How Nanorobots Will Work
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We are looking for a talented, motivated and selfdirected graduate in the Physical Sciences or Engineering interested in pursuing a 4-year PhD at the University of Edinburgh.
The PhD is in association with Adaptix, an award-winning medical technology company with sites in Oxford and Scotland. The prestigious studentship is funded by the Royal Society. It is linked to an existing Royal Society Industry Fellowship whose purpose is to develop a uniform array of high-flux field emitters for X-ray medical imaging.
The research project will require the student to acquire a broad range of background knowledge to communicate and collaborate effectively across disciplines. The successful applicant will develop deep technical knowledge of silicon micromachining and device microfabrication in a semiconductor-grade cleanroom setting.
These skills are highly valued for future career prospects. The cutting edge technology developed in this project will revolutionise healthcare options for millions and help Adaptix to disrupt the medical imaging industry. Your scientific curiosity and inventiveness will be exercised daily. You will register for a full-time PhD at the University of Edinburgh UoEand will be supervised jointly by academic and industry supervisors respectively Prof.
Ian Underwood, School of Engineering and Dr. Aquila Mavalankar, Adaptix Ltd. This will give you an unrivalled opportunity to conduct research at a world-class university, and to experience the fast-paced delivery-oriented environment of an ambitious early-stage technology company. Adaptix is changing the way X-ray imaging is used by changing the way X-rays are generated thus bringing radiology out of the Victorian Age.
Adaptix is creating a solid-state addressable flat-panel X-ray source FPS that is safer, lighter, more cost-effective and more capable than existing technology. The FPS is designed to allow 3D image formation jogos de nano robot medicine means oftomosynthesis using existing generations of detectors and workstations allowing a system price point similar to that of current 2D systems.
For the medical sector this means the availability of 3D information with a lower jogos de nano robot medicine and at more affordable price than conventional systems. The company has spent the last five years developing and proving the technology and is now bringing it to market.
The University of Edinburgh: The University of Edinburgh was founded in It was 23rd in the world in the QS Rankings. Jogos de nano robot medicine is ranked as the 6th best university in Europe by the U. News' Best Global Universities. The School has a strong track record in producing more than 50 technology spin-outs and developing industry links that enable our graduates to build career-long relationships and networks. The Scottish Microelectronics Centre provides the infrastructure for much of the research on devices, technology and integration and facilitates the early stages of commercialisation.
You should be interested in developing a career in research, ideally in applied research or industry. You should be comfortable working both independently and collaboratively within a team. You should have some experience of, or ambition to work and prosper in, a highly multi-disciplinary environment.
Funding and Right jogos de nano robot medicine Work Notes: Candidates can jogos de nano robot medicine of any nationality and must have the right to remain in the UK for the full period of the studentship award.
Please apply online at: Adaptix provides a flexible and supportive jogos de nano robot medicine environment for time-sharing across the sites. The closing date for applications is Monday 30th April Interviews are planned for early May.
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