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Description This thesis, co-supervised by ENAC, Equipe Informatique Interactive/ISAE-Supaéro, groupe Ingénierie Système and the UTT, proposes the research of multidisciplinary design methods and focuses
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of interactive systems with tools and methods that enable them to take account of the systemic aspects of ecological issues. Whether consciously or unconsciously, designers and users contribute
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pathogen in interaction with human/mouse plasma to elucidate the protein-protein interactions that help the bacteria to evade the immune responses. Such information will be used then to design protein
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this interaction. The entry of nanoparticles into cells offers opportunities to design drug delivery vehicles as well as contrast agents for biomedical research. Another rapidly developing field, in
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interactions are classically assessed through analysis of astrocyte calcium signals, overlooking transcription-factor based signaling, despite their emerging roles in health and disease. In this project, you
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evaluate this system in face-to-face interaction setups. In particular, the three following steps will be addressed: 1) Data acquisition: We aim at designing several interaction scenarios which will be used
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. This change in snow characteristics results in a lower stability of snow packs on slopes which lead to higher interaction forces with mitigation structures, as demonstrated by the increasing number of snow rack
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concerning their fabrication, also the design of metasurfaces requires a faithful prediction of the optical properties of the constituents, as well as the consideration of interaction effects due to optical
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: Systemic Design: Human, Environment, Technology (CoSys) Laboratory website: https://g-scop.grenoble-inp.fr/fr/laboratoire G-SCOP is a multi-disciplinary laboratory designed to meet the scientific challenges
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played a major role in determining the properties of the weak interaction, to test the "V-A" theory of the electroweak interaction in the SM. The set-up of the WISArD experiment was originally designed