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Field
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the fundamental engineering understanding of gas centrifuge systems. The group leverages analytical techniques and advanced computational tools—including finite element analysis (FEA)—to evaluate and predict
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cryogenic measurements at liquid Helium temperatures - Experience in finite-element simulation of semiconductor electro-mechanical devices. - Strong oral and written communication skills
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applications Human-centric and sensing-enabled mechanical systems Strong background in computational modeling and analysis, including finite element analysis (FEA), multiphysics simulations, and data-driven
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experience of management of research, using both qualitative and quantitative methods. With excellent communication skills, you will have expertise in finite element analysis (FEA), impact analysis
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, anisotropic conductive film bonding and wire bonding Finite element Method (FEM) simulations (MEMS, Electro-static and Quasi-static simulations) Discrete electronic design (Analog and digital design using COTS
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codes, finite element or finite different methods, peridynamics, phase field models, multi-objective optimisation methods, CAD. Demonstrated ability to adapt to fast-changing project direction and learn
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of the finite element method is an advantage Proven record of publications in recognized international scientific journals Excellent English communication skills (written and oral); German language proficiency is
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modelling, particularly finite-element based multiphysics and electromagnetic packages and techniques, and bespoke code for component simulations. Experience of relevant lab techniques – optical testing
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describe the damage present in critical areas. They rely on multi-scale finite element simulations with multiphysics couplings between electrical, thermal, and mechanical domains. In addition, it is
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microscopy, optical interferometry, vacuum technology, finite element method simulations will be involved. Applicants should hold a PhD in Physics, Nano-science, Engineering or similar, experience with optics