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                induced damage mechanisms. This project utilises a precisely controlled mist film to minimise thermally induced damage, enabling efficient processing of advanced materials. As a PhD student, you will work 
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                trade-offs between efficiency, cost, and emission control. To fully realise ammonia’s potential as a clean energy carrier, a fundamental rethinking of the combustion process is needed. This PhD project 
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                plants. To better understand how distantly-related land plants defend themselves against pathogen infection, our group investigates the molecular genetic mechanisms controlling disease resistance in 
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                this challenge. Pathogens invade plant cells and hijack proteins that control protein synthesis, bending these processes to support pathogen growth. This project aims to target the protein-protein interactions 
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                complex metal structures. This opportunity is centred around improving manufacturing productivity with advanced laser-matter interactions control and optimisation. The PhD will advance our comprehension 
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                to native malaria vector species to transmission in study settings. You will use these analytical frameworks to investigate a range of questions about the future spread and control of this invasive vector in 
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                disease control strategies for wheat that also safeguard native biodiversity and ecosystem stability. Research Methodology The main aim of this project is to resolve the conflicting interests of preserving 
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                . Investigation of the unique year-round Rothera CO2 timeseries (2010-2020) has highlighted how wintertime sea ice cover controls CO2 uptake by Antarctic coastal waters [1]. Rapid sea ice decline, strong glacial 
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                also throughout the development phase, which involves transforming a molecule into a medicine and addressing various chemistry, manufacturing, and control (CMC) challenges. A key aspect of this process 
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                movement and mechanical loading. The device will combine biomimetic hydrogels containing cartilage cells with a stretchable mechano-actuator to apply controlled compression. By integrating immune cell co