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optimization, thermodynamic properties) (optional). • Knowledge of analytical chemistry and techniques for characterizing elements in solution. • Interest in radiochemistry and working in a controlled
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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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to several aspects of the project, including: -design, development and validation of experimental optical microscopy setups -modelling and optimization of experimental parameters -adaptation and further
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fabrication, cryogenic control electronics, and quantum dot-based quantum information processing. The successful candidate will: • Operate and characterize bilinear arrays of semiconductor quantum dot qubits in
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their optimal integration into civil engineering applications. This PhD project aims to develop and implement innovative, non-destructive, and time-resolved methods based on Low-Field Nuclear Magnetic Resonance
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experimental protocols for the operation and characterization of large quantum dot arrays in silicon-based semiconductor devices. • Tune and control electron filling in one-dimensional and bilinear quantum dot
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LOCEAN 7159 (Laboratory of Oceanography and Climate: Experiments and Numerical Approaches) conducts studies on physical and biogeochemical ocean processes and their role in climate, in interaction with
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of algorithmic processing, and bias management. In the field of cultural heritage, the rapid democratization of image and 3D content generators has led to the widespread circulation of visually appealing
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neural network tool to design multilayered compound metasurfaces for multifunctional operation. • Collaborate with nanofabrication teams to prototype and validate designs. • Conduct optical
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Metasurfaces: • Develop multilayered MSs using FDTD, RCWA, or inverse design methods to achieve broadband achromatic performance (400–700 nm). • Optimize MS geometries for high numerical aperture (NA), wide