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, Python or Bash programming languages) as well as experience in analysing sequencing data with cluster computing environments. Experience with molecular dating methods and nanopore sequencing is considered
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sequencing data with cluster computing environments. Experience with molecular dating methods and nanopore sequencing is considered an advantage. Excellent communication skills in English, both verbal and
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techniques such as mouse models, in vivo immune cell functional assays, flow cytometry, cell biology, metabolic assays, imaging and omics-techniques (next generation sequencing). Applicants should possess a
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in spatial analyses Excellent scientific writing skills, including ability to lead high quality multiple-authored journal papers in an efficient manner Strong ability to work independently and to
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multidisciplinary research programs. The Institute hosts several shared research infrastructures, including cutting-edge facilities for cryogenic electron microscopy (cryo-EM), light microscopy, sequencing, and
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. The biodiversity-ecosystem function relationships will be analysed via unique long-term observational datasets available at REC. The focus of the specific research questions will be tailored to align with
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for cryogenic electron microscopy (cryo-EM), light microscopy, sequencing, and proteomics. For more information, please visit https://www.helsinki.fi/hilife/bi Where to apply Website https
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research, and more. The project aims can be addressed in the postdoctoral work relatively creatively, and diverse approaches and angles to the core themes are welcomed. The work includes: Research aligning
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, and diverse approaches and angles to the core themes are welcomed. The work includes: Research aligning with the above described aims: contribution to the MoreChild project conceptually
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to Professor Tuomo Hiippala . The project develops novel methods and resources for studying multimodality, or how humans communicate using combinations of multiple ‘modes’ of expression. These methods and