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-resolved micro and nano CT data. Develop and apply numerical implementations in simulation studies as well as to large experimental micro and nano CT data. Explore multi-modality reconstruction techniques
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on the application material, and an application must include: Motivated application. Curriculum Vitae. Master’s and PhD degree certificates or equivalent (copy of original/official English translation). Complete list
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or equivalent (copy of original/official English translation). Complete list of publications. Publications most relevant to the position. Summary and documentation of experience in teaching, if relevant
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atmospheric simulation chamber (AURA ), where advanced instrumentation is available, from oxidation of different precursor gases. Expected responsibilities & duties Build and develop methodologies for measuring
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Postdoc in atmospheric chemistry on investigating the phase behavior of secondary organic aerosol...
atmospheric simulation chamber (AURA ), where advanced instrumentation is available, from oxidation of different precursor gases. Expected responsibilities & duties Build and develop methodologies for measuring
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, the proximity effect, and the fringing effect is familiar with the simulation tools such as Ansys (Maxwell), or COMSOL is target-oriented, structured thinking, eager to learn new things, and ready to think
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electronics, fluidics system, and data collection hardware (based osingle-board computer systems, e.g., ESP32 or similar). Demonstrate prototype applicability under simulated lab-based and real-life conditions
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if issued in another language than English or Danish. If not completed, a certified/signed copy of a recent transcript of records or a written statement from the institution or supervisor is accepted. Full
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, Postdocs, and academic staff to develop cutting-edge methodologies. The research is cross-disciplinary, combining advanced quantitative analysis, simulation, and systems integration. Your work will be
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mechanisms that dynamically alter the detrapping and recombination probabilities. The aim of this project is to overcome these limitations by developing a Monte Carlo simulation model that treats each charge