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RAP opportunity at National Institute of Standards and Technology NIST Modeling Complex Microstructures Location Information Technology Laboratory, Applied and Computational Mathematics Division
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. Although use of this geometry to probe structural changes under shear flow has had remarkable success, the most important changes in fluid microstructures often occur in the 1-2 (flow-shear gradient) plane
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RAP opportunity at National Institute of Standards and Technology NIST Computational Electromagnetics Location Information Technology Laboratory, Applied and Computational Mathematics Division
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RAP opportunity at National Institute of Standards and Technology NIST Applied Mathematics of Soft, Fluid, and Active Matter Location Information Technology Laboratory, Applied and Computational
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of their spatial resolution and quantitative measurement. They are posed now to advance from benchmark tests on well-defined geometries and materials to structures and integrated devices of interest for nanoscale
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regimes, and accurate geometry- and biochemistry-based trajectory analyses. However, detailed molecular dynamics simulations are often too time-consuming to become the basis of computational measurements
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received attention as possible materials for efficient carbon dioxide capture. This class of materials exhibits a wide variety of pore sizes, geometries, and connectivities, as well as a range of exposed
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., biomarkers, metabolites) must be evaluated using digital twins of breath device prototypes. Our digital twins are based on simulations using computational fluid dynamics (CFD) and computational fluid and
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RAP opportunity at National Institute of Standards and Technology NIST High-performance Computing and Data Visualization for the NIST Fire Dynamics Simulator Location Engineering Laboratory
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world-class, unique controls and measurement capabilities, and flexibility to incorporate new research instrumentation and ideas. Further, our measurement facilities include X-ray computed tomography