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, and algorithm design for inferring conclusions from multiple sources of information. Uncertainty quantification and propagation is vitally important such autonomous workflows, as is the development
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electron excited X-ray microanalysis has been the electron probe microanalyzer with wavelength dispersive spectrometer (EPMA/WDS). On the other hand, energy dispersive X-ray microanalysis is often viewed as
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are essential for broad adoption of these methods, this postdoc would collaborate with a unique array of technology and informatics developers in the Genome in a Bottle Consortium to develop authoritative de novo
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are being explored. The many-body physics of arrays of structures is being studied. Exotic spin physics that arises in atomic scale solid state systems is being explored. Results are used to understand and
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Facility for Adsorbent Characterization and Testing (FACT Lab) is equipped with a range of instruments, including manometric measurements of adsorption, gravimetric measurements of adsorption, measurements
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RAP opportunity at National Institute of Standards and Technology NIST Applied Optimization and Simulation Location Information Technology Laboratory, Applied and Computational Mathematics
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@nist.gov 301.975.8496 Description Autonomous experimentation is the combination of automated execution with machine learning (ML) decision making. It has demonstrated the possibility of accelerating
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RAP opportunity at National Institute of Standards and Technology NIST Mathematical Modeling of Magnetic Systems Location Information Technology Laboratory, Applied and Computational Mathematics
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Sara Orski sara.orski@nist.gov 301 975 4671 Description Near-infrared (NIR) spectroscopy is the rapid, workhorse technique used by recycling facilities for sorting of plastics, yet as currently used it
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interactions, and phonon confinement effects. Therefore, it is important to understand phonon propagation in nanomaterial systems at multiple length and temporal scales for which we need a robust mathematical