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particular attention to circularity, high-value material recovery and design for recycling. In addition to conducting research, the candidate will play an active role in the management of collaborative
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the electrolyte exchange charge with solid booster materials held in the storage tanks, decoupling energy density from active-material solubility while preserving the modularity and safety of aqueous flow batteries
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, decoupling energy density from active-material solubility while preserving the modularity and safety of aqueous flow batteries. The performance of such batteries hinges on the solid booster formulation
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the field of sustainable construction. The research integrates dynamic material value-chain analyses, ownership models, technical performance assessment, and design-for-disassembly strategies to support the
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translational focus, running a tech development lab on the EPFL campus and a translational lab in the AGORA cancer research center (with direct access to patient material). Furthermore, a strong network of
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lab in the AGORA cancer research center (with direct access to patient material). Furthermore, a strong network of clinical partners in Europe and the US has been established. The successful candidate
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. Empa is a research institution of the ETH Domain. Empa’s Centre for X-ray Analytics develops X-ray analytical and imaging methods for understanding materials structure in material, life- and medical
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more energy-efficient. Recovery of critical metals: Developing processes to recover valuable metals such as lithium and cobalt from waste streams, enabling secure and sustainable material cycles. Your