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301.975.6662 Description An experimental and modeling program is underway to further the understanding of dynamic processes that occur in fires and to reduce the impact of fire on people, property, and the
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approach to community resilience for buildings and infrastructure systems that includes (1) identifying performance and recovery goals based on their role in the community and the social and economic
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experiments and datasets for model validation of multi-phase computation fluid dynamics (CFD), discrete element method (DEM), or data-driven modelling. Measurement of defect types and populations using micro- x
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of aqueous chemical models, incorporated into computer codes, for both pure and applied research that include industrial chemistry, chemical engineering, water treatment, hydrometallurgy, toxicology, medical
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NIST only participates in the February and August reviews. Photoelectron spectroscopy (XPS, AES, XAS) and microscopy (PEEM, LEEM, SEM, SPEM) are in high demand for exploring morphologically and
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of phase distributions, grain sizes, texture, and residual stresses in both as-built and heat-treated materials. Model results will both be informed by and feed into parallel work in macroscale
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@nist.gov 301.975.4420 Description This research opportunity focuses on assessing the performance of reinforced concrete structures that have been deteriorated due to aging (e.g., freezing and thawing
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9841 Description Recent advances in genomic sequencing technologies have created a tremendous flux of new high-quality genomes for a multitude of non-model species. With each new genome many downstream
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2023, DOI:10.3389/fmicb.2023.1133773 [2] W. Johnson, D. C. France, T. L. Kirschling, & F. L. Walls, “Resonator and process for performing biological assay,” U.S Patent US 9,725,752 B2 [2017]. https
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correlations and prediction methods. The program will build on our existing efforts using Quantitative Structure-Property Relationship (QSPR) methodologies and modern machine learning methods (support vector