348 algorithm-development-"Prof"-"Washington-University-in-St"-"Prof"-"Prof" positions at NIST
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information. Our group performs research and development to extend the accuracy, wavelength range, power range, robustness, and portability of radiometric standards. We use advanced nanfabrication techniques
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determination of marijuana components, development of vapor measurement technology and canine training aid materials for opioids and improvised explosives, targeted and non-targeted screening of bulk samples and
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properties, facilitating the development of accurate standard tests and predictive methods, and their safe use at full-scale. key words Laminar burning velocity; Refrigerant flammability; Numerical flame
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existing projects in the Energy and Environment Division. References Persily A” "Challenges in developing ventilation and indoor air quality standards: The story of ASHRAE Standard 62." Building and
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approval, we seek to develop methods to measure local stress states in benchmark constriction-flow geometries that lead to blood damage. For example, we seek improvements in flow-field imaging, flow
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the integration of thermodynamic and transport properties and phase equilibria in new ways (e.g., by relating mixture viscosities to azeotropy and liquid-liquid equilibria). The goal is to develop modeling
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of neutron beams, and its exploitation in neutron-based quantum information processing. Experimental and theoretical proposals are solicited which develop improved techniques for atom or neutron interferometry
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. The bioanalytical science group is directed toward developing a suite of fundamental measurement science, technology, standards, and reference data to enable more accurate and confident characterization of key
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internal and external to NIST -- to develop new measurement tools and improve quality of existing measurements. Recent work has focused on (i) design and operation of microfluidic devices for cytometry and
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on fundamental constants in the development of quantum electrical standards. The FEM group uses physical laws, quantum invariants, and ultra-precision measurement techniques to create and refine a core set of