217 evolution "https:" "https:" "https:" "CMU Portugal Program FCT" positions at NIST
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, (2) interpretation of experimental spectra, (3) development of semi-empirical methods, (4) studies of reactivity indices, (5) computational electrochemistry, and (6) chemical informatics. The explosion
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Obrzut jan.obrzut@nist.gov 301.975.6845 Christopher L. Soles christopher.soles@nist.gov 301.975.8087 Description This research is focused on the development and use of cellulose nanocrystals (CNC) in
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development, microfabricated device design and development, measurement of samples with ultrahigh throughput sequencing and microarrays, and bioinformatic/biostatistical data analysis of the large data sets
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Poppendieck dustin.poppendieck@nist.gov 301.975.8423 Description This program is designed to provide the measurement science to support the development of industry-consensus standards and guides related
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development of advanced models for the prediction of the above physical properties in such solid solutions. We use first-principles density functional theory calculations to uncover the microscopic physics
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may lead to developing techniques for the quantitation of polar and nonvolatile analytes in complex matrices. We are also interested in development of the quantitative potential of LC/MS/MS and MALDI
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2023, DOI:10.3389/fmicb.2023.1133773 [2] W. Johnson, D. C. France, T. L. Kirschling, & F. L. Walls, “Resonator and process for performing biological assay,” U.S Patent US 9,725,752 B2 [2017]. https
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and data-driven models [2, 3]. Metric Identification: Identifying key quality metrics for various "digital objects" throughout the ICME development lifecycle. Uncertainty Quantification & Propagation
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related botanical materials. Research topics include (1) development of liquid chromatographic (LC) separations of plant constituents, with detection by absorbance, fluorescence, electrochemical, and/or
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, oxidation, and mechanical wear of chain scission in fibers are required to support the development of predictive models. This project seeks to utilize and develop novel chemical and mechanical techniques