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particular, the role of solid-fluid interfaces in enhancing proton transport remains poorly understood. The project embarks on multidisciplinary collaboration between the Laboratory for Waste Management LES
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master’s degree in chemical engineering, process engineering, mechanical engineering, energy engineering, sustainable energy engineering or a closely related field. You bring a solid foundation in areas
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) Operations with intermittent and/or cyclical injection profiles. b) CO2 storage with varying degrees of impurities in both the CO2 and the reservoir fluid(s). c) large-scale, multi-field operations with non
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microswimmers/microrobots that can move and interact autonomously in 3D environments, mimicking the complex dynamics of microorganisms in fluids. Living systems such as bacteria or algae exhibit remarkable
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, and supporting embedded safety mechanisms. Key Tasks Develop and model hydraulic systems with a focus on energy-efficient architectures. Integrate safety functions into system design in accordance with
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must have a professionally relevant background in Applied/Numerical Mathematics, Physics, Fluid Mechanics with a solid education in numerical methods for solving partial differential equations. Master
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of critical infrastructure in a rapidly changing security environment. The project is carried out with an accompanying PhD project in computational mechanics that will focus on numerical simulation of fluid
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. Required selection criteria You must have a professionally relevant background in Applied/Numerical Mathematics, Physics, Fluid Mechanics with a solid education in numerical methods for solving partial
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safety and nuclear energy technologies. Job requirements You hold, or will soon obtain, a Master's degree in applied physics, mechanical engineering or a related field. You have a strong interest in
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host the PhD position. The topic of the PhD fellowship is at the interface of numerical mathematics, fluid mechanics, and ecology. A successful candidate will be offered a three-year position, which