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thinkahol *

Contrary Brin - 0 views

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    "David Brin is a scientist and best-selling author whose future-oriented novels include Earth and Hugo Award winners Startide Rising and The Uplift War. (The Postman inspired a major film in 1998.) Brin is also known as a leading commentator on modern technological trends. His non fiction book -- The Transparent Society - won the Freedom of Speech Award of the American Library Association. For more informations see: http://www.davidbrin.com"
thinkahol *

Scientists invent first male contraceptive pill - Telegraph - 0 views

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    Scientists have developed the worlds male alternative to the female contraceptive pill.
thinkahol *

YouTube - Controlling the Brain with Light (Karl Deisseroth, Stanford University) - 0 views

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    Free Download - StanfordUniversity - January 22, 2009 - Karl Deisseroth is pioneering bold new treatments for depression and other psychiatric diseases. By sending pulses of light into the brain, Deisseroth can control neural activity with remarkable precision. In this short talk, Deisseroth gives an thoughtful and awe-inspiring overview of his Stanford University lab's groundbreaking research in "optogenetics".
thinkahol *

Students, Meet Your New Teacher, Mr. Robot - NYTimes.com - 0 views

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    Computer scientists are developing machines that can teach people simple skills, like household tasks and vocabulary.
thinkahol *

STEPHEN HAWKING: How to build a time machine | Mail Online - 0 views

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    All you need is a wormhole, the Large Hadron Collider or a rocket that goes really, really fast.
thinkahol *

Smarter Than You Think - Google Cars Drive Themselves, in Traffic - NYTimes.com - 0 views

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    Google has been working on vehicles that can drive themselves using software.
thinkahol *

U.S. Military Orders Less Dependence on Fossil Fuels - NYTimes.com - 0 views

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    With insurgents attacking American fuel supply convoys into Afghanistan, the military is pushing renewable energy sources like solar power.
Todd Suomela

Scientific Explanation (Stanford Encyclopedia of Philosophy) - 0 views

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    Reviews deductive-nomological (Popper, Hempel); statistical relevance (Salmon); causal mechanical; and unificationist (Friedman and Kitcher
Todd Suomela

Boltzmann's Anthropic Brain | Cosmic Variance - 0 views

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    Out of the background thermal equilibrium, a fluctuation randomly appears that collects some degrees of freedom into the form of a conscious brain, with just enough sensory apparatus to look around and say "Hey! I exist!", before dissolving back into
Todd Suomela

Guest Post: Tom Levenson on Isaac Newton as the First Cosmologist | Cosmic Variance - 0 views

  • Newton knew what he had done. He was no accidental writer. A parabola, of course, is a curve that keeps on going – and that meant that at the end of a very long and very dense book, he lifted off again from the hard ground of daily reality and said, in effect, look: All this math and all these physical ideas govern everything we can see, out to and past the point where we can’t see anymore. Most important, he did so with implacable rigor, a demonstration that, he argued, should leave no room for dissent. He wrote “The theory that corresponds exactly to so nonuniform a motion through the greatest part of the heavens, and that observes the same laws as the theory of the planets and that agrees exactly with exact astronomical observations cannot fail to be true.” (Italics added).
  • To make his ambitions absolutely clear Newton used the same phrase for the title of book three. There his readers would discover “The System of the World.” This is where the literary structure of the work really comes into play, in my view. Through book three, Newton takes his audience through a carefully constructed tour of all the places within the grasp of his new physics. It begins with an analysis of the moons of Jupiter, demonstrating that inverse square relationships govern those motions. He went on, to show how the interaction between Jupiter and Saturn would pull each out of a perfect elliptical orbit; the real world, he says here, is messier than a geometer’s dream.
Todd Suomela

The Bohr paradox - physicsworld.com - 0 views

  • Why? The best explanation I have heard is advanced by the physicist John H Marburger, who is currently science advisor to US President George Bush. By 1930, Marburger points out, physicists had found a perfectly adequate way of representing classical concepts within the quantum framework using Hilbert (infinite-dimensional) space. Quantum systems, he says, “live” in Hilbert space, and the concepts of position and momentum, for instance, are associated with different sets of coordinate axes that do not line up with each other, thereby resulting in the situation captured in ordinary-language terms by complementarity.“It’s a clear, logical and consistent way of framing the complementarity issue,” Marburger explained to me. “It clarifies how quantum phenomena are represented in alternative classical ‘pictures’, and it fits in beautifully with the rest of physics. The clarity of this scheme removes much of the mysticism surrounding complementarity. What happened was like a gestalt-switch, from a struggle to view microscopic nature from a classical point of view to an acceptance of the Hilbert-space picture, from which classical concepts emerged naturally. Bohr brokered that transition.”
  • In his book Niels Bohr’s Times, the physicist Abraham Pais captures a paradox in his subject’s legacy by quoting three conflicting assessments. Pais cites Max Born, of the first generation of quantum physics, and Werner Heisenberg, of the second, as saying that Bohr had a greater influence on physics and physicists than any other scientist. Yet Pais also reports a distinguished younger colleague asking with puzzlement and scepticism “What did Bohr really do?”.
Todd Suomela

SHOTnews.net » Recent dissertations in or near the history of technology - 0 views

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    Business practice: The rise of American astrophysics, 1859-1919 Nisbett, Catherine Elaine. This dissertation takes seriously the production of astrophysical data by examining observatory practices through the lens of business models.
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