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and shape memory polymers. We have demonstrated that rapid hyperspectral imaging based on IR and coherent Raman can unravel the complex structure of polymers, including 3D orientation angles
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and identify structural variants, and utilizing digital PCR (dPCR) for precise quantification of transgene copy number variations (CNV) and detection of low-frequency population heterogeneity. The goal
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RAP opportunity at National Institute of Standards and Technology NIST First-Principles Modeling of Electronic Structure and Near-Edge X-Ray Spectroscopy Location Material Measurement Laboratory
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laboratory is equipped with both a conventional atom probe tomograph as well as a prototype EUV-modified atom probe tool. Furthmore, our collaborative laboratory structure provides critical in-house support
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, an improved understanding of the structure and dynamics of these molecules is needed. Because of the electrostatic interactions and connectivity of polymers, the dynamics and structure of these materials
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structural materials under stress. key words Fatigue; Fracture; Corrosion; Modeling; Alternative fuels; Alternative energy; Materials science; Metallurgy; Hydrogen embrittlement; Eligibility citizenship Open
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crystallography and spectroscopy are fundamental and imperative in the investigation and development of condensed matter sciences. We will widely use these methods to study the crystal structures of novel materials
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301.975.6050 Jan Obrzut jan.obrzut@nist.gov 301.975.6845 Description As part of a collaborative NIST-wide program involving structural characterization, modeling, and high-throughput microwave measurement, we
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RAP opportunity at National Institute of Standards and Technology NIST Fundamental Studies of Polymer Mechanical Properties and Adhesion Location Engineering Laboratory, Materials and Structural
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solutions, protein solutions, charged colloid solutions, and even low-molecular mass salt species. This research opportunity involves phase diagram, structure, and dynamics of polyelectrolyte solutions and