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the deployment of the co-development pathways. The postdoctoral researcher will work closely with colleagues developing pathways in Work Package 3, modelling and simulation tools in Work Package 2, and case
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groups. The theoretical methods include stochastic modelling, MD simulation, and Bayesian inference; the position will also include joint collaborative projects with other group members and our
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theoretically, in tight collaboration with experimental groups. The theoretical methods include stochastic modelling, MD simulation, and Bayesian inference; the position will also include joint collaborative
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systems into vehicle platforms. The position includes the design and execution of simulator-based studies, development of predictive comfort models, and validation of thermal comfort solutions using diverse
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, and optional integration of orbital dynamics considerations. Simulation, Learning and Operational Validation Develop AI-enabled simulation environments and testbeds to validate autonomous mission
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platforms. The position includes the design and execution of simulator-based studies, development of predictive comfort models, and validation of thermal comfort solutions using diverse participant groups
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and evolution of Digital Twin Earth by undertaking collaborative research across a range of domains and advancing the use of EO for enhanced simulations, predictions and what-if scenarios. Supporting
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, hydrodynamic data, infrastructure data, etc.) will be used in combination with already existing tools for maritime traffic simulation (e.g., OpenTNSim, which is being developed at TU Delft), energy consumption
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, etc.) will be used in combination with already existing tools for maritime traffic simulation (e.g., OpenTNSim, which is being developed at TU Delft), energy consumption estimates, and emission
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, reliability, multi-physics and multiscale simulation. Demonstrated publication record in high-quality international journals and conferences. Experience working in multidisciplinary and international research