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to the development of advanced analysis methods for brain LAFOV PET/CT imaging and translate these innovations into clinical research applications. Your responsibilities include: developing new methodologies for less
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contribute to the development of new transient (epi)genomic editing tools for asexual plants—technologies with significant potential applications in the improvement and breeding of clonally propagated crops
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attacks and secure implementations. Weekly supervision meetings to help you stay on track. Guidance on writing, presentation, and career development. Flexible working hours. A shared interest in producing
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understanding of CO₂ desublimation and support the development of design guidelines for cryogenic carbon-capture systems. You will be part of the Department of Thermal and Fluid Engineering at the University
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If you are eager to perform cutting-edge molecular modeling to accelerate the development of green and low-carbon hydrogen technologies, then this is position is for you. Job description You will
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if you perform well. We encourage development and internal mobility within our organisation. Our recruitment and selection policy sets out the conditions that apply specifically to you as a (former
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if you perform well. We encourage development and internal mobility within our organisation. Our recruitment and selection policy sets out the conditions that apply specifically to you as a (former
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photothermal approaches and design novel organic photocatalysts tailored to these processes. The development of these photocatalysts will be supported by theoretical modelling and AI-based tools in close
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levels, and coordinate with other forms of urban development. The goal of the project is to understand how the urban governance systems of actors, rules, and powers enable or constrain cities' ability
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that can interact with human cells and tissues with high spatial and temporal resolution. You will embark on a new project focused on the development of 3D-printed hydrogel bioelectronics for neural