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of interest include the simulation of fires, flame spread, and smoke transport for fire safety application. Fires, which are outdoors and in enclosures, are considered. Numerical approaches involve both large
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Description Mathematical modeling forms the basis for understanding, simulating, optimizing and controlling numerous scientific phenomenon and associated measurements. Mathematical models frequently take the
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of the numerical solutions. The project is expected to produce a set of computational measurements, models, and simulation protocols that will lead to the accurate molecule and microstructure interaction and
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RAP opportunity at National Institute of Standards and Technology NIST Applied Optimization and Simulation Location Information Technology Laboratory, Applied and Computational Mathematics
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are developing high order integral equation methods and numerical tools for computational electromagnetics. This research focuses on the frequency domain electromagnetic field solvers that involve automatic
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analysis, continuum mechanics, differential geometry, and numerical simulation. Keywords applied mathematics; biophysics; fluid dynamics; soft matter; active matter Eligibility citizenship Open to U.S
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numerical predictions) are strongly affected by stretch, buoyancy, and radiation heat losses. This project consists of experiments and numerical modeling of these flames to understand their fundamental
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engineered-wood-products. These calibration measurements, analysis tools, resulting material property sets, and comparisons of experimental measurements and numerical simulations of full-scale fire growth
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303.497.4598 Description The Applied Chemicals and Materials Division (ACMD) of the NIST Material Measurement Laboratory (MML) performs numerical modeling to advance laboratory measurements of exhaled breath
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enough to keep pace with the numerous and constantly evolving synthetic drugs in use today. Portable proton transfer reaction mass spectrometry (PTR-MS) is a technology well suited to address