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meteorology, and numerical weather prediction. The successful candidate is expected to conduct an outstanding independent research program, direct and participate in collaborative networks and projects
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and space weather on the ionosphere-thermosphere system. We utilize a comprehensive set of measurements from ground-based instruments and satellites in our research, supported by advanced numerical
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of multipoint in situ measurements and numerical simulations performed with the ion-kinetic Vlasiator code to quantify how interplanetary shocks modify solar wind current sheets across a range of
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current micro-test systems of fibres and fibre-matrix systems. This requires laboratory work with materials testing electronics and codes. Alongside, high-fidelity numerical analysis is needed to understand
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understand the structural behaivour of perforated steel roof deck systems exposed to different fire scenarios. The research methods include furnace fire tests, numerical simulations and analyses on the full
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, mathematical methods in engineering physics, and a demonstrated interest in numerical methods, and high-performance computing. Applicants should hold a master’s degree with excellent academic performance in
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pursuing a doctoral degree at the University of Helsinki can be found at https://www.helsinki.fi/en/research/doctoral-education/eligibility-and-educational-documents . The candidate will get a chance to
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carried out at the department aims to provide solutions to numerous everyday challenges starting from medicinal molecules designed for people and animals via new intelligent materials all the way to slowing
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(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://www.helsinki.fi/en