Sort by
Refine Your Search
-
Exciting Fully Funded PhD: Computational Modelling for High-Pressure, Low-Carbon Storage Technologies. Be a Key Player in Shaping the Future of Clean Energy Storage! School of Mechanical, Aerospace
-
will recieve a 3-month training programme in fusion engineering at the start of the course, delivered across the CDT partner universities at Manchester, Birmingham, Sheffield and Liverpool. For further
-
EPSRC iCASE PhD studentship with SLB - Computational modelling of advanced geothermal systems School of Mechanical, Aerospace and Civil Engineering PhD Research Project Directly Funded UK Students
-
Overview You will be a member of the Particle Physics and Particle Astrophysics (PPPA) group in the School of Mathematical and Physical Sciences. We are seeking to appoint three fixed term Research Assistants to contribute to our research on the ATLAS experiment at Large Hadron Collier (LHC)...
-
Overview Nature offers a mechanism - called homeostasis - by which life forms can maintain their physical integrity and well being. On the other hand, a series of machines, including robots, cannot overcome some of the most insignificant damage, such as a cut in their functional component. The...
-
. The impact of the research will lead to new types of quantum computers, new lasers increasing the speed of the internet, electronics for manufacturing, and new sensing technologies for monitoring climate
-
valuable experience working in an interdisciplinary environment. Requirements: First-class or 2.1 honors degree (or international equivalent) in engineering, computer science, applied mathematics, or a
-
degradation rates of synthetic micropollutants. The research programme to be completed in this project will be undertaken as part of the EPSRC Centre for Doctoral Training in Water Infrastructure and Resilience
-
monomeric de novo synthetic proteins; (3) use computational tools to create oligomers of these monomeric proteins; (4) find ways to express the genes encoding monomeric and oligomeric proteins in a variety of
-
overcomes the geographic limitations of conventional systems, enabling global scalability and accessibility. Using advanced computational fluid dynamics (CFD) approaches, the project is aimed at deepening