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faculties at the University of Southampton and will leverage a new rapid Antimicrobial Susceptibility Test (iFAST), developed at Southampton in Electronics and Computer Science, to accelerate phage therapy
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PhD Supervisor: Dr Marcus Newton Supervisory Team: Dr Marcus Newton, Dr Dan Porter, Prof Steve Collins, Prof Paul Quinn Project description: The University of Southampton is expanding its PhD
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| University of Southampton Funding will be awarded on a rolling basis, so apply early for the best opportunity to be considered. How To Apply Apply online by clicking the 'Apply' button, above. Select
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Scholarships | Doctoral College | University of Southampton Funding will be awarded on a rolling basis, so apply early for the best opportunity to be considered. How To Apply Apply online: Search for a
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Skylaris at the University of Southampton with co-supervision from the Johnson Matthey industrial supervisor. For enquiries, please contact Professor Skylaris ( [email protected] ). This project is
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students, including Bursaries and Scholarships. For more information please visit PhD Scholarships | Doctoral College | University of Southampton Funding will be awarded on a rolling basis, so apply early
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PhD Studentship - Extending the Chemical Space of mAb Based Cancer Treatment with DNA Nanostructures
immunology, investigating the synthesis and evaluation of a modular cancer therapy platform. We propose to develop DNA nanopores into a modular platform that allows them to act as a drug carrier to enhance
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Vibration (ISVR) and benefit from having access to the cutting-edge experimental facilities at the University of Southampton and the high-speed computational resources. You will be involved in
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Kerridge-Johns ([email protected] ) at the University of Southampton with support and co-supervision by NKT Photonics (Dr Adam Devine). It will research coherent beam combination (CBC
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mechanisms, while at the macro scale, the engineering issue is to develop an efficient system for integrating these metamaterials with several engineering applications. Metamaterials derive their properties