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Are you excited about the future of wearable healthcare? Join us to merge microfluidics and contact lens technology, developing smart lenses that enable controlled tear fluid collection and analysis
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Develop advanced models to understand and predict piping and internal erosion in dikes. As a PhD researcher at TU Delft, you will connect fundamental fluid–soil interaction physics with
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for cryogenic carbon-capture systems. You will be part of the Department of Thermal and Fluid Engineering at the University of Twente and will work in collaboration with academic and industrial partners
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in static setups. This brings with it a new set of physics challenges however. Flowing liquid metals are a conductive fluid in an environment with high magnetic and electric fields, leading
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understanding of CO₂ desublimation and support the development of design guidelines for cryogenic carbon-capture systems. You will be part of the Department of Thermal and Fluid Engineering at the University
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. Job description The Aerodynamics group is composed of 12 scientific staff and hosts the Chairs of Experimental Aerodynamics, Computational Fluid Dynamics and Flow Control. The group has a specific
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. Demonstrated research experience in climate, oceanography, the cryosphere, or atmospheric science. Interest in the intersection of solid/fluid mechanics. Experience working with the Julia programming language is
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total appointment, averaged over the course of your PhD. Job requirements The successful candidate has the following qualifications: An MSc. degree in systems and control, fluid dynamics wind energy
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to prevent the formation of gas bubbles in the liquid which form in static setups. This brings with it a new set of physics challenges however. Flowing liquid metals are a conductive fluid in an
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of microorganisms in fluids. Living systems such as bacteria or algae exhibit remarkable capabilities: they swim, adapt, interact, and self-organize into dynamic patterns. Understanding and replicating these life