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resources? In this PhD project, you will explore innovative light-driven strategies for the chemical recycling of polymers. By harnessing the unique reactivity and precise control offered by light, you will
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at the department for the fabrication of such constructs are: Additive manufacturing technologies for building functional 3D scaffolds, such as 3D fiber deposition, bioprinting, and digital light processing. Advanced
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expected at the wall of a fusion reactor. This PhD position will use these unique setups to address questions such as: how well do flowing systems perform their designed tasks? To what extent do they trap
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equilibrium using femtosecond laser pulses and mid-/far-infrared excitation, directly targeting the crystal lattice as the origin of magnetic frustration. Time-resolved magneto-optical imaging then enables
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at unexpected depths in the absence of light for photosynthesis. Submarine canyons are also called the ‘human connection to the deep sea (Dissanayaka et al., 2023)’. Unfortunately, this connection brings land
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) support conditions for abundant life at unexpected depths in the absence of light for photosynthesis. Submarine canyons are also called the ‘human connection to the deep sea (Dissanayaka et al., 2023
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Are you fascinated by controlling magnetic matter by femtosecond laser pulses, eager to explore the underlying physical mechanisms, and passionate to develop a generic tool to ‘print’ complex
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at the department for the fabrication of such constructs are: Additive manufacturing technologies for building functional 3D scaffolds, such as 3D fiber deposition, bioprinting, and digital light processing. Advanced
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an image. Modern inverse freeform design methods compute surfaces that convert a given source light distribution to a desired target light distribution. These can be used to guide the design process for
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more circular use of carbon resources? In this PhD project, you will explore innovative light-driven strategies for the chemical recycling of polymers. By harnessing the unique reactivity and precise