s (MEMS), also known as microsystems technology in Europe, or micromachines in Japan, are a class of
MEMS Technology | Mouser Electronics - 0 views
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smaller than the diameter of a human hair
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However, MEMS parts are not machined. Instead, they are created using micro-fabrication technology similar to batch processing for integrated circuits.
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Attention in this area was first focused on microsensor
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Attention in this area was first focused on microsensor
What is MEMS Technology? - 0 views
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Likewise, the types of MEMS devices can vary from relatively simple structures having no moving elements, to extremely complex electromechanical systems with multiple moving elements under the control of integrated microelectronics.
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including temperature, pressure, inertial forces, chemical species, magnetic fields, radiation, etc.
NSC-68 United States Objectives and Programs for National Security - 0 views
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conflict between idea of slavery under the grim oligarchy of the Kremlin
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The implacable purpose of the slave state to eliminate the challenge of freedom has placed the two great powers at opposite poles. It is this fact which gives the present polarization of power the quality of crisis.
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marvelous diversity, the deep tolerance, the lawfulness of the free society.
How do hydrogen peroxide rockets work? :: Peroxide Propulsion - 0 views
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water steam and oxygen.
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650 oC.
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NASA Eyeing Nuclear Fusion Rockets for Future Space Exploration | Advanced Propulsion C... - 0 views
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Nuclear fusion rockets could slash travel times through deep space dramatically, potentially opening up vast swathes of the solar system to human exploration
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You could get to Saturn in a couple of months
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Traditional chemical propulsion systems can get humans to destinations in deep space, but with a lot of travel time. For example, a roundtrip manned mission to the vicinity of Mars, which NASA aims to execute by the mid-2030s, would require about 500 days of spaceflight.
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Project Orion (nuclear propulsion) - Wikipedia, the free encyclopedia - 0 views
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Project Orion was a study of a spacecraft intended to be directly propelled by a series of explosions of atomic bombs behind the craft (nuclear pulse propulsion). Early versions of this vehicle were proposed to take off from the ground with significant associated nuclear fallout; later versions were presented for use only in space.
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The Orion nuclear pulse drive combines a very high exhaust velocity, from 19 to 31 km/s in typical interplanetary designs, with meganewtons of thrust.[4] Many spacecraft propulsion drives can achieve one of these or the other, but nuclear pulse rockets are the only proposed technology that could potentially meet the extreme power requirements to deliver both at once
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The Orion concept detonates nuclear explosions externally at a rate of power release which is beyond what nuclear reactors could survive internally with known materials and design.
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