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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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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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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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@nist.gov 843.460.9944 Description Microbiomes play critical and often undescribed roles in a myriad of environments including the skin and gut of humans, soils and sediments, and water columns. These diverse
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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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addition to stellar spectroscopy, we carry out measurements to improve the determination of atmospheric corrections. Instrumentation includes visible and infrared telescopes and spectrographs, a water vapor radiometer
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reactions involving residual vacuum gases, (2) determinations of the outgassing rate of water vapor and other molecules from surfaces, (3) development of holographic microscopy for critical defect inspection
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that are challenging to measure due to instability, very low volatility, or very low solubility. Octanol – water partitioning is a frequently measured partitioning equilibrium and can be used to estimate