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to break that barrier by developing a groundbreaking MEMS-based neuromorphic platform that physically implements Reservoir Computing (RC), a bio-inspired approach using nonlinear dynamics for fast, efficient
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physics or related disciplines. Following competences are desirable: Experience in programming with python or C++ Basic knowledge in laser modelling Basic knowledge in nonlinear dynamics Good communication
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dynamics using analytical and numerical methods to solve partial differential equations, -- excellent oral and written communication skills. Prior experience in nonlinear waves, fluid dynamics and numerical
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status rate at the School of Mechanical, Aerospace and Civil Engineering at the University of Sheffield under the supervision of Professor Pierre Ricco (http://www.pierre-ricco.co.uk/). Additionally
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Description TUD Dresden University of Technology, as a University of Excellence, is one of the leading and most dynamic research institutions in the country. Founded in 1828, today it is a globally
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classical digital computers and current quantum technologies, motivating the need for a powerful and practical alternative. In 2020 we introduced the concept of reconfigurable nonlinear processing units
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System Dynamics, 8(3), 697–706. https://doi.org/10.5194/esd-8-697-2017 Pindsoo, K., Soomere, T., 2015. Contribution of wave set-up into the total water level in the Tallinn area. Proceedings
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TUD Dresden University of Technology, as a University of Excellence, is one of the leading and most dynamic research institutions in the country. Founded in 1828, today it is a globally oriented
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of Cybernetics, School of Science of Tallinn University of Technology. The team focuses on complex and nonlinear phenomena in wave dynamics and coastal engineering, and the applications of mathematical methods in
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University of Technology. The team focuses on complex and nonlinear phenomena in wave dynamics and coastal engineering, and the applications of mathematical methods in wave studies, with overall aim