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Do you enjoy finding solutions to integrate and analyse large data sets of biodiversity dynamics and their drivers? Are you creative and able to couple various data flows and integrated modelling
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thereafter. Explaining complex AI models is a key challenge for ethically responsible AI. Explainable AI (XAI) research aims to provide relevant information to assist developers and users in analyzing AI
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with proteomics experts. You will be working primarily with mice models and primary neuron cultures. You will be involved in the Center for Proteins in Memory (PROMEMO) funded by the Danish National Research
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. Applicants selected for assessment will be notified about the composition of the Assessment Committee and later in the process about the result of the assessment. Once the recruitment process is completed each
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, environment and pollution, including drawing on long-term monitoring datasets, multidisciplinary field campaigns, and/or advanced modelling approaches Publishing in high-impact, peer-reviewed international
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Assistant Professor Position in Transient Electromagnetic Signal Processing, Modelling and Inversion
will contribute to iterative prototype development and field validation. The Assistant Professor will also be expected to lead data acquisition, processing, modelling, and inversion activities related
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nitrogen dynamics, and climate change mitigation potentials in agroecosystems. You will be contributing specifically to the area of regional simulation using process-based models and advanced statistical
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position is available in modelling of solid-state NMR experiments from 1 October 2026 (or soon thereafter) in the Danish Center for Ultrahigh-Field NMR Spectroscopy at the Department of Chemistry, Aarhus
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A three-year postdoc position is available in modelling of solid-state NMR experiments from 1 October 2026 (or soon thereafter) in the Danish Center for Ultrahigh-Field NMR Spectroscopy
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influences in health and disease. Combining molecular biology with advanced in vitro systems, such as bacterial models, cell models, organoids, and organ-on-chip platforms, to understand disease mechanisms and