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the vicinity of perennial snow fields during the growing season. The PhD student will also be responsible for analysis of data from eddy covariance sensors, weather stations, and hydrological installations, as
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hydrological controls over groundwater CH4 production and delivery to streams in northern landscapes. Research will include observational and experimental efforts addressing the controls over groundwater CH4
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process-based understanding and long-term performance of these systems. The project is inherently interdisciplinary, combining hydrological process understanding with geophysical monitoring approaches. Take
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the condition of Swedish surface waters with respect to water chemistry, pollution and aquatic biota. The research focuses on geochemical and hydrological processes, aquatic ecology and biodiversity, microbial
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different disciplines (terrestrial and aquatic biogeochemistry, modelling, hydrology) and use of field and laboratory infrastructure at the Climate Impacts Research Centre (CIRC) and Abisko Scientific
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Arctic regions. The project includes collaborations with researchers from different disciplines (terrestrial and aquatic biogeochemistry, modelling, hydrology) and use of field and laboratory
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) hydrological/hydraulic modelling of urban streams and adaptation measures for current conditions and future climate scenarios. The results from the project will contribute to better estimations of how urban
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participates in approximately 30 courses at undergraduate and advanced level. Read more about the department here (https://www.slu.se/en/departments/soil-environment/ ). And about our benefits and what it is
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today and in the future. For more information: http://www.slu.se/en/departments/forest-ecology-management/ Read more about our benefits and what it is like to work at SLU at https://www.slu.se/en/about