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computational methods for engineering analysis. Proficiency in scientific programming, preferably using Python, MATLAB, C/C++, or comparable programming languages. Experience with advanced sampling methods
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methods for additive manufacturing applications, including ANNs and evolutionary genetic algorithms for process optimization supported by programming knowledge (e.g. Matlab, Python). Hands-on experience
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programming (e.g. Python, MATLAB or R) Experience applying advanced analytical techniques, including machine learning, to complex datasets Experience with neuroimaging analysis (MRI/fMRI) is desirable Strong
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, topological photonics, photonic crystals, or single-photon measurement techniques is advantageous. Proficiency in scientific programming and data analysis tools such as Python or MATLAB. Strong analytical
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/low-frequency electromagnetic systems. Good publication record in relevant research areas. Proficiency in MATLAB, Python, C/C++, or equivalent tools for simulation, data analysis, and automation. Good
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. Python/MATLAB/LabVIEW). Demonstrate the ability to work both independently and within a collaborative research team, with strong communication and interpersonal skills. NTU seeks a diverse and inclusive
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design, alignment, operation, and advanced characterization techniques, including laser-based and imaging setups. Competent in scientific programming and data analysis (e.g., Python/Matlab), with strong
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simulation and system-level models using tools such as MATLAB/Simulink, PLECS, PSCAD, or equivalent software. Support the integration and testing of power electronic converters, magnetic components, sensors
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programming skills in Python and/or R; experience with STATA, MATLAB, or SQL is advantageous. Experience with aviation, airport, airspace, flight trajectory, or transportation datasets. Strong publication
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, and modeling tools (e.g., Python, MATLAB, TCAD, photonic simulation software). Strong analytical, problem-solving, communication, and teamwork skills, with the ability to work independently in a