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, such as selective labeling and contrast variation. Our second goal is to improve the accuracy with which solution scattering data of proteins and oligonucleotides can be predicted from the atomic
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materials. This interdisciplinary work is appropriate to those with expertise in fields such as analytical separations, spectroscopy, materials science, (in)organic synthesis, and theoretical modeling. key
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responsible for the observed properties. The results obtained are then used to develop models that can be used to simulate systems with up to hundreds of thousands of atoms. Monte Carlo and molecular dynamics
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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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. This opens up the possibility of using purified CNTs as an ideal rod-like particle system to explore general colloidal behavior in high concentrations of polymers and salts. Interesting phenomena include CNT
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NIST only participates in the February and August reviews. Accurate measurement of optical radiation is important for the optical communications, medical device, semiconductor lithography
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301.975.4579 Description The purpose of this research is to investigate material release from nanocomposites used in commerce, with a focus on nanocomposites commonly used in consumer products. The research
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NIST only participates in the February and August reviews. The need to reduce building energy consumption is well-established and has been the subject of research for many decades. More recent
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to study nanoscale electronic devices. Scanning probe and/or optics experience is preferred. key words Microwave; Nanoscale; Scanning probe microscopy; Near-field optics; Eligibility citizenship Open to U.S
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the integration of thermodynamic and transport properties and phase equilibria in new ways (e.g., by relating mixture viscosities to azeotropy and liquid-liquid equilibria). The goal is to develop modeling