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, inductively coupled plasma mass spectrometry, and resonant x-ray scattering. key words critical materials; critical minerals; rare earth elements; membrane; sorbent; separation science; e-waste; measurement
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NIST only participates in the February and August reviews. Research efforts are underway to probe biological molecules with Raman spectroscopy in three states-crystal, semi-solid, and solution
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fire growth. State-of-the-art fire models designed for these simulations also require input parameters (material properties) that describe: the decomposition reaction mechanism of combustible solids (and
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form their gear and occuptational environments · complex, multi-scale solid state and aerosol testing and analysis · a wide range of flexibility - applied bench- and full-scale fire testing
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reformulation is often impossible without new, costly clinical trials. In order to improve formulations and/or make reformulation possible, it is necessary to characterize the biologically active state and to
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, https://doi.org/10.1364/OPTICA.4.000724 , 2017. Cossel, K. C., Waxman, E. M., Hoenig, E., Hesselius, D., Chaote, C., Coddington, I., and Newbury, N. R.: Ground-to-UAV, laser-based emissions quantification
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) calculations to significantly improve the state-of-the-art theoretical understanding of electrostatic environments in liquid-phase, at solid-liquid interfaces, and in nanoscale confinement. Qualified candidates
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, transition metal-, transition-metal oxide and/or rare-earth thin-film multilayers, patterned arrays, and nanoparticles with possible technological applications such as spin electronics and cancer therapy
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of the reliability and limitations of both codes and models. The largest single concern is the growing number of thermodynamic databases for aqueous mixed electrolyte solutions and aqueous-solid solubilities
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RAP opportunity at National Institute of Standards and Technology NIST Dynamics and Structure of Molecules and Solids Location NIST Center for Neutron Research opportunity location 50.61.01