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to the development of energy models; • to access complementary experimental platforms; • to strengthen Franco-Canadian scientific collaborations. The project also benefits from industrial support through
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genetics and environmental DNA to the study of plant and animal communities and ecosystem restoration. More broadly, LIVE conducts multidisciplinary research on urban and human-impacted environments and
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is referred to as cryptanalysis. It is the central focus of this thesis. This PhD project will be dedicated to the study of structural and statistical cryptanalysis techniques, with a stress on
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activity of the MOLTECH-Anjou Laboratory focuses on the development of molecular materials, whether organic or hybrid organic-inorganic, supporting high-visibility research areas such as organic electronics
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development remains limited by the difficulty in obtaining crystals with high structural quality, specifically with a stacking fault density below 500/cm². The Travelling Solvent Method (TSM), which uses a
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the ARS Mayotte teams to present their findings and develop their research project. Additionally, they will have the opportunity to engage with national networks in mathematical epidemiology modeling
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Toulouse, who developed a tool called BibHélioTech, which serves a precursor to this thesis's research. International collaborations are also possible, particularly with the NASA/ADS (Astrophysics Data
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matter • Physical phenomena in reduced dimensions • Soft matter and the physics-biology interface The first theme encompasses both experimental and theoretical studies on the properties of systems
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and experimental models to study metabolic communication in GBM invasion. In this context, spatial transcriptomics and mass spectrometry imaging provide tissue-level maps of tumour–microenvironment
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, biophysics, biochemistry, and molecular modeling, developing experimental and numerical approaches for the study of complex molecular systems. Within this institute, the Biophysics of Complex Systems team