29 evolution-"https:"-"https:"-"https:"-"https:" Postdoctoral research jobs at University of London
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on the development, validation and use of organ-chip models. We are particularly focused on the development and use of joint-on-a-chip models including synovium, bone, cartilage, fat along with inflammatory components
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collection and analysis, the development of academic publications as well as engagement and dissemination activities. We seek a passionate, effective and collegial person to join our interdisciplinary team
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responsibility for the development of the simulations but will contribute to all aspects of the project in collaboration with the PI and a PhD student to be funded by the grant. About You The successful candidate
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About the Role You will contribute to the construction and quality control of the ATLAS Inner Tracker (ITk). The ITk group at Queen Mary University of London has played a key role in the development
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will encompass bio-informatician analysis, organ on-a chip development, small molecules testing, precision medicine trials, and development of a single cell platform. About Queen Mary At Queen Mary
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our team and help in the development of a new class of precision therapies that remodel the tumour extracellular matrix (ECM) to convert immune-excluded tumours into therapy-responsive ones. These ECM
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development opportunities. In addition, we offer a range of work life balance and family friendly, inclusive employment policies, flexible working arrangements, and campus facilities. Queen Mary’s commitment
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of Aarhus is a partner), and contribute to open-source tools that will benefit the wider software development community. You will be expected to conduct independent research, publish in leading academic
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pension scheme, 30 days’ leave per annum (pro-rata for part-time/fixed-term), a season ticket loan scheme and access to a comprehensive range of personal and professional development opportunities. In
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Professor Dario Farina, in the Department of Bioengineering at Imperial College London. The focus of the research will be on the development of soft actuators, from material and structural perspectives, with