32 structures "https:" "https:" "https:" "https:" "https:" "Ruhr Universität Bochum" Postdoctoral positions at UNIVERSITY OF HELSINKI
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The Salo research group at the HiLIFE – Institute of Biotechnology, University of Helsinki, is seeking a collaborative and curiosity-driven Postdoctoral Researcher in structural biology. The
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curiosity-driven Postdoctoral Researcher in structural biology. The position begins in early 2026 and is initially for 2 years, with the possibility of extension. The salary scale is 3 500–4 000 € per month
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the University of Helsinki and living in Finland, please see https://www.helsinki.fi/en/about-us/careers . A diverse and equitable study and work culture is essential to us. That is why we do our best to promote
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degree at the University of Helsinki can be found at https://www.helsinki.fi/en/research/doctoral-education/eligibility-and-educational-documents . Finland is a member of the EU, has high quality free
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for separately (www.helsinki.fi/en/research/doctoral-education/the-application-process-in-a-nutshell ). The requirements for pursuing a doctoral degree at the University of Helsinki can be found at https
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pension fund, a generous holiday package, sports facilities, and opportunities for professional development (https://www.helsinki.fi/en/about-us/careers ). Required qualifications PhD (or near completion
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the Neuroscience Center in the University of Helsinki (see: https://www2.helsinki.fi/en/researchgroups/synaptic-plasticity-and-development ).The research interests are focused on functional maturation of neuronal
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Finland. More information here: https://www.helsinki.fi/en/about-us/careers/welcome-finland-information-arriving-staff How to apply The application must be submitted by 22 January. A round of interviews
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see https://www.helsinki.fi/en/about-us/careers . A diverse and equitable study and work culture is essential to us. That is why we do our best to promote an inclusive university community. We encourage
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that impaired acetylation of RG-I leads to a loss of epidermal cell adhesion (see preprint here ). This project aims to achieve a genetic and molecular-level understanding of the impact of RG-I structure and