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. Your results will support cross-moon comparisons and help decode JWST’s spatial and spectral variations. PhD 3 | Ocean–surface transport modelling You will model how ocean material is transported through
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scattering involves reconstructing the properties of a spatial region from how it interacts with waves. It lies at the core of scientific discovery and technology, from radar to nanoscale metrology and
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learning is crucial to address the shortcomings of today’s neural networks. Hierarchies govern how concepts are related, how objects and scenes are spatially arranged, how actions are organized over time
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followed by econometric and spatial analysis, and engaging with local communities and decision-makers. Your PhD will be awarded from Wageningen University and you will become a member of the ‘Urban Systems
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computational fluid dynamic simulations can currently resolve spatial and temporal scales of industrially-relevant turbulent flows within days/weeks. On the other hand, typical design cycles in industry still
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industry. Yet, despite its exceptional spatial resolution, the limited throughput of conventional single-beam SEMs continues to restrict their use in large-area and high-volume applications. As a PhD
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University) and Tijs van Bakel (Researcher at Technolution). Research activities Investigate how LLMs and related foundation models can be adapted and fine-tuned for spatial-temporal data and traffic control
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-based, spatially-explicit dynamic forest model to predict future fire resilience of Amazon forests. Your duties and responsibilities include: Leading field campaigns, and being willing to spend long
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the lead on the modelling side. Your Role Develop and analyse spatial percolation models and related techniques to explore how pathogens spread—or fail to spread—across plant communities with different