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Disease (VWD) This PhD project aims to comprehensively characterize variant Von Willebrand factor (VWF) proteoforms and uncover how these variants influence bleeding phenotypes, VWF trafficking, and
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adopt and extend in-house homogenized constrained-mixture (finite element) models for cardiovascular tissues towards simulating cartilage G&R (see Cyron et al., 2016 ). You will then simulate cartilage
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data, a physics-based train–track–embankment interaction model will be developed using finite element (FE) and/or multibody dynamics (MBD) approaches. The model will be used to investigate the mechanisms
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analysis [SKF; Johan Hoefnagels] PhD 9: Effect of surface changes due to tramp elements and new heating methods on the mechanics of green steel [Tata steel; Johan Hoefnagels] PhD 10: In-situ micromechanical
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) research group at the Engineering and Technology institute Groningen (ENTEG), Faculty of Science and Engineering. In the application of materials, there are distinct worlds plastic and metal. Metal is strong
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the accuracy of plume source composition Quantify changes with tectonic setting and time Determine the impact on convection behaviour and element exchange Topic 1 will be addressed by determining the elemental
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indicators of embankment condition. To support the interpretation of monitoring data, a physics-based train–track–embankment interaction model will be developed using finite element (FE) and/or multibody
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well as the development of numerical methods that can eventually be applied to large-scale wave-imaging problems. The PhD project will have a strong mathematical component. You will investigate questions concerning
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a stimulating scientific environment, with research focusing on Algebra, Geometry and Mathematical Physics; Analysis; Stochastics; and Discrete Mathematics and Quantum Information. The institute also
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halide perovskite semiconductors. Fabricate and assemble van der Waals heterostructures combining halide perovskites with transition metal dichalcogenides (TMDs). Investigate their optoelectronic