Sort by
Refine Your Search
-
Category
-
Employer
- University of Exeter
- University of Nottingham
- Newcastle University
- University of East Anglia
- The University of Manchester
- University of Birmingham
- University of Warwick;
- University of Cambridge;
- University of Warwick
- University of Cambridge
- UNIVERSITY OF VIENNA
- University of Surrey
- Manchester Metropolitan University
- University of Oxford
- AALTO UNIVERSITY
- Abertay University
- Imperial College London
- University of Plymouth
- Harper Adams University
- Manchester Metropolitan University;
- Newcastle University;
- Swansea University
- University of Essex;
- University of Manchester
- Durham University
- University of Plymouth;
- University of Sheffield
- University of Sussex
- Brunel University
- European Research University
- King's College London
- King's College London;
- LIVERPOOL JOHN MOORES UNIVERSITY
- Oxford Brookes University
- Royal Holloway, University of London
- The University of Manchester;
- University of Bedfordshire
- University of Bristol
- University of Newcastle
- ;
- Biology Centre CAS
- City St George's, University of London (Tooting);
- City St George’s, University of London
- Cranfield University
- Heriot Watt University
- Heriot-Watt University
- London School of Economics and Political Science;
- Northeastern University London
- Royal Holloway, University of London;
- SINGAPORE INSTITUTE OF TECHNOLOGY (SIT)
- Swansea University;
- The Rosalind Franklin Institute
- The University of Edinburgh
- UWE, Bristol
- UWE, Bristol;
- University of Bath
- University of Birmingham;
- University of Dundee;
- University of East Anglia;
- University of Exeter;
- University of Liverpool
- University of Salford
- University of Sheffield;
- University of Strathclyde
- 54 more »
- « less
-
Field
-
computational simulation, supported by experimental investigations using test welds and novel material characterisation methods. This project is available from 1st October 2026. Applications are accepted until
-
this: new chemistry methods that let around 100 candidate compounds be made, purified and tested for biological activity together, in a single operation taking as little as a week. You will apply this new
-
across historical, social science, and data science methods. While this studentship is grounded in historical and archival practice, candidates who wish to engage with quantitative, digital, or comparative
-
statistical methods for adaptive learning, sequential decision-making, and control, motivated by applications in public health and epidemiology. The project will focus on methodological advances in
-
qualification in a relevant discipline Good scientific writing Knowledge of advanced statistical methods. Good numerical and statistics skills and familiarity with text editing software, such as Word, Excel, etc
-
, regulated and exploited in cancer. The balance between method development, cancer biology and computational analysis will be shaped around your strengths and interests. Applicants from a physical-sciences or
-
You must apply through the University’s Apply to Newcastle Portal Once registered select ‘Create a Postgraduate Application’. Use ‘Course Search’ to identify your programme of study: Search
-
structural dynamics, hydrodynamics, or marine systems Experience with programming or numerical tools (MATLAB, Python) A willingness to work across disciplinary boundaries Motivation to tackle open-ended, real
-
to become an expert in both thin films and electrochemistry – fields that are key to numerous crucial technologies and sustainability. Depending on the task at hand, you will work independently, as a part of
-
. The research aligns with the objectives of the EU funded project DRAGONS (Direct Recycling with AI for Gigafactory Operations and Next-generation Sustainability) programme, which seeks to develop scalable and