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that can be designed and optimised for both passive and active photonic components, allowing for the full suite of device functionality to be incorporated via simple and low-cost processes on a single
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begin on 1 October 2026 and will run until 30 September 2030. Application Process: To apply use the following link to go to the FAS website and create an application: Apply Online Before the closing date
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sources of research funding and contribute to the process of securing funds and make presentations at conferences and other events. Applicants will possess a relevant PhD or equivalent qualification
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hydrodynamic modelling and sediment transportation. ii. Model Validation: Validation of DHI Mike Model with past historical data iii. Data Analysis: Process and analyze coastal and ocean wave data to improve
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to contribute to an exciting European project developing biotechnological processes that use phototrophic microorganisms to recover resources from waste. About the Role We are seeking a dedicated Research Fellow
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position that can be applied across a broad range of industrial sectors, bringing the benefits of passive linear optical superresolution to the domain of in-process control for additive manufacturing
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and industrial deployment. The successful candidate will also contribute to developing other novel electromagnetic heating processes in industries such as industrial minerals, food, and chemical
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/administration processes Contribute to the planning and organising of the research programme and/or specific research project Co-ordinate own work with others to avoid conflict or duplication of effort Knowledge
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low solvent or solvent free processing. This work will include detailed characterisation of these materials to understand the degradation characteristics of these materials at various stages
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to Equality, Diversity and Inclusion . We are delighted to share that we are the first university to have achieved Athena Swan Gold Award . We want you to succeed in our recruitment process and have published