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training covering topics such as computational modelling, numerical methods, statistical analysis, machine learning or data-driven analysis of complex systems Experience 0–3 years of postdoctoral experience
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focused on using advanced numerical methods to explore low energy dynamics in strongly interacting quantum spin systems. The candidate will develop and implement advanced algorithms to investigate
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equations, calculus of variations and numerical methods for differential equations is desirable. To apply, please contact the supervisors: Professor Apala Majumdar (apala.majumdar@manchester.ac.uk ) and Dr
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includes geologists, atmospheric scientists, paleontologists, and oceanographers. Additional information about the department may be found at: https://science.gmu.edu/academics/departments-units/atmospheric
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Electrode Assembly. J. Power Sources 2021, 512, 230431. https://doi.org/10.1016/j.jpowsour.2021.230431.  ; [2] Carral, C.; Mélé, P. A Numerical Analysis of PEMFC Stack Assembly through a 3D Finite Element
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to develop strong skills in viscous fluid mechanics, numerical methods and applied mathematics. Start date: October 2026. Duration: 4 years. Education: A strong 4-year degree or MSc degree in Mechanical
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monitoring techniques. Study the interaction patterns of control and protection. Solve large systems of linear and nonlinear equations using applied mathematics and numerical methods. Where to apply Website
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innovation activities and has received numerous awards including a Queen’s Anniversary Prize in 2015 and recognition as an Academic Centre of Excellence (ACE) in Cyber Security Research and in Cyber Security
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: Experience: in numerical modelling applied to the study of sediment dynamics and coastal morphodynamics; in the production/publication of scientific papers and technical reports; in the development of projects
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pavement design and balanced mix design standard development. • Model pavement behaviours using analytical and numerical methods with the end goal in modification of mechanistic empirical pavement design