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economic development of the Netherlands. In this project, you will work on methods to quantify how choices regarding possible long‑term solutions – as distinguished by the IPCC (from protection to retreat
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make it suitable for use in the financial sector. FIRM consists of four substantive research pillars and a work package on knowledge transfer. This vacancy concerns a PhD position within Pillar 3. You will
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sensors themselves are reaching the point that they can meet the required performance, an essential final problem still needs to be resolved. Namely, the connection of the flow sensor chip to the outside
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experimental techniques including microscopy, spectroscopy, and/or imaging methods. Ability to work independently as well as collaboratively in an interdisciplinary research environment. Strong analytical and
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PhD candidate to develop the modeling and signal analysis methods that turn nanobubble ultrasound imaging into a quantitative diagnostic tool. You will work with imaging data acquired from lab-grown
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At the Faculty of Engineering Technology (ET), we work on engineering for impact: developing smart, sustainable, human-centred and technological solutions for societal challenges. We connect fundamental education
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(e.g., taxonomy, evolution, ecology, and geology). You will receive dedicated supervision from an experienced researcher and work closely with several international experts and collaborators with whom
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this project, you will work closely with a research partner at the Technical University of Denmark (DTU). The project includes a six-month research stay at DTU, giving you the opportunity to work in an
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infrastructure Job description We are looking for an enthusiastic and talented PhD student to join the NWO-VIDI project 'Not-Just-Water' to investigate the impact of extreme water events on (infra)structure
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through to preclinical characterisation. Your work will include: Selecting GPRC5B-targeting nanobodies from immune and synthetic nanobody libraries and evaluating AI-generated candidates. Characterising