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of the position is to create prediction methods for proactive planning of future robot actions and to design robot acting mechanisms for adaptive response ranging from quick and intuitive to slower well-reasoned
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fluid motion, friction, as well as understanding the pattern formations that result. Experiments will be the primary emphasis of the research, including the development of experimental setups, design
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new quantitative methods. Experience with recruitment and testing of research participants, with quantitative research designs that involve surveys. Long-term potential for high-quality research, as
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RE/H2-systems by exploring system designs and operational schemes for locations with different weather conditions, scales, grid constraints, and H2 off takers. Locations with existing RE and/or H2
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Fellow will work on psychology-inspired computing for robot assistants. That is, the objective of the position is to create prediction methods for proactive planning of future robot actions and to design
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designs that involve surveys. Long-term potential for high-quality research, as evidenced by the project proposal. Excellent English skills, orally and in writing. Ambitions for high-quality research within
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digital twin solutions that work in practice and that allow us to argue for correctness. The design of the digital twin should allow us to express the correctness of its underlying architecture but also to
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are particularly interested in frictional fluids and the relationship between fluid motion, friction, as well as understanding the pattern formations that result. Experiments will be the primary emphasis
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of hypothetical experiments (so-called “what-if” scenarios). The project aims to develop digital twin solutions that work in practice and that allow us to argue for correctness. The design of the digital twin
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science, philosophy, psychology, and anthropology. For a closer description of DEMOCRISIS and its research plan for the period 2024-2028, please contact the leader of the research group, Prof. Marius