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in biological systems, including use of stable isotopes combined with mass spectrometry; (5) the development of methods for separation by size/shape/aspect ratio/chemistry; and (6) the development
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diagnostics of hot plasmas with temperatures in hundreds of thousands or millions degrees is one of the primary and sometimes the only techniques to infer plasma properties. Such hot plasmas can be found in
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details of regulatory mechanisms for ERK1/2 is a timely and important goal. Structural, biochemical, and biophysical experiments carried out by Natalie Ahn's lab and others have established key aspects
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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 Combining organic monolayers with semiconductor surfaces is of interest for many differing applications including molecular electronics, sensors, and bio-electronics. Monolayers on semiconductor
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@nist.gov 301.975.5551 Description Mathematical modeling is fundamental for interpreting measurements. In order to leverage its full potential in metrology settings, however, one must understand how models
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. Compressive sensing is a new approach where incomplete sampling under certain circumstances can be used to accurately recover the full data set--roughly translated into more information from less data
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parallel, low-cost analysis systems that do not rely on optical or aptamer-based labels. Before such systems can be realized, the electromagnetic response of biochemical samples must be understood in detail
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to consider multidimensional landscapes. The goal of this research project is to develop models that can be used to evaluate the stability and predict transitions as cell populations progress from pluripotent
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the researcher a unique opportunity to develop and test novel dosimetry systems for quantification of patient dose in radiotherapy, or dose delivered to products in industrial electron beam processing