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considerable amount of data of the standard biological fluids on different LC-MS platforms and in-house software has been developed for chromatography alignment, spectral similarity, peak deconvolution, and
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aligned carbon nanotubes: Superhydrophobic surfaces with ultra-low reflectance, Carbon 127, 195 (2018). Ivan Ryger, Dave Harber, Michelle Stephens, Malcolm White, Nathan Tomlin, Matthew Spidell, John Lehman
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catalyst systems, layered two-dimensional (2D) materials used in nanoelectronics, and self-aligned chemical patterning used for semiconductor manufacturing. This research opportunity focuses on metrology
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device structures or into 2D and 3D crystalline arrays is required for such applications. Both research into specific assembly methods of SWCNT structures (aligned films, arrays of individualized SWCNTs
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facilities in the world and is producing data which has significantly improved several hydrogen performance standards. However, modeling is needed to extend the applicability of the data produced to multiple
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to determine molecular adsorption onto nanoparticles, nanoparticle corona composition, surface density, and conformation of ligands; (2) the differentiation between multiple functional ligands co-conjugated
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multiple 2D images and multiple channels, (d) optimizing 2D projection viewpoints (dose reduction and time savings), (e) applying artificial intelligence and traditional machine learning models to noise
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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
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to this information offers unique possibilities for the development and validation of the next generation of models of molecular interface formation on multiple scales, ranging from molecular dynamics simulations
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of multiple species. These techniques have the potential to elucidate the spatial distribution of individual species within multi-species biofilms in a nondestructive manner. key words Bacteria; Biofilm