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Mitochondrial diseases are among the most common inherited metabolic disorders. Despite advances in genetic diagnosis, important questions remain regarding the processes that drive disease progression and
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and how disruption of these processes contributes to congenital heart defects. The project will combine state-of-the-art single-nucleus RNA sequencing, spatial gene expression analysis and molecular
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and how disruption of these processes contributes to congenital heart defects. The project will combine state-of-the-art single-nucleus RNA sequencing, spatial gene expression analysis and molecular
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the following areas: (1) cryptography, (2) Privacy-enhancing technologies, such as FL, (3) mathematics (including number theory and game theory), (4) machine learning, and (4) computer programming in C++, Java
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heterogeneities and depositional facies on the distribution and extent of alteration processes. Develop a systematic workflow for integrating experimental observations and reactive transport modelling to construct
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strong research skills (qualitative, quantitative, mixed methods) and an interest in sustainability, healthcare systems, and innovation processes, alongside an interest in horizon scanning and foresight
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possesses a complex, hierarchical structure that is readily damaged during routine styling treatments involving heat, chemical processing, and mechanical stress. The global hair care market is a highly
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readily damaged during routine styling treatments involving heat, chemical processing, and mechanical stress. The global hair care market is a highly innovative and dynamic sector, estimated at more than
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bacterial proteins that facilitate the acquisition, transport, and integration of REEs into microbial metabolic processes. During this interdisciplinary project, which combines microbiology, structural
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microfluidic device set-up and operation will be provided. As part of EngBio4Env, the candidate will benefit from training and networking opportunities. Please follow the link for further information