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Department: Chemical Engineering Title: The mitochondrion as an engineering target for mammalian cell factories Application deadline: 24/07/2026 Research theme: Biotechnology How to apply: https
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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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-earth elements (REEs) are essential to key sectors in the modern economy including the electronic, energy, pharmaceutical and automobile industries. Despite their importance, these critical elements
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multidisciplinary team and possess a proactive, innovative approach to problem-solving in research. Desirable skills: Prior experience with hydrogel development, 3D cell culture techniques, and a thorough
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that can interact with human cells and tissues with high spatial and temporal resolution. You will embark on a new project focused on the development of 3D-printed hydrogel bioelectronics for neural
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Your position We aim to pursue a new interdisciplinary approach, combining the synthesis of multi-functional culture-matrices with cell-instructive viscoelastic properties, in-depth cell
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therapies. In our laboratory, we have established and validated a panel of genetically heterogeneous PDAC models. These studies have shown that malignant-cell genetics shape distinct, therapeutically
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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
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to run on this new generation of equipment – which of course includes AI. Meanwhile we are pushing the limits of applied mathematics, for example mapping out disease processes using single cell data, and