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14, 1–9 (2024). (2) Reischig, P. & Ludwig, W. Three-dimensional reconstruction of intragranular strain and orientation in poly-crystals by near-field X-ray diffraction. Curr. Opin. Solid State Mater
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throughput applications. The focus will lie on so-called multislice algorithms to obtain atomic resolution and three-dimensional phase images, that can be correlated with conventional tomography (by rotating
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laser deposition (PLD); • Implementing partial and total reduction processes of the films, with or without capping layers; • Performing structural and electronic characterization using X-ray diffraction
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of the studied assemblies by X-ray diffraction (XRD) and Raman spectroscopy. The experimental parameters obtained will serve as input data and will make it possible to calibrate the elementary electrochemical
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-DSC, MS) will be used to understand the mechanisms and selectivity by identifying reaction intermediates. The synthesized materials will be characterized by X-ray diffraction (XRD), FTIR, Raman
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failure analyses over aging by using a set of characterization techniques (SEM, numerical microscopy, X-ray tomography…). It will be checked what the degradation mechanisms are and where they initially
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part of a project funded by the ANR and aimed at characterizing and quantifying a dual source (neutrons and X-rays) for probing materials. The project is taking place as part of an industrial
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approaches and, therefore, understand variation of tree functioning at the site. - Geophysical data acquisition using Electromagnetic Induction (EMI) and Electrical Resistivity Tomography (ERT) at Paracou
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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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developed within the project. - Assure the methodological and scientific coherence between the two center of the Synergy project. - Co-supervision of the PhD students and lab-development co-coordination