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research group with a broad interest in plant biomechanics, ecology, development and evolution. A supervisory team comprising a plant scientist, a cell biologist and a physicist, as well as two postdocs with
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these, and then determine their imaging performance in bespoke optical systems in the visible light range. Applicants should have, or be expected to gain, a high (1st or 2:1) honours degree in Physics or Electrical
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of GAGs Are confident working with complex data Enjoy learning beyond your current expertise with the support of our excellent interdisciplinary team Eligibility Start date: 1 October 2025 Open to
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grant Specified use +3 - to cover the full PhD Humanitarianism & Conflict Response programme Tenable period 3 years full-time or 6 years part-time. Continuation of award Continuation of the award is
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a yearly stipend of £20,780 and is for a period of three years to commence on 1st October 2025. How to apply Applicants should have: A 2.1 or higher honours degree in a social science, and A master's
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or be expecting to achieve a 1st or a 2:1 in an MEng degree in Electrical and Electronics Engineering or Aerospace Engineering. Funding support The intended start date for the position is 1st October
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submit: All degree transcripts and certificates (and certified translations if applicable). Evidence of English Language capability (where applicable). A short research proposal (max 2 pages). A full CV
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a yearly stipend of £20,780 and is for a period of three years to commence on 1st October 2025. How to apply Applicants should have: A 2.1 or higher honours degree in a social science, and A master's
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is characterised by complex and highly dynamic turbulent flows that define the performance and design of renewable energy systems and their infrastructure. This PhD project aims to enhance
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model of high-pressure mechanical seals. Apply Computational Fluid Dynamics (CFD): Simulate gas film flow within the microscopic seal gap. Couple CFD with Structural Models: Study the fluid-structure