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under different strain rates, fatigue-fracture tests etc). Once rheological, microscopic, and mechanical characterisations are done, prepared polymeric composites will be tests for both electric and
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The composites industry is under increasing pressure to transition towards a truly circular economy. As growing demand continues to widen the supply gap, we must recover untapped value that would
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The project: We invite applications for a fully funded PhD studentship in the Solid Mechanics Group at the University of Bristol to work on the predictive modeling of hydrogen-induced damage in
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increasing prevalence of bone fractures among the elderly. This not only affects the quality of life for millions of individuals but also places a tremendous economic burden on healthcare systems, as the costs
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to facilitate a rapid and efficient exchange among experimental and computational groups and Devise an approach in invertible predictive modelling that links semiconductor properties to the composition of lead
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of research results in scientific journals and conferences. Qualifications: Good understanding of solid mechanics and preferably modeling of damage and/or fracture. Experience with experimental work and data
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of the Doctoral School Questions For further information about the position, please contact Associate professor Fatima AlZahra’a Alatraktchi on tel. (+45) 4674 3590 or email alzahraa@ruc.dk Terms of employment
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multiphysics degradation behaviours such as fracture, creep, and oxidation. Your modelling work may be complemented by hands-on thermomechanical testing and damage characterization, offering a comprehensive
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to hydrogen production in continental interiors? What is the role of fault and fracture-related permeability in the transport of hydrogen within Earth’s crust? What are the key geological controls
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semiconductor properties to the composition of lead-free double perovskites Your Profile: Master’s degree in theoretical or computational physics, chemistry, materials science, or a similar field Familiarity with