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stressed electrical grid. Modern integrated building automation and control systems create an environment rich with sensor data and distributed control intelligence that can be applied to solve
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@nist.gov 301.975.2860 Description New developments in detector technology have made possible the acquisition of the full electron scattering distribution at each pixel in a scanning transmission electron
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parallel, low-cost analysis systems that do not rely on optical or aptamer-based labels. Before such systems can be realized, the electromagnetic response of biochemical samples must be understood in detail
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also have familiarity with X-ray Diffraction and Pair Distribution Function anaylisis, experience with data acquisition using the Bluesky experiment orchestration package, and knowledge of beamline
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are sought that utilize neutron scattering, imaging, and/or spectroscopy to characterize quantities such as molecular shape, branching, aggregation, and the distribution of water across polymeric membranes
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of phase distributions, grain sizes, texture, and residual stresses in both as-built and heat-treated materials. Model results will both be informed by and feed into parallel work in macroscale
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continues to push patterning to new limits. There are significant needs to understand how the components in these resists are distributed, and critically whether there is aggregation that could contribute
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distribution of nanomaterials, and to study the fate of nanomaterials in the environment or in biological systems. Keywords Buckeyballs; Compositional imaging; Metals in nanomaterials; Nanomaterials
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, since every nanoparticle produced is not identical, it also utilizes new techniques like First Order Reversal Curves (FORC) to characterize the distributions in these properties. A variety of experimental
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of multiscale methods to measure how the marcoscopic behavior of novel graphene devices arises from the microscopic distribution of nanoscale properties involves multiple NIST research efforts linking STM, STS