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process, leading to more resilient development. An important second aim of the project is in working with networks of institutes in central Asia to strengthen capacity, and to develop further efforts in
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becomes essential. This project will focus on building a comprehensive digital twin of a future quantum computer to investigate how classical subsystems scale and interact, and how this scaling impacts
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discounts also includes free entry to the Botanic Gardens and University colleges, and discounts at University museums. See https://hr.admin.ox.ac.uk/staff-benefits Application Process Applications
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at the University of Oxford. Although near-Ambient Pressure XPS has enabled operando measurements of surface chemical processes in recent years, it is limited to low pressures (~ mbar) and complex, dedicated
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of the expansion is to reduce the frequency of collisions, so that chemical and thermal relaxation processes are slowed down. There are indications that commonly accepted rate constants for non-equilibrium
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migration, nanoscale assembly, or complex charge-screening processes are still poorly understood despite their critical impact on electronic properties and device performance. The project will provide a