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the melting point and mechanical deformation due to powder densification and compliance to a (cold) build plate. These processes give rise to material microstructures quite unlike wrought materials and that
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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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Multiscale modeling of complex electrostatic processes in heterogeneous molecular environments NIST only participates in the February and August reviews. Molecular ionization, ion pairing, transport
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part of a research recommendation engine to guide researchers in the lab. The algorithms integrate machine learning, solid state physics, on-the-fly physical experiments, on-the-fly simulations
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concrete structural elements under massive, real-fire loading to study scaling effects and to characterize the complex processes that drive member degradation during a fire (e.g., spalling, moisture
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speed, spectral clarity, and spectral breadth. This system has been applied to cells, tissues, and biomaterials. Our interest in further development is two-fold: (1) Numerical processing and analysis
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non-zero T-violating asymmetry coefficient in the decay process. Parity violation in neutrons can also be used to probe nucleon-nucleon weak interactions. We are currently working on a measurement of
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@nist.gov 301.975.6598 Jiann C. Yang [email protected] 301.975.6662 Description An experimental and modeling program is underway to further the understanding of dynamic processes that occur in fires and to