174 algorithm-development "https:" "Simons Foundation" Fellowship positions at Harvard University
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common CNAs found in breast cancer (https://pubmed.ncbi.nlm.nih.gov/39567747/). Several lines of evidence suggest that these CNAs increase cell fitness and that cells carrying these CNAs represent
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solver who wants to be part of a dynamic team. Learn more about the innovative work led by Dr. Don Ingber here: https://wyss.harvard.edu/technology/human-organs-on-chips/ What you’ll do: Independently
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control mechanisms in development and disease. The lab pioneered global study of RNA polymerase pausing during early transcription and has particular interest in investigating the complex interplay between
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. The successful candidate will work with Dr. Kennedy to develop an independent research project within the scope of the lab’s research focus. In addition to carrying out research, the successful candidate will be
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the United States and globally. These research efforts involve participating in the development, evaluation, and implementation of task-shared mental health services in primary care settings and other community
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position. We are most interested in applicants who have experience in computational methods development, in human genetics or a different field. Possible areas of research include: 1. Developing methods
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of cilia. More information about the lab and specific project areas can be found at https://brown.hms.harvard.edu/research. We welcome applications from recent PhD graduates, particularly those who may
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at Harvard Medical School in Boston, Massachusetts. The work of the Gygi lab is focused on developing and applying mass spectrometry-based approaches to the drug discovery pipeline. We welcome applications
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outstanding opportunities for continued scientific development and for contributing to pioneering research. Specifically, the fellow will apply as well as develop code to process and analyze mycobacterial
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about the Shih Lab: Learn more about the innovative work led by Dr. William Shih here: https://www.shih.hms.harvard.edu/ . What you’ll do: Develop DNA-based sensors that seed crisscross assembly of single