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Profile: We seek someone with strong mathematical maturity in control theory, dynamical systems, or applied mathematics. Familiarity with nonlinear systems analysis, graph theory, and formal methods (e.g
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? The research will pay particular attention to how user-needs and experiences are integrated into infrastructure provision processes via engagement tools ranging from formal consultation to more innovative
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approach is a method that is both formally rigorous and practically efficient for the verification/validation of quantum devices. Candidate’s profile Knowledge of quantum computing and an understanding
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July 2025. After interview, the successful candidate will be given instructions to formally apply online via the UCL website. For enquiries please contact Dr Nwonka.
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, adam.dundas1@nottingham.ac.uk after which a formal application must be made via the University web site at To apply, please complete the online application form available at http://www.nottingham.ac.uk/pgstudy
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@nottingham.ac.uk after which a formal application must be made via the University web site at To apply, please complete the online application form available at www.nottingham.ac.uk/pgstudy/how-to-apply/how
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will be filled once a suitable candidate is identified. Further information Informal enquiries are welcomed and should be directed to Dr Sebastian Neira Castillo – s.neira@ed.ac.uk . Formal applications
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technical nature to a general audience. Work collaboratively in multidisciplinary and international research teams and community members. Communicate effectively both verbally and in writing, in both formal
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and/or computer-based simulations, and a formal dissertation-style report. We are seeking to increase the diversity within our community and would particularly encourage applicants from underrepresented
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, lack of transparency, safety assurance, and sustainability. You will work at the forefront of AI research, exploring formal and dynamic verification methods, explainable AI, and data space integration