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molecular characterization of astroblastoma tumors and developing human brain tissues. You will integrate bulk and single-cell -omics data to identify the molecular consequences of oncogenic fusion genes
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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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stationary and mobile energy storage systems with focus on battery degradation and cell-to-cell variations Analyzing the impact of battery chemistry, aging history, operational profiles, and pack architecture
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epithelium, immune cells and synthetic microbial communities (SynComs) that reflect infant gut physiology; coordinate and maintain the collaboration between mechanical engineers, microbiologists and
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We invite highly motivated, independent postdoc candidates with a proven interest and experience in molecular immunology, NK cell biology, and/or human genetics to apply. We positively value
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learning models (e.g., multimodal AI, large language/world models) with specific finetuning for ELEVATE; designing geographically context-sensitive urban design recommendations that promote active mobility
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technologies on communities globally Transpose this methodology to one that can explore the societal and cultural impact of quantum technologies Test the transposition with communities in Africa or Latin America
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for strain improvement. The project will combine cell biology, genome editing and quantitative physiological studies in laboratory bioreactors. The position offers a unique opportunity to work at the interface
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our team as a Postdoctoral Researcher, focusing on cell line development for seafood. With the world’s population predicted to surpass nine billion by 2050, substantial challenges emerge regarding food
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disease-relevant cellular models of EBV-infected B cells, modulate ERAP2 activity, and read out the downstream consequences for antigen presentation, NK and CD8+ T cell cytotoxicity, and B cell survival