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* structured along five design dimensions — perceptual, narrative, semiotic, interactional, epistemic — whose parameters (visual identity, focalization, dramatic intensity, level of explicitness, metaphor
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. The successful candidate will directly contribute to the development of millikelvin-range thermometry capabilities, in close interaction with national partners from both academia and industry. In particular
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. Fluorescence lifetime is a powerful probe of molecular interactions, chemical environment and local medium properties, both in living cells and in nanostructures or functional materials. The project therefore
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spectra by exploiting modes supported by arrays of adjacent, identical meta-units. These systems leverage interactions between neighboring meta-units to achieve multifunctionality, including high-quality
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(Label of Excellence - 00180410, Normandy Region) which aims to develop a new perspective on interfacial interactions for a tailored performance of porous materials. This project aims to apply and combine
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structural information to complement structural biology techniques. - Design, perform and interpret mass photometry, native MS, HDX-MS and cross-linking MS on a series of mulitprotein complexes
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to develop innovative achromatic MSs for advanced optical imaging, focusing on multilayered designs, broadband performance, and integration with free-space optical systems. This project offers an opportunity
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electrophysiological complexity of the human gastrointestinal tract in order to investigate intestinal infectious diseases and host–pathogen interactions. Within this framework, the NCM (Nanobiointerfaces and Conductive
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and/or asymmetric organic catalysis. They will be responsible for designing and implementing new photo-induced transformations, as well as for the synthesis, purification, and characterization
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lattices. • Implement and optimize RF reflectometry and dispersive sensing techniques for the measurement of complex admittance and charge susceptibility. • Design, characterize and improve microwave