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The Department of Ecoscience, Aarhus University, invites applications for a full-time researcher position (tenure track), focusing on marine ecosystem modelling. Expected start date and duration of
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on ocean and coastal dynamics, marine processes, and their response to environmental change through a combination of field observations, data analysis, and numerical modelling. The position is embedded
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communicating and collaborating across disciplines, including marine geology, glaciology, oceanography and climate modelling. Excellent English communication skills are required. Meet your new colleagues You will
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PhD position in environmental toxicology and endocrine disruption: Focus on new endpoints in zebr...
strong long-standing collaborations with the Danish Environmental Protection Agency, national and international research groups, the EU, and the OECD in relation to the development of international test
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. Deploying models in edge environments requires navigating a fundamental conflict between model complexity and environmental volatility. Real-world edge environments remain highly dynamic: data streams
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), and absolute sustainability concepts such as planetary boundaries, net-zero, and regenerative performance. Experience with quantitative environmental modelling, LCA, or related methods is an advantage
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aspects of development, and with a focus on environmental, international as well as administrative dimensions. Job description The PhD project is a part of the research project “Drought Resilience through
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Build, Division of Civil and Environmental Engineering, within the general study programme Civil Engineering and work with numerical modelling, time series analysis, and soil characterization
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be used to model the USV, propulsion system, environmental disturbances, sensor behavior and relevant offshore mission scenarios. Experimental and field validation: Conducting experimental validation
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dynamic response simulations of flexible power cable between two anchored floating bodies under realistic environmental conditions, establishing the design limits for safe, reliable, and cost-efficient