Wednesday, 10 September 2014

'Super Cruise' technology to change future of driving

What if your car were to automatically correct its movement if you happened to wander over the yellow line? Or an internal device that could help drivers avoid collisions? With "Super Cruise", these enhancements are now possible. Michigan-based General Motors (GM) has announced that some of its new Cadillac models will be equipped with "Super Cruise" technology by 2017. "It features hands-off lane following, automatic speed control and automated braking," GM said in a statement. GM also plans to roll out another smart technology known as vehicle-to-vehicle (V2V) communication by 2017. V2V will allow cars equipped with the technology to swap information about their location, speed and direction of travel. This new feature takes GM one step closer to creating a driverless car, similar to what Google is already working on. Google's self-driving car has already logged more than 483,000 km.

'Solid' light could compute previously unsolvable problems

Researchers at Princeton University have begun crystallizing light as part of an effort to answer fundamental questions about the physics of matter. The researchers are not shining light through crystal -- they are transforming light into crystal. As part of an effort to develop exotic materials such as room-temperature superconductors, the researchers have locked together photons, the basic element of light, so that they become fixed in place. "It's something that we have never seen before," said Andrew Houck, an associate professor of electrical engineering and one of the researchers. "This is a new behavior for light." The results raise intriguing possibilities for a variety of future materials. But the researchers also intend to use the method to address questions about the fundamental study of matter, a field called condensed matter physics. "We are interested in exploring -- and ultimately controlling and directing -- the flow of energy at the atomic level," said Hakan Türeci, an assistant professor of electrical engineering and a member of the research team. "The goal is to better understand current materials and processes and to evaluate materials that we cannot yet create." The team's findings, reported online on Sept. 8 in the journal Physical Review X, are part of an effort to answer fundamental questions about atomic behavior by creating a device that can simulate the behavior of subatomic particles. Such a tool could be an invaluable method for answering questions about atoms and molecules that are not answerable even with today's most advanced computers. In part, that is because current computers operate under the rules of classical mechanics, which is a system that describes the everyday world containing things like bowling balls and planets. But the world of atoms and photons obeys the rules of quantum mechanics, which include a number of strange and very counterintuitive features. One of these odd properties is called "entanglement" in which multiple particles become linked and can affect each other over long distances. The difference between the quantum and classical rules limits a standard computer's ability to efficiently study quantum systems. Because the computer operates under classical rules, it simply cannot grapple with many of the features of the quantum world. Scientists have long believed that a computer based on the rules of quantum mechanics could allow them to crack problems that are currently unsolvable. Such a computer could answer the questions about materials that the Princeton team is pursuing, but building a general-purpose quantum computer has proven to be incredibly difficult and requires further research. Another approach, which the Princeton team is taking, is to build a system that directly simulates the desired quantum behavior. Although each machine is limited to a single task, it would allow researchers to answer important questions without having to solve some of the more difficult problems involved in creating a general-purpose quantum computer. In a way, it is like answering questions about airplane design by studying a model airplane in a wind tunnel -- solving problems with a physical simulation rather than a digital computer. In addition to answering questions about currently existing material, the device also could allow physicists to explore fundamental questions about the behavior of matter by mimicking materials that only exist in physicists' imaginations. To build their machine, the researchers created a structure made of superconducting materials that contains 100 billion atoms engineered to act as a single "artificial atom." They placed the artificial atom close to a superconducting wire containing photons. By the rules of quantum mechanics, the photons on the wire inherit some of the properties of the artificial atom -- in a sense linking them. Normally photons do not interact with each other, but in this system the researchers are able to create new behavior in which the photons begin to interact in some ways like particles. "We have used this blending together of the photons and the atom to artificially devise strong interactions among the photons," said Darius Sadri, a postdoctoral researcher and one of the authors. "These interactions then lead to completely new collective behavior for light -- akin to the phases of matter, like liquids and crystals, studied in condensed matter physics." Türeci said that scientists have explored the nature of light for centuries; discovering that sometimes light behaves like a wave and other times like a particle. In the lab at Princeton, the researchers have engineered a new behavior. "Here we set up a situation where light effectively behaves like a particle in the sense that two photons can interact very strongly," he said. "In one mode of operation, light sloshes back and forth like a liquid; in the other, it freezes." The current device is relatively small, with only two sites where an artificial atom is paired with a superconducting wire. But the researchers say that by expanding the device and the number of interactions, they can increase their ability to simulate more complex systems -- growing from the simulation of a single molecule to that of an entire material. In the future, the team plans to build devices with hundreds of sites with which they hope to observe exotic phases of light such as superfluids and insulators. "There is a lot of new physics that can be done even with these small systems," said James Raftery, a graduate student in electrical engineering and one of the authors. "But as we scale up, we will be able to tackle some really interesting questions." Besides Houck, Türeci, Sadri and Raftery, the research team included Sebastian Schmidt, a senior researcher at the Institute for Theoretical Physics at ETH Zurich, Switzerland. Support for the project was provided by: the Eric and Wendy Schmidt Transformative Technology Fund; the National Science Foundation; the David and Lucile Packard Foundation; the U.S. Army Research Office; and the Swiss National Science Foundation.

