11 structural-engineering-"https:" "https:" "https:" "https:" "https:" "https:" "https:" "Dip" positions at University of Jyväskylä
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Engineering » Other Physics » Chemical physics Physics » Computational physics Researcher Profile Recognised Researcher (R2) Application Deadline 18 Mar 2026 - 21:59 (UTC) Country Finland Type of Contract
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the Finnish-language job announcement for further information: https://ats.talentadore.com/apply/tutkijatohtori-sustainable-rural-futures-hanke/m5npoR Department of History and Ethnology The Faculty
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the Finnish-language job announcement for further information: https://ats.talentadore.com/apply/vaitoskirjatutkija-sustainable-rural-futures-hanke/813zEq Department of History and Ethnology The Faculty
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Research Infrastructure? No Offer Description The Department of Physics is seeking to recruit a Postdoctoral Researcher in theoretical nuclear structure physics, with emphasis on nuclear density functional
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in Neutron-Star Physics (https://neutronstars.fi ), funded by the Research Council of Finland. The CoE status provides us long-term funding, strong connections to related Finnish and international
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, nuclear structure, neutrino physics, and fundamental interactions. The nuclear astrophysics part of the research is related to the newly established Centre of Excellence in Neutron-Star Physics (https
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the thirteenth to the seventeenth century CE, and to create an online database of Illuminationist texts. Who we are looking for We are hiring a Postdoctoral Researcher who will contribute to the construction
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Centre of Excellence in Neutron-Star Physics (https://neutronstars.fi ), funded by the Research Council of Finland. The CoE status provides us long-term funding, strong connections to related Finnish and
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of Excellence in Neutron-Star Physics (https://neutronstars.fi ), funded by the Research Council of Finland. The CoE status provides us long-term funding, strong connections to related Finnish and international
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physics. Research directions Quantum simulators are revolutionizing our ability to understand strongly correlated and non-equilibrium physics. They are systems engineered to emulate complex quantum matter