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Assistant Professor Position in Transient Electromagnetic Signal Processing, Modelling and Inversion
first ultra-lightweight drone transient electromagnetic (TEM) system for high-resolution subsurface mapping. The project combines novel instrumentation, advanced signal processing, real-time physics-based
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PhD Scholarship in Development of Cement-Free Living Building Materials for Sustainable Construction
systems, and explore their integration into extrusion-based 3D printing for sustainable construction applications. The project offers a unique opportunity to work across materials science, microbiology
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systems, and explore their integration into extrusion-based 3D printing for sustainable construction applications. The project offers a unique opportunity to work across materials science, microbiology
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authoring. Scientific project management experience, including coordination of multi-partner research activities. Experience with cloud computing platforms (e.g., AWS and Microsoft Azure). Experience with
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Sciences at Aarhus University invites applications with experience in 3D modelling and manufacturing technology, preferably within the dental field as per 1 October 2026 or as soon as possible thereafter
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: Expert knowledge on coupled 3D hydrodynamic-biogeochemical models and agent-based models Expert knowledge of marine physical- and biogeochemical processes in coastal and/or open waters Very good skills in
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PhD Scholarship in Development of Cement-Free Living Building Materials for Sustainable Construction
on microbial biomineralization, design bio-based hydrogel systems, and explore their integration into extrusion-based 3D printing for sustainable construction applications. The project offers a unique
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description The rapid expansion of IoT devices produces vast data, not all of which is relevant. In fact, only a fraction is used in real time. Current practice sends nearly all data to the cloud for processing
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of advantage: handling of remote sensing data acquired from satellite, airborne, and/or drone platforms geospatial data analysis and use of GIS software (e.g. QGIS) and cloud-based geospatial analysis platforms
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haptics (actuators, tactile displays, force feedback devices) Strong visual computing skills (Unity, C++/C#, Python, rendering, tracking or 3D reconstruction pipelines) A solid track record of HCI research