Meet the Canadian astronaut who is training on Atlantic Ocean floor

A Canadian astronaut takes part in the underwater mission designed to give a taste of what it would be like in the space orbit and is currently living on the floor of the Atlantic Ocean. Jeremy Hansen was currently on the floor of the Atlantic Ocean at the Aquarius Reef Base in Florida, 20m below the surface, Sky News reported. The 38-year-old said that there's a hole in the floor that's open to the ocean all the time, and the air pressure keeps the water out, and they just go in and out. Hansen, who's the exploration lead for NASA's extreme environment mission operations, has been tweeting images of his underwater adventure, including an early morning snap of a passing barracuda.

Bad back? These are the best sex positions to ease the pain.

For a long time, spooning was considered a sexual position everyone could get behind, so to speak. But for people who suffer from back pain, is it really the best option? For the first time, a new study out of the University of Waterloo in Canada has some real answers to your questions about how to avoid exacerbating (or creating) back pain during sex. "Spooning had previously been considered a one-position-fits-all for both men and women with back pain," said Natalie Sidorkewicz, lead author of the study, which will be published in the journal Spine. "That ignores the fact that there are different kinds of back pain triggered by different kinds of movements." And that's where this study comes in. The Waterloo research team recruited 10 healthy male subjects and 10 healthy female partners (the couples were required to have at least one year of sexual experience with each each other) and they did not suffer from lower back pain. The couples were outfitted with reflective markers that acted as sensors, similar to what video game animators and visual effects artists use, to model the spine angles used during five different sexual positions. They also monitored how hard muscles worked during sex, and even which muscles were effected by orgasm (more on that later). (University of Waterloo) The study's lead author Natalie Sidorkeqicz demonstrates a spine movement on a model. (University of Waterloo) The first phase of the study looked closely at male movement in the "spooning," two variations of the "missionary position," and two variations of the rear-entry quadruped (also known as "doggy-style") position. (In this case the study used heterosexual partners, but the recommendations can be applied to anyone--male or female-- who is controlling or not controlling the movement in these positions.) In general, Sidorkewicz advises that in any position, controlling the movement with the hip and knee rather than the spine will be more spine sparing, and for the person not controlling the movement, maintaining a neutral spine is key to reducing lower back strain. Their more specific recommendations focus on two kinds of back pain. People who are "flexion-intolerant" might experience worsening pain when they touch their toes or sit for long periods of time. For those people, spooning is actually the worst position for the male (or the person controlling the movement). After that, flexion-intolerant back pain sufferers should avoid the missionary position where the arms are propped on the elbows, then the rear entry position in which the female (or male) partner not controlling the movement is propped on their hands. The two best positions are the missionary variation where the person controlling the movement is propped on their hands, and the rear-entry position where the female (or male) partner is propped on their elbows. Extension-intolerant back pain sufferer might experience pain by lying on the back or stomach. For those people the recommendations are essentially reversed. Spooning might be the most pain free position for those people, and the rear-entry position where the partner not controlling the movement is propped on their elbows is the worst position. Researchers noted that for two positions, missionary and rear entry, not all variations are created equally. In the study, slight changes in the posture of the female partner changed the kind of muscle movement the male partner used in the rear entry position. And a slight change to the posture of the male partner in the missionary also changed the kind of muscle movement that was used. "That really lends itself to the interaction between the couple and how the partner could be a part of that intervention," Sidorkewicz said. It is the first study of its kind to look at the biomechanics of the spine during sex, which now gives doctors real evidence to make recommendations to the many patients who suffer from lower back pain. At any given time, 31 million people in the U.S experience lower back pain, according to the American Chiropractic Association. "If you look at some of the existing literature and text books that make recommendations on sexual positions and technique, remember they were just people's opinion," University of Waterloo professor Stuart McGill, a co-author of the study, said in a University of Waterloo video. "There was no science that had been performed before to create the foundation for the recommendations." Upcoming research based on the data collected in this study will be published in the coming months. They include a separate study focused on the spine movements of the female partners, the effect of orgasm on spine movements, and a look at the impact of the sex position recommendations on back pain sufferers. Sidorkewicz suspects that the guidelines produced from this study could also reduce some of the awkwardness in the doctor's office when it comes to talking about pain in the bedroom. "The survey reports were all pointing for a study like this to be done," Sidorkewicz said. "A lot of the low back pain patents that were being interviewed were saying that they were having a lot of pain with the movement and as a result that was making them reduce the frequency of their sexual activity." "We're hoping this will facilitate a dialogue between practitioners and their patients." For more about which sexual positions to avoid for flexion-intolerant and extension-intolerant back-pain sufferers, see this chart. (Viewer discretion advised). Abby Phillip is a general assignment national reporter for the Washington Post. She can be reached at abby.phillip@washpost.com. On Twitter: @abbydphillip

