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to integrate multi-omics datasets and link epigenomic evolution to emerging phenotypes Use high-throughput CRISPR perturbation screens in cerebral organoids to test the functional relevance of candidate elements
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dependence on imported rare earth elements while minimizing environmental impact and industrial waste. Through innovative recycling and material recovery methods, this research fosters Climate Resilience
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knowledge on multi-actor collaboration, networking and bridging, the applicant will conduct ecosystemic analysis and initiate interventions, measure synthesis, dead-ends and resistance and, in comparison with
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of magnetic materials and devices. In addition, we conduct collaborative research with other research groups within NIMS specializing in microstructural analysis and theoretical calculations, as well as with
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, troubleshooting results, data analysis, writing manuscripts, contributing to grants, and presenting their work at national and international conferences. Specific skillsets include tissue culture, flow cytometry
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cloning, PCR, flow cytometry, and analysis of immunohistochemistry, as well as other standard wet-lab assays. Candidates will also be responsible for analyzing genomic and transcriptomic datasets with
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of Sensory & Consumer Science studies, qualitative and quantitative data collection and -analysis as well as manuscript writing is requested. The candidate is expected to undertake data collection
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hands-on experience in tissue handling, histology, microscopy, and spatial transcriptomics. Experience with the computational analysis of NGS- or imaging-based spatial transcriptomics and single-cell
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bioinformatic analysis of NGS data. Hands-on experience in generating high-quality ChIP-seq data. Hands-on experience in culturing mammalian cells. Experience in molecular biology techniques, including use
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