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numerical modelling framework to simulate how light and heat interact with the target body tissue, while also incorporating neural signalling dynamics to explore how light-based stimulation affects
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acoustic measurements. Experience in CFD, particularly acoustic simulations, will be considered as advantageous. Capable of working independently, exercising a high degree of initiative and demonstrating a
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, evidence of prior teaching and/or industry experience). A copy of your Master thesis (if not finished at the time of application, please send a current draft or an executive summary of it) and, where
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questions about the position, you are more than welcome to contact us. You will find contact persons at the bottom of the jobpost. Further information We recommend that you save a copy of the job posting, as
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relevant wear particles and simulating physiological loading conditions. This scholarship aims to develop a spinal implant-on-a-chip platform to study the mechanobiological effects of wear particles on
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with regular waves. Extending the model to full two-way coupling, allowing feedback from flexible vegetation on wave-induced flow. Applying the fully-coupled model to simulate interactions under both
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that simulates real-world environmental conditions to test the durability and longevity of these materials and products made thereof, is also required. This PhD project aims to investigate novel high-performance
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on mesoscale fluid dynamic simulations, microclimatic and turbulence modelling procedures in urban environments shall be performed. Subsequently weather-and turbulence-related limit values shall be formulated
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Some experience with numerical simulations such as the Finite Element Method (FEM) and Multi-Body Simulation (MBS) is a plus. We offer: a fascinating understanding at mobility in general with a
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which ways the research project corresponds to your interests, experience and educational background - A CV - Master’s degree transcripts/diploma, and copy, or link, to master degree project - Any other