65 structures "https:" "https:" "https:" "https:" "https:" "IMT Atlantique" Postdoctoral positions in Finland
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this department, the Electrochemical Materials and Applications (EMA) research group (https://www.aalto.fi/en/department-of-chemistry-and-materials-science/electrochemical-materials-and-applications ), led by Prof
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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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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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structure search techniques to identify the atomistic arrangements and electronic contact at the interface. This information will be used to build multi-scale models of the entire semiconductor device. In
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project "GENTRY - Towards sustainability of multi-generational learning at work ”, which investigates generationality and its construction in healthcare and ICT organizations in Finland, Sweden, and Denmark
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Structures (FiRST). The starting date is March 1, 2026, or as mutually agreed. The positions are for a period of two years, with a possible one-year extension. Your experience We expect you to have a PhD
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(for example a research plan, awards, a valid English proficiency certificate, e.g., IELTS or TOEFL) Further information Home page of the research group: http://www.utu.fi/cyber For further information about the
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) Further information Home page of the research group: http://www.utu.fi/cyber For further information about the position, please contact: Associate Professor Kaitai Liang, kaitai.liang@utu.fi . With
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Centre of Excellence (CoE) in Neutron-Star Physics (https://neutronstars.fi/ ), funded by the Research Council of Finland. The CoE status provides us with long-term funding, strong connections to related
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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