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EU MSCA doctoral (PhD) position in Materials Engineering with focus on mechanistic study of biodegra
. Understanding cooperative effects of mechanically assisted corrosion of the Mg and Zn alloys (additively manufactured at Uppsala University) will be the focus of this PhD project. The objectives of this work
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analytical skills are desirable as well as some programming experience, while initial exposure to Finite Element Methods & object-oriented C++ programming language would be a plus, but is not required. We also
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and as part of a team Understanding of dynamical systems, time series models, machine learning, Bayesian statistics, experience in handling environmental and climate data is a merit We offer: This
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the pyramids and creating digital object models with numerical simulations, for example, using Salvus software or similar. - Publication of research results and presentation of results at scientific conferences
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, issue tracking). Strong interest in academic research and willingness to pursue a PhD. Independent, structured way of working, quick comprehension, and ability to adapt to new concepts. Excellent
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strong interest in research. A proven track record of scientific work, such as prior publications, is beneficial. We particularly value a solid theoretical foundation in 𝗺𝗮𝗰𝗵𝗶𝗻𝗲 𝗹𝗲𝗮𝗿𝗻𝗶𝗻𝗴
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to have experience in one or more of the following areas: Machine Learning & Bayesian optimization (Python, Supervised learning, Multi-objective optimization) Additive manufacturing of metals Corrosion
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at Hydrumedical using in house developed flow-through system. The objectives of this work are: i) to unveil the driving force of the micro-galvanic corrosion onset; ii) propose several approaches to reduce the
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project. The objectives of this work are to optimize an experimental setup for simultaneous tension/compression testing and localized corrosion measurements, including monitoring of local pH and dissolved
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their role and behaviour in (deep-)earth processes. Experiments using diamond anvil cells to probe the physical properties of minerals at high pressures with the objective of understanding the structure and