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public health and the environment. The profiling of the microbial communities in water also poses a measurement challenge because of the wide diversity of the bacteria, viruses, and eukaryotic
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NIST only participates in the February and August reviews. Knowledge of fluid thermophysical properties is vital for applications in industry, metrology, and environment. The tools of statistical
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interact, even strongly, with its environment or exist within densely integrated technologies. This project seeks to develop the metrological and fabrication framework necessary to understand and manipulate
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thousands to millions of smaller files but have to be rendered seamlessly and interactively; (2) images need to be inspected with their surroundings of spatial, temporal and spectral information, and the
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cutting forces, or thermal drift, among many other possible topics. Our facilities support experimental work via laboratory testbeds and numerous machining centers in a shop environment. Furthermore, NIST
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temperature and velocity data to provide a complete picture of the physics and chemical structure of the environment within the fire enclosure. Measurements will be completed for a variety of fuel types and
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on nuclear magnetic resonance (NMR) spectroscopy- and mass spectrometry (MS)-based metabolomics. We work in an interdisciplinary environment; a successful candidate should be interested in navigating between
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the distribution of drugs in the body and the accumulation of chemicals by organisms in the environment. This approach ignores the difference between storage lipids (triacylglycerides) and membrane lipids
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. The cryptography algorithms implemented in these devices require well-tailored design to suit the resource constrained environments. Many new designs have been proposed for such needs. On the other hand, the
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engineering, experience in instrumentation development, or biological magnetic resonance are desirable. We offer a supportive environment that couples multidisciplinary scientific interactions with advanced