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fixed-term for two years in the first instance. You will be working in a small highly motivated inter-disciplinary team working towards a shared goal. You will be responsible for the design and testing
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. The project involves the design and execution of research projects that find the application of main group molecular compounds and clusters as sustainable catalysts. Find out more about the Mehta research and
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informing the development of more precise immunotherapies. The successful candidate will: • Design and carry out in vivo experiments in preclinical mouse models of autoimmunity • Perform
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and research staff. To help them thrive and achieve their ambitions, we have created a comprehensive range of opportunities and initiatives designed to provide an exceptional launchpad for their future
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methods to study human bone marrow models using high content imaging approaches. You will lead in designing and establishing new protocols to the laboratory as well as supporting, mentoring and training
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research and administrative activities. You will design and conduct experiments to investigate the role of epigenetic factors in innate immune response regulation. Your work will involve disease modelling
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for their expression in plant colonizing bacteria and integrating them into the chromosomes of appropriate chassis. Control systems will be designed to restrict expression to target plants and ensure optimal expression
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data from patient samples, including DNA methylation, histone modifications, single-cell transcriptomics and chromatin accessibility. You will contribute to the study and sequencing design, collaborate
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developing mathematical algorithms and simulations in MATLAB, in particular with Semidefinite Programming and Sum of Squares and of the analysis and design of feedback control systems using these approaches
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sustainable alternative to conventional rubbers, thanks to their re-processability, recyclability, and design flexibility. A micromechanical approach will be adopted to link key microstructure parameters (hard