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to protein engineering and molecular cloning, Experienced in bioinformatic genome analysis and computational tools related to protein structure analysis and prediction, Sufficient expertise in standard
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fine-grained control at the edgetic perturbation level. By filling this critical gap, EdgeCR will significantly enhance our ability to understand and manipulate gene regulation. The proposed
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, aiming to identify critical factors driving leukaemia initiation and progression in paediatric contexts. The research will provide insights into the mechanisms underlying paediatric leukaemia and
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genetic analysis, aiming to elucidate the adaptive potential of species in the face of climate change. You will: Conduct ecological fieldwork at research sites in Sweden and Denmark. Collect and analyse
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models in collaboration with our international collaborators. You would also develop advanced image analysis schemes to analyse the experimental data. Your focus would be to investigate the effect
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two PhD students in the groups, and your newly developed tools will support the analysis and interpretation of their data. You will interact strongly with several international collaborators, both
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with research labs to streamline their TC processes at the institute level Production, QC, and advancement of stem cell and organoid differentiation media Molecular and functional QC of critical TC
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analysis pipelines in a unique human brain circuit model to generate mechanistic insights, with the ultimate goal of combating Parkinson’s disease. You will have access to excellent support facilities
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analysis with X-ray and entron diffraction. Property characterisation using a physical property measurement system (PPMS) and a SQUID magnetometer (MPMS). Ab-initio DFT calculations for property predication
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. The main goal is to identify critical ecological thresholds that, when not met, signal ecosystem vulnerability and productivity declines. The postdoc will have prioritized access to these datasets and the