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; - Characterizing blister dimensions using AFM and SEM, as well as the strain transferred to 2D materials using spectroscopy (Raman); - Implementing analytical and numerical (finite-element) approaches to analyze
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assemblies (microscopies, spectroscopies, DLS, etc.) - Static light scattering resolved in angle and wavelength on an available set-up - Comparison of experimental results with numerical simulations
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well as investigating the role of non-local correlations in the quantitative prediction of satellites positions and pole strengths. The successful candidate will participate in numerical research and scientific code
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of numerous recent studies that have provided a valuable body of data. Within Py-10, a specific theme is the dating of the old (more than 1Ma) fluvial remnants. These are mainly represented by long-lived
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the supervision of Dr. James Bradley (https://www.jbradleylab.com/ ). The recruited person will work with the principal investigator and will participate in theoretical and numerical modelling work, as part of a
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tasks that best suit your strengths. This could involve the design, optimization, and fabrication of advanced devices using numerical methods like FDTD; taking charge of spectroscopic experiments
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polaritonic waveguides and cavities, and will contribute to the theoretical (i.e. analytical) and numerical simulations of the GaN architectures in collaboration with the theory groups in the consortium. In
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be supervised by Johan Decelle. There will be numerous interactions and synergies with national and international partners. To learn more about the project, several publications are available
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the signals indicating transient but slow deformations (slow earthquakes, co- and post-seismic deformations). 1. Use spatial coherence and advanced methods (PCA...) to separate the numerous low
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magnetized plasmas -Expert in numerical simulation -Fluent in spoken, read, and written English Website for additional job details https://emploi.cnrs.fr/Offres/CDD/UMR7648-ANNBOU-001/Default.aspx Work