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Two fully-funded postdoctoral or PhD student positions in experimental mesoscale bioinspired materials, DNA nanoscience, and/or soft matter physics The university: Johannes Gutenberg University
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PhD and/or MD in molecular biology, cell biology, microbiology or related field. extensive experience in tissue culture and molecular/cellular biology techniques (e.g. RNA/DNA manipulation, cloning
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2025. Highly motivated and committed candidates with an interest in DNA damage response pathways and chromosome biology are encouraged to apply. The post is fully funded, although the post-holder will be
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maintain viability within glaciers and permafrost. Duties will include conducting laboratory work such as DNA extraction, PCR, qPCR, making geochemical measurements; processing and analyzing molecular data
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Researcher / Postdoc for molecular investigations on microbial ecology in deep-sea polymetallic n...
on bacterial and archaeal communities at the bottom of the CCZ. A unique dataset with DNA/RNA sequences (including metabarcodes, metagenomes and metatranscriptomes from sediment, bottom seawater and polymetallic
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, genetic, and DNA methylation analyses to patient-derived samples and disease models. Working closely with a dynamic and multidisciplinary team of clinicians and scientists, they will help generate and
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take a lead role in conducting wet lab experimentation, applying state-of-the-art single-cell multiomic approaches, including transcriptomic, genetic, and DNA methylation analyses to patient-derived
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transcriptomic analyses (RNA-sequencing, 10X genomics) and epigenetic signatures (DNA methylation, chromatin accessibility, ChIP-sequencing, and Hi-C conformation capture techniques) for the genes involved in
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the University of Minnesota. This position places you at the forefront of the transformative AI for Science, with a particular focus on developing, implementing and fine-tuning DNA sequence/genomic/omic large
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myeloproliferative neoplasms (MPNs). You will take a lead role in conducting wet lab experimentation, applying state-of-the-art single-cell multiomic approaches, including transcriptomic, genetic, and DNA methylation