what they have come to Antarctica to achieve: unlocking of Nature’s mysteries and broadening understanding of our planet”.


To find out more about science at Princess Elisabeth Antarctica and life in the frozen south, visit Inside the Station – an interactive exhibition that takes visitors on a journey inside Belgium’s zero emission polar research centre - currently taking place at Tour & Taxis, Brussels.
Belgian and Japanese team:
Vinciane Debaille (Belgium, ULB)
Wendy Debouge (Belgium,ULB)
Geneviève Hublet (Belgium, ULB)
Nadia Van Roosbroek (Belgium,VUB)
Harry Zekollari (Belgium,VUB)
Naoya Imae (Japan, NIPR)
Akira Yamaguchi (Japan, NIPR)
Takashi Mikouchi (Japan, University of Tokyo)
Yukihisa Akada (Japan, Field Guide)
Christophe Berclaz (Switzerland, Field Guide)

The four Japanese members are also part of the 54th Japanese Antarctic Research Expedition (JARE-54), while the other members are part of the 2012-2013 BELARE Belgian programme.
The Numbers: 

Total known meteorites discovered 56,555
Total meteorites found in Antarctica only: 38,537
Among Antarctic meteorites, only 30 have a mass greater than 18 kg. The 18kg meteorite has the fifth largest mass ever discovered in East Antarctica (Dronning Maud Land), and is the first of this size found in the area since 1988. 

Per year, around 1,000 meteorites weighing less than 100g are found, and about 100 less than 1kg.


Source: The Meteoritical Society
The team found:
425 meteorites
Total weight: 75kg
1 meteorite at 18kg
1 meteorite at 6kg
1 meteorite at 4.5kg
2 at 2kg
4 at 1kg


Source: http://www.antarcticstation.org

terça-feira, 26 de fevereiro de 2013

Russian Meteorite: Half of Russians Believe Crash was UFO, Government Conspiracy, God


While most of the world rested contently like fools, confident a meteorite that recently crashed in Russia was in fact a meteorite, regular Russians - "Andrei Vodka Handles"? - were busy chewing through the lies and getting down to the real meaty truth. About half of Russian citizens believe the meteor was actually a UFO, God, or a government conspiracy, according to a poll conducted by a popular Russian newspaper.

Published by "fairly staid" Moscow daily newspaper Noviye Izvestia, the survey discovered that almost 50 percent of its readers are convinced the meteorite that crashed in the city of Chelyabinsk in the Ural Mountains wasn't a meteorite at all, according to The Christian Science Monitor. Skeptics offer numerous explanations for the 500 kiloton blast that definitely wasn't caused by a meteorite, including theories about "a secret U.S. weapon test, an off-course ballistic missile, a message from God, a crashing alien spaceship, or even an extraterrestrial trojan horse carrying a deadly space virus to wipe out the Earth," the Monitor reported.
The Russian newspaper offers its own theories about why the country's people are certain they aren't being told the whole story: "Our people remember the Soviet past, when news of disasters was concealed or lied about," said Alexei Grazhdankin, deputy director of the Levada Center, an independent Moscow polling agency.
"We have no scientific polls on what people think about the Chelyabinsk event last week, but it's safe to assume the majority of Russians accept that it was a meteorite. However, our past surveys show that up to 25 percent of Russians do believe in UFOs. A lot of our people just prefer not to accept the safe explanations they were taught at school. Even when all necessary information is available, they don't want to believe it."
It's understandable some Russians are still seeking out answers following what most certainly wasn't the collision of a 10-ton meteorite. If that thing really was a meteorite, it was the largest to smash into the Earth since the infamous 1908 "Tunguskaya event" that leveled an 800-square-mile area in rural Sibera. 
Some skeptics believe the explosion was caused by a meteorite, but believe the meteor came into contact with a UFO before it hit the ground.
"In Chelyabinsk last week we had a mini-Tungus," scientist Yury Lavbin said, the Monitor reported. "In both cases there were two objects, and a UFO knocked down the second object. In the Tungus case, the UFO was itself destroyed. We know this because we've been to Tungus and recovered metallic fragments that are impossible to produce on Earth ... If not for the intervention of the UFO in the Tungus event, the Earth could have been plunged into a second stone age. I think we were saved again last week," he said.
The shock wave from the Chelyabinsk meteorite injured more than 1,200 people as the object fragmented above the city of Chelyabinsk in the Ural Mountains, the Washington Post reported.
The shock wave resulting from the meteorite crash - the size of 30 Hiroshima A-bombs - shattered windows and imploded roofs throughout the region, sending 34 adults and 12 children to the hospital for treatment, with two in intensive care, Russia's Ministry of Emergencies said, according to Sky News. No one was killed in the blast, and none of the injuries sustained were considered critical, as the majority were cuts from broken glass or concussions, according to the Post.
In Chelyabinsk "more than 297 [apartment] houses, 12 schools, several social-service facilities and a number of industrial enterprises were damaged," said President Vladimir Putin in a statement.
The meteorite burst into "several dozen large pieces" as it shot across the sky, said emergency situations minister Vladimir Puchkov, the Post reported.

