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of methods, including semi-structured interviews, diary-based methods (Experience Sampling Method), scenario-based judgement tasks, attitude scales, and parent-child joint problem-solving and narrative
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combinations that support the creation of innovative and sustainable food products. Another example is using large language model (LLM) tools to automatically extract and structure fragmented information from
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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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learn, update, and use spatial knowledge when the structure or meaning of an environment depends on hidden or changing conditions, which we refer to as state-dependent environments. Rather than treating
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within the overarching theme of language variation. Specifically, one project will focus on morpho-syntactic structures across West, East, and North Frisian, while the other will focus on dialectology with
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neuroscience, focused on understanding how and why brains differ from one another. Although all human brains share a similar structure, every individual shows unique neural patterns, developmental trajectories
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-existing skills. We provide extensive, structured training and mentorship for all the computational and wet-lab techniques used in this project. If you are deeply passionate about neurodevelopmental research
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resolve the active electrode-electrolyte interface structure present under catalytic conditions, and study how it changes when the catalyst structure (e.g. crystallinity and elemental ratio) and electrolyte
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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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, 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