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exciting area of materials technology and economic impact. This opportunity seeks to develop measures of macromolecular shape, size, and miscibility in filled polymer and polymer blends, protein and polymer
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for fabricating near-net-shape metallic parts and generating microstructures that are infeasible with conventional metallurgy. However, the degree of commercial adoption of AM parts is impeded by
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signals include sec-ondary- and backscattered-electron yields. They are determined by the interaction between the instrument (beam energy, beam shape, detector characteristics) and the sample (its materials
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environmentally controlled facilities for accurate measurement of 1-D and 2-D length, diameter, flatness, straightness, roundness, complex form, angle, and laser frequency. We are interested in efforts that develop
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-form dual-comb spectroscopy for compressive sensing and imaging”, Nat. Photonics, 18, 1312 (2024) E.D. Caldwell, et.al.,”Quantum-limited optical time transfer for future geosynchronous Links”, Nature 618
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releasable transporters (CARTs) with polyelectrolytes. Modern organocatalytic synthesis of well-defined and functional CART molecules interact with oppositely charged polyelectrolytes to form polyplex
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opportunities to interface with researchers at both NIST and at the National Institutes of Health (NIH). Reference Zabow G, Dodd SJ, Koretsky AP: "Shape-changing magnetic assemblies as high-sensitivity NMR
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informatics developers in the public-private-academic Genome in a Bottle Consortium to develop methods to integrate short-, linked-, and long-read sequencing technologies to form benchmarks for somatic variant
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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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within an extended range (~ 10 kHz to 10 MHz). We have implemented several new approaches to solving key measurement issues. Both laser interferometry and PFM-based procedures for quantifying the “shape