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, prestress transfer, and reactivation. Structural-scale simulation of SURPASS overlays in strengthened members, including parametric finite element analyses for surrogate-model development and digital-twin
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by beam (e.g. laser light, electrons) and plasma induced processing. LAMP provides full cycle technology development, starting from novel materials, deep understanding of the background physics of beam
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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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Conversion focuses on materials and device innovation for sustainable energy conversion and storage technologies. The research project focuses on the development of solid electrode composites, so-called
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concentration gradients during charge and discharge, the evolution of interphases, and degradation mechanisms including ageing, material dissolution (leaching), and transition-metal migration. Muon-based methods
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by beam (e.g. laser light, electrons) and plasma induced processing. LAMP provides full cycle technology development, starting from novel materials, deep understanding of the background physics of beam
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research and collaboration. Our offer We provide an international and stimulating research environment with excellent infrastructure for personal and professional development. You will be employed full-time
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% Your tasks As a specialist in cell culture automation, you will be responsible for the end-to-end development and maintenance of complex cell cultures, from concept to implementation. Specifically
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. Your contribution Application and further development of 3D digital histopathology by X-ray phase contrast micro-CT Development of image processing and ML tools and models for the automated
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development of new sensors, support nanoparticle-based cellular reprogramming strategies and identify new omics-based biomarkers. We work closely with clinical partners and we focus on deep understanding