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to uncover how hydrogen interacts with circular steel microstructures and affects deformation, ductility, crack initiation and crack propagation. You will investigate hydrogen trapping and transport, identify
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, crack initiation and crack propagation. You will investigate hydrogen trapping and transport, identify the microstructural features controlling embrittlement and establish quantitative links between
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Fixed-term contract: 12 months. What do we offer? We offer a dynamic and inspiring environment with excellent support for experimental work and analysis, and great opportunities for collaboration
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learning potentials can overcome typical bottlenecks of empirical potentials for simulating dislocations, cracks and hydrogen diffusion near precipitates embedded in ferritic iron. While considerable
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researcher who will focus on Belgium and the Great Lakes Region of Central Africa. By comparing these case studies and triangulating the diverse methods, the project will enable a better understanding of
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dislocations, cracks and hydrogen diffusion near precipitates embedded in ferritic iron. While considerable progress has been made in simulating hydrogen behaviour in the presence of defects (e.g., grain
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workplace culture within the faculty, where we work together with great energy and a pragmatic attitude to tackle social challenges. At the Faculty of Science, scientists and students work on fundamental and
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here: https://www.uu.nl/en/research/copernicus-institute-of-sustainable-devel… . Diversity & Inclusion The KNAW considers a working environment in which everyone feels welcome and appreciated of great
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of Proficiency in the English Language. Additional Information Benefits What do we offer? We offer a dynamic and inspiring environment with excellent support for experimental work and analysis, and great
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crack sensitivity of green steels [Tata Steel; Marc Geers] PhD 3: From structure to properties in green metastable stainless steels [Philips, Alleima; Marc Geers] PhD 4: Solute-dependent bcc crystal