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to this research is the development and application of real-time data analysis pipelines to process the vast, high-speed XRD datasets generated during AM processes. These pipelines will utilize
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conditions with advanced metrology . This project seeks to develop research tools for measuring laser propagation to and from the laser-matter interaction, material cooling rates, and more, via high-speed
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are seeking researchers to contribute to the development and application of advanced measurement and automation techniques for exploring processing-structure-property-performance (PSPP) relationships in
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for metastatic melanoma, but most patients develop resistance. Because of this, ERKs are important therapeutic targets, and high-affinity inhibitors are in clinical trials. Therefore, understanding the molecular
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NIST only participates in the February and August reviews. This suite of projects seeks to advance the microbial metabolomics infrastructure through the development of new analytical methods
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advance the various existing commercial and research technologies that are currently (or have future potential to be) employed for IPM of industrial metal AM machines, and developing new methods
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@nist.gov 843.460.9894 Description This research focuses on developing new applications of high resolution/accurate mass (HRAM) mass spectrometry for exposure sciences and forensic analyses. HRAM mass
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than the actual biological changes being probed in metabolomics investigations, which is a roadblock to commercial translation of findings. Research in this area will focus on the development and
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-ray detector developed at NIST offers abundant opportunities to conduct new experiments in chemistry and physics. Its high energy resolution should allow us to observe changes in oxidation state as a
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301.975.8582 Michael Garth Huber michael.huber@nist.gov 301 975 5641 Description This program explores complementary aspects of atom and neutron interferometry with particular emphasis on their interplay with