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As part of the Restoration Ecology And Dynamics (READY) Doctoral Focal Award, we invite applications to the following PhD project: Harnessing ecosystem resilience to inform woodland restoration
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or as soon as possible thereafter. For eligible students the studentship will cover Home tuition fees plus an annual tax-free stipend of at least £20,780 for 3.5 years full-time, or pro rata for part-time
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benefit from being part of a dynamic, focused and professional study environment and all become valued members of the Cranfield Doctoral Network. This network brings together both research students and
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a student with a background in plant science, cell biology, molecular biology or biochemistry. Excellent oral and written communication skills and the ability to work in an interdisciplinary team
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that deliver high power density and exceptional efficiency at reasonable cost. However, most existing machines, particularly high-speed, radial-flux permanent magnet motors, are reaching their performance
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of transportation sector, where next-generation electrical vehicles require motors that deliver high power density and exceptional efficiency at reasonable cost. However, most existing machines, particularly high
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the world, the PDS candidate appointed into this role will have the opportunity to work at the interface of research, industry and policy. You will become an integrated member of the Task, acting as a bridge
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Modulo Theories) solver. The work aims to demonstrate methodology through the application of the prototype to a real-world industrial system (provided by our industrial partner - Evolution Measurement
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Use experimental data on grain orientation, defect density, and residual stress to inform and validate models Identify critical microstructural features that govern fatigue life Propose optimisation
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possible thereafter. For eligible students the studentship will cover Home tuition fees plus an annual tax-free stipend of at least £20,780 for 4years full-time, or pro rata for part-time study. The student