High-tech survey proves there's more to Stonehenge than meets the eye Read more: http://www.ctvnews.ca/sci-tech/high-tech-survey-proves-there-s-more-to-stonehenge-than-meets-the-eye-1.2000049#ixzz3Cv9dcB7m

LONDON -- A high-tech survey reveals that there is more to Stonehenge than meets the eye, finding previously unknown monuments. Researchers have produced digital maps of what's beneath the World Heritage Site, using ground-penetrating radar, high-resolution magnetometers and other techniques to peer deep into the soil. Birmingham University said Wednesday that the project produced detailed maps of 17 previously unknown ritual monuments and a massive timber building which is thought to have been used for burial ceremonies. RELATED STORIES Obama visits Stonehenge after NATO summit The project leader, Professor Vincent Gaffney of Birmingham University, says the findings included types of monuments previously unknown to archaeologists. Professor Wolfgang Neubauer of Germany's Ludwig Boltzmann Institute says the new maps make it possible at last to reconstruct the development of Stonehenge over its 11,000-year history. Read more: http://www.ctvnews.ca/sci-tech/high-tech-survey-proves-there-s-more-to-stonehenge-than-meets-the-eye-1.2000049#ixzz3Cv9mqGlW

Tuesday, 9 September 2014

Group selfies get a name: Usie

By: Beth J. Harpaz Associated Press, Published on Wed Jul 30 2014 NEW YORK—What do you call a group selfie? An usie, of course! As in “us.” Pronounced uss-ee, rhymes with fussy. “Usies are a growing trend that I think have far more social value than selfies,” said Michal Ann Strahilevitz, a professor of marketing at Golden Gate University in San Francisco who studies consumer behaviour. “It’s magical capturing moments we share with other people.” In contrast to one-person selfies, usies are “more about the relationship, and less about you and your hair,” she said. The word — sometimes spelled usie, sometimes ussie — has been showing up in written material since at least April 2013, according to Ben Zimmer, executive producer of Vocabulary.com and language columnist for The Wall Street Journal. A Business Insider story from January noted that the outstretched arm of the photo-taker in usies is a “signature” of the image, because the shooter has to get the camera far enough away to get the group in the frame. The Times of India in March said Pope Francis’ group selfie with visitors at the Vatican last year “could possibly be the first chronicled celebrity usie.” And a PopStopTV.com report from June was headlined: “Selfies Are Dead, Usie is the Latest Trend!”

Scientists say eating your leftovers is good for you and the environment

Researchers have found that food waste has a big impact on the heat-trapping gasses we release into the environment. Mary Heller is a senior research specialist with the Center for Sustainable Systems at the University of Michigan. In a new study, he and U of M's Greg Keoleian looked at the greenhouse gas emissions involved with the production of the food we eat and the food we waste. “If we look at the greenhouse gas emissions associated with that food waste, it is equivalent to adding an additional 33 million average passenger vehicles to our roads every year,” Heller said. "If we look at the greenhouse gas emissions associated with that food waste, it is equivalent to adding an additional 33 million average passenger vehicles to our roads every year." - 2014 Marty Heller, study's co-author Heller and Keoleian studied the emissions associated with about 100 different types of food. They discover that certain types of foods have the highest greenhouse gas emissions associated with their production. "Typically we see a very distinct difference between foods that are animal based — meats, dairy —and foods that are plant based," Heller said. "To a large extent that's because of the additional feed that is required to keep an animal alive and sort of their conversion efficiency of the feed that they consume." He also found that some of those animals, cows in particular, emit a great deal of methane which is a very potent greenhouse gas emission. USDA dietary guidelines help and hurt The most recent dietary guidelines from the USDA say we should be eating more fruits and vegetables, more low-fat dairy products and seafood. And in this country we eat more meat than the guidelines say that we should. One of the things they looked at is what would happen to greenhouse gas emissions if we shifted our diets to match what the USDA recommends. "We found that if we were to maintain the same level of caloric intake as we do with our current diet that the greenhouse gas emission associated with our production of that food would increase by about 12%," Heller said. He emphasized that the average person eats too many calories, according to those recommendations. "On average we should decrease our caloric intake by about 20% according to those recommendations. The recommendations end up calling for lower intake of meats, which carry large carbon footprint, but they also call for an increase in dairy consumption. " he said. "And dairy productions also tends to be greenhouse gas intensive." They found the tradeoff is close to a wash. Benefits to cutting back on food waste Heller's research found that the amount of food that we waste is roughly equivalent in greenhouse gas emissions to the savings the U.S. would realize, as a country, going to a completely vegetarian diet. He admits that neither of those scenarios is realistic for the U.S. right now. "But combined (reducing our food waste and perhaps reducing the amount of meat that we consume) can lead to very significant decreases in greenhouse gas emissions associated with our food system." Heller added that the reduction would be "upwards of 30% reduction."