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equipment in the North Sea, with emphasis on offshore wind farms. THE INSTITUTE NIOZ is the national oceanographic institute of the Netherlands. Its principal mission is to perform academically excellent
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nanophotonic structures can be designed to approach these limits. As a postdoc, you will develop theoretical models and inverse design strategies for optomechanical nanophotonic transducers. You will investigate
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for operations, and the provision of operations to non-traditional missions. The Team currently supports missions such as Cluster (disposal phase), SpaceRider, M-Matisse, the L4 mission to Enceladus, Theseus
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collections that can serve as references for future studies, (ii) enhancing the understanding of physical mechanisms and causal pathways to strengthen attribution analyses and model development, build
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contribute to developing this theoretical framework, with a strong focus on analytical modeling, computational methods, and the interpretation of learning signals embedded in physical structures. Recent
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mechanisms and causal pathways to strengthen attribution analyses and model development, build operationalized seasonal forecasts and test their skill as early warning systems, (iii) developing novel impact
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to functionalize metal-free electrodes for selective methane production. Building on our previous work, we seek to enhance the performance of our electrolyzer system — including current density, selectivity, energy
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starting date is 01.09.2026 Applications from all groups currently under-represented in academic posts are especially encouraged. We particularly welcome applications from women and people with an ethnic
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security-oriented workflows. This includes designing methodologies that ensure traceability, robustness and bias mitigation in AI models, as well as creating prototype tools that demonstrate how transparent
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water remain poorly understood. These interactions shape local weather extremes and climate variability, but current models miss them. QUASI turns Lake Victoria—Earth’s largest tropical lake—into an open