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, stability. While interfacial thermodynamics and mechanics are usually probed at macroscopic or mesoscopic scales, they are assumed to depend on microscopic interfacial structure (chemical composition
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to H₂ and CO₂ reduction to CO at high rates, near thermodynamic potentials, and in neutral water, owing in large part to SCS effects. In this context, this thesis aims to develop a still underexplored
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thermodynamic data. The acquisition of such data is therefore essential to improve our understanding of the mechanisms governing corium leaching, assess the stability of existing or newly formed phases, and
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other analytical services, with the managers and the administrative manager, as well as with users from outside the laboratory. Metal activity in magmatic oceans We propose to develop a thermodynamic
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of active matter and out-of-equilibrium stochastic processes: stochastic thermodynamics, entropy production, collective dynamics. • Machine-learning approaches for the physics of living systems. • Application
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various aspects of the process—such as thermodynamics, dissolution/growth kinetics, growth interface dynamics, and the generation and elimination of defects—through a multiscale and multiphysics approach
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directly in an industrial process or converted into electricity through a thermodynamic cycle. In the latter case, the system is referred to as a Concentrated Solar Power (CSP) plant. The only operational