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of recycled metal in production. Contribute to integrating our findings into industry practices, engineering education, and vocational training, fostering a sustainable future for stainless steel recycling in
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cancer or relapse to identify genetic alterations that may be targetable with novel drugs. A main component of this project will be to characterize the genomic and transcriptomic landscape of our patient
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epigenetics and gene regulation including histone modifications, transcription factor binding and chromatin accessibility assays Design research projects and support in establishing complex molecular biology
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The majority of the Earth's surface is covered by water, making marine environments a key component in understanding environmental and ecological changes. Monitoring marine environments is crucial
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associations involve non-coding variants that lie within gene regulatory elements — enhancers or promoters. However, a lack of precise tools for the accurate assessment of regulatory activities, especially
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other members of the EeMi project working on sedimentology, stratigraphy, inorganic geochemistry, elemental analysis, and other proxies. The position is based in the Department of Geo-energy and Storage
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. A solid publication track record in the relevant field of expertise. Experience with thermal image analysis is an advantage. Experience with hardware such as drones and cameras are an advantage. Good
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microenvironments. To achieve that we use state-of-the-art single-cell RNA-seq, multiome, and spatial transcriptomics data generation combined with computational analysis to establish principles of blood lineage
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. The position entails a considerable element of data collection and analysis. Therefore, experience with qualitative research methods, particularly in conducting focus groups, interviews, and in-depth case
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ATAC-seq, single-cell RNA-seq, spatial gene expression, and whole-genome sequencing (with long reads) data. The candidate will get the opportunity to explore new analysis methods using deep learning