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adapt a model of reef ecology from the Great Barrier Reef to the Red Sea. The model will use available data but new field studies are anticipated to help parameterise important processes. This is an
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. Mendonça. You will investigate ocean and sea-ice dynamics on Earth and the icy moons of our Solar System, using the state-of-the-art Oceananigans model. Over the two-year appointment (1 + 1), you will also
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. Mendonça. You will investigate ocean and sea-ice dynamics on Earth and the icy moons of our Solar System, using the state-of-the-art Oceananigans model. Over the two-year appointment (1 + 1), you will also
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SEAMPHONI project, funded by Horizon Europe, aims to deliver a novel, integrated, and innovative mapping, monitoring, modelling, and management system for offshore marine areas (OMAs). A key feature of
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impactful observation-based analyses informing forecasting ocean and climate models. Meeting these challenges, within the European HORIZON EUROPE projects GEORGE (https://george-project.eu/ ) and TRICUSO
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dynamics, turbulence, fluid dynamics, model interpretation, acoustic data, or field data processing. Additional desirable experience includes: bio-physical interactions, fieldwork, evidence of working at sea
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2nd September 2025 Languages English English Norsk Nynorsk English PhD Research Fellow on the topic of Microbial Interaction with Deep Oceanic Crust Apply for this job See advertisement UiB
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FluxBEATS that integrates geological observations, cutting-edge geochemical and biogeochemical analyses, data and modeling, from modern volcanic systems along mid-ocean ridges and back-arc spreading centers
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Job no:520746 Work type:Full Time Location:Crawley Categories:Engineering and Mathematical Sciences, Social Sciences Lead numerical modelling of carbonate sand for offshore foundations, support
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Lead numerical modelling of carbonate sand for offshore foundations, support research outcomes, and contribute to publications and student supervision. Full-time appointment on a fixed term basis