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have a strong interest in both theory and numerical work. Numerical work involves code development (e.g., changing the C++ LAMMPS code, programming of data analysis tools, etc.), carrying out large-scale
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with students, doctoral students, post-doctoral fellows and researchers. The recruited person will work for a period of 14 months, ideally starting in November 2025 at the MARBEC laboratory in
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well as investigating the role of non-local correlations in the quantitative prediction of satellites positions and pole strengths. The successful candidate will participate in numerical research and scientific code
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part of the European project ULTRABAT (BATTERY2030+), you will be responsible for modeling the NMR parameters of lithium ions in and at the interface of battery cathode materials. The ULTRABAT project
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with the main field of application being topological photonics based on microcavities. Analytical calculations Numerical calculations Analysis of experimental data The work will be carried out
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on plausible solid-electrolyte interphase structures on the extreme surface. The applied computational methods will be periodic semi-empirical methods and density functional theory. The person recruited would
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researcher will be part of the MicroMass project of the PEPR BBEST, which brings together four partners (École Polytechnique in Paris, and the LPCV, MEM, and LETI laboratories of the CEA Grenoble
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(H2) ratio, the current density and the water vapor conversion rate. The reproducibility on the performance measurements will be determined at 750 °C for a fixed p(H2O)/p(H2) ratio. XRD and Raman
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expertise in oxide material synthesis under inert atmospheres (Schlenk technique), physical chemistry, CO₂ reduction, and photoelectrochemical cells (PEC). This position offers the opportunity to work on a
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coupled with methods for producing and manipulating molecular ions. This instrument is part of the PEPR LUMA X-2M facility and will be open to the scientific community. The recruited person will have to