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fundamental understanding of droplet flow on single and complex fiber networks. Essential to the project is the development of a new understanding of capillary flow, drop impact, and wetting in fibrous networks
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October 1st, 2025. The fellowship period is 3 years. The project will provide a fundamental understanding of droplet flow on single and complex fiber networks. Essential to the project is the development
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-based, scalable framework for representing structural specifications and domain knowledge across complex engineering and industrial systems. The lab maintains a wide academic network and collaborates
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adopted, managing them efficiently is becoming increasingly complex. Variations in terrain, road conditions, and traffic patterns increases the complexity further to effectively plan their movement and
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evolving baselines and complex, data-intensive settings. The applicant must master theoretical work in the field of change and anomaly detection and estimation, as well as having a strong track record in
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Ideas (IFIKK), Faculty of Humanities, University of Oslo. Interdisciplinary knowledge and education are essential for addressing complex problems and societal challenges. The PhD fellow will contribute
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such as transportation, defense, mining, and urban development, yet their design is often hindered by complex geological conditions and evolving functional requirements. This project aims to create safer
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pressing challenges in contemporary streaming data scenarios, such as evolving baselines and complex, data-intensive settings. The applicant must master theoretical work in the field of change and anomaly
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three months of accession in the position. About the PhD-project Norway’s maritime security environment is becoming increasingly complex due to changing geopolitical dynamics in the High North and the
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also benefit from international networks and regulatory collaborations in Europe. 2. Prehospital teamwork and simulation of complex patient pathways Prehospital care requires rapid and effective decision