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mark possible), research papers rated 4*, impact rated 4*, environment rated 4*(joint), Grade Point Average and Power. REF2021 rated as world-leading: 100% of our environment, 86% of our impact and 70
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for three years with research duties exclusively, or four years with both research and other career-promoting work. This will be clarified in the recruitment process. Research topics One PhD fellowship
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mitochondrial regulation of cardiovascular metabolism, with a focus on nutrient flux, redox balance, and metabolic signaling under physiological and pathological conditions. We employ cutting-edge approaches
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bonding strategies to enable mechanical durability and signal fidelity in multimodal sensors. Conduct validation of sensor arrays across multiple modalities, ensuring performance across variable
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inversion techniques and signal processing. Strong programming skills, Proficiency in scientific computing (e.g. Python, MATLAB, or similar) for algorithm development and data handling. Experience with sensor
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. It is a prerequisite that you complete the project during the employment period. Qualification requirements You must have a PhD with a specialisation relevant for the project. The PhD thesis must have
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updates, and interoperability at scale. In close collaboration with project partners, the PhD candidate will focus on relevant data modeling and processing approaches for data gap filling, redundancy
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PhD Research Fellow in Experimental Fluid Mechanics: Tunable hairy surfaces for droplet flow control
properly. Please turn on JavaScript in your browser and try again. UiO/Anders Lien 9th June 2025 Languages English English English PhD Research Fellow in Experimental Fluid Mechanics: Tunable hairy surfaces
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an emphasis on technology, data science and the humanities. The Hwei-Ee Tan lab studies the fundamental biological basis of “gut-feelings”, how bacteria in the gut signals to the host to influence physiology
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ranges from reprogramming intracellular signaling of cells to modeling whole joint mechanics to understand and modify these systems at their respective length scales. Our research focuses on engineering