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Senior Research Fellow / Associate Professor (Research) & EMBL Australia Group Leader Job No.: 694874 Location: Clayton campus Employment Type: Full-time Duration: Up to 5-year fixed-term
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UniversityJoin our inclusive, collaborative communityBe surrounded by extraordinary ideas - and the people who discover them The Opportunity Are you ready to make a groundbreaking impact on the future of human
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Senior Research Fellow / Associate Professor (Research) & EMBL Group Leader Job No.: 694874 Location: Clayton campus Employment Type: Full-time Duration: Up to 5-year fixed-term appointment
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European Molecular Biology Laboratory (EMBL) | Brandenburg an der Havel, Brandenburg | Germany | 2 months ago
Are you ready to lead groundbreaking research in AI for Biology? Join us at EMBL! We are seeking a visionary scientist to establish their own independent research group bridging innovations in
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The Department of Molecular Biology and Genetics and the Danish Research Institute of Translational Neuroscience (DANDRITE, Nordic-EMBL partnership in molecular medicine) at Aarhus University
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The International Institute of Molecular Mechanisms and Machines Polish Academy of Sciences | Poland | 2 months ago
transcriptional corepressor system. As a newly established laboratory at IMol PAS, we offer an exciting opportunity to help build an internationally connected research programme within a highly collaborative
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medication purchases, laboratory measurements, clinical notes and imaging. Your main project will involve building and studying multimodal health trajectories on a nationwide scale to catch increasing disease
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project will involve building and studying multimodal health trajectories on a nationwide scale to catch increasing disease risk as early as possible. In addition, this data, and similar datasets from our
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The International Institute of Molecular Mechanisms and Machines Polish Academy of Sciences | Poland | 2 months ago
protein assemblies regulate gene expression and cell identity. Building on this discovery, the SONATA Bis project aims to uncover the molecular mechanisms by which RAI2-induced CtBP polymerization modulates
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quantitative imaging, stem cell biology, genomics and proteomics, we seek to understand how cells build robust genome maintenance programmes capable of supporting life from single dividing cells to complex