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candidate should have a basic training at the Master’s level (similar to the 3 + 2 Bologna process and a total of 180+120 ECTS). However, applicants who hold a one- year Master’s degree may also be considered
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to the 3 + 2 Bologna process) have received the grade of 10 (or equivalent) for the master's thesis according to the Danish 7-point grading scale (https://ufm.dk/en/education/the-danish-education-system
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The department will give priority to applicants with high grades from their universities. To be considered the applicant must: have a basic education at master's level (corresponding to the 3 + 2 Bologna process
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multi-fidelity modelling, your research will advance and integrate three core elements: (i) physics-based multi-fidelity structural models enabling high-resolution analysis at fatigue-prone hot-spots
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from 1st of November 2026 or as soon as possible hereafter. About the project The position is affiliated with the Pioneer Center for Accelerating P2X Materials Discovery (CAPeX) and the section
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in the State. The position is covered by the Protocol on Job Structure. Physical presence at IFRO is considered as a natural part of being an employee to contribute to a welcoming, socially pleasant
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of impurities during transportation of compressed and liquefied CO2 under the impact of relevant impurities. The investigations must consider corrosion and lifetime estimation to qualify the materials used
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with backgrounds in physics, chemistry, materials, and computer science. The two sections comprise 13 (four in AMD, nine in ELM) PIs and approximately 50 PhD students and postdocs. Qualifications: Good
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PhD Scholarship in University Students’ Learning Via Digital Twins of Neutron Scattering Instruments
studies and data analysis with one of the leading groups in the field. Qualified applicants must have: An MSc degree in Physics, Nanoscience, Chemistry, Engineering, or Material Science, or Educational
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multi-fidelity modelling, your research will advance and integrate three core elements: (i) physics-based multi-fidelity structural models enabling high-resolution analysis at fatigue-prone hot-spots