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Field
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approaches, including high-throughput bioreactor cultivations, multi-meta-omics (metagenomics and metaproteomics), and mathematical modelling. You will work in a highly interdisciplinary environment at
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simulation and modelling tools. Behavioural competencies Research - Results orientation (Level 2) Research - Self-knowing and self-development (Level 1) Research - Teamwork (Level 2) Research - Communication
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modeling will be used to model processes occuring in the electrode. The obtained insights will be used to engineer and fabricate new electrode geometries with optimized mass transport and catalyst layer
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professionals, but it relies heavily on experienced human instructors, whose availability is limited. Recent advances in artificial intelligence, especially large language models (LLMs), enable the development
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signals at a time from on-board sensors) battery-powered embedded device that collects and processes the data (using an AI model) from the human mouth and transmit the data wirelessly for further analysis
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senior technical staff to develop new motor concepts focused on achieving specified targets, both at a motor and system level. Be versant in various modeling and simulation programs as
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, Digital twins or physics-based modeling, wide-bandgap semiconductor technologies. Excellent written and spoken English communication skills. Ability to work independently while contributing effectively
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-reviewed academic journals. Collects data and conducts statistical analysis. Conducts literature reviews and perform research. Leads system architecture decisions, model selection, and fine-tuning strategies
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and the environment. The developed methods will combine wireless sensing with digital map information (e.g. 3D building models), enabling safe autonomous navigation in complex urban environments
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(for plasma catalysis). Computational fluid dynamics & kinetic modelling for process improvement and smart reactor design. You will publish scientific articles related to the research project. You will carry