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development and pro and antisocial behaviours. We believe it is essential to investigate the determinants of typical development in order to understand variation in behaviour (or illness). About the role We
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discoveries on the electrosolvation force. The project will use a range of optical methods to examine the interactions in colloidal and molecular systems and relate the experimental findings to theories
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use a range of optical methods to examine the interactions in colloidal and molecular systems and relate the experimental findings to theories on the electrosolvation force under development in
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successful candidate will work in collaboration with two other postdocs on a closely aligned project “Rethinking multi-agent systems in the era of LLMs”, funded by the Schmidt Sciences Foundation, and also
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45 Faculty of Philological and Cultural Studies Startdate: 01.11.2025 | Working hours: 40 | Collective bargaining agreement: §48 VwGr. B1 lit. b (postdoc) Limited until: 31.10.2031 Reference
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settings. We are seeking a highly motivated postdoc to conduct research into this fast-moving area. Directions may include investigating quality evaluation methods for multi-agent systems, attack surfaces
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grant 'High Resolution Radar Imaging of Pyroclastic Density Currents’, in collaboration with University College London, and the University of Liverpool. The successful applicant will work primarily with
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. We are still far from a complete understanding of how these processes work. CDN is one of four departments in the School of Neuroscience at the Institute of Psychiatry, Psychology & Neuroscience and is
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for Medicines Discovery at the Nuffield Department of Medicine, and be part of the wider MRC Centre for Research Excellence REACT, consisting of groups located at King’s College London, University of Edinburg and
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45 Faculty of Philological and Cultural Studies Startdate: 01.10.2025 | Working hours: 40 | Collective bargaining agreement: §48 VwGr. B1 lit. b (postdoc) Limited until: 30.09.2031 Reference