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to e‑wax), and long-term stability. By combining advanced kinetic studies with state-of-the-art operando characterization techniques, you will develop fundamental insights that enable improved catalyst
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the interface between the classical and quantum worlds. You will design QEC codes suited to realistic hardware, develop the decoding algorithms that make them practical, and map the trade-offs between reliability
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team in developing a new type of qubit based on Majorana bound states in Kitaev chains. This project will develop Majorana qubits in longer Kitaev chains, thereby reaching topological protections. We
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Delft, RUG, UTwente, TU/Eindhoven, U Nijmegen, DIFFER, TNO) to develop next generation batteries for ultra-long-duration energy storage. This project will focus on the development of inorganic, hydrogen
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, and companies across the value chain of biomass. In this PhD project, you will develop state-of-the-art methodologies to: Design and scale up novel processes for the valorization of low-grade biowaste
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expert in modelling: what matters most is your passion for human physiology, your curiosity about cancer cells behaviour, and your willingness to develop new computational skills along the way
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main responsibilities will be shared between two main research activities (approximately 70%-30%): Large-Scale Survey Development & Data Analysis for Ex-Post Assessment: Develop and deploy a structured
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mobility every day. Our education and research are directly aligned with what society needs now and in the future. At TU Delft, our people make the difference. With their knowledge and curiosity, our staff
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serve as valuable feedstocks for specialty chemicals, yet efficient catalytic upgrading routes are still underdeveloped. In this project, you will develop catalytic processes to convert lignin-derived
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countries. Best of all, you will not do this alone: you will be part of a vibrant, international cohort of 11 doctoral candidates who train, travel, and tackle the challenges of quantum-secure communication