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with experts in climate modeling, geosciences and in renewable energy development have been set-up to respond to these societal issues. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre
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, the energy efficiency of buildings is a major challenge. Building envelopes, designed to protect occupants from external climatic variations, play a key role. Over the past 50 years, numerous models have been
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to the development of an innovative microphysiological system dedicated to modeling human beige adipose tissue organoids in a controlled metabolic environment. The candidate will design and implement advanced 3D
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of errors between model predictions and post-operative reality This work will be carried out by the Biomécamot team (https://www.timc.fr/BiomecaMot ) at the TIMC laboratory, which is part of the CNRS's
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3d colloidal model system. Background information: https://paddyroyall.github.io/padrus/Work_amoeba.html Publications of interest : https://paddyroyall.github.io/padrus/Publications.html Systems in
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the experimental development of an approach to the 3D characterization of organic crystals. The approach is based on thermo-microscopy, combined with multidirectional observation, allowing for in situ, 3D
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, they will take a leading role in one of the activities. Throughout the project, the main tasks will include: -Assessing the theoretical performance of the system through modeling, -Developing and training a
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, particularly using reconstructed human skin models that mimic aging or wound-healing conditions. This work takes place in a multidisciplinary framework combining chemistry, biophysics, and tissue engineering
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an approach based on 3D imaging and numerical simulation. The objective is to support the development of the most "infiltrable" ex-PIP matrices by characterizing the spatial organization of these porous media