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Field
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in day-to-day work. Strong computational and numerical modelling skills, including finite element or multiphysics simulation and scientific programming. Awareness of diversity and equal treatment
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with analytical modeling, reduced-order models, numerical simulation, finite element methods, optimization, or statistical-mechanics-based approaches. Proficiency in one or more programming languages or
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ambitious researcher with a strong background and experience in biomechanics, finite element modelling (FEM), medical image processing, additive manufacturing (AM). The project will be carried out in close
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of microfluidic flow phenomena, including using finite element method tools Programming skills Fluency in English Ability and motivation to pursue and complete a doctoral degree as demonstrated during prior studies
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modeling and simulation • Development in Finite element and alternative discretization methods (e.g. Lattice Boltzmann methods) • High-dimensional algorithms and high-performance computing
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managing civil infrastructure through innovative sensing technologies and data-driven approaches. The research topics include: Structural health monitoring of bridges and other civil infrastructure Finite
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technologies and data-driven approaches. The research topics include: Structural health monitoring of bridges and other civil infrastructure Finite element analysis Laboratory and field-based structural testing
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., Multiphysics finite element analysis, Matlab, Labview etc.) cleanroom experience, and characterization of electronic devices are required. Further, knowledge of system level integration and haptics feedback in
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breakwaters under varied sea conditions. 2. CFD and Finite Element Modeling Perform Computational Fluid Dynamics (CFD) simulations to optimize the design and performance of floating breakwaters. Develop finite