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solutions. Through interdisciplinary programmes, living labs and large-scale testbeds, ERI@N drives impactful translational R&D with strong industry deployment. More details: https://www.ntu.edu.sg/erian We
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or skin exposure to oils or other cutting fluids), hazards (includes a variety of physical conditions, such as proximity to moving mechanical parts, moving vehicles, electrical current, working
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trenching, remoulding, and pore-pressure variation. This project will develop a new computational model to simulate seabed–mooring interaction at the particle scale. It will combine the Discrete Element
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engines, energy systems, explosions, aerodynamics, fluid mechanics, signal and image processing, control systems, and robotics. The postdoctoral researcher will design and develop frugal artificial
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dynamics and wall interaction phenomena Implement AI/ML models and multiscale coupling procedures to bridge the lattice Boltzmann codes with a two-fluid Eulerian macroscopic code Co-development of codes
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, mechatronics, thermal, fluids). Expertise in engineering design (mechanics, team-based, numerical, computer-aided). Ability to develop and teach upper-level undergraduate and graduate courses. Demonstrated
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: The Clinical Research Coordinator in the Department of Neurology is responsible for working collaboratively with multidisciplinary teams, research and hospital staff to recruit, screen, educate, and assist in
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program should respect the following itemized list of tasks – developing the experimental campaign based on oedometer tests, during the secondment period at Strathclyde University (UK); – calibrating
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& Infrastructure Group oversees the operation, maintenance, and development of the ESRF site and its technical infrastructure. This includes managing construction projects, HVAC systems, fluids and networks
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for geometric PDEs, in particular for fluid problems posed on surfaces. Both theoretical analysis of numerical methods and code development. Job requirements: PhD in mathematics or applied mathematics, experience