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evolution, polyploidy, and algal biology and evolution. The candidate will join a highly collaborative and international research environment, with strong connections to major polyploidy initiatives
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evolution, polyploidy, and algal biology and evolution. The candidate will join a highly collaborative and international research environment, with strong connections to major polyploidy initiatives
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trainings, conferences, summer schools and personal development initiatives, tailored to the needs of scientists across the globe. About the role As a Events Officer within the Training & Conferences team
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On the longer term, together with other lab technicians from our team, you provide support in method development Profile You possess at the minimum a degree in Biotechnological, Biomedical or Biological Sciences
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ideas, liaising with Center staff for the development of stories in support of central initiatives, and by reinforcing centrally developed stories via Center channels; You work closely with the HQ team
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trainings, conferences, summer schools and personal development initiatives, tailored to the needs of scientists across the globe. About the role As a Training and Conferences Officer within the Training
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mathematical models to address fundamental questions in biology. Examples of research topics include but are not limited to: development of new AI architectures for biology and hybrid models that combine deep
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Group Leader and Professor AI in Biology - Dept of Computer Science and Dept. Electrical Engineering
but are not limited to: development of new AI architectures for biology and hybrid models that combine deep learning with mechanistic models; foundation models of genome regulation using single-cell and
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instrumentation for both light and electron microscopy and has been at the forefront of the development of Correlative Light and Electron Microscopy (CLEM) approaches to answer complex biological questions
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important targets in modern medicine. Despite major advances in kinase inhibitor development, many regulatory mechanisms remain poorly understood, particularly those involving allosteric and non-catalytic