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on the design and fabrication of prototype nanostructure electronic devices such as FinFETs for applications in high power electronics. We welcome proposals aimed at new technological aspects of semiconductor
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characterization, microstructural analysis, modeling, and/or data science to reach out and apply, as a variety of perspectives will be invaluable in advancing our understanding of material behavior and design. We
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developing the measurement infrastructure to acquire fundamental property data related to the capture and release of difficult to detect drugs or drug metabolites. We will then design, develop, and
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on the design, construction, and application of a suite of in situ measurement platforms for use with NIST’s state-of-the-art neutron and synchrotron X-ray scattering facilities [1], capable of interrogating
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of LC-MS patterns of biological fluids. Previous knowledge and experience of a high-level programming language--preferably C++, Python, or Java and of pattern recognition techniques--to draw statistically
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between concrete and the FRP bond during weathering. These studies provide quantitative data needed to improve building design and understanding of the long-term performance of FRP materials used to repair
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proteins or amyloid beta. Keywords Biopharmaceutical; Formulation; Infrared spectroscopy; Monolayer structure; Protein stability; Protein structure; Protein-ligand binding; Rational drug design; Structural
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autonomous reasoning and XAI, and would help design and develop software and systems to enable the adoption of KRR technologies within materials science and engineering. The successful applicant does not need
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the “NIST-on-a-chip” program, we are designing and building chip-scale accelerometers as field-deployable SI-traceable standards. The accelerometers employ a micromechanical structure in conjunction with a
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photolithography methods. The self-assembly of the block copolymer is directed by a template patterned by conventional lithographic methods. The block copolymer structure within the pattern template can amplify the