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Michael Pettibone john.pettibone@nist.gov 301.975.5656 Description Detection, characterization and temporal evolution of metal nanoparticles is undergoing environmental transformations. Within
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measurement traceability to the SI (unit Bq) by expanding on traditional gas counting capabilities and developing new methods to meet outstanding challenges. In particular, we seek to develop absolute assay
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on the development and application of high-resolution measurement methods to study fundamental problems with broad industrial impact in areas such as the service life prediction of polymeric materials. Recent projects
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david.bunk@nist.gov 301.975.5071 Johanna Camara johanna.camara@nist.gov 301.975.4672 Description Research focuses on understanding and developing advanced techniques in mass spectrometry and applying them
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the last 2 decades.[1] However, corresponding development of robust and reproducible in vitro assays for evaluating the critical quality attributes and/or the biological responses of these nano-enabled drug
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models (organoids) are slowly being developed. This postdoctoral solicitation features an opportunity to comprehensively examine and expand upon current methods or to develop completely new, reproducible
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stephanie.watson@nist.gov 301.975.6448 Description This research focuses on developing improved methodologies for characterizing and understanding the deterioration and durability of concrete materials, which
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50.68.62.B8409 Boulder, CO NIST only participates in the February and August reviews. Advisers name email phone Martin J. Stevens marty@nist.gov 303.497.4740 Description Our group is developing chip-scale
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quantitation of the effects of environmental context and evolution. The Group aims to advance fundamental understanding, improve predictability for design, ensure reproducibility and comparability, and
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301.975.2461 Description Our goal is to develop and apply new computational (molecular simulation) and theoretical (statistical mechanics and thermodynamics) methods to study complex fluids, with an emphasis