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PhD thesis student (f/m) at ESRF and University of Bath to study CO₂ capture by coupling X-ray Raman
PhD project dedicated to advancing carbon capture technology. The core objective of your research will be to probe the electronic interactions between carbon dioxide (CO₂) and amine-based materials—key
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observations of material evolution during ion interactions remain largely unexplored. Such knowledge is crucial to understand transient processes and defect dynamics, in order to design next-generation materials
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. Jose Moran-Mirabal's laboratory at McMaster University (Canada), internationally recognized for advanced biomaterials and hydrogel engineering. The successful candidate will participate in the design and
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working for about fifteen years on the development of short-term forecasting systems designed to anticipate these phenomena by a few hours. Better anticipation should allow civil protection and emergency
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, there is a strong demand for the development of non-invasive methodologies, able to probe chemical gradients in the vicinity of individual nano objects in operando conditions. In this PhD thesis, we plan
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. The developments will also aim to extend existing approaches, which are often restricted to integrated quantities, to the reconstruction of complete statistical fields. The ultimate goal is to design a goal-oriented
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interactions with planets and their magnetospheres, and the broader topic of Space Weather. Today, most research in HP is data-driven, with data processing pipelines that produce time series, images, spectra