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@nist.gov 301.975.4663 Description We are developing novel neutron detectors and spectrometers for applications in homeland security, radiation protection, and basic research. Development of sensitive neutron
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insights into medical inquiry and in the development of medical diagnostics to advance human health, significant gaps persist in the measurement services and measurement science tools needed to obtain
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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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[email protected] 301.975.4133 Description NIST has led the Genome in a Bottle Consortium to develop widely-used benchmark variant calls for seven human cell lines [1]. GIAB has primarily used methods
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devices, coatings, food-related materials, and personal care. Work emphasizes the development of analytical methods for quantitative measurement of engineered nanoparticle properties, including bulk and
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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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large program to develop detectors that operate at temperatures between 4 Kelvin and 50 milliKelvin. The adoption of these detectors in real-world applications depends critically on the availability
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NIST only participates in the February and August reviews. This project’s focus is to develop light-scattering nanoscopy methods for rapid, multi-attribute characterization of nanoparticles
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weakness and vulnerability datasets and multidimensional vulnerability classifications. It also enables the development of new algorithms for code analysis and the use of AI models and formal methods
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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