355 web-developer "https:" "https:" "https:" "Fraunhofer Gesellschaft" positions at NIST
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group is working to develop the measurement science and technology to make multiplexed biomolecular measurements practical, while also working to develop the standards and measurement assurance approaches
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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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, but face technical challenges to achieve their potential for high efficiency. Third generation devices are now being developed that exploit nanoscale three-dimensional (3D) structures to achieve higher
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Development of magnetism-based future electronics is fueled by demand for large memory capacity and high data processing rates. New technologies such as hard drives with bit-patterned media and magnetic memory
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Description The goals of this project are to develop new assays to support the production of safe and effective protein therapeutics. The new generations of biopharmaceuticals are produced using cells in
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such as PET-MR or MR-US have unique challenges when developing quantitative imaging protocols. In addition, the program has a focus on techniques that challenge the current methodology of MRI. Techniques
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higher production rates of small to medium sized parts compared to powder bed fusion technologies. The goal of this research opportunity is to develop new methods for their integration into machine
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NIST only participates in the February and August reviews. Research on photovoltaics focuses on the development of new and improved device characterization methods for various cell technologies and
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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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prevent a true function-by-design approach to development and manufacturing. We are interested in using analytical theory, large-scale molecular dynamics (MD) simulations, and density functional theory (DFT