Source: Latinospost

segunda-feira, 25 de fevereiro de 2013

Large meteorite fragments found in Russia

Russian scientists on Monday hailed the finding of what they said was the largest yet fragment of a meteorite that came crashing through the skies over Siberia and exploded over Russia's Ural Mountains last week.



The find was among a large number of fragments brought back from the Federal University of the Urals by a ski expedition team.
"We haven't been able count [the fragments], but we believe it's more than 100," said Victor Grokhovsky, member of the meteorite committee at the university.
"But the most significant among them was a fragment, which Masha PInkova found yesterday evening, not even 24 hours ago, that weighs 1.8 kilograms," he explained. "It's the largest fragment of this meteor that we have found to this day."
The meteorite hurtled above the Siberian city of Chelyabinsk on February 15, leaving behind a plume of smoke as it tore through the atmosphere, frightening residents with terrifyingly loud sonic booms.
Locals said they saw a big meteorite fall into ice-covered Chebarkul Lake leaving a 20ft-wide hole in the ice.


Mr Grokhovsky said further surveys would have to be carried out in order for a fuller assessment to be made and that a team from the university was preparing to go the Cherbakul lake for further testing.
Russian health officials said earlier this week that almost 1,500 people were injured by the meteorite's arrival.


Source: http://www.telegraph.co.uk

Astronomers Calculate Orbit of Chelyabinsk Meteorite

The Chelyabinsk meteorite is from a family of Earth-crossing rocks called Apollo asteroids and there are 80 million others like it, say astronomers


On 15 February at 0920 local time, a huge fireball raced across the skies above the Chelyabinsk region of Russia. This meteorite then exploded creating a shockwave that injured more than 1000 people.

The incident was captured on numerous webcams, security cameras and dashcams in the region and these videos were widely distributed on the web.

The following day, Stefen Geens, who writes the Ogle Earth blog, pointed out that these cameras formed an ad-hoc sensing network that had gathered significant data about the trajectory and speed of the meteorite. He used this data and Google Earth to reconstruct the path of the rock as it entered the atmosphere and showed that it matched an image of the trajectory taken by the geostationary Meteosat-9 weather satellite.

Today, Jorge Zuluaga and Ignacio Ferrin at the University of Antioquia in Medellin, Colombia, take this approach a step further by reconstructing the meteorite’s original orbit around the Sun.

The recordings from traffic cameras have precise locations and well-maintained time stamps. The location of the meteorite impact with the ground is also recorded by a hole in the ice sheet covering Lake Chebarkul, 70km west of Chelyabinsk. Together with the trajectories shown in various YouTube videos, these guys used simple trigonometry to calculate the height, speed and position of the meteorite as it fell to Earth.

Calculating the rock’s orbit around the Sun is a more complicated affair. This depends on six critical parameters which must all be estimated from the data.  Most of these are related to the point at which the meteorite becomes bright enough to cast a noticeable shadow in the videos, its ‘brightening point’.  They include the meteorite’s height, elevation and azimuth at this point as well as the longitude and latitude on the Earth’s surface below.  The velocity is also crucial.

“According to our estimations, the Chelyabinski meteor started to brighten up when it was between 32 and 47 km up in the atmosphere,” say Zuluaga and Ferrin, who estimate the velocity at between 13 km/s and 19 km/s relative to Earth.

They then calculated the likely orbit by plugging these figures into a piece of software developed by the US Naval Observatory called NOVAS, the Naval Observatory Vector Astrometry. This allowed them to include the gravitational influence on the rock of the Moon and the 8 major gravitational bodies in the Solar System.

Their conclusion is that the Chelyabinsk meteorite is from a family of rocks that cross Earth’s orbit called Apollo asteroids.

These are well known Earth-crossers. Astronomers have seen over 240 that are larger than 1 km but believe there must be more than 2000 others of similar size out there.

 Smaller Earth crossers are even more common. The sobering news is that astronomers think there are some 80 million about the same size as the one that hit Russia.



Source: MIT