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Kevin Makice

UCLA researchers create highly transparent solar cells for windows that generate electr... - 0 views

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    UCLA researchers have developed a new transparent solar cell that is an advance toward giving windows in homes and other buildings the ability to generate electricity while still allowing people to see outside. Their study appears in the journal ACS Nano.   The UCLA team describes a new kind of polymer solar cell (PSC) that produces energy by absorbing mainly infrared light, not visible light, making the cells nearly 70% transparent to the human eye. They made the device from a photoactive plastic that converts infrared light into an electrical current
Kevin Makice

Artificial light-harvesting method achieves 100% energy transfer efficiency - 0 views

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    In an attempt to mimic the photosynthetic systems found in plants and some bacteria, scientists have taken a step toward developing an artificial light-harvesting system (LHS) that meets one of the crucial requirements for such systems: an approximately 100% energy transfer efficiency. Although high energy transfer efficiency is just one component of the development of a useful artificial LHS, the achievement could lead to clean solar-fuel technology that turns sunlight into chemical fuel.
Kevin Makice

Philippine solar light bottles offer hope - 0 views

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    Illac Diaz (R) and Siplicio Mondas inspect a solar light bottle installed by Philippine soldiers in a shanty town in Manila. With the help of some plastic bottles plus a social media campaign, Diaz is aiming to help a million poor people in a year.
Kevin Makice

Developing sustainable power - 0 views

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    The invention of a long-lasting incandescent light bulb in the 19th century spurred on the second wave of the industrial revolution, illuminating homes, extending leisure time and bringing us to the point today where many millions of people use a whole range of devices from mood lighting to audiovisual media centers, microwave ovens to fast-freeze ice makers, and allergy-reducing vacuum cleaners to high-speed broadband connected computers in their homes without a second thought.
Kevin Makice

Will we hear the light? Surprising discovery that infrared can activate heart and ear c... - 0 views

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    University of Utah scientists used invisible infrared light to make rat heart cells contract and toadfish inner-ear cells send signals to the brain. The discovery someday might improve cochlear implants for deafness and lead to devices to restore vision, maintain balance and treat movement disorders like Parkinson's
christian briggs

The Technium: Radical Optimism - 0 views

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    In his talk on Deep Optimism, Ridley presented a coherent, integrated, and astoundingly thorough case for progress in all degrees. For one easy-to-visual metric, Ridley showed how it takes less time each year to work for a constant benefit, say on hour of artificial light at night. It 1800 it took six hours of typical labor to purchase an hour's worth of candles, so few working people did. In 1880 it took fifteen minutes of work to purchase an hour's worth of kerosene for a lamp. In 1950 it took eight seconds of work to pay for an hour's electricity for a light bulb. In 1997, it took only half a second -- a blink -- of work to light a compact fluorescent bulb for an hour.
Kevin Makice

Ingenious Use of Soda Bottles Lights up the Darkness - 0 views

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    Much of what we write about here at GeekMom is high tech gadgetry, so when I say 'solar' you might think of any number of modern solar powered electrical systems. What you probably didn't think about is the super low tech but incredibly brilliant solar bottle bulb developed by students from the Massachusetts Institute of Technology (MIT).
Kevin Makice

Solar cell turns windows into generators - 0 views

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    Imagine a world where the windows of high-rise office buildings are powerful energy producers, offering its inhabitants much more than some fresh air, light and a view.
Kevin Makice

Earth's outer core deprived of oxygen: study - 0 views

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    The composition of the Earth's core remains a mystery. Scientists know that the liquid outer core consists mainly of iron, but it is believed that small amounts of some other elements are present as well. Oxygen is the most abundant element in the planet, so it is not unreasonable to expect oxygen might be one of the dominant "light elements" in the core. However, new research from a team including Carnegie's Yingwei Fei shows that oxygen does not have a major presence in the outer core. This has major implications for our understanding of the period when the Earth formed through the accretion of dust and clumps of matter. Their work is published Nov. 24 in Nature.
Kevin Makice

Humans and climate contributed to extinctions of large ice-age mammals, study finds - 0 views

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    Both climate change and humans were responsible for the extinction of some large mammals, like the musk ox in this photo, according to research that is the first of its kind to use genetic, archeological, and climatic data together to infer the population history of large Ice-Age mammals. The large international team's research, which will be published in the journal Nature, is expected to shed light on the possible fates of living species of mammals as our planet continues its current warming cycle.
Kevin Makice

