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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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to: Investigate how logical and philosophical theories can support the structuring and modelling of knowledge in practical contexts. Participate in the development of IMF by bringing in methods from formal ontology
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work. The museum provides excellent research facilities in-house, with outstanding in-house expertise in DNA-based and molecular biology methods, microscopy and visualization, and analytical methods
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expected to assist in supervising students at both master's and PhD levels. This project is funded by a prestigious FRIPRO Grant for Early Career Scientists and is built on our ongoing Integreat project
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The successful candidate will join the CMB&CO group at ITA, currently composed of two professors, five researchers, two postdoctoral fellows, four PhD candidates, and two master’s students. The candidate will be
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master's and PhD levels. This project is funded by a prestigious FRIPRO Grant for Early Career Scientists and is built on our ongoing Integreat project “Embedded Sufficient Statistics” . This position is
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The idea is to combine established iterative ensemble Kalman methods with novel emerging machine-learning-enabled model calibration techniques recently adopted in CLM-FATES at UiO. The aim is: to constrain
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technological progress in our increasingly digital, data-driven world. Researchers in Integreat develop theories, methods, models, and algorithms that integrate general and domain-specific knowledge with data. By
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dissecting the functionality of different EV subsets. Methods include, but are not limited to, in vitro culture of primary human cells and cell lines, organ-on-chip models, molecular biology, diverse
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calculations. The focus of the project is to perform lifetimes measurements of excited states ranging from few picoseconds to several microseconds via recoil distance Doppler shift (RDDS) and fast timing methods