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device structures or into 2D and 3D crystalline arrays is required for such applications. Both research into specific assembly methods of SWCNT structures (aligned films, arrays of individualized SWCNTs
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(STR) markers via capillary electrophoresis and next-generation sequencing, as well as mitochondrial genome sequencing. Additionally, NIST focuses on the deconvolution of DNA mixtures, rapid PCR methods
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in biomanufacturing and personalized medicine. We are developing new electronics techniques that leverage the field effect, and optomechanical interferometric methods for the on-chip measurements
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availability of authentic reference standards must be addressed individually for each dietary supplement material. Reference materials and methods are needed to support the analysis of dietary supplements and
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, which require specific 3D conformations to function properly. Any abnormalities in their structures can result in serious health-related problems or drug efficacy losses. However, all current methods have
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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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on developing methods, algorithms, data, and tools, to support autonomous experimentation as well as prediction of industry- and/or community-relevant material properties. Keywords Machine Learning; Artificial
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to meet these demands. NIST also researches methods to improve physical environmental measurements made to complement or validate space-based measurements. The NIST effort is aided by specialized facilities
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Description Research opportunities are available to develop and advance measurement methods required for current and future semiconductor manufacturing processes. Areas of particular interest include
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-dimensional structures with controlled properties into functional devices and to the development of methods for correlating their structural, compositional, electrical, and optical properties to enable a broad