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immobilisation, metal-organic frameworks (MOFs), that are porous crystalline hybrid solids, have been identified as promising supports for the immobilisation of several enzyme families — leading to catalytic
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influence of pulsed or continuous currents on PPBs during flash sintering. Finite Element modeling using the Abaqus software and a multiphysics framework will be employed to quantify the processes occurring
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systems (LIED, Université Paris Cité), experts in classical atomistic simulations (molecular dynamics and coarse-graining, LMCE, CEA/DAM/DIF), as well as specialists in continuum simulations (finite element
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finite-difference resolvent solver incorporating stabilising filters as well as a domain-decomposition strategy suitable for complex geometries, - Use efficient time-integration methods to compute
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research comprises an experimental component and a theoretical/modelling component. For the former, the PhD student will be responsible for the chemical synthesis of plasmonic nanostructures and the physico
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RESILI-ANT project, led by Dr. Antoine Wystrach. The successful candidate will join the project team at Université de Toulouse Paul Sabatier and will work closely with PI Antoine Wystrach, a postdoctoral
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analyses made possible by the JWST and ALMA telescopes. The Strasbourg Observatory is responsible for the spectroscopic component of CIGALE2D. In a first phase, the successful candidate will test the
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). - Experience in metal (for exemple Cu) nanoparticle deposition methods - Strong knowledge in materials characterizations (XRD, Gaz physisorption, SEM, TEM, XPS, UV-Vis spectrometry) - Additional knowledge in gas
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for autonomous vehicles, and exoplanet detection. Among the various platforms capable of generating frequency combs, high-quality-factor resonators stand out for their ability to produce broad and stable combs
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environment at the CNRS Coordination Chemistry Laboratory in Toulouse, France, as part of the “Molecular Design of Transition Metal Catalysts” group. This PhD position is funded by the ANR through the project