Sort by
Refine Your Search
-
Listed
-
Category
-
Employer
- University of Warwick;
- University of East Anglia
- University of Birmingham
- The University of Manchester
- University of Exeter
- Harper Adams University
- Newcastle University
- University of Cambridge
- University of Cambridge;
- University of Essex;
- University of Nottingham
- University of Oxford
- University of Warwick
- Durham University
- LIVERPOOL JOHN MOORES UNIVERSITY
- University of Bedfordshire
- University of Liverpool
- University of Plymouth
- University of Salford
- University of Sheffield
- Imperial College London
- King's College London
- Manchester Metropolitan University
- Manchester Metropolitan University;
- Northeastern University London
- Oxford Brookes University
- Royal Holloway, University of London
- South West Doctoral Training Partnership
- The Rosalind Franklin Institute
- The University of Manchester;
- UWE, Bristol
- University of Birmingham;
- University of Bristol
- University of Exeter;
- University of Manchester
- University of Plymouth;
- University of Surrey
- University of Sussex
- 28 more »
- « less
-
Field
-
: Design and optimisation of kHz–MHz eddy current sensors suitable for high-temperature environments Experimental studies linking microstructural evolution to electrical conductivity during thermal
-
provide industrial steer and co-supervision with Dr Paul Styman. The UoB Materials for eXtremes (M4X - https://more.bham.ac.uk/M4X/ ) research group investigates new alloys for extreme environments from
-
, corrections and adaptations over time. Robots must interpret instructions, decompose them, navigate dynamic environments, manipulate objects, detect failures and replan while tracking overall goals. The core
-
. Excellent support both intellectually and technically will be offered by experienced mentors and support teams. The student will be immersed in a highly collaborative research environment at TSL, NRP and UEA
-
to submit a research proposal but will need to detail why you would like a studentship in the chosen Franklin Challenge . What the Franklin PhD Programme Offers A unique research-focused environment, plus
-
humidity ranges. By exploiting advances in materials design, it is possible to tailor ionic transport properties while maintaining structural integrity under demanding electrochemical environments
-
studies, and reproducible open-source software development. TRAINING AND RESEARCH ENVIRONMENT: The student will join the Department of Public Health and Primary Care and become part of the multidisciplinary
-
academia and industry. Collaborative Environment – Work alongside leading researchers and industry partners in a supportive, vibrant community that values curiosity, creativity, and collaboration. Future
-
Environment – Work alongside leading researchers and industry partners in a supportive, vibrant community that values curiosity, creativity, and collaboration. Future‑Focused Careers – HetSys graduates
-
academia and industry. Collaborative Environment – Work alongside leading researchers and industry partners in a supportive, vibrant community that values curiosity, creativity, and collaboration. Future