Sort by
Refine Your Search
-
Country
-
Employer
- University of Oxford
- University of Oxford;
- Durham University
- University of Liverpool
- King's College London
- University of London
- DURHAM UNIVERSITY
- Aston University
- LIVERPOOL JOHN MOORES UNIVERSITY
- Queen Mary University of London;
- City St George’s, University of London;
- Durham University;
- Plymouth University
- University of Cambridge;
- University of Manchester
- University of Lincoln
- University of Liverpool;
- ;
- Bournemouth University;
- Edge Hill University
- Goldsmiths
- Goldsmiths, University of London;
- Kingston University
- Lancaster University
- Leeds Beckett University;
- Max Planck Society
- Newcastle University
- Royal College of Art;
- Royal Holloway, University of London;
- The Rosalind Franklin Institute
- The University of Manchester;
- UNIVERSITY OF EAST LONDON
- University of Birmingham
- University of East London
- University of New England
- University of Plymouth;
- University of Reading;
- University of West London
- University of York;
- 29 more »
- « less
-
Field
-
discovery of a new family of superionic lithium ion conductor (*Science*, **2024**, *383*, 739). You will work within a highly collaborative, interdisciplinary environment that brings together expertise in
-
the environment. Classical thermodynamics has been established since the 19th century, while quantum thermodynamics is now a blossoming new field which could advance energy harvesting, the design of efficient
-
inclusive environment, fostering the academic freedom and confidence to work at both the core and boundaries of anthropology in exciting and innovative ways. The assessment of our work in REF 2021 attests
-
in the laboratory environment. How to apply The University of Oxford is committed to equal opportunity, and to being a place where everyone belongs and is supported to succeed. We recognise how
-
cutting edge research in a fast-paced and intellectually stimulating environment. The role requires a relevant PhD (DPhil), excellent communication skills and a desire to take this technology to the next
-
of adapting to dynamic environments. The research work focuses on understanding and addressing the challenge of evolving real-world data over time and open-end learning in the context of self-adaptive and self
-
appropriate national repositories. For more information on School of Geography Earth and Environmental Sciences please visit our dedicated webpage at https://www.plymouth.ac.uk/schools Due to the nature
-
cleanroom environments will be expected. You will possess strong analytical and problem-solving skills, with the ability to work effectively within multidisciplinary teams. Experience with low-loss dielectric
-
The University of Oxford is a stimulating work environment, which enjoys an international reputation as a world-class centre of excellence. Our research plays a key role in tackling many global
-
thermodynamics of quantum devices evolving, fluctuating, and coupling to each other and to the environment. Classical thermodynamics has been established since the 19th century, while quantum thermodynamics is now