125 parallel-processing-bioinformatics-"Washington-University-in-St" Postdoctoral positions at CNRS
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• Participation in micro- and nanofabrication processes using CRHEA's state-of-the-art cleanroom facilities (advanced lithography and etching techniques) • Optical and structural characterization of fabricated
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far in any of the numerous direct searches for new particles, the emphasis for Run 3 and the subsequent high-luminosity phase of LHC operation is shifting to precision measurements probing
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modality for single-molecule localization. The main responsibilities will include: -designing and developing the optical instrumentation, -adapting and extending existing image and data processing tools
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lie at the crossroads of multiple disciplines and involve expertise in optics, electronics, image and data processing (including machine learning), photophysics, chemistry and biology. The position is
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FieldComputer scienceYears of Research Experience1 - 4 Research FieldMathematicsYears of Research Experience1 - 4 Additional Information Eligibility criteria Skills/knowledge: computer vision, neural networks
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, materials science, nanoscience, or optoelectronics. - Surface chemistry, microfabrication, and optical characterization techniques. - Experience in surface chemistry, plasma processing, or microfabrication
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Postdoctoral researcher (M/F), synthesis of crystal phase heterostructures by Molecular Beam Epitaxy
processing and analysis of TEM images (segmentation, extraction of morphological parameters). Modeling of growth and phase transitions (nucleation kinetics, diffusion mechanisms, droplet stability). Optical
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challenges in coupled photo- and biocatalysis The transition toward sustainable chemical manufacturing requires innovative strategies to replace fossil-based processes with biomass-derived alternatives. Among
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and associated with biological processes such as the circadian rhythm. The aim of the project is to understand at a molecular level the impact of these modifications on the structure and dynamics
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project, which aims to explore the potential of paramagnetic complexes as solid-state quantum bits (qubits) for quantum information processing. In order to measure properties at the single-molecule scale