18 structures "https:" "https:" "https:" "https:" positions at Ghent University in Belgium
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the open-source R package lavaan. Reference paper: Schamberger, T., Schuberth, F., Henseler, J., & Rosseel, Y. (2025). Structural Equation Modeling with Latent Variables and Composites. arXiv preprint arXiv
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-structure interaction (FSI) with focus on the fluid mechanics. We couple computational fluid dynamics (CFD) to a structural solver and/or a controller for the detailed simulation of a machine. We develop
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– Reducing the Design Fatigue Factor through Exploiting Structural Health Monitoring Data and Extending the Design Load Case Table. Wind turbines are increasingly being controlled dynamically to accommodate
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carried out at the Department of Structural Engineering and Building Materials at Ghent University. Within this project, we are seeking a full-time (postdoctoral) researcher who will play a key role in the
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students. YOUR TASKS The above-mentioned project is a research project funded by the Research Foundation – Flanders (FWO Vlaanderen). The project is carried out at the Department of Structural Engineering
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simulation of fluid-structure interaction (FSI) with focus on the fluid mechanics. We couple computational fluid dynamics (CFD) to a structural solver and/or a controller for the detailed simulation of a
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funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description Last application date Jan 31, 2026 23:59 Department TW14 - Department of Structural
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- Department of Structural Engineering and Building Materials Degree Master’s degree (preferably) in civil engineering, structural engineering, materials engineering, chemistry, geology (or another MSc leading
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Europe - ERC Is the Job related to staff position within a Research Infrastructure? No Offer Description Last application date Jan 15, 2026 23:59 Department TW14 - Department of Structural Engineering and
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At least 70% of your assignment will be spent on academic research with the main focus on studying the structure, dynamics, and intermolecular interactions of membrane-active lipopeptides using NMR