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; Autonomous; Machine learning; Informatics; High-throughput; Data mining; Functional materials; Active Learning
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Division, where we develop instrumentation beyond the state of the art. Our research program offers a supportive, highly-multidisciplinary environment coupled with outstanding experimental resources
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Metrology for Quasi-Optical Wireless Probing of Monolithic Microwave Integrated Circuits NIST only participates in the February and August reviews. Ultrafast electronic devices with fundamental operating frequencies above 100 GHz are used in a wide variety of applications—examples include radio...
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the development of analytical methodologies, from both instrumentation and informatics standpoints, for the multifaceted and convoluted data that are obtained from complex biological, chemical, and forensic samples
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to characterize 2D materials, semiconductor devices, and biological materials from DC to the THz regime. The measurements enable the engineering of dielectric, magnetic and electrical transport properties of thin
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understanding of materials. For communications technology, the lack of acoustic data limits the design of acoustic filter technology. For pharmaceuticals and chemical manfucaturers, there are important relaxation
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on the science that will underpin the development of the needed metrology to close this gap. The ideal candidates would have some understanding of high frequency electrical characterization, as well as substantial
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://www.nist.gov/programs-projects/engineered-fire-safe-products. Char Oxidation; Fire Dynamics; Fire Modeling; Fire Testing; Heat Transfer; Ignition; Material Flammability; Material Property Determination
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RAP opportunity at National Institute of Standards and Technology NIST Large Eddy Simulation of Fires and Combustion Systems Location Engineering Laboratory, Fire Research Division opportunity
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RAP opportunity at National Institute of Standards and Technology NIST Block Copolymer Lithography Location Material Measurement Laboratory, Materials Science and Engineering Division