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centres on mathematical models of the physical and virtual world, as a basis for the analysis, design, and implementation of complex systems. We focus on ensuring that our research results contribute
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–reactivity relationships at catalytic sites. Familiarity with advanced characterisation and modelling tools, such as in-situ/operando spectroscopy (e.g., DRIFTS, EPR, XPS, Raman), theoretical calculations (e.g
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in basic research and centres on mathematical models of the physical and virtual world, as a basis for the analysis, design, and implementation of complex systems. We focus on ensuring that our
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experience in quantitative modelling, preferably using R. Is fluent in English (spoken and written) and has good communication skills. Is enthusiastic about developing replicable models to address complex risk
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efficiency for facilitating complex reactions that involve three or more reaction intermediates, due to the "scaling relations". In CAT3D, a five-year Villum Young Investigator project that fully funds
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and validation. You will be joining a strong team that works within the following domains: Dynamic turbine response modelling in the multi-body framework HAWC2 Aero-servo-hydro-elastic stability
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collection, satellite monitoring, fieldwork in Greenland, and advanced modeling techniques. The postdoctoral project will focus on Greenland and Antarctica, analyzing surface elevation change, ice loss
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globally recognised business school with deep roots in the Nordic socio-economic model. Our faculty has a broad focus on societal challenges, and we have earned a reputation for high-quality disciplinary and
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also be responsible for further developing source attribution models based on metagenomic data. Finally, as part of the capacity building activities in the project, you will contribute to the training
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will support the long-term goal of helping constructing reasoning techniques to democratize and render transparent legal processes. As a postdoc in BPM, you are familiar with the role of process models