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theoretical electronic structure and magnetism Experienced in handling ab initio electronic structure methods (DFT and beyond) and spin dynamics codes Excellent programming skills (e.g., Python, C++ or Fortran
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been completed earlier. Additional requirements: Very good oral and written proficiency in English. Proficiency in programming languages such as MATLAB, Python, etc. Independence and ability
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synchrotron radiation methods. Experience in programming, data analysis, and algorithm development. (MATLAB, Python, C++, etc.) Experience in developing simulations related to X-ray characterization Track
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science, or another relevant subject Documented expertise in SAXS/WAXS Documented expertise in data analysis using scripting (ideally python-based) Experience carrying out SAXS/WAXS experiments at large
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skills or potential for teaching. Additional assessment criteria: Experience of gravitational wave modelling. Knowledge of gravitational wave physics and the LISA mission. Knowledge of python and other
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and proficiency in at least one programming language (R, Python) for data analysis and will be considered an advantage. Entry requirements Postdoctoral scholarships may be established for foreign
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have the following skills: Excellent computer/ programming skills. Proficiency in Python, including object-oriented programming concepts Experience with modern software development and engineering
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English. A demonstrated ability to develop and optimize molecular methods for spatial or single cell genome scale analyses and proficiency in at least one programming language (R, Python) for data analysis
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qualities Prior work in cancer research or clinical genetics is an asset. Expertise in bioinformatic research as well as experience with whole genome sequencing data analysis, programming (Python, R), deep
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genetics is an asset. Expertise in bioinformatic research as well as experience with whole genome sequencing data analysis, programming (Python, R), deep learning frameworks (e.g., TensorFlow, PyTorch), and