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the foundations of ultrasensitive molecular manipulations techniques within microfluidic environments. What You Will Do Design and conduct thermofluidic manipulation experiments using plasmonic substrates Work with
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of precision fermentation or cell culture - Affinity towards technical tasks and bioprocess control - Advantageous: Experience in mathematic modeling, programming, CAD, microfluidic or bioreactor systems
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partners. The microgel synthesis methods will include precipitation polymerisation and microfluidics. The characterisation techniques will include NMR, FTIR and Raman spectroscopy, light scattering, optical
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-molecule fluorescence microscopy. The candidate will also contribute to the development of novel microfluidic techniques. The ideal candidate should demonstrate a strong commitment to collaborative and
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-molecule fluorescence microscopy. The candidate will also contribute to the development of novel microfluidic techniques. The ideal candidate should demonstrate a strong commitment to collaborative and
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of microfluidic experiments combined with advanced analytical techniques. The results will inform environmental remediation strategies and safe nuclear waste disposal. Your tasks within the project: Development
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or microfluidics and ideally in quantitative data analysis. As a theoretical candidate, you have knowledge in quantitative biology, soft matter/complex systems physics or statistical physics. You enjoy working in
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microfluidic techniques and 3D cell culture, you will grow human microvascular tissue on chip whose architecture self-organizes in response to vasoactive substances. Your work will lead the way to applications
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or comparable degree in physics, biology, bioengineering, material engineering or a related discipline. You have experimental experience in cell/tissue culture, microfluidics, or a related discipline. You enjoy
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within the vents? You will grow two-dimensional hydrothermal vents on a microfluidic chip and quantify the vent geometry from your data. You will assess how geochemical mineral composition and inflow rate