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batteries, and more specifically multiphysics simulations of the liquid and ions in acid-base flow batteries. Acid-base flow batteries are based on dissociating water into acid and base during charging, using
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Framework Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description Can you help drive the energy transition by building a battery
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Researcher to design and scale up a low-cost, safe and high energy density (up to ~100 Wh/kg cell-level) long-duration battery (8+ hrs of storage) using sodium chloride and (recycled) aluminum with a NaAlCl4
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. The position is embedded in the context of the RVO project “SLDbatt”, in collaboration with Dutch research organisations and ESS industry partners. The SLDbatt project aims to develop and deploy battery
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collaboration with dairy industry partners and advanced analytical instrumental companies. Together, we aim to unravel the molecular principles of peptide–mineral ions interactions and work towards designing
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into real-world battery applications? Do you enjoy hands-on laboratory work on-scale, reactor optimisation, and developing sustainable chemical processes with industrial relevance? Are you curious about
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of ultracold atom experiments to new reals of AMO physics. You also should have a recent PhD in experimental ultracold atom or trapped ion physics. great team working skills. initiative and good time management
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integrated and functional transmembrane organic ion transporters. Develop a protein-based sensor for intracellular toxin detection. Integrate synthetic cells on dialysis membranes and set the first steps
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objectives for this position are to: Formulate synthetic cells with integrated and functional transmembrane organic ion transporters. Develop a protein-based sensor for intracellular toxin detection. Integrate
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EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description Do you have a background in optics, ultracold atoms or trapped ions? Do you want to have direct