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of photocatalysts under reaction conditions. It addresses a key challenge in heterogeneous photocatalysis: the limited fundamental understanding of how photocatalysts undergo structural and electronic changes during
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layered semiconductor characterized by an anisotropic crystalstructure and quasi-one-dimensional ribbon-like morphology. Its electronic structure is predicted to host relatively flat bands associated with
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on simulating nanoalloy structures to create a database for materials characterization. The main tasks include running molecular dynamics and Monte Carlo simulations to model nanoalloys under various
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belowground; - development of SDM modeling structures that best reflect plant use of multiple resources (e.g., interactive vs. substitutable resources); - testing the application of resource colimitation theory
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porosity and improving material strength. For these reasons, MICP has emerged as a viable and scalable biotechnology for soil and structural material (e.g., concrete, granite) reinforcement, as
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fundamental interactions, as well as to explore their links with the great structures of the Universe. The work of the LAPP teams aims, among other things, to understand the origin of the mass of particles
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physics of Irregularity. We try to understand the solid, liquid or intermediate states (gel, pastes, foams…)of matter (structure, properties, phenomena of sets related to the interactions between
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-chemical characterisation of their textural, structural, optical and catalytic properties resulting from the plasmonic activation of the nanostructures. The second component will involve the development and
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extending MPC with discrete topology choices (switching) to exploit structural flexibility. Ye Wang's recent contributions are directly relevant: real-time distributed MPC with limited communication rates and
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. The project is structured around two main components: i) Development of new tools based on eDNA and dPCR to improve the monitoring of freshwater pathogens ii) Study of the emerging pathogen Tetracapsuloides