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using Contactless Sensors Integrated with Operational Modal Analysis (TORSION)”. The main aim of this project is to develop a condition monitoring system with contactless sensors for critical components
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Data analysis and publication Participate in professional development and knowledge dissemination within relevant topics Active participation in research group meetings via Unsplash Qualification
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of the team, the fellow will be directly involved in project coordination, data collection, data analysis, and the write up of results for submission to peer-reviewed scientific journals. Project description
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of structures, facilitating a form-finding process driven by FEM analysis. Training deep learning algorithms to suggest multiple structural concepts tailored to specific boundary conditions. Expanding FEM
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Analysis: Utilize various cell and molecular biology techniques, including histology, microscopy, flow cytometry, RNA-seq, proteomics, Western blot, and qPCR, to analyze organoid and mouse models
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population genomic analysis) Your course of study must correspond to a five-year Norwegian course, where 120 credits have been obtained at master's level. Master's students can apply, but the master's degree
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Element simulations (e.g. pushover analysis and/or incremental dynamic analysis). Moreover, the project aims to verify the ductility requirements with full-scale experimental results and explore
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their ph.d. degree, the doctoral dissertation must have been submitted for evaluation before the application deadline. Previous experience with analysis of genetic and/or brain MRI data is required. Previous
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for a full-time (100%) PhD position for 3 years in “Development of Probabilistic Reliability Criteria in Distribution Grids”. You will join the research group Power System Operation and Analysis (PSOA
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BSc and MSc students. The faculty has 11 research groups within chemistry and biochemistry, microbiology and microbial gene technology, bioinformatics and data analysis, food science and nutrition