39 experiment "https:" "https:" "https:" "https:" "https:" "https:" PhD positions at CNRS
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) at Université Toulouse III – Paul Sabatier (UT3) and the Centre d'Études et de Recherche en Psychopathologie et Santé (CERPPS) at Université Toulouse – Jean Jaurès. Experimental work will be conducted
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acquire in the course of the PhD skills in live microscopy, experimental neurobiology, genetics and behavioural work. The student will receive mentoring and have the chance to guide the research and
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, functional and metabolic analyses, and co-culture models with tumour microenvironment cells. In vivo experiments using orthotopic mouse models will enable the study of their role in tumour formation and
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radioactive decay: the neutrinoless double-beta decay. The research of such decay is the goal of the SuperNEMO experiment, located at the Modane Underground Laboratory, which has been recording data since April 2025
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. Experience in conducting experimental work (experimental internship) 2. Basic understanding of magnetohydrodynamics 3. Knowledge of Python programming 4. Experience in signal and/or image processing _Personal
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with, learning methods for robotics would be a plus • Experience with robotic systems and/or aerial robots is a plus Where to apply Website https://emploi.cnrs.fr/Offres/Doctorant/UMR5216-VIRFAU-064
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/or experience in microfluidics and image processing. Strong interpersonal skills, teamwork, scientific curiosity, and ability to synthesize information. Where to apply Website https://emploi.cnrs.fr
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Infrastructure? No Offer Description The goal is to follow CaCO3 shells (foraminifera, pteropods) from sinking particles to sediment formation, combining experiments (shell-scale respiration measurements, X-ray
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and fabricating innovative microfluidic devices; - Developing experimental methods to measure tissue permeability, elasticity, and compressibility; - Performing transport experiments under controlled
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of Toulouse to gain a better understanding on metal leaching in heterogeneous porous media through an experimental study and reactive transport modeling. The approach will focus on microfluidic experiments