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design, train and implement ARCA: an AI foundation model for crop microbiomes. You will work at the interface of deep learning, bioinformatics and microbial ecology, using large-scale microbiome and genome
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athletes and coaches currently use tracking and feedback technologies, design and develop interactive systems and interfaces that capture subjective experiences and deliver timely, context-aware feedback
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a diverse international team of postdoctoral researchers, PhD candidates and technicians with complementary expertise in modelling, molecular biology, genomics, microbial physiology, synthetic biology
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-turbulence-radiation interactions in stratocumulus clouds. As a PostDoc candidate you hold a PhD degree. As a suitable candidate, you may come from a range of backgrounds including, but not limited to, Climate
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for subsurface water storage systems. Your main case-study area are the islands of Zeeland and Zeeuws-Vlaanderen, with connections to monitoring and pilot sites. You will work at the interface of hydrogeology
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Explore fundamental spin physics at the interface of acoustics and MRI, and help develop a new imaging contrast sensitive to microscopic magnetic-field inhomogeneities. Job description We
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; collaborating with municipalities, urban planners, designers, and residents in model co-creation and validation workshops; contributing to the development of an interactive, publicly accessible web interface (e.g
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develop interactive systems and interfaces that capture subjective experiences and deliver timely, context-aware feedback before, during and after training, and evaluate these systems in real-world studies
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develop interactive systems and interfaces that capture subjective experiences and deliver timely, context-aware feedback before, during and after training, and evaluate these systems in real-world studies
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Postdoc in Application of eXtended Reality for Inclusive Automated Vehicle and Road User Interaction
external Human-Machine Interfaces (eHMIs) can enable safer and more inclusive interactions. You will: Develop a theoretical framework for identifying key characteristics of AV–VRU interactions and define