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infrastructure for storing river flood water and reusing it for irrigation to mitigate effects of future drought and flooding, and nutrient losses in agricultural catchments. The work will include field and
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radioisotopes to track sources and ages of different carbon components. The postdoc will lead the acquisition and analysis of aquatic water chemistry data, collected in different Arctic settings such as northern
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groups with a focus on Soil Biology, Soil Nutrient Cycling, Soil Chemistry, Agricultural Water Management, Soil and Environmental Physics, Soil Mechanics and Soil Management, and the Biogeochemistry
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Water. You will be expected to participate actively in the department’s knowledge environment and networks, both internally and externally. This includes conducting and disseminating research, as
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of the stock structure of many fish populations in the Baltic Sea is limited. For numerous species, we lack detailed knowledge about changes and spatial variation in migration patterns, reproduction, size and
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, especially in the coastal zone. Unfortunately, climate change and human activity are causing significant environmental change in the ocean, threatening ocean health. Marine heatwaves and coastal darkening
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also pursue multivariate time series analyses of monitoring of coastal fish communities in the Baltic Sea. The post-doc will lead and contribute to related scientific publications, and contribute
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of Organic Energy Materials and Green Polymer Chemistry (GPC ). At OED we explore the conversions of biomaterials from forest, air components, and water at electrochemical interfaces in flow devices aiming
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biomass characterization, biomaterial characterization and application. Experience in glycomic analysis is highly recommended. Laboratory experience in biomass transformation in materials and water based
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have been ongoing since 2017 to monitor the effects of decreased water inputs to the system. In addition, the project has maintained a nearby long-term monitoring site in a pristine TMCF forest since