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of material composition, molecular structure and their relationship to material properties will be central to the work. The candidate will work interdisciplinary with chemists, physicist, marine biologists
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point between 150 – 300 0C depending on material composition, is typically expanding 0,5 - 3% when it sets. For some applications, this material can be applied to avoid or reduce leaks and thus improve
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. The metallic material, which has a typical melting point between 150 – 300 0C depending on material composition, is typically expanding 0,5 - 3% when it sets. For some applications, this material can be applied
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, immunological biomarkers and microbiota composition in a sensitive mouse model. The PhD candidate will be part of an encouraging team of researchers, PhD candidates and master students at the Faculty
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composites. Utilize these models to analyse and predict the materials' responses to thermal cycles and their PTC (Positive Temperature Coefficient) effects. Advanced Material Characterization: Utilize advanced
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operation window for gas fermentation processes. This project is in collaboration with an industrial partner who is developing a proprietary gas fermentation process to convert waste CO2 emissions
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composition in a sensitive mouse model. The PhD candidate will be part of an encouraging team of researchers, PhD candidates and master students at the Faculty of Veterinary Medicine and the Faculty
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the simulation and analysis of composite materials and the dynamics of crack propagation. In parallel, the project emphasizes the integration of analytical methods with experimental validation. By utilizing
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the simulation and analysis of composite materials and the dynamics of crack propagation. In parallel, the project emphasizes the integration of analytical methods with experimental validation. By utilizing
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for gas fermentation processes. This project is in collaboration with an industrial partner who is developing a proprietary gas fermentation process to convert waste CO2 emissions into chemicals. The novel