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, contributing to a supportive work environment Works in a structured, solution-oriented manner, balancing multiple tasks and priorities We offer Exciting and stimulating tasks in a strong international academic
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in domains where observations are indirect, incomplete, expensive, or noisy, and where reliable models must respect the structure of the underlying physical system. For example, in subsurface
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science. Electronic structure calculations (e.g. DFT or tight-binding methods), or thermodynamic modelling (e.g. statistical mechanics, MD or CALPHAD). Scientific data analysis. Interdisciplinary research
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doctoral degree (PhD), it is important that you are able to: Work independently and take responsibility for research progress Work in a well-organized and structured manner, set goals and make plans
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secondary structures, such as virus-like particles and plasmids. In your PhD project, you will study nanoswitches in a particle-based sensing platform with single-molecule resolution, called Biosensing by
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manufacturing, laser engineering and robotics Physics of materials, structures and dynamics, biomechanics, welding and structural performance Nuclear fission, fusion, nuclear fuels and graphite and nuclear policy
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the moon's icy crust. Studying Enceladus's plumes and surface can provide crucial insights into its habitability, the structure of its crevasses and the depth of its ocean. By observing these plumes, we can
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, including AMOLF and TNO. You will investigate: Photonic and light-management structures for enhanced absorption in tandem solar cells Material growth strategies to reduce parasitic optical losses in e.g
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transactions; Ship design and construction; Voyage planning and optimization; Condition monitoring and maintenance; Crew training; Maritime traffic and ship surveillance; Decarbonization and energy management
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data-driven learning and which should remain within structured optimization. In line with AID’s research areas, the project will emphasize knowledge embedding, uncertainty representation, risk-aware