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The construction of demonstration-class fusion tokamak reactors requires a wide range of structural materials, each with the mechanical performance and integrity required for the expected local
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variety of issues - including bandwidth, size and weight - which preclude their use across many technologically significant applications, such as small/compact, lightweight structures, and complex-shaped
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component’s melting point) concomitantly worsened by steady-state heat loads (up to ~15 MW/m2). Fourthly, transient heat loads, going up to a few GW/m2 pose a major structural damage challenge under plasma
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. Fusion power plants demand structural materials capable of operating at >650 °C with high radiation tolerance. Traditional computational materials design workflows excel in data‑rich systems (e.g. Ni & Fe
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at temperatures orders of magnitude below those of interstellar space and studying their magnetic, structural and electrical properties. As a student, unusually for the field, you will experience all parts
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, social, cultural, and structural factors. The PhD aims to develop and test a novel systems-based framework to inform both policy and practice, identifying leverage points for more effective intervention
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collected regularly from sewage-impacted rivers and from properties affected by flood events. Data will be analyses using advanced bioinformatics to characterise community structure, resistance genes and
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such as zero-temperature phase transitions. Experimental studies of quantum magnetism often require access to ultra-low temperatures (below 1 kelvin) and atomic-scale probes of local structural and
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insights into organisational and public behaviour can inform effective regulation and citizen or community engagement. You will adopt a multi-phase mixed-methods design, including semi-structured interviews
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of flexible trailing edge with both hydrodynamics and acoustics. The simulation results will be analyzed and compared with analytical models, and then inform a refined low-order taking flow-structure-acoustics