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@nist.gov 301 975 2093 Description This opportunity focuses on the development of analytical methods and/or data processing techniques that could be used to advance drug detection and identification (or drug
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measurement methods for quantifying nanoscale transport, doping, crystallographic, piezoelectric, and optoelectronic phenomena. Current device interests include nanowire lasers, microLEDs, photodetectors
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characterize unique sampling methods based on fundamental property data for drugs of abuse. Ultimately, we aim to have a field-deployable tool to reliably determine difficult to detect drug abuse. References
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imaging experiments to assess cell response, and developing quantitative image analysis methods. References Sisan D.R., et al. (2012) Predicting rates of cell state change due to stochastic fluctuations
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assays; Liposomes; Measurement assurance; Medical; Method development; Nanomedicine; Nanotechnology; Pharmaceutical
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NIST only participates in the February and August reviews. The Applied Economics Office (AEO) at NIST works closely with the NIST Community Resilience Program (CRP) and external collaborators
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NIST only participates in the February and August reviews. In situ characterization of advanced ceramic sintering processes The past decade has seen the development of several novel methods
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for prediction modeling. key words cell counting; cell viability; cell therapy; regenerative medicine; analytical methods Eligibility citizenship Open to U.S. citizens level Open to Postdoctoral applicants Stipend
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for chemistry, physics and molecular biology. This project takes advantage of how we can combine optical microscopy, single photon counting, and laser fluorescence methods to probe/measure the folding of single
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of solvation, redox potentials, pKa, spectroscopic observables, enzyme kinetics, etc) for these processes provide a rigorous framework for the validation of novel computational methods. Computational methods