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institutions and several industrial partners with extensive expertise in quantitative imaging, image analysis and imaging technology. By conducting research in both academic and industrial settings, PhD
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want to achieve this by creating a zero-deadtime clock, based on technology that we have developed to achieve continuous Bose-Einstein condensation [Nature 606, 683 (2022) ]. We will supply atoms from a
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within a single instrument, this technology has the potential to significantly expand the capabilities and accessibility of electron microscopy. Working at the intersection of electron optics, MEMS
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the EKL cleanroom, create test structures and validate their thermal performance and other relevant materials properties. The research will take place in the Electronic Components, Technology and Materials
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close collabrations with NL and EU industrial partners. Job requirements MSc degree in Electrical & Mechanical Engineering, Power Electronics, Materials, or a closely related discipline. Strong background
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carbon conversion technologies under realistic operating conditions. Information Fischer–Tropsch synthesis is a key technology for converting synthesis gas into sustainable fuels and chemicals. However, in
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at the Delft University of Technology, in the Department of Maritime & Transport Technology, in the Group Sustainable Drive and Energy Systems under the supervision and guidance of Henk Polinder. Job
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change, it is imperative that carbon-free sources of energy, such as wind and solar energy are utilized. The intermittent nature of both solar and wind energy is typically not well matched with electricity
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out at TU Delft, in close collaboration with Twente University and leading companies in the field of flow sensing. It is expected that you will: Investigate and conduct research on ultrasound sensors
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Migration has long been central to political contestation, but digital platforms have transformed how it is discussed. Online debates do not revolve around facts alone. They unfold through rapidly