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to rely on physical simulation in order to understand the failure mechanisms involved. This postdoc is part of a European Union Public Interest Project (IPCEI) led by the company Schaeffler
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order to study fundamental phenomena such as the formation of SEI/CEI interfaces, the (de)solvation of ions at interfaces, the interfacial ion transfer, and the mechanical properties of electrodes during
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evolutionary mechanisms: for example, heterozygote advantage (HA), negative-frequency dependent selection (NFDS) or spatially/temporally fluctuating selection (FS). Recently, new research showing that balancing
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to enable convergence between the IPSL Earth System model and observations (natural and instrumental archives). · Evaluate the mechanisms of internal ocean-atmosphere coupled dynamics and feedbacks in
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research project on development and phenotypic plasticity of the basal plant Marchantia polymorpha, with a focus on tissue mechanical properties and on plant responses to mechanical stress. The postdoc will
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, PhD students, and postdocs, conducting research in the field of Mechanics of Living Systems and Health Engineering. The lab carries out fundamental studies on the understanding and modeling of living
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well as the mechanisms underlying a lack of social touch through electroencephalography, fMRI experiments and training studies. The postdoctoral researcher will actively participate in the design of experiments
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dispersal. To do so, she/he will use approaches from fluid mechanics. The postdoc will develop kinematic models of the splash in the limit where inertia dominates. She/he will use approaches from differential
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interaction with technical systems. The laboratory is organized into four departments: • Automation, • Computer Science, • Mechanics, • Human and Life Sciences (SHV). Where to apply Website https
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outlined below, contributing to the design and execution of experiments aimed at identifying the behavioural and physiological mechanisms that facilitate nematode adaptation to arsenic-rich environments