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, or techniques that will speed up analysis times, provide increased information to the chemist, and/or simplify data interpretation while enhancing data quality. One of the goals of the forensic program at NIST is
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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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and collectively-as well as some of the important application parameters (i.e., T1 and T2 times in imaging and heat output in hyperthermia) have lagged behind. This research area investigates
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the potential toxicity of compounds to humans and ecological receptors. To establish the extent of the biological relevance of these assays in predicting the effects in physiological systems, a high-level of
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will integrate high-frequency electronic devices with ultrasound acoustic devices and microfluidics. Our approach leverages advanced on-wafer calibration and measurement techniques to accurately define
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/or mobile internal regions, as well as RNA and DNA constructs with high density of residual dipolar coupling (RDC) restraints. Reference Maltsev AS, Grishaev A, et al: Improved cross-validation of a
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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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303.492.5291 Description Single molecule studies are revolutionizing biophysics. The Perkins group focuses on developing and applying high-precision single-molecule studies based on optical traps and atomic
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an integrated web-portal. A successful applicant will have extensive skills in data informatics and programming. Some of the programming skills required include web-based markup languages, experience with SQL
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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