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LeopoldS

Description of Tersicoccus phoenicis gen. nov., sp. nov. isolated from spacecraft assem... - 0 views

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    bacteria apparently specialised in space clean rooms ...
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    I'm trying to read the abstract, but I simply can't manage...
Tom Gheysens

Gut bacteria that protect against food allergies identified -- ScienceDaily - 5 views

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    YEEHA! looks like there is hope for me after all! :)
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    > looks like there is hope for me after all! Not really, if you believe ScienceDaily headlines...
Thijs Versloot

Magnetic bubble may give space probes a soft landing - 4 views

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    I am also looking into this idea since some time and it seems NASA is already ahead, awarding two contract to investigate magnetoshell aerocapture. This could be interesting for probes that want to enter eg Marsian atmospheres at relatively high velocity. Or for multiple re-entry s/c at Earth. The idea of the experiment, The satellite will carry a copper coil, powered by a lithium-ion battery, that generates a magnetic field around the probe. As it descends, the spacecraft will eject a small amount of plasma. This gets trapped in the magnetic field, creating a protective bubble that stops air molecules colliding with the craft and producing heat.
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    A few years back Mimmo has worked on this, rather from the theory side if I remember well ...
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    The power requirements for such a thing must be HUGE!
Thijs Versloot

Graphene coated silicon super-capacitors for energy storage - 1 views

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    Recharge in seconds and efficiently store power for weeks between charges. Added bonus is the cheap and abundant components needed. One of the applications they foresee is to attach such a super-capacitor to the back of solar panels to store the power and discharge this during the night
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    very nice indeed - is this already at a stage where we should have a closer look at it? what you think? With experience in growing carbon nanostructures, Pint's group decided to try to coat the porous silicon surface with carbon. "We had no idea what would happen," said Pint. "Typically, researchers grow graphene from silicon-carbide materials at temperatures in excess of 1400 degrees Celsius. But at lower temperatures - 600 to 700 degrees Celsius - we certainly didn't expect graphene-like material growth." When the researchers pulled the porous silicon out of the furnace, they found that it had turned from orange to purple or black. When they inspected it under a powerful scanning electron microscope they found that it looked nearly identical to the original material but it was coated by a layer of graphene a few nanometers thick. When the researchers tested the coated material they found that it had chemically stabilized the silicon surface. When they used it to make supercapacitors, they found that the graphene coating improved energy densities by over two orders of magnitude compared to those made from uncoated porous silicon and significantly better than commercial supercapacitors. Transmission electron microscope image of the surface of porous silicon coated with graphene. The coating consists of a thin layer of 5-10 layers of graphene which filled pores with diameters less than 2-3 nanometers and so did not alter the nanoscale architecture of the underlying silicon. (Cary Pint / Vanderbilt) The graphene layer acts as an atomically thin protective coating. Pint and his group argue that this approach isn't limited to graphene. "The ability to engineer surfaces with atomically thin layers of materials combined with the control achieved in designing porous materials opens opportunities for a number of different applications beyond energy storage," he said.
Juxi Leitner

Lotus Plant-Inspired Dust-Busting Shield To Protect Space Gear - 3 views

  • replicate to prevent dirt from accumulating on the surfaces of spacesuits, scientific instruments, robotic rovers, solar array panels and other hardware used to gather scientific data or carry out exploratory activities on other objects in the solar system
  • The team also is trying to partner with Northrop Grumman to add a biocide to the coating, which would kill bacteria that thrive and produce foul odors wherever people are confined to a small space for long periods, like the space station.
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    We had some discussion about the Lotus-effect roughly two years ago. Zoe said that NASA surely worked on it. Well, she was right.
pacome delva

Stones from Sticks | Physical Review Focus - 1 views

  • to make nanoscale diamond crystals, researchers have used their own tricks, including recipes involving carbon nanotubes.
  • nanodiamonds could be used as hard protective coatings in small scale systems or sensors.
Tobias Seidl

Protection mechanisms of the iron-plated armor of a deep-sea hydrothermal vent gastropo... - 1 views

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    Here, we report new materials and mechanical design principles of the iron-plated multilayered structure of the natural armor of Crysomallon squamiferum, a recently discovered gastropod mollusc from the Kairei Indian hydrothermal vent field, which is unlike any other known natural or synthetic engineered armor.
Dario Izzo

Create the Future Design Contest 2010 - 1 views

shared by Dario Izzo on 25 May 10 - Cached
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    Easy money.....
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    So an idea for a "product that could benefit society, protect our planet, or create jobs" is worth $20,000? And then they take the idea and earn billions? Well...
ESA ACT

Quantum cryptography to protect Swiss election - tech - 15 October 2007 - New Scientist... - 0 views

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    Luzi and Clovis will like it ... :-)
Luke O'Connor

Why Do Woodpeckers Resist Head Impact Injury: A Biomechanical Investigation - 2 views

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    "...the woodpecker does not experience any head injury at the high speed of 6-7 m/s with a deceleration of 1000 g when it drums a tree trunk. It is still not known how woodpeckers protect their brain from impact injury...."
LeopoldS

Boeing Patents a Force Field System to Block Explosions - 2 views

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    looks like an application of laser filamentation ...
jaihobah

Topological insulator laser - 2 views

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    These are lasers whose lasing mode exhibits topologically-protected transport without magnetic fields. The underlying topological properties lead to a highly efficient laser, robust to defects and disorder, with single mode lasing even at very high gain values.
jcunha

NASA proposes a magnetic shield to protect Mars' atmosphere - 2 views

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    In the Planetary Science Vision 2050 Workshop a cool concept for a magnetic dipole sitting at Mars L1 with an estimated field of 1-2 Tesla was proposed to shield Mars from Solar Winds and provide an elementary magnetic shielding to Mars.
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