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balloon system and assisting with UAV/floating balloon operations. Analyzing in situ data (holographic imagers) and ground-based remote-sensing data (cloud radar) to derive ice crystal growth rates via
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or spatial tools (GIS analyses) will be an advantage, but it is not a prerequisite. A good command of English is important, while knowledge of French and/or German can be favorable. The project involves
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related field, and will have experience with one or more of the following: agent-based simulations, system dynamics, mathematical modelling, probability theory, risk assessment, R, python and GIS. Good
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or modeling. If you've dabbled in GIS, that's a bonus! Willingness to Learn: You're excited to deepen your knowledge in areas such as forest economics, forest management, economic theory, spatial analysis
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of the Chair of Photogrammetry and Remote Sensing (PRS), focuses on developing hybrid, data-driven yet informed, visual perceptual intelligence for conformity and better generalization, enabling embodied AI
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(GIS analyses) will be an advantage, but it is not a prerequisite. A good command of English is important, while knowledge of French and/or German can be favorable. The project involves fieldwork
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combining optical sensing approaches, which will prevent signal interference and allow for simultaneous assessment of multiple markers (multiplexing and multifunctionality). Besides the biomarkers newly
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before you start Very good knowledge of written and spoken English (C1 or higher) Knowledge of data analysis and/or programming and a willingness to familiarize yourself further (e.g., R, Pyton, GIS
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manipulating nanoparticles’ dynamics in engineered potentials. Motivated by both, exploring the limits of quantum mechanics, and exceptional sensitivity to inertial and force sensing, Levitodynamics is striving
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for extrusion 3D printing: Development and improvement of novel in-situ sensing techniques to be used in advanced process control methods. Learning-based and adaptive control methods for extrusion process control