40 density-functional-theory-molecular-dynamics Fellowship positions at UNIVERSITY OF SOUTHAMPTON
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(TRXPS) experiments of gas phase molecules. The successful candidate will be based in Southampton and work in the groups of Dr Karl Michael Ziems and Prof Russell Minns with close collaboration with Prof
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Computational Chemistry to develop accurate models of time-resolved X-ray photoelectron spectroscopy (TRXPS) experiments of gas phase molecules. The successful candidate will be based in Southampton and work in
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Development Fellow with expertise in qualitative methods to join our team. About the role This position offers an opportunity to join a dynamic, interdisciplinary research group, working on various projects
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molecules. The successful candidate will work in close collaboration with theoretical collaborators (Karl Michael Ziems, Southampton, and Sonia Coriani, DTK) to develop our understanding of satellite state in
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Development Fellow with expertise in qualitative methods to join our team. About the role This position offers an opportunity to join a dynamic, interdisciplinary research group, working on various projects
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the field of experimental time-resolved X-ray photoelectron spectroscopy (TRXPS) of gas phase molecules. The successful candidate will work in close collaboration with theoretical collaborators (Karl Michael
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towards success in both team work and solo efforts. THEMES There are a number of projects happening in the WellthLab at any given time. You can find background information on our research and theory
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, mathematical criteria stability and robustness of neural networks, applications of topology and geometry to deep learning, the topology and geometry of data, or the dynamics of learning. The successful candidate
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research in ship hydrodynamics, design optimisation, and marine decarbonisation. Our work combines advanced simulation, AI, and experimental methods to support a more sustainable maritime future. The Role
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. Mendonça. You will investigate ocean and sea-ice dynamics on Earth and the icy moons of our Solar System, using the state-of-the-art Oceananigans model. Over the two-year appointment (1 + 1), you will also