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for chemistry, physics and molecular biology. This project takes advantage of how we can combine optical microscopy, single photon counting, and laser fluorescence methods to probe/measure the folding of single
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cannabinoids in cannabis samples (4) application of multidimensional and/or multiple independent analytical methods leading to value assignment of reference materials, and (5) development of chemical
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on air quality Test mitigation methods of reducing harmful gas emissions from agricultural sites Study laboratory and field emissions from forest fires and agricultural burning and impact on local air
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NIST only participates in the February and August reviews. Fundamental questions in astrophysics and remote sensing rely on accurate radiometry. NIST is at the forefront of developing methods
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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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MD simulations using enhanced sampling and metadynamics methods that have the potential to interrogate the conformational space and electrostatics driving forces controlling ERK2 dynamics and its
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formulation must be linked seamlessly. We will develop a Green’s function (GF) method for modeling color centers and other defects in nanodiamonds. The GF technique is computationally efficient and can simulate
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collaborative, interdisciplinary team to enable innovative methods for the predictive engineering of genetic sensors and other living measurement systems in bacteria and yeast. Facilities available
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data analysis techniques, instrument and sample environment development, and simulation methods to compare to experimental results. We are particularly interested in the development of two techniques
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measurement methods for characterizing light-matter interaction at the nanoscale and on ultrafast time scales; and relies on fabrication of devices in the state-of-the-art NIST Gaithersburg NanoFab. key words