Wednesday, December 10, 2014

Rosetta shows Earth's water did not come from comets: study


A mosaic of a series of images captured by Rosetta's OSIRIS camera over a 30 minute period shows the European Space Agency's lander Philae descending towards the Comet 67P/Churyumov-Gerasimenko before touchdown November 12, 2014.
Credit: Reuters/ESA/Rosetta/MPS for OSIRIS Team MPS/UPD/LAM/IAA/SSO/INTA/UPM/DASP/IDA/Handout via Reuters


(Reuters) - Early results from Europe's Rosetta spacecraft challenge a long-held theory that comets delivered water to early Earth, a study released on Wednesday shows.

Chemical analysis of water coming from Comet 67P/Churyumov-Gerasimenko, which Rosetta has been orbiting since August, shows it has three times more deuterium - an atomic variation of regular hydrogen - as hydrogen in water molecules on Earth, said Rosetta scientist Kathrin Altwegg, with the University of Bern.

Water is comprised of two hydrogen atoms bonded with one oxygen atom. On Earth, three in 10,000 water molecules have the heavy hydrogen isotope deuterium.

Unless 67P is a total oddball, Altwegg said the finding eliminates comets as the source of Earth's water - and most likely its organics as well.

Both water and carbon compounds were needed for life to evolve.

The finding leaves asteroids as Earth's probable water bearers, though the mini-planets that bombarded baby Earth likely bore little resemblance to the dry, rocky bodies circling the sun beyond Mars today.

"Asteroids could well have had much more water than they have today," Altwegg said. "They have just lived in the vicinity of the sun for 4.6 billion years."

Comet 67P hails from the Kuiper Belt region of the solar system, located beyond Neptune's orbit 30 to 40 times farther from the sun than Earth.

Three years ago, analysis of water in another Kuiper Belt comet showed a chemical fingerprint that matched Earth's water. The measurements from 67P, however, are so much higher that even if only a few comets of its type smashed into Earth, Earth's deuterium ratio would not be what it is today, Altwegg said.

Previous studies had dismissed comets from even farther out in the solar system, a region called the Oort Cloud, as the source of Earth's water.

Also on Wednesday, scientists said the search for Rosetta's companion probe, Philae, continues.

Philae made an unprecedented descent to the surface of the comet on Nov. 12, bounced twice and settled in what appears to be a crater. It ran through 2-1/2 days of preprogrammed science experiments before its battery died.

Results of the studies, which include chemical analysis of samples drilled out from the comet's body, have not yet been released.

In August, Rosetta became the first spacecraft to put itself in orbit around a comet. It will continue to accompany 67P for about another year.

Source - Reuters

Exploring Jupiter..!!


European Space Agency recently released some images taken by Cassini Satellite, shows real Jupiter very Close..!!

This true-colour simulated view of Jupiter is composed of 4 images taken by NASA's Cassini spacecraft on 7 December 2000. To illustrate what Jupiter would have looked like if the cameras had a field-of-view large enough to capture the entire planet, the cylindrical map was projected onto a globe. The resolution of the high resolution image is about 144 kilometres per pixel. Jupiter's moon Europa is casting the shadow on the planet.


Title - Cassini’s view of Jupiter’s southern hemisphere.
This Cassini image shows Jupiter from an unusual perspective. If you were to float just beneath the giant planet and look directly up, you would be greeted with this striking sight: red, bronze and white bands encircling a hazy south pole. The multicoloured concentric layers are broken in places by prominent weather systems such as Jupiter’s famous Great Red Spot, visible towards the upper left, chaotic patches of cloud and pale white dots. Many of these lighter patches contain lightning-filled thunderstorms.


Title - Jupiter and its shrunken Great Red Spot


Title - Io transits Jupiter.
Jupiter's four largest satellites, including Io, the golden ornament in front of Jupiter in this image from NASA's Cassini spacecraft, have fascinated Earthlings ever since Galileo Galilei discovered them in 1610 in one of his first astronomical uses of the telescope.

Source - ESA

Monday, December 8, 2014

Yes... There was water on Mars... Nasa said..!!


This illustration depicts a lake of water partially filling Mars' Gale Crater, receiving runoff from snow melting on the crater's northern rim.


Observations by NASA’s Curiosity Rover indicate Mars' Mount Sharp was built by sediments deposited in a large lake bed over tens of millions of years. This interpretation of Curiosity’s finds in Gale Crater suggests ancient Mars maintained a climate that could have produced long-lasting lakes at many locations on the Red Planet.


Curiosity currently is investigating the lowest sedimentary layers of Mount Sharp, a section of rock 500 feet (150 meters) high dubbed the Murray formation. Rivers carried sand and silt to the lake, depositing the sediments at the mouth of the river to form deltas similar to those found at river mouths on Earth. This cycle occurred over and over again.

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