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project NOCIFLY (collaboration with the University of Mainz in Germany) at the Institute of Functional Genomics in Montpellier, France. This project aims to uncover the circuit and mechanisms of nociceptive
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methods will be periodic semi-empirical methods and density functional theory. These models will then be used to investigate the insertion mechanism of lithium ions and to understand the nature
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of uncovering micro- and nanoscale deformation mechanisms of cells within their native tissue environments, under both healthy and pathological conditions (e.g., osteoarthritis, inflammation).Experimental data
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skills / qualifications________________________________ Diplomas : PhD in Engineering, Physics, Theoretical and Applied Mechanics, or Applied Mathematics Experience : None Knowledge required: Contributions
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-DSC, MS) will be used to understand the mechanisms and selectivity by identifying reaction intermediates. The synthesized materials will be characterized by X-ray diffraction (XRD), FTIR, Raman
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of research that is crucial to the understanding of fundamental biological mechanisms. It is supported by 12 state-of-the-art platforms. As a joint research unit (CEA-CNRS-UGA), the IBS is composed
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investigate the molecular mechanisms that underlie the regenerative capacity of injured neurons. Our research focuses on gene regulation processes, particularly the translational control of mRNAs into proteins
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during the manufacturing process. Consequently, forged parts exhibit local variations of chemical composition, which can significantly impact their mechanical properties. Institut Jean Lamour (IJL) is
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/ijtpp5030016. Required skills / qualifications________________________________ Diplomas : PhD in Engineering, Physics, Theoretical and Applied Mechanics, or Applied Mathematics Experience : None Knowledge
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will then be used to investigate the insertion mechanism of lithium ions and to understand the nature of the interaction between the material and the electrolyte. With these insights, alternative active