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Field
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and Marine Research. The tasks include: scientific advancing methods of satellite altimetry analysis over the Antarctic Ice Sheet analysis of measured surface elevation changes in conjunction with
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of energy geostructures with other underground structures. GENIUS will address all three challenges by developing advanced analysis and design tools for energy geostructures (WP-1) and by advancing practical
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interactions with the ocean and the atmosphere. The properties that characterize it have been established through the analysis of satellite observations over a scale range from 10km to approximately 1000km, and
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incorporated to ensure that the model outputs are applicable for an SMR-based nuclear power programme. Validation, sensitivity analysis and policy recommendations. To validate model results, benchmarks will be
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focus on physical and mathematical aspects is required. In addition, scientific programming skills (preferably in Python) and experience with numerical models are essential. Desirable qualifications
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material parameters for crystal plasticity simulations from experimental data through inverse analysis to establish structure–property linkages based on numerical simulations and to transform them into AI
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. Proficiency in numerical modelling using ANSYS Fluent or equivalent software, with the ability to interpret and integrate experimental data. Strong background in materials characterisation and mechanical
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. Your tasks and responsibilities Characterization of ion channel functions using electrophysiological, optical, biochemical, molecular, and cell biological methods Analysis and interpretation
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techniques is highly desired Previous experience with genomics approaches and data analysis is a plus. Interest in working in a project with wet and dry lab aspects Interest in working independently
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dynamics and composites? Are you familiar with numerical simulation and optimization? You got some experience with data evaluation and analytics? Maybe you even have some knowledge of the wind industry and