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complex power network to meet the electrical loads of these sectors. Due to recent advances in smart metering infrastructure as well as wide area monitoring protection and control, the data and information
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melting methodology creates challenges due to limited in-situ thermal control that can generate unwanted thermal stresses in components, defects such as cracks and limited microstructural control. This PhD
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melting methodology creates challenges due to limited in-situ thermal control that can generate unwanted thermal stresses in components, defects such as cracks and limited microstructural control. This PhD
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to establish a research portfolio and technology roadmap around the remit of the development of AM processes, materials, AM process simulations, online/offline process monitoring and control tools as
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these sunburn symptoms. PSI on the other hand has no such repair cycle and therefore the algae go to great lengths to protect it from damage. The key element of PSI photoprotection is ‘photosynthetic control’ a
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cause a harmful outcome instead. In this project, we will explore how the indirect basis of microbial interactions impacts their emergent ecology. Using a combination of ecological theory and controlled
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of stable fusion pores in adrenal chromaffin cells to facilitate peptide secretion. The aim of this project is to identify the signaling events and molecules controlling exocytosis which are regulated by GLP
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will enable the advanced monitoring and computing techniques of power systems, as well as to create a resilient control and operation for both energy network and distributed energy sources. This PhD
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fluidised bed granulation for powder-based pharmaceutical manufacturing. Fluidised bed granulation processes remain a challenge to design, scale up and control, and this can result in high costs
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analytics techniques (machine learning) for process control and optimisation. In this project, you will focus on achieving metamaterial behaviour through phase control within the additive manufacturing build