Sort by
Refine Your Search
- 
                Listed
- 
                Category
- 
                Employer- Cranfield University
- University of Nottingham
- The University of Manchester
- University of Manchester
- University of Sheffield
- ;
- Harper Adams University
- Newcastle University
- University of Newcastle
- AALTO UNIVERSITY
- KINGS COLLEGE LONDON
- Swansea University
- The University of Edinburgh
- University of Birmingham
- University of Birmingham;
- University of Bristol
- University of Cambridge
- University of Cambridge;
- University of East Anglia;
- University of Glasgow
- University of Surrey
- ; University of Southampton
- Bangor University
- Brunel University London
- Durham University;
- Imperial College London
- Kingston University
- Loughborough University;
- University of East Anglia
- University of Leeds
- University of Strathclyde;
- University of Warwick
- University of Warwick;
- VIN UNIVERSITY
- 24 more »
- « less
 
- 
                Field
- 
                
                
                This PhD project is at the intersection of electromagnetism, numerical methods, and high-performance parallel computing, with application towards the design and optimisation of integrated circuits 
- 
                
                
                summary Join an international team developing scalable algorithms to solve numerical linear algebra challenges on supercomputers. Modern high-performance computing increasingly relies on hardware 
- 
                
                
                variables directly. This simplification makes it a promising candidate for performing quantum computational fluid dynamics, and will be the primary focus of this project. Applicants should have a 1st or high 
- 
                
                
                -performance computing, simulations, and computational methods in physical sciences. Informal enquiries should be directed to the project supervisors, Dr Cillian Cockrell (Bangor University, NFI – c.cockrell 
- 
                AI techniques for damage analysis in advanced composite materials due to high velocity impacts - PhDto cutting-edge facilities including High-velocity impact testing, Advanced composite manufacturing labs, X-ray computed tomography and High-performance computing resources for AI model training This project 
- 
                
                
                thermodynamically. Performance design optimization and advanced performance simulation methods will be investigated, and corresponding computer software will be developed. The research will contribute 
- 
                
                
                industries: in-car systems, medical devices, phones, sensor networks, condition monitoring systems, high-performance compute, and high-frequency trading. This CDT develops researchers with expertise across 
- 
                
                
                critical, to ensure expected engine performance is achieved. To predict this complex flow and heat transfer, next-generation Computational Fluid Dynamics (CFD) solvers using Large-Eddy Simulation (LES) and 
- 
                
                
                to ensuring safe, reliable, and high-performance communications. The development of 6G based AI networks with integrated TN and NTN infrastructures provides new opportunities for UAV tracking 
- 
                
                
                , Nguyean et al. 2022). However, accurately predicting PB performance – particularly complex flow patterns within the structure and resulting inundation – requires advanced modelling techniques. This research