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Lab (CSL) within in the Informatics Institute is offering a PhD position focusing on multiscale modelling of Endothelial Cell (EC) monolayers in the microvasculature, coupling molecular models
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these emissions, hence the use of batteries will play an increasing role in the energy transition needed to control unwarranted global climate change. Big open questions are, amongst others: “What is the cost
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sustainable routes to energy conversion. Hydrogen is a very versatile energy carrier, typically used as an intermediate before being further valorized via subsequent catalytic approaches and intensified reactor
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of gene products to the right organs and cell types of interest. You will optimize viral delivery vectors and test their efficacy in vivo in mice. We are looking for a molecular biologist with knowledge and
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the natural carbon cycle, and it is becoming urgent to find alternative, more sustainable routes to energy conversion. Hydrogen is a very versatile energy carrier, typically used as an intermediate before being
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cycle, which produces less long-lived radioactive waste and allows a sustainable energy production, as thorium is three times more abundant on Earth than uranium. However, before the Molten Salt Reactor
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explore novel approaches in monitoring of ultrasonic welding through a multisensor approach feeding from the air coupled acoustic characteristics, temperature evolution, energy transmission etc., and
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thus innovative optical networks are crucial to be able to manage this traffic growth, reduce the energy consumption and the costs. The tremendous increase of traffic and connected devices, data centers
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seem particularly hard to apply (the infinite-dimensional structure in forward prices for energy markets). We expect that insights for this particular theoretical method and practical problem may also
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alternative fuels. Moreover, the high energy intensity required for transporting heavy goods over long distances presents additional hurdles for adopting cleaner technologies. Compared to the personal and