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, ensuring strong support for every stage of the project. In addition, the institute offers access to state-of-the-art facilities and a dynamic scientific ecosystem supporting both experimental and
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, and shielded spaces for in vitro and in vivo experiments. The laboratory also provides access to state-of-the-art equipment essential for the completion of the proposed project, such as an HPLC system
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carried using explicit water molecules relying on molecular dynamics (thermodynamic integration and/or metadynamics). The screening for improved catalysts compared to the state-of-the-art (Pt-Ru) will start
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will be performed at the Charles Gerhardt Institute of Montpellier (France) in the Macromolecular and Material Chemistry Department under the supervision of Dr. Camille Bakkali-Hassani Covalent Adaptable
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, with far-reaching consequences for multi-messenger astrophysics and black hole astronomy. The HENBoS project is part of this rapidly developing context. The strategy is based on high-performance
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to present their work. The doctoral student will benefit from privileged access to the THEMIS instrument, as well as machine time allocated to the team on national high-performance computers (e.g. Jean Zay
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(OTFTs) provide advantages in terms of low-cost fabrication and compatibility with flexible substrates. However, their commercial integration remains limited due to insufficient performance and stability
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performance assessment of a multiplexed radio-frequency circuits and radiating structures for simultaneous biosensing, connectivity, and localisation of ingestible devices. This work package will be lead by
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-symmetric complex. This structural symmetry ensures exceptional stability and performance under extreme conditions of temperature, pressure, and magnetic field. In our recent work, we have successfully
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tool to be developed during the project; - Experimentally characterize the performance of the membrane-based reciprocating expander coupled to the linear alternator, using compressed air at various