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processes over such an extended time range is a formidable task for conventional molecular dynamics. We have developed a mathematical technique for simulation of phonon transport in nanomaterials based
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-Boulder currently has the only supercritical CO2 corrosion facility in the country. Important corrosion data will inform new standards on CO2 pipelines (materials and operating conditions) being developed
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stephanie.watson@nist.gov 301.975.6448 Description This research focuses on developing improved methodologies for characterizing and understanding the deterioration and durability of concrete materials, which
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NIST only participates in the February and August reviews. This opportunity focuses on the development and implementation of liquid chromatography mass spectrometry methods for the quantitation
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electronics. New materials are continually being developed for electronic applications, and accurate measurements of the electromagnetic properties of these often complex new materials is critical both
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NIST only participates in the February and August reviews. The Communications Technology Laboratories (CTL) at NIST is looking for a postdoctoral fellow to work to develop high-throughput materials
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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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is how chain architecture, main chain stiffness, and side group flexibility impacts the elastic modulus of ultrathin polymer films. Additionally, we are developing methods for quantifying the tensile
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applications, the sensitivity of cryogenic instrumentation far surpasses that of conventional room temperature electronics. Consequently, NIST has a large program to develop detectors that operate
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NIST only participates in the February and August reviews. This program is designed to support the design, construction, and operation of high-performance sustainable buildings with good indoor