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project, which aims to elucidate the mechanisms of cooperation between individuals in the context of collective navigation in complex flows. The project includes a theoretical part on “active matter
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systems. In particular, highly functional flexible electrochromic (EC) systems involving the integration of several active materials (metal oxides, electrolytes, network of metal nanowires used as
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Complex sugars (CS) are key ligands for modulating the pharmacological properties of proteins, triggering specific cellular responses, and enabling targeted vectorization in biotherapies. There is therefore
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that couples high‑performance computing with instrumental platforms integrated in the UPPA‑Tech network. Five platforms are directly supported by IPREM: POLYCaTS (polymer analysis and characterisation
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during cycling, (iv) complex shaping of full cells, and (v) overall cost. One particularly promising family is that of hydridoborates, especially boron cluster compounds like hydrido-(closo)-(car)borates
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CEA, which aims to anticipate, prevent and remedy as far as possible the failures of complex multi-scale systems hosting multi-physical phenomena, in order to increase their safety under operational