90 web-programmer-developer-"https:" "https:" "https:" "https:" "https:" "https:" "https:" "UCL" "UCL" uni jobs at Nature Careers in United Kingdom
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University College London (UCL) is seeking three outstanding academic leaders to drive transformative, cross‑disciplinary research programmes at the interface of health, life sciences, and
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officers. It is one of Europe's leading cancer research centres, supporting cutting-edge work into the molecular mechanisms of cancer development. As well as core support from Cancer Research UK, the
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UCL is a world leading, global university with a community of more than 51,000 students from 150 countries and over 18,000 staff which pursues academic excellence, breaks boundaries, and makes a
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facilities provide our researchers with expert guidance, as well as driving innovation through the development of new methodologies. In the current recruitment drive, we would like to make a new programme
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of cutting-edge human neural recording capabilities with collaborators in London and abroad. The opportunity You will lead an ambitious research program that translates circuit-level understanding from animal
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to traverse genes and complete transcription, as well as those that abort this process by removing or destroying Pol II on genes e.g. https://doi.org/10.64898/2025.12.04.692291 ; https://doi.org/10.1016
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of cancer and apply that knowledge to developing new treatment strategies for cancer patients. Our advanced research programmes span a spectrum of cancer research, from the molecular and cellular basis
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. You will work on developing and applying foundational methods for the synthesis of large genomes, specifically the human genome. For further background information see https://www3.mrc-lmb.cam.ac.uk
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about.springernature.com and @SpringerNature. About The Brand BMC has more than 25 years of experience in developing open access and provides high-quality, impactful research and a supportive publishing experience for
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: 1) develop new tools to quantitatively characterise actin and myosin organisation at the cortex, and 2) investigate how actin-myosin nanoscale organisation changes during the cortical tension increase