17 web-development-"https:"-"https:"-"https:" research jobs at Imperial College London
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the core patient-facing work of the programme, you will be able to develop your own research project within the programme with opportunities to focus on either analysis of MRI imaging, cerebrovascular
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the span of the IN-CYPHER programme, we are seeking motivated researchers and engineers to join the IN-CYPHER programme. Unique in its scope, we are developing technologies that span embedded systems, and
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at the intersection of theory, computation, and high‑fidelity simulation, the successful candidate will contribute to the development of a novel ensemble-based framework for analysing driven perturbations in wall
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to develop your own research project within the programme with opportunities to focus on either analysis of MRI imaging, cerebrovascular physiology, or other effects of treatment, depending on prior skills and
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to develop a model of health and healthcare provision (see www.tlomodel.org ). The post holder will lead the model analyses that address the three questions outlined above, including, model development, coding
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interdisciplinary environment embedded in the UK Dementia Research Institute at Imperial College London. You will contribute to data access workflows, database and pipeline development, and cross-modal harmonisation
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, which frequently produces designs that are suboptimal when subjected to real-world dynamic environments. Although a handful of advanced, high-fidelity solvers have been developed to tackle this issue
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, Prof Alessandra Russo and other collaborators in the University of Cambridge and in Japan, within the UKRI NeSyDebates project. The work will focus on contributing to developing effective safeguards
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of the project. Your role will be to ensure we engage effectively with local residents and stakeholders, develop our local partnerships and ensure the project is developed in collaboration with our local
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primary supervision of Dr Thomas Ouldridge. The student will develop predictive models of nucleic acid strand displacement rates to allow the rational design of complex networks of ever-increasing