38 algorithm-development-"Multiple"-"Simons-Foundation"-"Prof" scholarships at University of Groningen in Netherlands
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decision-making, you will have the opportunity to develop your own insights, collect data, and share your findings with both scientific colleagues and partners from professional practice worldwide. Under
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temporarily, as needed, when needed. The goal of this project is to advance the understanding of how working memory is implemented in the human brain. To this end, the main objective is to develop a neural
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such as textiles. 2. Proven ability to develop and implement advanced motion-planning algorithms and real-time control schemes, ideally demonstrated through digital-twin simulations and hardware-in-the-loop
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Organisation Job description Are you passionate about combining the directed evolution of diverse biomolecules with deep learning approaches and contributing to the development of better (bio
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mechanics at the atomic scale. In this project, the University of Groningen will develop an array of state-of-the-art machine learning potentials for multi-component alloy systems that are relevant
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-research-projects-awarded-through-open-competition-domain-science-m-programme ). Responsibilities and tasks: Development of novel electrocatalysts for N2 fixation. Fabrication of single cells with targeted
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candidate at the Department of Teacher Education, you will have the opportunity to develop your own insights, collect data, and share your findings with both scientific colleagues and partners from
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in Clinical Psychology and Experimental Psychopathology, you will have the opportunity to develop your own insights, collect data, and share your findings with both scientific colleagues and partners
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international and diverse environment and to acquire valuable research experience at a top-ranked European university. The successful candidate will have the opportunity to develop their research and academic
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) developing and validating preprocessing pipelines; (3) architecting and comparing spectral-only and multimodal (HSI + NIR + Raman + RGB) deep-learning models; (4) implementing robust sensor-fusion strategies