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of inorganic, organic, and energy resources. The doctoral candidate will join a team internationally recognized for its work on advanced electrochemical processes, innovative electrochemical reactors, treated
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are of paramount importance in a variety fields such as energy, analytical chemistry, catalysis,.. Several approaches for covalently bonding organic moieties to surfaces exist, often relying on local generation
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and optimize specific functions. The ICMCB carries out fundamental research on model materials and/or materials with potential applications. The ICMCB is a UMR with an average of 280 agents (permanent
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designed for the selected application; 3) Understand and optimize the heat transfer mechanisms involved in order to maximize the process energy efficiency and the stability of the catalytic materials
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dedicated, low-energy electron beam ion trap (EBIT) optimized for the production of highly charged ions of light nuclei that remain beyond the reach of storage rings. This EBIT, a central element of the
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the Coating and surface treatment team of the Interuniversity Centre for Materials Research and Engineering (Toulouse, France) The PhD project aims at developing optimized methods to assemble All Solid State Na
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of biophysics, non-equilibrium statistical physics, and cancer biology. Its objective is to understand how stochastic fluctuations and cell-cell interactions combine to drive the spontaneous emergence
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approach. WP1 dealing with the elaboration, characterization and optimization of Cu/CeO2-TiO2 photocatalytic systems, will be mainly performed at IS2M (Mulhouse) and WP2 focused on the evaluation of gas
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multicolor fluorescence labeling of mouse neurons according to their cell lineages. The team is currently pursuing the improvement of the technology and exploring novel applications. Objectives: A first
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capable of automatically selecting the simulation strategy best suited to a given prediction objective, while optimizing the trade-off between accuracy and computational cost. The work will build on multi