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for cryo-electron microscopy (cryo-EM) data analysis, modeling conformational heterogeneity, and identifying optimal binding candidates, by integrating image analysis and docking across multiple structural
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diffraction (XRD), profilometry, and spectroscopic ellipsometry, complemented by optoelectronic characterization of the fabricated devices. Overall, the project supports IEMN research on light-emission
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(DLS) and laser diffraction granulometry, alongside the surface properties of the particles — notably their electrokinetic charge, hydrophobic/hydrophilic balance, and surface chemical composition (FTIR
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an audio narrative involves more than simply verbally reproducing textual information and describing the associated images; it requires constructing an auditory narrative from a multimedia object. It is
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., NMR, EPR, X-ray diffraction, electrochemistry...). With a stimulating work environment gathering more than 70 researchers and 100 interns, PhD students and postdocs of different nationalities, research
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is organized into 2 WPs, implemented by ICPEES (Strasbourg) and IS2M (Mulhouse) partners whose expertise and technical competencies are highly complementary, ensuring a coherent and synergistic
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integrating different sources of information into a coherent estimation of HD, the system is thought to play a central role in guiding goal-directed navigation, further highlighting its close and bidirectional
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using atomic force microscopy (AFM), Raman spectroscopy, X-ray diffraction, X-ray photoemission spectroscopy (XPS) and Rutherford backscattering spectroscopy (RBS), • the transfer of 2D materials and van
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macroscopic quantum phenomena such as macroscopic quantum coherence and classical-to-quantum transition. In particular, macroscopic quantum entanglement involving two massive oscillators has recently been
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humanities. We combine terahertz, ultrasound, infrared thermography, hyperspectral/multispectral, and X-ray imaging with multimodal data fusion, interactive visualisation, and digital twins. Results