305 web-programmer-developer-"https:"-"UCL"-"U"-"https:"-"CERIC-ERIC" positions at NIST in United States
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Engineering Laboratory is strived to develop next generation prediction approaches to achieve real-time, numerically efficient, accurate predictions in real fire situations. The candidate will develop novel
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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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Description Developing next-generation joint communcations and sensing applications requires precise measurements of the radio frequency propagation environment as well as sensing target characterization
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remain undiscovered. We are interested in developing new approaches (e.g., engineered microenvironments, mixed species cultures) for expanding microbial culture capabilities, as well as evaluating culture
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are seeking researchers to contribute to the development and application of advanced measurement and automation techniques for exploring processing-structure-property-performance (PSPP) relationships in
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modeling is the parametrization of the force field. There are a large number of force fields in existence and significant efforts are spent on their development and improvement. However, to-date, development
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mandy.esch@nist.gov 301.975.8575 Description Postdoctoral research opportunities are available for developing tissues-on-chips and multi-organ microphysiological systems (MPS) that realize reliable and
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301.975.3716 Description In support of the development of future electronic systems, research focuses in areas that relate to measurements and physics on the nanometer scale based on scanning tunneling
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crystallography and spectroscopy are fundamental and imperative in the investigation and development of condensed matter sciences. We will widely use these methods to study the crystal structures of novel materials
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are particularly interested in developing and characterizing hybrid quantum systems (interfaces between dissimilar physical media), suitable for quantum information purposes, and exotic sources of faint light