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environmental disciplines, as well as for its interdisciplinary work. The mission of the institute is to contribute to sustainable development and care for the environment through scientific research and teaching
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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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for identifying drug repurposing candidates. You will contribute to different stages of the research project. Your work will include: Developing and using human in vitro models derived from patient and control
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is the Medicines Evaluation Board (MEB) in Utrecht, the Netherlands. You will be employed by the MEB and embedded in the POLARIS consortium. You will be supervised by Dr Marjon Pasmooij and work
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will contribute to the development and evaluation of gene therapy approaches for PMLD1. Your work includes: establishing and using isogenic iPSC-derived myelinating organoids as a human in vitro disease
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involving human participants Interest or background in cognitive modeling, human decision-making, or behavioral data analysis Ability to take initiative and work independently Affinity with teaching and
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to developing methods for iPSC culture, 3D cell models, and stem cell differentiation within the field of complex tissue regeneration. In this PhD project, you will work at the interface of stem cell biology
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description Railway bridges and the tracks they support are critical components of the railway network, directly affecting safety, reliability, and operational performance. As railway infrastructure ages and
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foresee chains up to 5 sites in qubit geometry. We will study the different noise sources that can dephase the qubit and how to protect against these disturbances. We will explore new gate operations
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networks (TN/NTN), depending on the project you join. You will work at the intersection of wireless communications, networking, embedded systems, and satellite technologies. Your research will contribute