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approach. The project's overall framework encompasses the key facets of biodiversity (levels of biodiversity, biological groups and variability), the forces and processes that shape them, their spatio
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component—as low-carbon binders. Recent work by the team has shown that bubbles naturally concentrate around grain contacts and form liquid bridges there, enabling the binder to be deposited precisely where
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their reactivity with dinitrogen, which can be reduced and then functionalized to form ammonia or amines. The project will involve synthesizing actinide complexes with ligands developed by a team of doctoral and
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, optimal transport, set evolution and shape optimization, calculus of variations), and/or convex/non-convex optimization methods (first-order algorithms, nonlinear/non-Euclidean gradient descents
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networks). • Compare different strategies (topology, tensor order…) to seek for an optimally compressed representation of turbulent velocity fields and of relevant operators in tensor network form. • Perform