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imaging. The department provides access to modern experimental facilities, including multiple eye-tracking and combined EEG and eye-tracking laboratories. The project also benefits from access
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. These new systems will support better medical imaging, faster computers, and greener high-tech manufacturing. Wafer handling: Silicon wafers are the base material for the fabrication of modern electronic
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PhD candidate, you are expected to bring your own creativity to the challenge: How can image-based AI analysis reveal drug effects? How can mechanistic computational models develo on spheroid morphology
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mitotic errors in human IVF embryos from live cell imaging data. In addition, you will contribute to teaching activities (maximum 0.1 FTE) and supervise Bachelor and Master students. This project is
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PhD in Optical Characterization and Photonic Performance Analysis of Liquid Crystal Polymer Coatings
between material development, optical modelling, and prototype integration. Information You will: characterize one-way transparent cholesteric liquid crystal polymer films and switchable photonic coatings
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-of-the-art facilities, including flow cytometry and cell sorting, macromolecular mass spectrometry and proteomics, and imaging. Many of our scientists have academic affiliations with Dutch Universities and
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a willingness to work across clinical, laboratory, imaging, and/or modelling approaches. The ability to work independently while also contributing effectively to a collaborative research team. Strong
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that radiate at even shorter wavelengths below 13.5 nm, which could open up a host of applications in future nanolithography, metrology, as well as biological imaging. There are many open questions: what
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, metrology, as well as biological imaging. There are many open questions: what elements should be used to generate the required radiation? how do we generate as many ‘usable’ photons from the plasma as
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equilibrium using femtosecond laser pulses and mid-/far-infrared excitation, directly targeting the crystal lattice as the origin of magnetic frustration. Time-resolved magneto-optical imaging then enables