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, public authorities in their decisions and businesses in their strategies. Do you want to know more about LIST? Check our website: https://www.list.lu/ How will you contribute? You will develop a multi
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-plastic bonds and finally the inertial aspects will be defined in order to define and solve the equations of motion of systems consisting of thousands of degrees of freedom. Where to apply Website https
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whenever needed. An important additional aspect of this project is the creation of samples with defined microstructures to validate the results of parallel PhD projects on modelling. The successful candidate
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demand systematic experimental studies that will investigate build characteristics such as microstructures, precipitates, etc., besides functional properties such as static as well as dynamic loading
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systems, and relationship between microstructure and rheology in complex fluids. Further information may be obtained from: Theyencheri NARAYANAN (tel.: +33 (0)4 76 88 21 21, email: narayan@esrf.fr
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attention to phenomena dependent on strain rate, temperature, thermal history, and microstructure; elasto-viscoplastic and micromechanical constitutive modeling, developed in academic and/or industrial
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processes of thermoelectric materials (e.g., SPS, hot pressing) and optimization of technological parameters affecting microstructure and thermoelectric performance, proven competence in measuring and
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composites for enhanced durability, performing microstructural analysis and mechanical testing. Topology Optimization & AI Integration: Use AI and machine learning to guide structural and topology optimization
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. The position spans electrochemical testing, modeling, microstructural analysis, and collaborative research in an international environment. Your primary tasks will be to Conduct degradation studies to uncover