The Wind & Marine Energy Systems & Structures (WAMSS) is an EPSRC-funded Centre for Doctoral Training (CDT), led by the University of Strathclyde, working collaboratively with Universities of Oxford and Edinburgh. Read more
The Department of Mechanical and Aerospace Engineering at the University of Strathclyde is inviting applications for the following fully funded PhD project, expected to commence in October 2023. Read more
Reference number. SCEBE/21SF/005/MK. Background. Cold-formed steel sections have become competitive structural components in modern building construction due to their inherent favourable characteristics over conventional hot-rolled steel members. Read more
The Wind & Marine Energy Systems & Structures (WAMSS) is an EPSRC-funded Centre for Doctoral Training (CDT), led by the University of Strathclyde, working collaboratively with Universities of Oxford and Edinburgh. Read more
REFERENCE NUMBER. Please select SCEBE/22SF/Parrilla. BACKGROUND AND AIMS. In this project you will design the next generation of 3D-printers. Read more
A jointly awarded Doctorate in Engineering from the University of Edinburgh, Exeter University and Strathclyde University, offering ten places per year funded by the UK Engineering and Physical Sciences Research Council. Read more
We have an exciting and rare opportunity to join a prestigious European training network programme. We are looking for a doctoral candidate to join the European training network DIALECT team (. Read more
The Wind & Marine Energy Systems & Structures (WAMSS) is an EPSRC-funded Centre for Doctoral Training (CDT), led by the University of Strathclyde, working collaboratively with Universities of Oxford and Edinburgh. Read more
The Wind & Marine Energy Systems & Structures (WAMSS) is an EPSRC-funded Centre for Doctoral Training (CDT), led by the University of Strathclyde, working collaboratively with Universities of Oxford and Edinburgh. Read more
The aim of this project is to understand and quantify the fibre-matrix interface for current generation resin (e.g. epoxy) and fibre combinations, (e.g. Read more
The Hydrogen Economy will help to shift society away from fossil fuels and contribute to decarbonisation. Polymer electrolyte membrane water electrolysis (PEMWE) can convert renewable energy into green hydrogen, whilst polymer electrolyte membrane fuel cells (PEMFCs) convert hydrogen into electrical power. Read more
Reference Number. Please refer to SCEBE-20-024-CHSF. Background. This project seeks to build on existing work related to the indoor person tracking on the basis of an advanced electronics prototype using a form of indoor GPS. Read more
*Offer only available for the duration of your active subscription, and subject to change. You MUST claim your prize within 72 hours, if not we will redraw.
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