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regulatory decision-making around the implementation of these technologies. A key component of the work will involve developing an ex-ante economic model to identify cost-effective strategies for implementing
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Potsdam Institute for Climate Impact Research, and the Technical University of Berlin. The broad concept of the project is that currently available energy modeling systems are unable to simultaneously
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: Reviewing existing quantum algorithms relevant to fluid dynamics and atmospheric modeling. Evaluating their compatibility with the structure and requirements of current NWP models. Identifying potential
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-environment-climate public goods (AECPG). By combining insights from results-based, collective and spatially targeted schemes with novel financing and robust monitoring, REWARD seeks to build scalable models
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social behaviour using zebrafish as a model system. Experience of zebrafish as a model system is desirable. The ongoing projects utilize techniques such as zebrafish microbiota manipulation, molecular
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and electrical measurements, combining groundwater flow models with Electrical Impedance Tomography to improve the characterisation of aquifers. The researcher will be based in the Department
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of 2026. The position has a duration of 2 years depending on funding through the ERC advanced grant "Finding all Integrable Models". The successful candidate will work on topics related to integrable system
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work will involve developing an ex-ante economic model to identify cost-effective strategies for implementing pharmacogenomic/multiomic markers in clinical practice. This is an excellent opportunity
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validating uncertainty-aware AI models for real-time crash risk prediction with guaranteed confidence bounds, interpretability, and fairness-by-design, using a blend of centralized and federated learning
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implementation of spatial techno-economic models, accessibility mapping, and visual impact geodata integration, under the supervision of Dr Ross O’Connell. This work aims to support sustainable marine spatial