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and graduate students each year, including many doctoral students, as well as postdoctoral researchers and visiting scientists. The laboratory covers a wider variety of topics than its name suggests and
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which currently consists of 5 permanent researchers, 2 PhD students, 2 postdoctoral researchers. The PhD studies will be performed in the experimental rooms of the propulsion team at LPP in Palaiseau
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, with a dynamic international exposure animated by regular seminars and meetings. The Laboratoire de Biochimie Théorique (LBT) is internationally recognized for developing and applying computational
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PhD student (M/F) in Polymer Chemistry: Synthesis of cross-linkable, degradable and recyclable latex
. To support the transition to more sustainable polymers, the PhD student (m/f) will develop a new generation of dynamic polymer colloids: cross-linkable, degradable and recyclable. This is a challenge because
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these fluorescent peptide biosensors to develop a platform for profiling several PK activities simultaneously in the synovial fluid of patients with arthritis. This project is part of the research topics developed by
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transfer learning to transpose the recurrent neural network (RNN) model available for supercritical CO2 power cycles to other cycles. Since thermodynamic conditions vary greatly depending on the fluid and
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working fluid. The proposed expander system consists of: - Membrane-based expansion chambers, ensuring efficient expansion without leakage risks; - A linear alternator, directly converting the reciprocating
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wide range of scientific skills, with each supervisor covering a specific area of expertise (DFT and Thermodynamics, Kinetics, Molecular Dynamics and ML potentials). The candiadte will contribute to a
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digital collaborative tools and devices, which creates different dynamics and work strategies. This variability in collaboration configurations (synchronous / asynchronous / co-located or remote) can
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PhD on 2D quantum photonics : towards neuromorphic applications with 2D ferroelectrics materials M/F
unraveling the mechanisms governing domain dynamics, such as flipping and domain wall propagation—central to the emerging physics of sliding ferroelectricity. The ultimate ambition is to develop a strategy to