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to meet current and future demands for water for energy, food production/agriculture, and human health. A greater understanding of the chemical and microbial contaminant profiles in the traditional water
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to meet current and future demands for water for energy, food production/agriculture, and human health A greater understanding of the chemical and microbial contaminant profiles in the traditional water
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RAP opportunity at National Institute of Standards and Technology NIST Measurement Science to Promote Water Quality and Health in Aquaculture Location Material Measurement Laboratory, Chemical
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Measurement Science to Advance Understanding of Chemical Equilibria in Natural Waters NIST only participates in the February and August reviews. NIST has a long-standing program in electroanalytical
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are sought that utilize neutron scattering, imaging, and/or spectroscopy to characterize quantities such as molecular shape, branching, aggregation, and the distribution of water across polymeric membranes
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water absorption in infrared spectroscopy reveals the secondary structure of proteins in dilute solutions, Anal. Chem.93, 2215 (2021). [2] 1. S.-M. Kim, Y.-R. Chang, J. Melby, Y. J. Kim, D. Davis, Y. J
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number of applications in water filtration, chemical separations, and fuel cells. Toward those ends, we are developing chemically-specific quantitative NMR measurement tools that can elucidate local
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water and aqueous mixtures (including electrolytes), atmospheric gases, mixtures with carbon dioxide, mixtures of molecules differing in size and/or polarity, and fluids such as water where quantum
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focuses on polymer composites thin films that exhibit enhanced dielectric properties and low water vapor transmission rate. Our goal is to investigate hydration mechanism and the charge transport in thin
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their heliocoidal assemblies. References: [1] Bharath Natarajan et al; “Dielectric Characterization of Confined Water in Chiral CelluloseNanocrystal Films” ACS Appl. Materials and Interfaces: v9 pp.14222 (2017) [2