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within which they will operate, assessing likely effects and defining mitigation methods. Environments addressed include high-energy radiation from radiation belts; solar particle events and cosmic rays
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the fundamental dynamics of liquid-tin targets and plasmas that underpin present and future extreme-ultraviolet (EUV) light sources for nanolithography. This project is carried out in close collaboration with
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our understanding of how cloud-microphysical processes in stratocumulus interact with radiation and turbulence. Working style and research environment: You will join the Geoscience & Remote Sensing
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scientists conduct ground-breaking fundamental and applied research in the fields of Life and Health Science & Technology, Nanoscience, Chemical Engineering, Radiation Science & Technology, and Engineering
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expertise plays a leading role in this global development. By controlling environmental factors such as temperature, light, and fertigation, growing conditions can be optimized for crop performance, allowing
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applied research in the fields of Life and Health Science & Technology, Nanoscience, Chemical Engineering, Radiation Science & Technology, and Engineering Physics. We are also training the next generation
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expertise plays a leading role in this global development. By controlling environmental factors such as temperature, light, and fertigation, growing conditions can be optimized for crop performance, allowing
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ground-breaking fundamental and applied research in the fields of Life and Health Science & Technology, Nanoscience, Chemical Engineering, Radiation Science & Technology, and Engineering Physics. We
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functioning under environmental change, both in the (ancient) past and the human-impacted future. Your job The NWO-funded PHOSFLUX project aims to shed light on these unknowns, by quantifying the role of CaCO3
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close collaboration with TNO, which is developing the Laser-Induced Forward Transfer (LIFT) process for photonics, your research will span transfer-aware device and layout design, release-layer