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PhD Candidate, you will develop new analytical theories and methods for complex systems of partial differential equations and apply them to models for marine biofilm growth. Join a stimulating research
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degeneration. You will closely collaborate with a senior postdoctoral researcher who will provide practical/experimental guidance. You will get some exposure to teaching (10%), and you will have the opportunity
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want to study the role of protein regulatory networks in the context of cancer? As a PhD Candidate at the Vermeulen Lab, you will develop and apply innovative omics strategies. Protein–protein
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(on Ecological Momentary Assessment [EMA] data), aiming to develop new ways to quantify fast and slow fluctuations of fatigue in real life, based on complexity theory. Then, you will co-design and conduct a study
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to spend a small number of hours on teaching duties. For more information about the PhD trajectory in general, please contact Suzanne van de Liefvoort. For questions about this particular research project
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the Marie Skłodowska-Curie Actions (MSCA) programme, aims to explore strategies to develop stem cell therapies and biomaterials, laying the groundwork for future cures to restore eyesight. As one
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Skłodowska-Curie Actions (MSCA) programme, aims to explore strategies to develop stem cell therapies and biomaterials, laying the groundwork for future cures to restore eyesight. As one of the doctoral
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Job related to staff position within a Research Infrastructure? No Offer Description As a PhD candidate, you will develop new analytical theories and methods for complex systems of partial differential
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Vermeulen Lab, you will develop and apply innovative omics strategies. Protein–protein interactions and dynamic protein states are important for cellular identity. Aberrations in proteins drive oncogenic
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geophysical exploration. The goal of the programme is to develop and rigorously analyse numerical methods for inverse problems in wave scattering within a Bayesian framework. Building on discretisation and