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medicine. The lab invented the RNA origami method [1] and have developed basic algorithms and software for RNA design. However, there is a great need to develop new software for the design of advanced RNA
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medicine. The lab invented the RNA origami method [1] and have developed basic algorithms and software for RNA design. However, there is a great need to develop new software for the design of advanced RNA
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methods to detect tiny magnetic fields are a top priority. In a Novo Nordisk Foundation sponsored project, we aim to create magnetic sensors with picotesla sensitivity and use these sensors to map neuron
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rearrangements, and cell death. Are you passionate about understanding how cells maintain the genome and do you have a desire to use cutting-edge high-throughput methods in combination with the use of fluorescence
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possess: A solid background in formal methods and process mining Experience in developing theoretical modeling and analysis frameworks Strong programming and software development skills (at least at the
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extension. Job description We are looking for applicants with interests in the biogenesis and turnover of nuclear RNA and its relationship to gene expression regulation in mammalian cells. Applied methods