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Field
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-driven (machine learning) hydrologic modeling, as well as a comprehensive understanding of land surface and riverine hydrology (processes like runoff, snow, soil moisture, groundwater, and channel flow
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prediction of groundwater resources using multiple remote sensing technologies and quantification of related hazards, including water resource overdraft, land subsidence, flooding, and anthropogenic and
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University of Georgia Warnell School of Forestry and Natural Resources | Athens, Georgia | United States | about 2 months ago
Job Type: PhD Research Assistantship (towards a PhD degree in Water Resources) Project: TEAROOM (Tracer-EnABled hydRolOgic Modeling) Research Focus: Utilizing tracer data for improving hydrologic
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and groundwater zone, the production of runoff in catchments, runoff regime of large rivers, and the catchment hydrology of permafrost regions, forested catchment in the boreal and temperate zone
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, geochemistry, hydrogeology and marine geoscience. The School has an international reputation in research and teaching with strong support from the mineral exploration, petroleum and groundwater industries, and
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. Experiments will be performed under anoxic conditions, and in a variety of different solutions including groundwaters representative of the UK’s geological disposal facility for radioactive waste. Detailed
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the mineral exploration, petroleum and groundwater industries, and well established collaborations with industry and state and federal government agencies. The School has been recognised internationally, with
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pollution, and manage policies in response to climate change. BRGM's action is in line with 6 major scientific and societal challenges: geology and knowledge of the subsurface, groundwater management, risks
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funded through the EU Research Framework Programme? Not funded by an EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description The PhD student will be
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Initiative Material Science for Sustainability? Are you interested in working with the valorization of biopolymers into advanced materials for groundwater, soil and sediments remediation, with the support of