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-lapse microscopy and automated image analysis to quantitatively track single-cell gene expression in controlled dynamic environments. A unique feature of our lab is the tight interaction between our lab's
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2 Oct 2025 Job Information Organisation/Company University of Basel Research Field Mathematics » Applied mathematics Mathematics » Mathematical analysis Mathematics » Probability theory Physics
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in epidemiology or vice versa for an epidemiologist with strong interest & experience in complex data analysis.
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scanning probe instrumentation fabrication of van der Waals heterostructures transport, optical spectroscopy, and quantum sensing experiments data analysis, modeling, and scientific communication
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to develop a research project that fits into the broad scope of bacteria-jumbophage interactions PhD or equivalent degree with ideally a strong component in any of the following areas: microbiology
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airborne pathogens such as viruses, bacteria, and fungal spores. Current approaches are slow and labor-intensive, often relying on culture-based analysis that requires several days. This project aims
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skills in English. Ability to speak and understand German and/or French is an advantage. Experience in social media scraping and experience in doing social media analysis is preferred. Excellent knowledge
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optimization – with rigorous theoretical analysis. The ideal candidate has strong machine learning and AI expertise and is comfortable with – or eager to learn – large-scale multi-GPU experimentation
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lab has developed cutting-edge methods that combine microfluidics with time-lapse microscopy and automated image analysis to quantitatively track single-cell gene expression in controlled dynamic
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, you will: Design and perform fluorogenic and nano-photonic DyeCycling experiments. Write/adapt analysis code to process fluorescence trajectories and extract kinetic information. Evaluate bioconjugation