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The position is part of the project Accurate Modeling of Dark Matter – Electron Interactions in Liquid Xenon and Argon, a Swiss National Science Foundation collaborative project with the group
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care work, part-time employment, or career breaks and consider applications proposing joint research in job-sharing. With its early-career fellowship program, the Collegium nurtures an environment
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offer Your job with impact: Become part of ETH Zurich, which not only supports your professional development, but also actively contributes to positive change in society The opportunity to help shape
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We offer An inspiring, international, and interdisciplinary work environment in a world-leading research institute. An opportunity to be part of developing a new area of research within FORM
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element modeling, computational fluid dynamics). Knowledge of heat and mass transport processes in heat-sensitive materials and process optimization. Experience in supply chains and hygrothermal
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impact: Become part of ETH Zurich, which not only supports your professional development, but also actively contributes to positive change in society We are actively committed to a sustainable and climate
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solving Workplace Workplace We offer Your career with impact: Become part of ETH Zurich, which not only supports your professional development, but also actively contributes to positive change in society We
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demonstrate these in their application materials Familiarity with numerical methods for PDEs (e.g., finite difference or finite element methods) Experience with tissue simulations and/or HPC is a plus Interest
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experience in working with vibration or acoustic emission sensors would be advantageous Our offer This research, part of a large EU Project, will be carried out primarily at Empa in Dübendorf but may also
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framework for uncertainty quantification, which is widely used in academia and industry. Project background This PhD position is part of the ORACLES project ("Optimization, Reliability And CaLibration using