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Field
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/publication record Ability to conduct research autonomously Breadth of exposure coming from past and/or current research/activities Ability to gather and share relevant information General interest in space and
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, variable-density groundwater flow and fresh-salt transport modelling, field evidence and applied spatial decision support. You will improve and apply an existing calibrated, high-resolution groundwater model
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route to produce high-quality recyclates, but current implementations rely on static process design and control that don’t account for feedstock variability, inefficient solvent use, and high energy
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which wind-farm-induced changes in the atmospheric flow and boundary-layer structure can affect precipitation. Targeted simulations with and without wind-farm effects will be used to quantify
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; Presenting at international conferences and publishing in leading peer‑reviewed journals; Contributing to knowledge dissemination activities with sector partners; Contributing to teaching activities
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layer for gene expression control and numerous other processes in the cell. In this context, individual and combinatorial modifications guide spatiotemporal recruitment of regulatory factors to specific
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dynamics; build and evaluate agents that act inside these models, with an emphasis on controllability, auditability and safety; lead and co-author publications at top-tier venues (CVPR, ICLR, ICML, NeurIPS
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contributions to the consortium, and conduct research within the trustworthiness safeguards related work package, in close cooperation with the other work packages. You will also actively help building
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will develop a design-build-test-learn cycle, combining high throughput experiments and active learning to obtain synthetic cells with the desired properties. You will integrate liquid handling robots
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-engineering activities, as well as the team’s other main research lines (for example AI for guidance, navigation and control, unconventional computing and mission analysis), via the ACT website (https