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Deploy detailed models of coupled ocean / sea ice processes, probe their turbulent interactions, compare with observations, and design parameterizations for global climate models. Job description
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of coupled ocean / sea ice processes, probe their turbulent interactions, compare with observations, and design parameterizations for global climate models. Job description The past decades have been
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fluxes and acidification in global marine P cycling through a combination of field work in the North Atlantic Ocean, laboratory experiments and numerical modelling. A scientific cruise with our research
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the co-creation process with experts and stakeholders in Western Scheldt and Wadden Sea. Applying a research for policy cycle strategy to co-create new conceptual models with academic scholars, experts
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capabilities interact with operational conditions, human intervention and the wider maritime and port logistics systems. The postdoctoral researcher will develop data-driven and model-based approaches to support
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intensify interactions between offshore wind farms and the marine atmospheric boundary layer (MABL), with potential impacts extending into the atmosphere above and the upper ocean below. While many studies
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modelling approaches, and: A PhD in Earth Sciences, biogeochemistry, or related discipline A strong interest in organic geochemistry and hands-on laboratory work You are able to independently plan, organize
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strategy as a way to mitigate climate change by increasing the ocean’s capacity to store anthropogenic CO2 emissions. Several strategies such as (1) direct ocean carbon capture, and (2) ocean alkalinity
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measurements using advanced instruments mounted on drones and on a helikite. Two field campaigns will take place at Utö Atmospheric and Marine Research Station in the Baltic Sea area. The measurements will
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emissions. Several strategies such as (1) direct ocean carbon capture, and (2) ocean alkalinity enhancement, manipulate ocean carbonate chemistry via electrochemical methods or alkalinity addition (enhanced