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, contributing to our development and the success of our mission. The core responsibility of this role is the development of multiscale computational models, with particular emphasis on bio-based composite
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activities: · Understanding/simulating the diffusion paths and cavitation in thermoplastic liners. · Multi-physics simulation of the diffusion process in thermoplastic orthotropic composites
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knowledge in the discipline to work within established research programmes. You will have experience in either: modelling of permafrost processes and associated hydrological processes, modelling changes in
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the long-term behavior of the façade-TEG composites. At DTU Energy, you will have access to excellent facilities and competences for characterization and modelling. Responsibilities and qualifications Your
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to ion beams with well-controlled energies and incident angles for benchmarking and validation of theoretical calculations and computational physics and chemistry modeling of important surface processes
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develop composite materials, design concepts and devices for soft and deformable electronic systems. Areas of special interest are bioelectronics and neural interfaces, stretchable (semi)conductors, energy
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a job opportunity for an experienced post-doctoral researcher specializing in computational modelling of materials and structures, with a focus on impact modelling of composites. In the framework of a
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processes that change particle properties and their ability to act as nuclei for cloud formation. The postdoc will work in close collaboration with aerosol specialists in Merete Bilde’s group within the C3