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PhD thesis student (f/m) at ESRF and University of Bath to study CO₂ capture by coupling X-ray Raman
structure calculations, you will uncover the fundamental binding mechanisms and degradation pathways of amines that remain invisible to conventional characterization methods. This work aims to reveal the
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IGN Topo database are constantly evolving to reflect changes in the landscape. Identifying, describing, and characterizing the changes these geographic databases undergo over time is a major challenge
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heating. We have developed a custom microfabricated chip based on doped Si electrodes etched on a SiO2 insulating layer. The chip has been characterized and exhibits both long trapping times and low heating
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, numerical process simulation, and advanced characterization techniques (synchrotron, TEM, EBSD), will be implemented. The ideal candidate will hold a Master's degree or an engineering degree in Materials
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focuses on the structural and dynamic characterization of intrinsically disordered and multidomain proteins involved in major biological processes, combining experimental biophysics approaches (SAXS, NMR
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of naturally occurring radionuclides. The work will combine long-term incubation experiments, the monitoring of radionuclide lability through desorption-based approaches, the characterization of reactive sites
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sectioning approaches. The potential complementarity of these two strategies will also be investigated. Once the clearing protocol has been optimized, the candidate will characterize the residual optical
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trajectories of the human hindbrain development to identify and characterize developmental programs hijacked in pediatric brain tumors. We will hire a 2 years bioinformatics engineer (ANR funds) dedicated
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characterized by strong electronic correlations; these systems exhibit remarkable properties and unconventional electronic states, such as superconductivity, magnetism, metal-insulator transitions, and more. The
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Scientific Themes: This PhD project aims to study the response of cancer cells to ionizing radiation in the presence of radio-enhancing metallic nanoparticles. The objective is to characterize