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numerical simulations. Particular interest of the present study is to quantify the impact of the diurnal and synoptic scale events on the stratification, upper layer chlorophyll-a (primary productivity
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conducting simulator-based experiments, collecting and analyzing human performance and psychophysiological data, and developing models of human–machine collaboration for safe and efficient navigation
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: The information for the PhD admission is available at TalTech´s web-page: https://taltech.ee/en/phd-admission A motivation letter describing your research interests Curriculum Vitae (CV) Degree certificates as
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at TalTech´s web-page: https://taltech.ee/en/phd-admission The application should include: A motivation letter describing your research interests Curriculum Vitae (CV) Copies of academic transcripts and
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The information for the PhD admission is available at TalTech´s web-page: https://taltech.ee/en/phd-admission . Please submit your application, with all your application documents to Professor Luca Mora (Luca.Mora
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experimental data from IoT sensor networks and near real-time simulations. Conduct sensitivity analysis under varying operational conditions, including environmental factors such as temperature and load
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) tasks Review of embedded system design principles for industrial condition monitoring Design, simulation, and fabrication of a custom PCB for edge AI diagnostics Optimization of ML models for real-time
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synchronisation of severe seas and high water levels. Geo-Marine Letters, 37−1, 35–46, https://doi.org/10.1007/s00367-016-0471-5 Soomere, T., Viška, M., 2014. Simulated wave-driven sediment transport along
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modelling results. Ocean Engineering, 297, 117088. https://doi.org/10.1016/j.oceaneng.2024.117088 Soomere, T., 2023. Numerical simulations of wave climate in the Baltic Sea: a review. Oceanologia, 65(1), 117
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from observations or remote sensing data, and how it compares to simulations? References Dean, R. G., & Bender, C. J. (2006). Static wave set-up with emphasis on damping effects by vegetation and bottom