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. The research project focuses on the development of solid electrode composites, so-called boosters, for next-generation redox-targeted flow batteries. In these systems, soluble redox mediators dissolved in
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boosters, for next-generation redox-targeted flow batteries. In these systems, soluble redox mediators dissolved in the electrolyte exchange charge with solid booster materials held in the storage tanks
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currently in development and will include sputter deposition and in-situ surface analysis techniques such as RHEED, AES and XPS. Part of the work is also to optimize the workflows in this laboratory in
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and adoptive transfer, spectral flow cytometry, cell sorting, imaging, transcriptomics, single-cell RNA sequencing, spatial transcriptomics, and functional neuro-immune assays. Your profile We
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comprehensive infrastructure for materials and device characterization. In addition, the work will benefit from a unique self-driving thin-film laboratory. This laboratory is currently in development and will
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training costs are exploding, largely due to energy and bandwidth inefficiencies in current electrical datacenters. Our group is developing a novel Optical Circuit Switched (OCS) architecture
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to 3D transistor architectures and stacked, hybrid-bonded devices, non-destructive, high-resolution 3D imaging is becoming a necessity. Unfortunately, current 3D X-ray nanoimaging methods
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Your position We combine mouse tumour models, immunology, molecular biology, flow cytometry, imaging and single-cell approaches to investigate how neurons, immune cells and stromal cells communicate
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. (Both studies are currently under review.) Building on these findings, the successful candidate will investigate how microbial interactions shape ecosystem functions and how interaction principles scale
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particular the development of generative AI technologies such as diffusion models, flow matching, generative transformers, or related architectures. The position is highly methodological and focuses