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) at ORNL is seeking to hire two Post-doctoral Research Associates with the skills and creativity to apply water resources engineering knowledge towards the assessment and advancement of innovative water
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leading to the formation and destruction of methyl mercury in sediment-surface water systems. Current research at ORNL in this area spans from the molecular to the field scales although for this position
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temperature compounds (UHTC’s) structures. Knowledge of the organic chemistry, synthetic methods, and the skill level to work with air and/or water reactive compounds will be a mandatory requirement
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tools at scale; integrating observational data; and quantifying Earth system predictability and uncertainty associated with interactions between water, energy, biogeochemical cycles, and aerosols. Major
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physics-based models for process supervision in a diverse range of applications, including electrical grid monitoring, additive manufacturing, and water treatment. The chosen candidate is expected
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candidate will support the analysis of energy-water interactions by using both process-based modeling and data science to provide multi-disciplinary solutions to energy challenges that have impacts from local
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, which operates in support of DOE's Better Plants and Better Climate Challenge programs. The mission of the MEERA group is to research, analyze, and disseminate knowledge on energy, carbon, water, and
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), Earth systems science (land, water, ecosystems, and biodiversity), and human dynamics, as well as various other research domains ranging from advanced materials and nuclear science to high-performance
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investigating the effects of natural and engineered materials on the stabilization of mercury (Hg) in contaminated environmental media (air, soils, sediments, water). The successful candidate will focus
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by the DOE Early Career Research Program. The objective of this research is to evaluate how coastal biogeochemistry is shaped by large-scale water diversions along the Louisiana Gulf Coast