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to uncover how cell wall modifications regulate peptide signalling and their signalling control salinity responses. Your job As a PhD candidate on this project, you will join the lab led by Dr. Nora Gigli
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development, which provides you with an excellent basis for an independent academic career. Your qualities You hold a Master’s degree in biofabrication, biomedical engineering, or a related area. You have
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biomolecules that work together and are involved in cellular processes and in disease. More information For more information, please contact Marc Baggelaar external link at m.p.baggelaar@uu.nl . Do you have a
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technologies and affinity with regenerative medicine. You are motivated to apply these technologies for biomedical research and to openly collaborate with a diverse team of biologists, chemists and clinicians
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to their tipping point. While both subsystems have been studied in isolation, it is yet largely unknown how they may interact and affect each other’s tipping behaviour. For example, an AMOC collapse could
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gyre (SPG) and Arctic and Antarctic sea ice cover, involving processes on smaller scales, which are often not well represented in modelling efforts focusing on the large scale tipping elements
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exposure, victimisation, and perpetration based on survey and social media data. You will also study developmental processes, potential consequences, and the role of parents in these processes. Your job
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contribute to the structural characterization of NS3–inhibitor complexes Process and analyze cryo-EM data using established computational pipelines and structural modeling tools Apply, or develop expertise in
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Chaperones are protein complexes that assist other proteins in their folding process. Well-known examples are the bacterial GroEL/ES and the eukaryotic TRiC. Despite extensive research, there are still
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change the ability of the ocean to absorb CO2 . The magnitude of this impact and the processes involved remain however difficult to predict. Also in the past, the strength of the AMOC varied and abrupt