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experimentally very difficult using macroscopic bulk investigations such as bottle tests. Therefore, we have used microfluidics to speed up this step. We now want to move further with this by also understanding
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advanced mesoscale fluid simulations such as CFD, Lattice Boltzmann Method (LBM), Pore Network Modelling (PNM), and Molecular Dynamics (MD) with microfluidic experiments. The research targets gas bubble and
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characterization of multifunctional fibers comprised of waveguides, electrodes and microfluidic channels. You will work with nearby colleagues, and with academic partners in Denmark and abroad. Your primary tasks
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immune responses. Leveraging our expertise in droplet-based microfluidics, we aim to quantify functional immune cell activities — such as cytokine secretion and antibody production — directly at the single
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disease diagnostics. Responsibilities: Design, prototype, and test microfluidic systems for point-of-care biosensing applications Develop implantable or wearable devices for real-time in vivo diagnostics