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at the heart of the PhD work have already been funded. This project focuses on the structure and spectroscopy of cage-like carbon clusters to which hydrogen atoms can attach, thereby stabilizing the cage
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targeting geothermal heat exchange and structural support for buildings. Yet, their wider use has been hindered by the lack of (i) sustainable expertise pipeline in the field of energy geotechnology, (ii
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elements targeting geothermal heat exchange and structural support for buildings. Yet, their wider use has been hindered by the lack of (i) sustainable expertise pipeline in the field of energy geotechnology
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separation in relation to the environmental challenges of mining. • Investigate leaching and extraction mechanisms in these unconventional media (complexation, structuring, kinetics, thermodynamics). • Explore
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interacts sequentially with at least two structures of the host envelope: a conjugative pilus and the Tol system involved in membrane integrity and cell division. However, it is unclear how fd binds
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activity (2, 3). This finding was unexpected because PCPE1 and PCPE2 are very similar in terms of sequences and structures. Objectives The main objectives of the PhD project will be (i) to elucidate
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the development of a phase-field model to study the mechanisms of formation and growth of tetrataenite (Ni-Fe with the L1₀ ordered structure) during cooling. The objective is to incorporate the presence
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using laser diagnostics, including: Flow visualization via Particle Image Velocimetry (PIV) Flame structure imaging via OH Planar Laser-Induced Fluorescence (PLIF) Wall temperature measurements via Laser
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on characterizing the structures and functions of viral RNAs, with potential applications for the development of new antiviral therapeutic approaches. The IBMC is a renowned research unit under the supervision
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than conventional structures. Superstructure optimization, which uses a predefined architecture with numerous unit operations and possible paths, offers an alternative for identifying non-intuitive