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and their development Strong analytical, problem solver, and programming skills, e.g. Python, Matlab, are preferred Knowledge in Non-Terrestrial Networks and Semantic Communications is a plus Prior
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part of the project, and hence skills in computations and implementation (via codes written in open source software, such as R, Python, ...) are a plus. A good knowledge of written and spoken English is
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or geospatial data and Explainable AI or causal inference; strong programming skills (Python required); the ability to work in an interdisciplinary medical–AI–public-health team; Good command of English
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analysis software (e.g., Fiji/ImageJ). Advanced Cell Manipulation (e.g., genome editing via CRISPR/Cas9, flow cytometry/FACS). Basic familiarity with data analysis tools (e.g., GraphPad Prism, R, or Python
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, Creativity, Motivation towards Research. - Interest in interdisciplinary sciences and research. - Excellent programming skills in one of the following languages: C/C++, Python, Java, or R. - Fluent spoken and
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data and Explainable AI or causal inference; strong programming skills (Python required); the ability to work in an interdisciplinary medical–AI–public-health team; Good command of English; Experience
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., GraphPad Prism, R, or Python) for statistical analysis and data visualization. Terms of employment The chance to drive high-impact research focused on addressing fundamental, mechanistic questions in
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. Proficiency in software development for robotics (Python and/or C++), including integration of perception and control, is another plus. Knowledge of state estimation, sensor fusion or active sensing frameworks
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and broaden your knowledge through a curious and scientific mindset. Proficiency in scientific programming (Python and/or MATLAB) and experience with C/C++ are an advantage. You have the ability
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analysis software (e.g., Fiji/ImageJ). Advanced Cell Manipulation (e.g., genome editing via CRISPR/Cas9, flow cytometry/FACS). Basic familiarity with data analysis tools (e.g., GraphPad Prism, R, or Python