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Education

What's Your STEM Degree Worth? 148

Jim_Austin writes A recent study by economist Douglas Webber calculates the lifetime earnings premium of college degrees in various broad areas, accounting for selection bias--that is, for the fact that people who already are likely to do well are also more likely to go to college. These premiums are not small. Science Careers got exclusive access to major-specific data, and published an article that tells how much more you can expect to earn because you got that college degree--for engineering, physics, computer science, chemistry, and biology majors.
Image

A Physicist Says He Can Tornado-Proof the Midwest With 1,000-Foot Walls Screenshot-sm 501

meghan elizabeth writes: Temple physicist Rongjia Tao has a utopian proposal to build three massive, 1,000-foot-high, 165-foot-thick walls around the American Midwest, in order to keep the tornadoes out. Building three unfathomably massive anti-tornado walls would count as the infrastructure project of the decade, if not the century. It would be also be exceedingly expensive. "Building such walls is feasible," Tao says. "They are much easier than constructing a skyscraper. For example, in Philadelphia, the newly completed Comcast building has about 300-meter height. The wall with similar height as the Comcast building should be much easier to be constructed." Update: 06/28 04:14 GMT by T : Note: originally, this story said that Tao was at Drexel rather than Temple -- now corrected
Space

Astronomers Discover Earth-Sized Diamond 112

ygslash (893445) writes Astronomers at the National Radio Astronomy Observatory announced that they have discovered what appears to be the coolest white dwarf ever detected. The white dwarf is formerly a star similar to our own sun which, after expending all of its fuel, has cooled to less than a chilly 3000 degrees Kelvin and contracted to a size approximately the same as Earth. A white dwarf is composed mostly of carbon and oxygen, and the astronomers believe that at that temperature it would be mostly crystallized, forming something like a huge diamond.
Space

Mysterious X-ray Signal Hints At Dark Matter 100

Astronomers using the Chandra X-ray Observatory and the XMM-Newton have recorded an unusual emission of X-ray light from a remote cluster of galaxies which may turn out to be evidence of dark matter. Astronomers think dark matter constitutes 85% of the matter in the Universe, but does not emit or absorb light like “normal” matter such as protons, neutrons and electrons that make up the familiar elements observed in planets, stars, and galaxies. Because of this, scientists must use indirect methods to search for clues about dark matter. he latest results from Chandra and XMM-Newton consist of an unidentified X-ray emission line, that is, a spike of intensity at a very specific wavelength of X-ray light. Astronomers detected this emission line in the Perseus galaxy cluster using both Chandra and XMM-Newton. They also found the line in a combined study of 73 other galaxy clusters with XMM-Newton. ... The authors suggest this emission line could be a signature from the decay of a "sterile neutrino." (Abstract.) Sterile neutrinos are a hypothetical type of neutrino that is predicted to interact with normal matter only via gravity. Some scientists have proposed that sterile neutrinos may at least partially explain dark matter.
Space

The Higgs Boson Should Have Crushed the Universe 188

astroengine writes: This may seem a little far fetched, but if our understanding of the physics behind the recently-discovered Higgs boson (or, more specifically, the Higgs field — the ubiquitous field that endows all stuff with mass) is correct, our Universe shouldn't exist. That is, however, if another cosmological hypothesis is real, a hypothesis that is currently undergoing intense scrutiny in light of the BICEP2 results. "The mathematics to arise from accepted Higgs field theory suggests the universe is currently sitting comfortably in a Higgs field energy 'valley.' To get out of this valley and up the adjacent 'hill,' huge quantities of energy would need to be unleashed inside the field. But, if there were enough energy to push the universe over the hill and into the deeper energy valley next door, the universe would simply, and catastrophically, collapse.

This is where the BICEP2 results come in. If their observations are real and gravitational waves in the CMB prove cosmological inflation, the Higgs field has already been kicked by too much energy, pushing the Higgs field over the energy hill and deep into the neighboring valley’s precipice! For any wannabe universe, this is very bad news — the newborn universe would appear as a Big Bang, the Higgs field would become overloaded with an energetic inflationary period, and the whole lot would vanish in a blink of an eye."

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