Rutgers professor uses lichen to help cities go green - 0 views

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    Elizabeth Demaray, an associate professor of fine arts, is cultivating lichen on the sides of New York City skyscrapers to counteract the lack of native vegetation found in the city. Her "Lichen for Skyscrapers Project" was featured as part of New York's Art in Odd Places Festival from Oct. 1-10 and is currently on view as a site-specific installation on 14th Street between Union Square Park and the Hudson River. "Metropolitan centers figure into local temperatures in an interesting way," Demaray says. "They are sometimes referred to as 'urban heat islands' because they create heat and they trap heat. A large part of this process is due to the materials that we build with and the actual architecture of the buildings that we create." Demaray says one of the ways to reduce heat in these cities is to cultivate lichen, which forms a protective barrier, insulating its supporting building from harmful elements. It can lower cumulative temperatures by absorbing sunlight and reflecting heat due to its light color palate while making oxygen and creating green space on the sides of buildings.
Kevin Makice

Physics could help financial traders - 0 views

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    While most people know that the shortest distance between two points is a straight line, this concept is proving even truer in the world of stock trading. In a world where buying low and selling high means all the difference, racing the speed of light between to different financial markets can mean greater profit.
Kevin Makice

Physicists describe how to make time-reversed light pulses - 0 views

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    By taking advantage of the properties of periodic systems, physicists have described how to efficiently time-reverse ultrashort electromagnetic pulses. Since a time-reversed pulse evolves as if time runs backwards, time reversal eliminates any distortions or scattering that occurred at earlier times, regardless of the medium the pulse has propagated through.
Kevin Makice

Shipping sensor goes to work for climate science - 0 views

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    A device the size of a deck of playing cards that can track temperature, humidity, light and barometric pressure is moving from the shipping world to the realm of research to help develop a better understanding of how the climate is changing.
Kevin Makice

'Bionic eye' implant offers hope to the blind - 0 views

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    Elias Konstantopoulus runs through an optics test with his "bionic" eye glasses during a session at the Lions Vision Research and Rehabilation Center at Johns Hopkins University in Baltimore, Maryland. Konstantopoulus is blind but working with Johns Hopkins University he has been implanted with a microchip and given a set of glasses that enable him to distinguish between light and dark.
Kevin Makice

Collecting the sun's energy: Novel electrode for flexible thin-film solar cells - 0 views

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    Conventional silicon-based rigid solar cells generally found on the market are not suitable for manufacturing moldable thin-film solar cells, in which a transparent, flexible and electrically conductive electrode collects the light and carries away the current. A woven polymer electrode developed by Empa has now produced first results which are very promising, indicating that the new material may be a substitute for indium tin oxide coatings.
Kevin Makice

On the way to hydrogen storage? - 0 views

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    he car of the future could be propelled by a fuel cell powered with hydrogen. But what will the fuel tank look like? Hydrogen gas is not only explosive but also very space-consuming. Storage in the form of very dense solid metal hydrides is a particularly safe alternative that accommodates the gas in a manageable volume. As the storage tank should also not be too heavy and expensive, solid-state chemists worldwide focus on hydrides containing light and abundant metals like magnesium.
Kevin Makice

Could low-cost space missions keep astronomy aiming high? - 0 views

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    Whether in the present so-called 'age of austerity' or more generous times, arguing for funds for space exploration can sometimes be hard and constrained budgets mean that some excellent scientific proposals never see the light of day. On Tuesday 19 April, in his presentation at the National Astronomy Meeting in Llandudno, Wales, Leicester University astronomer Professor Martin Barstow argued that a solution could be found in the form of low-cost space missions with a price tag of £10-20m.
Kevin Makice

Solar power goes viral: Modified virus improves solar-cell efficiency by one-third - 0 views

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    In a solar cell, sunlight hits a light-harvesting material, causing it to release electrons that can be harnessed to produce an electric current. The new MIT research, published online this week in the journal Nature Nanotechnology, is based on findings that carbon nanotubes - microscopic, hollow cylinders of pure carbon - can enhance the efficiency of electron collection from a solar cell's surface.
Kevin Makice

Robots learn to share, validating Hamilton's rule (w/ video) - 0 views

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    Using simple robots to simulate genetic evolution over hundreds of generations, Swiss scientists provide quantitative proof of kin selection and shed light on one of the most enduring puzzles in biology: Why do most social animals, including humans, go out of their way to help each other? In next week's issue of the online, open access journal PLoS Biology, EPFL robotics professor Dario Floreano teams up with University of Lausanne biologist Laurent Keller to weigh in on the oft-debated question of the evolution of altruism genes.
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