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in all these approaches. This PhD position aims at developing methods for learning and control in complex large-scale systems. This will be carried out as part of the GreenControl project, whose
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complex and urgent challenges in the transition to a hydrogen-based energy system. Since the first discovery of the phenomenon in 1875, several hypotheses have been proposed about the mechanistic origin
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Framework Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description Shape intelligent control and coordination in future complex
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Are you fascinated by controlling magnetic matter by femtosecond laser pulses, eager to explore the underlying physical mechanisms, and passionate to develop a generic tool to ‘print’ complex
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2025. Understanding hydrogen-material interactions at the atomic scale remains one of the most complex and urgent challenges in the transition to a hydrogen-based energy system. Since the first discovery
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Integrated optics is currently experiencing unprecedented growth, driven largely by the rapid expansion of artificial intelligence (AI), cloud computing, and high-performance data processing
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the complex microstructures of circular steels and causes degradation and failure. This position is part of the project "Circularity as Opportunity: Engineering Hydrogen-Resistant Circular Steels (CIRHY)", a 6
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of the key challenges facing the hydrogen economy: understanding how hydrogen interacts with the complex microstructures of circular steels and causes degradation and failure. This position is part of
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computational approaches for advancing sensor technology and bioengineering. The research is done in the context of the Institute for Complex Molecular Systems (www.tue.nl/icms ). The groups initiated and
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We are a leading international university where scientific curiosity meets a hands-on mindset. We work in an open and collaborative way with high-tech industries to tackle complex societal