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Graphene pioneers - Professors Andre Geim and Kostya Novoselov - have been knighted - 0 views

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    The scientists were awarded the Nobel Prize for Physics in 2010 and graphene - the world's thinnest, strongest and most conductive material - is considered as having the potential to revolutionise materials science.
Janos Haits

Coming March 2014: OCLC WorldCat Discovery Services - 0 views

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    "WorldCat® Discovery Services provide a new suite of cloud-based applications that brings the FirstSearch® and WorldCat® Local services together. The suite will enable people to discover more than 1.66 billion electronic, digital and physical resources in libraries around the world through a single search of both WorldCat® and a central index that represents nearly 2,000 e-content collections. This will make it possible for 18,000+ FirstSearch libraries to offer a richer discovery experience."
Janos Haits

Pillbox - prototype pill identification system - 0 views

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    Pillbox enables rapid identification of unknown solid-dosage medications (tablets/capsules) based on physical characteristics and high-resolution images.
thinkahol *

Undersea cauldrons replicated life's ingredients - life - 27 May 2010 - New Scientist - 0 views

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    "THE precursor of life may have learned how to copy itself thanks to simple convection at the bottom of the ocean. Lab experiments reveal how DNA replication could have occurred in tiny pores around undersea vents." "To test this theory, Mast and Braun put these ingredients into tubes 1.5 millimetres long. They used a laser to heat one side of the water and create thermal convection. Sure enough, they found that the DNA doubled every 50 seconds (Physical Review Letters, vol 104, p 188102)."
thinkahol *

Most efficient quantum memory for light developed - 0 views

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    ScienceDaily (June 28, 2010) - An Australian National University-led team has developed the most efficient quantum memory for light in the world, taking us closer to a future of super-fast computers and communication secured by the laws of physics.
Charles Daney

The cosmic comic: Riding early waves - 0 views

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    Two fictitious high-spirited scientists of the institute, passionate surfers, take off to visit the early Universe. Not to do serious research there but to experience the ultimate ride on the plasma waves of the big bang. However, they quickly realize that they would be stuck without their knowledge of the physics of the early Universe.
Charles Daney

Model suggests how life's code emerged from primordial soup - 0 views

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    By working with the simplest amino acids and elementary RNAs, physicists led by Rockefeller University's Albert J. Libchaber, head of the Laboratory of Experimental Condensed Matter Physics, have now generated the first theoretical model that shows how a coded genetic system can emerge from an ancestral broth of simple molecules.
Charles Daney

Visualizing loop quantum gravity -- Symmetry Breaking - 0 views

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    To try to illustrate the concept, the Max Planck Institute for Gravitational Physics made the accompanying movie of "Quantum Spin Dynamics in Loop Quantum Gravity." It depicts the quantum evolution of geometry in Loop Quantum Gravity
Max Peterson

Seeing and Believing: Detection, Measurement, and Inference in Experimental Physics(application/pdf Object) - 0 views

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    A discussion of the history of the solar neutrino problem. History of the development of the solar model. Measurement of neutrinos. Discrepancy between observed and predicted neutrino flux. Proposed solution. Experimental verification.
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    Interesting lecture on the solar neutrion problem and how it was "solved".
thinkahol *

Scientists identify DNA that may contribute to each person's uniqueness | KurzweilAI - 0 views

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    Building on a tool that they developed in yeast four years ago, researchers at the Johns Hopkins University School of Medicine scanned the human genome and discovered what they believe is the reason people have such a variety of physical traits and disease risks.
Maluvia Haseltine

Santa Fe Institute - 0 views

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    The Santa Fe Institute is a private, not-for-profit, independent research and education center founded in 1984, for multidisciplinary collaborations in the physical, biological, computational, and social sciences. Understanding of complex adaptive systems is critical to addressing key environmental, technological, biological, economic, and political challenges.
thinkahol *

Curious mathematical law is rife in nature - physics-math - 14 October 2010 - New Scientist - 0 views

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    WHAT do earthquakes, spinning stellar remnants, bright space objects and a host of other natural phenomena have in common? Some of their properties conform to a curious and little known mathematical law, which could now find new uses.
thinkahol *

Constant change: Are there no universal laws? - space - 25 October 2010 - New Scientist - 2 views

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    It looks like physics works differently in different places. If so, everything we think we know about the cosmos may be wrong
thinkahol *

Light at Night Creates Changes in Brain Related to Depression | Psych Central News - 0 views

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    Exposure to even a dim night-time light may cause physical changes in the brain linked to depression, according to an Ohio State University hamster study.
Charles Daney

Untangling the Brain | Harvard Magazine May-June 2009 - 0 views

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    Three Harvard scholars trained in chemistry and physics pursue innovative approaches and tools that address problems in neuroscience.
Charles Daney

Model Suggests How Life's Code Emerged From Primordial Soup - 0 views

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    By working with the simplest amino acids and elementary RNAs, physicists led by Rockefeller University's Albert J. Libchaber, head of the Laboratory of Experimental Condensed Matter Physics, have now generated the first theoretical model that shows how a coded genetic system can emerge from an ancestral broth of simple molecules.
Walid Damouny

Physicist Proposes Solution to Arrow-of-Time Paradox - 0 views

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    Entropy can decrease, according to a new proposal - but the process would destroy any evidence of its existence, and erase any memory an observer might have of it. It sounds like the plot to a weird sci-fi movie, but the idea has recently been suggested by theoretical physicist Lorenzo Maccone, currently a visiting scientist at MIT, in an attempt to solve a longstanding paradox in physics.
Charles Daney

After the Transistor, a Leap Into the Microcosm - NYTimes.com - 0 views

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    The shrinking of the transistor has approached fundamental physical limits. Increasingly, transistor manufacturers grapple with subatomic effects, like the tendency for electrons to "leak" across material boundaries. The leaking electrons make it more difficult to know when a transistor is in an on or off state, the information that makes electronic computing possible. They have also led to excess heat, the bane of the fastest computer chips.
Skeptical Debunker

Scientists find an equation for materials innovation - 0 views

  • By reworking a theory first proposed by physicists in the 1920s, the researchers discovered a new way to predict important characteristics of a new material before it's been created. The new formula allows computers to model the properties of a material up to 100,000 times faster than previously possible and vastly expands the range of properties scientists can study. "The equation scientists were using before was inefficient and consumed huge amounts of computing power, so we were limited to modeling only a few hundred atoms of a perfect material," said Emily Carter, the engineering professor who led the project. "But most materials aren't perfect," said Carter, the Arthur W. Marks '19 Professor of Mechanical and Aerospace Engineering and Applied and Computational Mathematics. "Important properties are actually determined by the flaws, but to understand those you need to look at thousands or tens of thousands of atoms so the defects are included. Using this new equation, we've been able to model up to a million atoms, so we get closer to the real properties of a substance." By offering a panoramic view of how substances behave in the real world, the theory gives scientists a tool for developing materials that can be used for designing new technologies. Car frames made from lighter, strong metal alloys, for instance, might make vehicles more energy efficient, and smaller, faster electronic devices might be produced using nanowires with diameters tens of thousands of times smaller than that of a human hair.
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    Princeton engineers have made a breakthrough in an 80-year-old quandary in quantum physics, paving the way for the development of new materials that could make electronic devices smaller and cars more energy efficient.
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