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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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the LMV. They will interact on a daily basis with members of the laboratory's three research teams (petrology, geochemistry, volcanology), with the engineers and technicians in charge of the laboratory's
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- Knowledge of molecular biology techniques (DNA extraction, qPCR) - Rigorous and reliable - Initiative and creativity - Ability to work independently and organise experimental work effectively - Good oral and
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processes related to physical oceanography, sea ice, and biogeochemistry. Its research focuses on the interactions among these components, their coupling with the other components of the Earth system, and
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may unexpectedly restore NK-cell function and promote tumor control. This PhD project aims to decipher how Notch and TGFβ pathways interact to regulate NK-cell biology and to exploit these mechanisms
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properties of this protein, as well as its interactions with other cellular components. The obtained results will be compared with available experimental data, in collaboration with our partners. We
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mandatory. The candidate will be expected to evolve in an international environment, and take part in emerging national (through interaction with the PEPR LUMA network) and European collaborations (Silesian
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Animal Cognition As part of the ANR RE-PAIR project (Reciprocal Exchanges between Primates and Interactive Robots), we are recruiting a PhD student (October 2026–October 2029). The RE-PAIR project aims
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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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next-generation hydrogel formulations for vascularized tissue engineering. The research will be primarily carried out at LAAS-CNRS in Toulouse, with regular interactions with biological and clinical