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develop numerous research skills, by enrolling, for example, in the graduate training programme of the Netherlands Graduate Research School of Science, Technology, and Modern Culture (WTMC). You will also
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interdisciplinary environment within EMBRACER and international partners and apply advanced methods like Lagrangian tracking and reanalyses to reveal new insights into atmosphere-ice-ocean feedbacks in the Arctic
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one at Wageningen University & Research (WUR). Our shared goal is to develop computational methods to translate integrated simulation models of plant responses to stress (drought, heat) from a model
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knowledge graph models of such transformations that are self-describing when applied to existing map repositories, and can be scaled up to large data repositories using state-of-the-art AI methods. In
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field work in the North Atlantic Ocean, laboratory experiments and numerical modelling. A scientific cruise with our research vessel Pelagia will allow us to investigate CaCO3 – P interactions in
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); apply and refine evapotranspiration estimation methods based on these in-situ observations (e.g. Makkink, Penman-Monteith, SPAC-models); develop spatial upscaling techniques using remote-sensing data and
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between these important climate subsystems, using models of different complexity and a combination of mathematical, numerical and data analysis methods. You can find the other vacancy at PhD Position in
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learn methods and perform joint experiments; take a proactive role in collaborating with members of the BarrierFates consortium; analyse and interpret datasets, and present research findings during
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related field; experience with numerical modelling, preferably hydrological modelling; affinity with delta systems, adaptation and policy analysis; motivation to work in interdisciplinary scientific
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policy effectiveness. During this PhD, you will use Dutch registry data and quantitative methods (such as micro-econometric methods for causal inference or structural modelling) to evaluate the effects