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disruptive events. More research is needed to understand the planning, protective, and recovery processes of its highly interdependent physical, social, and economic systems. In particular, advancements in
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@nist.gov 303 497 5530 Nikolas Wilson Hrabe nik.hrabe@nist.gov 303.497.3424 Description Additive manufacturing (AM) is a transformational technology for fabricating complex metallic shapes directly from 3-D
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RAP opportunity at National Institute of Standards and Technology NIST Coherent Spectroscopy of Quantum Dots Location Physical Measurement Laboratory, Applied Physics Division opportunity
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characterization techniques for physical and chemical properties in the complex engineered polymeric systems during their service lives in energy, infrastructure, and other applications. Both microscopic (atomic
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of measurements and simulations is increasingly used to improve the understanding of mechanical testing results and provides a means to advance the mechanical testing paradigm toward fewer, more complex tests that
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the construction process and correlates to the durability and service life of the composites. The goal is to understand the interplay between structure-properties-performance within these systems
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on the use of causal Green’s functions (CGF). This technique is referred to as the CGFMD (Causal Green's Function Molecular Dynamics) technique. Presently, we are in the process of generalizing this technique
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or algorithms for detection of the drug signal in complex mass spectral data and chemometrics for identification or classification of drug(s) is also of high interest.Through this opportunity, collaboration with
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, are promising emerging manufacturing technologies for producing complex and highly-customized parts. These processes have been in development over the past 15+ years and their capabilities have grown
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NIST only participates in the February and August reviews. This project’s focus is to develop light-scattering nanoscopy methods for rapid, multi-attribute characterization of nanoparticles