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- Max Planck Institute for Biogeochemistry •
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- Max Planck Institute of Geoanthropology, Jena
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: Expert knowledge on coupled 3D hydrodynamic-biogeochemical models and agent-based models Expert knowledge of marine physical- and biogeochemical processes in coastal and/or open waters Very good skills in
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, predation and fisheries. You will couple these models to an ocean-sea‑ice-biogeochemical framework for the Antarctic Peninsula to quantify impacts on vertical carbon export. Finally, you will explore future
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of observational techniques to monitor and assess biogeochemical feedbacks in the Earth system Theory and model development for improving the representation of biogeochemical processes in comprehensive Earth system
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an ecosystem. Our preliminary data suggests that this may be the case. If this hypothesis will be confirmed, it would mean that several independent baselines should be included in the isotope flux models, even
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microbial functions with soil parameters - Functional C and N processes, modeling microbiome patterns, and determining ecological indicators for assessing habitat condition - Ecological statistical analyses
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Earth system research at the Max Planck Institute of Geoanthropology, an institute combining archaeological, anthropological, geochemical, and Earth system expertise in computational modelling, social
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as global biogeochemical cycles. Research activities in the IMPRS-gBGC aim at a fundamental understanding of these cycles, how they are interconnected, and how they can change with an altering climate
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Risk-Relevant Biomarkers of Release Events) and one each for risk assessment (PhD-3 Quantitative Risk Assessment of Biofilm-Derived Hazards) and management (PhD-4 Predictive Modelling and Mitigation
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sociopolitical drivers, and modelling tools that cover the entire Arctic Ocean, and extensive international research collaboration. As part of Arctic Ocean 2050, you will join an ambitious research environment
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(water, air, sediment, carbon, nitrogen and pollutants), the reconstruction of past environmental conditions and the analysis and modelling of the consequences of interventions in biogeochemical cycles