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applications given their propensity to promote momentum mixing and thermal homogenisation. 2- OBJECTIVES -------------------- -Objective 1: Physical characterisation through stability analysis (sensitivity
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average annual budget of €7 million. It is organized into 10 research and support teams, with the scientific objective of studying the physical and chemical properties of the Earth, and a particular focus
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: Generation of energy conversion processes, led by LRGP and EDF R&D. The objective is to develop a methodology capable of automatically determining the best thermodynamic cycle and the best working fluid for a
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PhD position: Nanoengineering refractory compositionally complex alloys for extreme conditions (M/F)
of the materials. Complementary structural and micromechanical characterizations will be carried out after irradiation to analyze the evolution of microstructure and properties. The objective is to establish
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than expelled. Phagocytosis, a receptor-mediated internalization and digestion of objects larger than 0.5 microns, leads to the formation of a phagosome that matures through a series of fusion and
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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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transfer (MNT) reaction. The objective is to study the mechanism of the MNT reaction and its ability to produce heavy nuclei that are different and richer in neutrons compared to the fusion-evaporation
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streaming, and perform a complete landform analysis and glaciodynamical reconstruction of a possible former Kasei ice stream. In detail, the project objectives are: (1) Test the hypothesis that an ice stream
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to dynamically adjust motivation strategies based on their behaviours to generate sustained engagement. The primary objective of this thesis is to explore how to implement motivational strategies (gamification
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of molecular deformation into local strain and ultimately macroscopic actuation. The SIMULACTOR project aims to develop an integrated multiscale approach to model the mechanical behavior of PPAs. Its objective