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. Description: This research spans several aspects of understanding the dynamics and structure of the Earth‘s crust and mantle to assess and mitigate hazards from earthquakes, landslides, and land subsidence
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. Description: Coronal mass ejections (CMEs) are large-scale magnetized plasma structures ejected from the Sun with speeds ranging from a few to more than 2000 kilometers per second. The CMEs impart energy and
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system of the solar interior and the solar atmosphere using a combination of theory, simulation, and data analysis investigations. Theoretical studies and computer modeling of the internal structure
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on fundamental wind properties and diagnose instability-induced shocks. Photometric variability is used to understand large- and small-scale wind structure. Winds of magnetic massive stars show evidence for large
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Previous Job Job Title Senior Engineer Supervisor - Electrical Next Job Apply for Job Job ID 373102 Location Twin Cities Job Family Campus Operations Full/Part Time Full-Time Regular/Temporary
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of the programme is to manipulate and study the magnetic properties of complex oxides or magnetic thin films by controlling, at the nanoscale, the structural properties of materials through “phase nano-engineering
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porosity and improving material strength. For these reasons, MICP has emerged as a viable and scalable biotechnology for soil and structural material (e.g., concrete, granite) reinforcement, as
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, and the physics of adaptive and learning materials to interpret experimental observations. The position offers a structured career development path within an active and ambitious research group and
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research with Professor Pauline Corblet and Professor Samreen Malik. The collaborative research will be on labor and education economics with a particular focus on structural models tied with labor market
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: PA-2026-1228 Contact: Paula Sebastián Pascual, Published: 2026-04-08 Last application date: 2026-04-28 Where to apply Website https://academicpositions.com/ad/kth-royal-institute-of-technology/2026