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• Develop, consolidate, and optimize fMRI and EEG neurofeedback algorithms. • Design, integrate, and test standalone neurofeedback software (software suites for clinical environments). • Contribute
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** Deployment and optimization of the PFAS analytical toolbox: targeted analyses (LC-MSMS, GC-MSMS), total oxidizable precursor assay (TOPFAS), and non-target screening (NTS, LC-HRMS Orbitrap). Intercomparison
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transmission electron microscopy. - Surface preparation and nanoparticles manipulation - in-situ Transmission Electron Microscopyy nanoindentations of HEA nanoparticles - Setting up an analysis procedure
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deposition (PVD, PECVD) o Familiarity with microscopy and characterization techniques (SEM, AFM, profilometry, ellipsometry, etc.). o Ability to develop and optimize fabrication processes, document protocols
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optimize deep learning models, trained for the reconstruction of events generated with this simulation framework and targeting their application on a distributed trigger system based on several processing
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of the work is to advance and automate the use of ptychography on various sample types. In particular : 1) accelerate the reconstruction process using a multislice algorithm 2) allow a 3D reconstruction and 3
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academic research, medical innovation, and entrepreneurship. Each year, cancer affects 20 million people worldwide, and diagnosis is typically based on biopsies—an invasive procedure that samples only a
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and optimize TD-RAS (time-dependent restricted-active-space) methods for many-body systems including positrons. - Carry out large-scale numerical simulations of photoionization and de-excitation
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300mm etching reactors located in CEA/Leti's clean rooms. It will involve : 1) Create the lithographic design adapted to requirements (GDS) 2) develop/optimize plasma etching processes for AlGaN and GaN
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layer to accommodate lattice mismatch while enabling the active use of Si as a bottom cell. The applicant will be involved in the deposition and optimization of the GaAs, its doping, passivation/contact