46 high-performance-quantum-computing-"https:"-"https:" Postdoctoral positions at Aarhus University in Denmark
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sampling, combined with laboratory-based metabolomics, microbiome analyses and quantitative PCR. We expect that you will report research results in high-impact scientific journals. We also expect that you
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Join us at the Department of Electrical and Computer Engineering at Aarhus University for a postdoctoral position focused on deep learning based analysis of remote sensing data for groundwater
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environment. We also expect that you will take part in our teaching activities and that you will report research results in high-impact scientific journals. Your profile We are searching for a highly motivated
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and that you will contribute positively to the social working environment. We also expect that you will take part in our teaching activities and that you will report research results in high-impact
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the foods of the future. A high level of verbal and written communication in English Practical abilities to carry out experimental research, and excited to develop new experimental setups. Demonstrated
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models of complex physical systems starting from data, ranging from robotic systems to traffic and turbulent flows. We are implementing these methods in high-performance open-source libraries to make them
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position is primarily research-based but may also involve teaching assignments. You will contribute to the development of the department through research of high international quality. In your daily work
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and around 825 students are enrolled in our study programs. Furthermore, we also offer an ambitious PhD program. Our PhD students have high academic ambitions and deliver high-quality results for both
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research results in high-impact scientific journals. Your profile We are searching for a highly motivated candidate who has A PhD in soil science, agronomy or similar Collaborative skills and ability
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be used to prepare lamella samples for high resolution cryo-EM imaging and tomography. From AI assisted image analysis, 3D models for key proteins and biomolecular complexes will be fitted into 3D