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fires and provide motivation for the application of similar technologies. We are interested in developing improved measurement methods of flow, temperature, heat transfer, gas species, and particulate
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, from scratch, by attachment of an electron onto a fully-stripped (bare) nucleus to occupy high angular momentum states with transition frequencies that are accessible to a femtosecond laser frequency
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mass spectrometric (MS) detection for quantitative analysis of dietary supplements; (2) use of high-resolution technologies (such as ultrahigh pressure LC, high-temperature LC, two-dimensional gas
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limited to one-dimensional 1 H NMR on liquid samples. Part of the reason for such narrow use of qNMR is that high-quality standards are lacking. It is worth noting that, even for liquid-phase 1 H NMR
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of force field models is not performed in a systematic manner. The parameters are usually obtained to reproduce limited experimental observations, often of questionable or unknown quality. Furthermore
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materials. We are at the forefront of mechanical testing of these materials, performing fracture, fatigue, and ductility testing on samples, which scale from micron-sized to meters long. We characterize
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the long-term health and performance of FRP/concrete in structural applications. Specific research areas include (1) accelerated laboratory testing of FRP/concrete samples to simulate long-term, outdoor
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design and assessment; (5) developing guidelines for low-damage structural systems; and (6) developing and testing new low-damage technologies for seismic performance enhancement. key words Earthquake
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NIST only participates in the February and August reviews. Computer-based tools, including the NIST Alternatives for Resilient Communities model, or NIST ARC, are being developed to support
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correlations and prediction methods. The program will build on our existing efforts using Quantitative Structure-Property Relationship (QSPR) methodologies and modern machine learning methods (support vector