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will involve developing and applying advanced data analysis methods to investigate ionospheric electrodynamics using novel datasets, including those from the EISCAT 3D radar system and NASA's Electrojet
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developing countries, and a potential for a new future crop in Scandinavia. Using sweet potato as a physiological model, the research will identify key metabolic bottlenecks in the plant’s source–sink
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measurements and interpreting complex data using advanced post-processing techniques (e.g., Distribution of Relaxation Times or DRT). The postdoc will also contribute to the development of an experimental setup
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on the delivery of therapeutics to relevant metabolic organs and tissues with the aim to develop specific targeting properties for nucleic acid therapeutics. Qualifications Applicants must hold a PhD in molecular
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Monitoring and Conservation Genetics. Expected start date and duration of employment This is a 2–year position from 1 February 2026 or as soon possible. Job description The position will focus on developing
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Are you motivated by unravelling how fundamental cellular processes are regulated? Do you want to pioneer the discovery and development of innovative tools and methodologies to decode poorly
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. Expected start date and duration of employment This is a 3-year position available from 1 April 2026. Job description Our team investigates the molecular mechanisms that govern the development and
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Aarhus University’s Department of Ecoscience invites applications for a 2-year postdoc to co-develop a spatially-explicit individual-based dynamic energy budget model (DEB-IBM) for high-Arctic
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dichroism at room temperature. Your role will center on developing a novel meta-crystal composed of individually stacked monolayers for room-temperature spin-polarized valleytronics. The objective is to
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Entropy Alloy Catalysis (CHEAC) is a large, interdisciplinary, collaborative research center that combines catalyst materials development in both experiments and simulations. The nanoparticles in