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project within the Dutch SolarNL / SolarLab program ( https://www.solarnl.eu ). The project focuses on advanced light-management strategies for high-efficiency all-perovskite tandem solar cells. Information
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for enhanced absorption in tandem solar cells Material growth strategies to reduce parasitic optical losses in e.g. transparent conducting oxides. Advanced spectral management concepts for improved current
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mathematics, for example mapping out disease processes using single cell data, and using mathematics to simulate gigantic ash plumes after a volcanic eruption. In other words: there is plenty of room
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mapping out disease processes using single cell data, and using mathematics to simulate gigantic ash plumes after a volcanic eruption. In other words: there is plenty of room at the faculty for ground
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of course includes AI. Meanwhile we are pushing the limits of applied mathematics, for example mapping out disease processes using single cell data, and using mathematics to simulate gigantic ash plumes after
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Develop CMOS-compatible broadband photodetectors for compact spectropolarimetric cameras. You will design, fabricate and characterise detector structures for space-based Earth observation. Job
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of course includes AI. Meanwhile we are pushing the limits of applied mathematics, for example mapping out disease processes using single cell data, and using mathematics to simulate gigantic ash plumes after
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single cell data, and using mathematics to simulate gigantic ash plumes after a volcanic eruption. In other words: there is plenty of room at the faculty for ground-breaking research. We educate innovative
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mapping out disease processes using single cell data, and using mathematics to simulate gigantic ash plumes after a volcanic eruption. In other words: there is plenty of room at the faculty for ground
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of applied mathematics, for example mapping out disease processes using single cell data, and using mathematics to simulate gigantic ash plumes after a volcanic eruption. In other words: there is plenty