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open challenge in the current state-of-art, is to predict operational radiation patterns of antenna array including the impact of environment. As this particular PhD project is focused on operational
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a range of directions, including distributed MIMO and angular diversity. In this work, you will examine several trade-offs involved in scaling detector arrays, including bandwidth limitations
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assays, such as microelectrode array recordings and (cellular) imaging. In addition, you will investigate if herbal extracts can affect the function and integrity of the protective blood-brain-barrier
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glycan arrays, engineered glycans, influenza binding assays, and—depending on expertise—molecular biology, enzymology, biochemical assays. Collaborative environment: you will join a multidisciplinary team
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behavior and selective molecular interactions. You will then integrate these coatings into table-top test setups for electrochemical separation and cleaning-in-place processes and investigate how
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aneurysms (AAA), a potentially life-threatening vascular disease that is currently monitored primarily using diameter measurements. You will develop innovative multi-aperture matrix-array ultrasound systems
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. Waht you bring to the table You are capable of working independently while also proactively seeking collaboration — whether with your supervisor, fellow researchers, or external partners. You're known
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activity and synaptic dynamics using high-density 3D Multi-Electrode Arrays (3D-MEAs) — done in close collaboration with experts, providing full support as you learn to analyze this data. o Multi-Omic
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developing an integrated spectropolarimeter in which photonic-crystal filter arrays are combined directly with an imaging detector. This approach could reduce instrument size and enable more scalable
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bring to the table You are capable of working independently while also proactively seeking collaboration — whether with your supervisor, fellow researchers, or external partners. You're known for your