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issues in the engineering analysis and design of floating wind applications. Over time, these subsea cables become coated with soft and hard biofouling – marine organisms that increase drag, weight and
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chlorination to convert metallic impurities into volatile chlorides. The process efficiency, however, depends on a complex interplay of particle-scale interactions and particle/solid body interactions. Current
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that connect floating wind turbines to the seabed remain one of the challenging issues in the engineering analysis and design of floating wind applications. Over time, these subsea cables become coated with soft
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Power and Energy, Electrical Engineering, Computer Science, or Operations Research. While this is our standard entry requirement, we also place strong value on prior experience, enthusiasm for research
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). Additional project costs will also be provided. Overview We are looking for a highly motivated candidate with a background in electronic engineering, physics or a related discipline. Strong practical skills
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motivated candidate with a background in electronic engineering, physics or a related discipline. Strong practical skills, an interest in biomedical research, and the ability to work independently are
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your programme of study: search for the ‘Course Title’ using the programme code: 8060F select ‘Electrical and Electronic Engineering PhD (full time) - 8060F' as the programme of study You will then need
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select ‘Electrical and Electronic Engineering PhD (full time) - 8060F' as the programme of study You will then need to provide the following information in the ‘Further Details’ section: a ‘Personal
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for the ‘Course Title’ using the programme code: 8060F. select ‘Electrical And Electronic Engineering' as the programme of study You will then need to provide the following information in the ‘Further Details
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: · search for the ‘Course Title’ using the programme code: 8060F · select 'PhD Electrical and Electronic Engineering (full time)' as the programme of study You will then need to provide the following