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ways in which such physical learning is realized, and design new types of learning machines capable of solving complex engineering problems on their own. Some examples include neuromorphic computers
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As a PhD-student in our Physics of Cellular Interactions group headed by Dr. Kristina Ganzinger, you will apply state-of-the-art techniques to generate transmembrane protein mimics for communication
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. The need for such a technology comes from the the extreme miniaturisation of micro-electronics, which places extreme demands not just on nanofabrication, but also on inspection methods that visualize
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Are you looking for a challenging project in which you develop fundamental advances in metaphotonics and work with high-tech industry to apply them? In this project we aim to develop nanophotonic
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to contribute to new technologies that realize radical improvements in the energy efficiency of information and communication technology? As part of the Dutch consortium NL-ECO on energy-efficient computing
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perspective to apply. AMOLF has won the NNV Diversity Award 2022, which is awarded every two years by the Netherlands Physical Society for demonstrating the most successful implementation of equality, diversity
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opportunity lies in the use of mammary gland organoids, which grow outside the body, and can hence be imaged with high spatiotemporal resolution. In this cross-disciplinary (physics & biology) project, you will
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Did you know high-energy electrons can serve as efficient sources of optical excitation of matter? Our group has developed cathodoluminescence (CL) microscopy, in which we use 1-30 keV electrons in
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candidates with a strong background in chemistry, physics, materials science, or engineering with an interest in self-assembly phenomena. Excellent candidates with training in any area of science or
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Did you know high-energy electrons can serve as efficient sources of optical excitation of matter? Our group has developed cathodoluminescence microscopy, in which we use 1-30 keV electrons in a