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and ambitious computational postdoc to join us at the Danish Cancer Institute. The postdoc will be responsible for establishing and driving our new bioinformatics platform to perform analysis
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with ferroelectrics PVD of ferroelectric metal oxides and/or oxygen ionic conductors. Experience with defective metal oxides and nanomaterials. Electrochemical characterization techniques (impedance
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existing buildings that we can use to learn how to design better, more sustainable buildings, is often overlooked. We therefore need a scientific method for the high throughput analysis of existing and
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antibiotic resistance in Arctic waters, with a primary focus on Finland, Sweden, Iceland, and Greenland. While the analysis of emerging contaminants will be done at an external certified lab, your working
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and characterize metabolic pathways and targets. Data analysis and integration using R and/or Python, including statistical analysis, visualization, and multi-omics data handling in collaboration with
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algorithmsresponsible for detecting movement intention and timing the powered assistance. Human testing will involve motion analysis using optical and inertial motion capture, surface electromyography(EMG) and force
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background in feed processing technologies, biochemical, and chemical evaluation methods. Proven experience in experimental design, data analysis, scientific communication and writing. Demonstrated ability
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provide new therapeutic opportunities for the treatment of this disease. Expertise in functional genomics methods (e.g., single-cell and bulk RNA-seq, ATAC-seq and ChIP-seq) and omics data analysis is
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background in feed processing technologies, biochemical, and chemical evaluation methods. Proven experience in experimental design, data analysis, scientific communication and writing. Demonstrated ability
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interaction, social networks, fairness, and data ethics. Our research is rooted in basic research and centres on mathematical models of the physical and virtual world, as a basis for the analysis, design, and