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of Power-to-X processes for renewable fuel production. The project is primarily rooted in process engineering while also addressing the interaction between Power-to-X plants and the electrical grid. You will
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brings the difficulty to the pyrometallurgical processes and negatively influences the recovery rates of critical raw metals. This project aims to address these issues and enhance the adaptability
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dissemination is expected to focus on leading Human-Computer Interaction venues. For further information about the project, see: https://dff.dk/en/our-funded-projects/meet-the-researchers/research-leaders
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in the interplay between wireless systems and Artificial Intelligence. Experience with one or more of machine learning, wireless communications, signal processing, multimodal sensing, robotic
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Help build the systems that will electrify industry Industrial energy systems are about to change fundamentally. For more than a century, industrial processes have been designed as isolated
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, coordinate across internal functions, and translate new external demands into organizational priorities, practices, and decision-making processes. A central component of the work will be qualitative empirical
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hotspots or detecting cancer-affected areas and support decision-making, while ensuring that no individual can be identified. Possible research directions include the generation of synthetic spatial point
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its point of departure a situation in which the Danish plastics industry is facing increasing pressure to accelerate its transition towards more sustainable and circular modes of production
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take music as its primary point of departure. Applicants are encouraged to propose projects that explore the roles and uses of music across a range of contexts, which may include health-related settings
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In this PhD position, you will help design the next generation of circular plastics systems by combining hands-on polymer processing with data-driven modelling. The PhD study is a full-time, fixed