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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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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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skills, desire to learn and develop new skills) plus someone who has both strong practical as well as computational skills. This video was really intended for undergraduate students and was created around
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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