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requires fundamental and applied research for their optimization, better understanding and industrialization. The project aims to develop and characterize new “reactive” hydrophilic and lipophilic DES
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main tasks: Task 1.1 – Fabrication of a robust TFEA Microfabrication of TFEA prototypes using photosensitive polyimide to ensure high mechanical strength. Optimization of electrode geometry, stiffness
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). Mission The recruited researcher will carry out research for the AgriBioPack project: Valorizing Agri-food Residues for Bio-based Packaging Solutions. Activities • Optimize extraction and separation
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controlled power electronics to optimize the overall efficiency of electromechanical conversion. Ultimately, the system will be integrated into two thermal energy conversion cycles: a thermochemical cycle and
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Description This postdoctoral position is part of the CPER RITEMA project (Hauts-de-France Region). It contributes to the scientific axes of “energy efficiency and optimization of consumption in mobility and
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Approximate Curvature) are employed. - **Extensions:** Zero-order optimization and natural gradient methods are explored to address computational issues and implicit bias in optimization algorithms
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. Brinkmann) • Ink formulation and printing process optimization: IETR Rennes (Maxime Harnois, Emanuel Jacques and Fabien LUCAS) The research will focus on: • Formulating and optimizing dopant inks for printed
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and carrying out repairs technology of the vacuum components and performing them Performing performance analyzes in order to optimize them Assembling and testing vacuum chambers according to precise
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milli-/microfluidic reactive experiments relevant to the DLRI process. • Implement and optimize ZnO nanoparticle synthesis under controlled conditions. • Perform optical measurements (UV-Vis, PL) and
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prospects for improving energy efficiency and decentralization (adaptation to local energy sources). There is no universally optimal cycle; optimality depends on precise specifications defining the objectives