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Field
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-impact projects across our core focus areas. We are looking for curious minds who are excited to push the boundaries of responsible AI. Learn more about the lab's work at: https
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. Electrical characterisation of microscale or nanoscale devices. Probe-station measurements or electrical testing of microfabricated structures. High-bandwidth transient or pulsed-signal measurements. RF probes
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time-stepping schemes applied to gradient systems, the project aims to contribute towards the treatment of high-dimensional optimisation problems, such as the electronic structure problem. We are looking
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disease need to be tracked over weeks without the risk of obstruction. Devices that stay longer exist, but they carry a problem. A structure designed to resist peristalsis is also a structure that can
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the work aligns with your goals and aspirations. For more details see https://binyshlab.com/positions/ What will you do? Conventional robotic bodies rely on computationally intensive centralized control and
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the structure. This provides an opportunity to use EGs for a dual purpose of structural stability (which was already required) and heat exchange, reducing the capital investment and minimising return periods
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atomic clock based on highly charged ions (HCIs). You will work towards the first clock based on highly charged californium (Cf17+), whose exceptional sensitivity to variations of the fine-structure
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Number of Opportunities Available: 1 Primary Supervisor - Professor Yiliang Ding The diversity of RNA structure is wide and varied, from hairpins and bulges through to triplex and quadruplexes
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evolution in Miscanthus hybrids, and to investigate how regulatory, epigenetic, and structural mechanisms contribute to the balance or dominance among subgenomes. Miscanthus is a notable bioenergy crop
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, and to study population structure and (adaptive) differentiation along elevational gradients. You will have the opportunity to generate new genome assemblies for white butterflies that are only found