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RAP opportunity at National Institute of Standards and Technology NIST Durability of Concrete Materials Containing Reactive Minerals in the Aggregate and Concrete Location Engineering Laboratory, Materials and Structural Systems Division opportunity location 50.73.11.C1032 Gaithersburg,...
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RAP opportunity at National Institute of Standards and Technology NIST Autonomous experimentation and machine learning of material properties Location Material Measurement Laboratory, Materials Measurement Science Division opportunity location 50.64.31.C1094 Gaithersburg, MD NIST only...
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(IPDA) and aerosol backscatter differential absorption LIDAR (DIAL) techniques. Resources: For DIAL experiments, an electro-optic modulator based scanning spectrometer for performing rapid scans (up to 40
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We develop and utilize state-of-the-art experimental and computational techniques to acquire, evaluate, and correlate thermodynamic data of standard reference quality with a particular emphasis on
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center. Applicants are expected to be skilled in one of the programming language such as C++/C, Perl, Matlab, or R, and have majored in Chemistry, Statistics, or Computer Science. Reference Yang X, et al
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trace residues, and characterization of emerging synthetic opioids, cathinones, and cannabinoids by MS, low- and high-field NMR, FTIR and Raman. Available analytical equipment for these investigations
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impediments to meeting the desired manufacturing and performance standards. Digital twins (DT) are being adopted in the AM industry to optimize the entire manufacturing process and enable products with high
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RAP opportunity at National Institute of Standards and Technology NIST Metabolomic and Lipidomic Research: Emphasizing Advanced Data Analysis, Metabolite/Lipid Annotation, and Functional Pathway Elucidation Location Material Measurement Laboratory, Chemical Sciences Division opportunity...
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computational software. The combination of this effort, with both its experimental and theoretical sections, with the complementary CW Terahertz Spectroscopy effort described elsewhere, greatly increases our
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numerical predictions) are strongly affected by stretch, buoyancy, and radiation heat losses. This project consists of experiments and numerical modeling of these flames to understand their fundamental