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or liquid chromatography, mass spectrometry, optical diagnostics, lasers, IR-UV-Vis spectrometry - Measurements in atmospheric simulation chambers, in reactors coupled with laser-induced fluorescence
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-page cover letter linking your interest in the project to your research experience and skills, (2) a full CV (including a complete list of publications), (3) a copy of your doctoral diploma and (4) two
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cross-validation and simulation-based checks; document performance and limitations. * Software engineering: contribute maintainable code to laMEG; add unit/integration tests and continuous integration
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primarily focus on one or more of these parts. The successful candidate will develop numerical tools and/or theoretical models to model and simulate the behavior of a group of agents capable of chemical
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spectroscopy analyzes will also be carried out. Microstructural parameters deduced from characterizations performed by partners of the project and electrochemical responses will be simulated using digital twins
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activities will involve various advanced high-resolution mass spectrometers (Orbitrap, Vocus, …), optical techniques (fluorescence, optical tweezers,…), aerosol flow tubes and an atmospheric simulation chamber
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); - Experience in electrical measurements on nanodevices and 2D materials; - Knowledge of radiation–matter interactions; - Solid background in elasticity, strain engineering, numerical simulation tools (COMSOL
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assemblies (microscopies, spectroscopies, DLS, etc.) - Static light scattering resolved in angle and wavelength on an available set-up - Comparison of experimental results with numerical simulations
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to develop new functional materials. It will use an approach that combines experimentation and simulation. This project aims to address societal challenges related to clean energy production. Tasks: Take
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‑chemical calculations on organic small molecules and π‑conjugated systems. • Conduct periodic DFT simulations to explore electronic band structures and transport. • Analyse charge transport, thermoelectric