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Join TU Delft to uncover the biology of cellular robustness in an industrial yeast process and translate your discoveries into innovative genome engineering strategies. Job description You will join
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conduct research on: Repurposing end-of-first-life electric bus and IMC batteries as second-life stationary and mobile energy storage systems with focus on battery degradation and cell-to-cell variations
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research on synthetic cells chemistry of the future. We are looking for two postdoctoral researchers to develop synthetic cells that can produce valuable products from waste streams. These positions are part
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problems in bioinformatics. This project is part of the Faculty of Science's new Quantum Simulation for Molecular and Material Design (Q-MMD) programme. You will join a growing interdisciplinary team at
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, scientific, and societal challenges originating from the transition towards a more sustainable society and focuses on four areas: DC Systems, Energy Conversion and Storage (DCE&S) Photovoltaic Materials and
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cellular targeting and lamella preparation of frozen-hydrated biological specimen on a unique instrument, with the aim of enabling efficient and reproducible structural analysis of molecular complexes in
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, semiconductor materials or optoelectronic devices. Experience with materials characterization techniques such as XRD, XPS, SEM, AFM, ellipsometry, Hall measurements or related methods. Experience with solar-cell
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Within the department, the Photovoltaic Materials and Devices group develops innovative materials, devices and manufacturing technologies that enable the next generation of high-efficiency solar
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the goal to obtain more in-depth process understanding and develop automated control strategies for single cell microbial suspension cultures. Currently, the team is working on liquid- and gas-phase
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. Experimental work will be carried out using a high pressure vapor-liquid equilibrium cell and a CO2 flowloop, both of which are available but may require modifications to accommodate the planned measurements