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motivated postdoc with expertise in molecular and cellular biology, mammalian blood stem and progenitor cell purification, culture and manipulation, and advanced imaging to join our interdisciplinary team
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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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biology, or applied mathematics Documented experience in C++ programming and solid software engineering fundamentals Familiarity with numerical methods for solving PDEs (e.g., finite difference, finite
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microstructure and magnetic properties in materials and in particular Sm-Co permanent magnets. This research will contribute to a deeper understanding of fundamental metal properties and enable the design of next
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, clothing, and skin (and body), including convection, radiation, and conduction in materials. Your profile Completed Master`s degree in mechanical engineering Proven experience in continuum modeling (finite
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walls reinforced with iron-based shape memory alloys (Fe-SMAs). The PhD project aims to develop a nonlinear finite element modeling framework to simulate the mechanical bond behavior between 3D printed
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What will be funded? The applicant’s salary Materials (on a limited scale) The maximum duration of project funding depends on the faculty at which the project is carried out. Faculty of Theology and the Study of Religion: 12 months Faculty of Law: 12 months Faculty of Business, Economics and...
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Please submit the following documents with your nomination: Application form with details of the nominees and the nominator A title (max. 150 characters) and a brief summary of the achievement (max. 400 characters) A description of the achievement and the main results (max. 4’000...
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, manufacturing (by WAAM) and testing of samples for material characterization and derivation of material properties, and applying these properties in finite element simulations of the tests; Designing test
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high computational cost presents a challenge for real-time process control. This project aims to overcome this limitation by integrating real-world casting data, process parameters, and finite element