355 web-developer "https:" "https:" "https:" "Fraunhofer Gesellschaft" positions at NIST
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Obrzut jan.obrzut@nist.gov 301.975.6845 Christopher L. Soles christopher.soles@nist.gov 301.975.8087 Description This research is focused on the development and use of cellulose nanocrystals (CNC) in
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seeks to develop the analytical capabilities and standards to support the measurement needs of the water measurement community and other governmental agencies that monitor and regulate water
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related botanical materials. Research topics include (1) development of liquid chromatographic (LC) separations of plant constituents, with detection by absorbance, fluorescence, electrochemical, and/or
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.B1995 Gaithersburg, MD NIST only participates in the February and August reviews. Advisers name email phone Hui Wu huiwu@nist.gov 301 975 2387 Description We develop and study new materials for carbon
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. The composition explicit distillation curve method, developed at NIST, provides a unique approach to join fuel composition with the thermophysical properties. Of critical importance is the moiety family breakdown
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interact, even strongly, with its environment or exist within densely integrated technologies. This project seeks to develop the metrological and fabrication framework necessary to understand and manipulate
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position focuses on developing measurement methodologies to characterize mechanical properties and deformation behavior in advanced packaging applications. It involves: Design, application, and evaluation
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quantities for meaningful comparison. We lead the development of innovative standards and novel calibrations to achieve accuracy in localization microscopy [1, 2], with applications ranging from nanoplastic
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opportunities are available in developing integrated nanophotonic architectures and devices for realizing compact, efficient, accurate and dynamic quantum AMO systems-on-a-chip. By creating a set of scalable
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emission tomography (SPECT). The research associate will join a multidisciplinary team of experts to develop new approaches to mass and radionuclide metrology with inkjet technology and will have