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including (1) the use of critical venturis and/or ultrasonic flow meters as primary flow standards, (2) CFD modeling validated by experiments characterizing how installation effects (i.e., swirl, asymmetric
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standards and particularly to full classes of materials. Techniques such as multi-scale computational modeling are needed to distill the current knowledge of hydrogen embrittlement mechanisms, from
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of failure strengths are needed to ensure reliability and maximize performance. We use numerous modeling approaches to explore the mechanical and electrical behavior of deforming nanoscale systems. Current
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applications such as microbe strain identification in cases of bioterrorism. Projects focus on the development of NGS assays, bioinformatic methods, and data interpretation models for forensic applications
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NIST only participates in the February and August reviews. Calphad-type models have been successfully employed to describe composition-dependent diffusion mobilities in a variety of disordered
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current limitations on material validation, which are linked to limitations on post-process nondestructive evaluation (NDE) with conventional methods. This project seeks to develop innovative methods
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metrology settings, however, one must understand how models relate to and inform uncertainty estimates. Our current research addresses such problems by combining physics with tools from applied analysis
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RAP opportunity at National Institute of Standards and Technology NIST Community Resilience -- Systems modeling Location Engineering Laboratory, Materials and Structural Systems Division
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] is a classification of security bugs and related faults that features a formal language for the unambiguous specification of software and hardware security weaknesses and vulnerabilities. BF bug models
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https://www.nist.gov/programs-projects/pipeline-safety to learn more about our facilities and current research. Radiation; Metallurgy; Materials science; NDE; Modeling; Fracture; Fatigue; Corrosion