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metallic systems and are currently being developed for a variety of ordered metallic systems. These composition dependent mobility descriptions can then be used in conjunction with multicomponent
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, internal dynamics, materials physics and chemistry is of primary importance in determining the processing, performance and viability of advanced ceramic components such as relevant to solid oxide or hydrogen
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include 1) characterizing novel nanomagnetic contrast agents on both the macroscopic scale using NIST NMR/MRI systems and on the nanoscale using scanned probe imaging systems, 2) combining low-field MRI
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microfluidic networks.Our goal is to develop systems that enable accurate, high-throughput, and dynamic measurement of materials in flow, which will, for example, improve the ability to specify composition and
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DeCost brian.decost@nist.gov 301.975.5160 Description Trustability and physical interpretability are critical requirements for the development of robust and sustainable machine learning systems needed
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of the inflaton potential. Such experiments require even more precise measurement of the polarization of the microwave background with exquisite control of systematic errors. NIST is developing polarization
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Description The Communications Technology Laboratories (CTL) at NIST is looking for a research assistant to work developing mm-wave components from complex oxides. This project will involve dc to 110 GHz
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301.975.2282 Description In too many cases, the accuracy of measurements for nuclear forensics, nuclear medicine, high-energy physics, reactor engineering, and environmental monitoring is limited by the scant
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of aqueous chemical models, incorporated into computer codes, for both pure and applied research that include industrial chemistry, chemical engineering, water treatment, hydrometallurgy, toxicology, medical
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@nist.gov 301.975.3958 Description Scanning electron microscopy (SEM) is used for metrology of nanometer-scale features in semi-conductor electronics applications and for emerging nanotechnologies. SEM