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experiments on model aeronautical fuels to measure the products formed in this process and will develop analytical methods to monitor the kinetics. Main activities: - Bibliographic research, - experimental
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. This data is crucial for improving the numerical models aimed at simulating crystal morphologies and interfacial dynamics, as well as gaining a better understanding of the solidification mechanisms. Where
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charged GAGs which, when combined with collagen, produce an osmotic effect. The fluid-structure interaction will be modelled as a homogenised continuous medium within the framework of poromechanics, while
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. The approach combines theoretical developments, experimental observations and advanced modeling. More and more technologies, implemented in nowadays devices or foreseen in next-generation ones, are or will be
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composition and atomistic modeling of materials. The main activities will include: - formulating new descriptors of critical temperature (Tc) incorporating electronic fluctuation effects, evaluated by
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, simulation, programming, automation, development and setup of scientific experiments, data analysis • Soft skills: adaptation skills, open and creative mind Website for additional job details https
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) at multiple microwave frequencies. This work will be complemented by the systematic quantitative analysis of experimental data through spectral simulation, in combination with the use of various substrates
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and comparing them with models or simulation tools, interacting with project partners. • Writing and presenting results within the PEPR project (consortium meetings (video), project review (video and/or