184 structures "https:" "https:" "https:" "https:" "https:" "Imperial College London" positions at NIST
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new measurement capabilities, standards, or applications or improve existing methods for reference artifact calibration. For more information, see https://www.nist.gov/pml/sensor-science/dimensional
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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
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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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are created during the imprint. In many instances, the desired properties of the functional material can be altered by the NIL processes. Examples might include changes in the pore structure of an imprinted
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thermodynamic, diffusion mobility, and molar volume CALPHAD-based databases with various computational tools to predict desired material properties (e.g., strength, fatigue) in structural materials. Essential
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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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force fields and probabilistic multiscale/multiphysics surrogate modeling. Preferred areas of application include structure and microstructure of metallic alloys and relationships between defects and
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NIST only participates in the February and August reviews. The Community Resilience Program (https://www.nist.gov/community-resilience ) is developing science-based tools to assess resilience and
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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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of structural responses for performance-based seismic engineering of tall buildings. Opportunities include the following: (1) developing improved modeling and analytical capabilities for nonlinear dynamic