129 engineering-computation "https:" "https:" "https:" "https:" "https:" positions at Nanyang Technological University in Singapore
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Investigator. Build your own research profile and prepare for the next career stage. Job Requirements: A PhD degree in Robotics, Mechanical Engineering, Electrical Engineering, Computer Science, Applied Maths
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research projects. Job Requirements: Master or higher degree in AI, electrical engineering, computer science, automation and robotics engineering, mathematics/physics, computational neuroscience/biology or
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offered to students taking NTU EEE MSc Power Engineering Programme with the objective to impart to the students the knowledge relevant to power system planning and operations. The course will provide in
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supervise graduate students. Job Requirements: Ph.D. in Electrical Engineering, Computer Science, Statistics, or other related fields. Familiarity with machine learning and computer vision frameworks. Good
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research profile and prepare for the next career stage. Job Requirements: A PhD degree in Robotics, Mechanical Engineering, Electrical Engineering, Computer Science, Applied Maths, Physics, or any related
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, Empowering Science : Basic neuroscience research and advanced computational models to understand individual neurocognitive potential, developmental trajectories, and risk and resilience factors; 2) Translation
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, Empowering Science : Basic neuroscience research and advanced computational models to understand individual neurocognitive potential, developmental trajectories, and risk and resilience factors; 2) Translation
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, tsunamis, and climate change in and around Southeast Asia, towards safer and more sustainable societies. For more details, please visit https://earthobservatory.sg . We are looking a Research Associate to
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. Assist PI in proposal writing and help supervise graduate students. Job Requirements: Ph.D. in Electrical Engineering, Computer Science, Statistics, or other related fields. Familiarity with machine
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, Empowering Science: Basic neuroscience research and advanced computational models to understand individual neurocognitive potential, developmental trajectories, and risk and resilience factors; 2) Translation