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and its potential as a therapeutic target. Your work will include: Developing cell-based bioluminescent and fluorescent biosensor assays to detect GPCR signalling events in different cellular models
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, e.g. bioengineering, chemistry, biomedical engineering, analytical chemistry. A research-oriented attitude. Experimental and analytical skills, with interests in biomolecular engineering, biosensors
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by a more experienced theoretical postdoc. In the second phase of the project, work will move towards current-driven dynamics of the nanosized textures, the exploration of topological excitations, and
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combines microfluidics, bubble physics, and ultrasound signal processing to bring nanobubble imaging closer to clinical use. You will collaborate closely with a fellow PhD candidate, a postdoc, and a
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the project team with a Postdoc and the Project Leader. The daily supervisor of the PhD-project is Pepijn Corduwener, the Project Leader; co-promotors are Professor Liesbeth van de Grift (International History
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the center, as well as regular seminars, joint group meetings, and interaction with other PhD students and postdocs in a lively and supportive environment. The PhD project is embedded within the European
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experiences with incidents and the broader team, managerial and ward contexts. In recent years, there has been growing interest in the use of wearable technologies, such as smartwatches and biosensors
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(Dairy and Ecology: co-innovating business operations for nature), primarily funded by the Dutch Research Council (NWO). The project embraces four fully-funded PhD candidates and a postdoc. It is a
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(EO) data can be used to assess different facets of ecosystem functioning in grasslands and forests. Within the project, you will collaborate closely with other PhDs and postdocs to collect field data
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resource acquisition trait parameter space, and perform scenario analyses tailored to a set of Swiss lakes. There will be close collaboration with the other PhD candidate and Postdocs of the projects