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synthesis due to steric hindrance and associated selectivity issues. Thesis Objective: This thesis aims to develop new synthetic methodologies based on controlled cationic chemistry to access these highly
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this, the CHAIN-H2 project will combine experimental and numerical studies covering small-scale kinetics through to modelling of the larger-scale characteristics of flame inhibition (flame propagation in a cloud of
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therapeutic education of patients and to support them in behavioural changes (nutrition, physical activity, etc.) related to their condition. The developed hybrid environment must notably: 1) Model and make
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very little is known to date on the links between activated mechanisms and alloy composition. In this doctoral work, a controlled exploration of the RHEA composition space will be conducted by combining
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will be degradable and chemically recyclable polymer films, as well as encapsulation for the controlled release of active substances. Job Benefits: • A doctoral project that strongly resonates with
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, characterization, photophysical, and theoretical studies. He/she must be proficient in working under controlled atmosphere conditions with air- and moisture-sensitive compounds. Curiosity, autonomy, and strong
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. To test this hypothesis, the candidate will apply methods that include magnetoencephalography (MEG), brain stimulation, neurofeedback, and computational modelling. The project includes a collaboration with
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to collaboration with industrial partners (Airbus) and have a strong interest in aerospace modelling projects. The candidate must hold a PhD in mechanical engineering, aerospace engineering or a related field. The
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research, - a high degree of autonomy and creativity in problem-solving, - openness to collaboration with industrial partners (Airbus) and have a strong interest in aerospace modelling projects
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research in Nanoscience. • The ability to work independently, and as a member of a research team. • A good command of English language. Any or combination of the following will be a clear advantage