NASA Electronic Parts & Packaging (NEPP) program: contributions to MER success
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Engineering topics
Publications and source records attributed to Ramesham, R..
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Two electronic noses, the Cyranose electronic nose and the electronic nose developed at the Jet Propulsion Laboratory, have been tested to determine their utility for detecting hydrazine and monomethyl hydrazine (MMH).
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One of the basic assumptions underlying all cohesive crack models used in the description of inelastic fracture has to do with the shape of the cohesive force distribution.
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MEMS quality and reliability challenges are discussed and needs for study in these areas are identified.
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A variety of sealed-off devices such as cathode ray tubes (CRT's) electron tubes, plasma displays, particle accelarators and colliders vacuum thermal insulation, ultra-high vacuum (UHV), extreme high vacuum (XHV) systems for semiconductor processing, X-ray tubes, lamps, field-emission displays (FEDs) flat panel displays (FPDs), some microelectromechanical systems (MEMS) and science instruments for space applications, nuclear systems require a vacuum for their successful operation.
Research and development of Micro-Electro-Mechanical Systems (MEMS) in the last decade has shown a significant promise for a variety of commercial applications including automobile and medical purposes.
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Microelectromechanical systems (MEMS) have shown a significant promise in the last decade for a variety of applications such as air-bag, pressure sensors, accelerometer, microgyro, etc.