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project Imaging flow cytometry is a state-of-the-art quantitative flow-based image analysis technique. The combination of fluorescence microscopy and flow cytometry enables high-throughput imaging of cells
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Swedish. The following are also required for this position: Experience with bioinformatics analysis of nanopore long-read data in the context of X-linked disease. The ability to perform proteomics including
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(RTP) by metal-free compounds and double thermally activated delayed fluorescence (TADF) from single molecules. Work assignments The proposed postdoc project among others will include computational
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particular, this holds for the principles of electroluminescence of OLEDs based on luminescence by radicals, room temperature phosphorescence (RTP) by metal-free compounds and double thermally activated
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cloning (Gibson assembly) Cell editing NGS library preparation Lentivirus preparation and handling RT-qPCR Fluorescence microscopy Human cell culture Computational analysis for NGS data The following
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channels and cellular excitability. Moreover, extensive experience of expressing ion channels in oocytes from Xenopus laevis, using two-electrode voltage clamp, electrophysiological analysis, and site
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analysis, work with large language models, network analysis, causal inference in machine learning and agent-based modelling. Experience in collecting, curating and analyzing large digital datasets with
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analysis, work with large language models, network analysis, causal inference in machine learning and agent-based modelling. Experience in collecting, curating and analyzing large digital datasets with
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or electrochemical characterization of materials or devices Experimental design and electrical characterization of device performance and associated data analysis Peer-reviewed publication as first or lead author