68 application-forms-"https:"-"https:"-"https:"-"NOVA.id" PhD positions at University of Nottingham
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world-class training programme combining research-led innovation with real-world industry application. Students will receive high-level entrepreneurial training provided by Haydn Green Institute, bespoke
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PhD Project: 3D-Printed Drug Delivery “Microbots” for Personalised Healthcare Applications are invited for a PhD project within the Faculty of Engineering, in the Centre for Additive Manufacturing
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one of the world’s leading centres for additive manufacturing research and development, invites applications for a fully funded PhD programme. Metal additive manufacturing is transforming how complex
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an enthusiastic, self-motivated researcher with a rigorous approach to problem-solving. Applicants should have, or be expected to gain, a high 2:1 (preferably 1st class) honours degree in Mechanical or Aerospace
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interdisciplinary research. Applicants should have, or expect to obtain, a first-class or upper second-class (2:1). A Master’s degree (or one near completion) in a related field is desirable, but not essential
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, which will offer opportunities for industrial placement and collaboration. Applicant Requirements You should hold, or expect to hold, a Master’s degree with a minimum 60% average and/or a First or Upper
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benefit from access to world-class materials laboratories alongside PEMC’s £18M purpose-built power electronics research facility on Jubilee Campus. The project will also connect to the University’s new
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in biomedical applications by exploiting the capabilities of functional and anatomical ultra-high field MRI in neuroscience. Together, we will support the PhD student in their research and development
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multidisciplinary effort to investigate the anatomical, physical and cellular factors that shape internal root environments. The project will explore how root organisation and environmental conditions combine
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to become an intrinsic part of the global integrated energy system. However, this kind of technology has not yet achieved widespread commercial adoption due to electrochemical systems’ reliability, safety