16 algorithm-development-"Newcastle-University"-"Newcastle-University" Fellowship research jobs at The University of Southampton
Sort by
Refine Your Search
-
Applicants are invited for a Research Fellow position to investigate microbially-mediated power-to-gas systems. You will develop continuous laboratory-scale systems for biological production
-
project we are seeking highly motivated individuals to join us in the development of digital engineering technologies to accelerate the design of the next generation of gas turbine engines. Successful
-
Healthcare Digital Twins. This role offers an exciting opportunity to contribute to the fast-growing field of Artificial Medical Intelligence. The successful candidate will design and develop advanced AI/ML
-
challenges across electronic textile-based sensing, wireless, electrochemical and design technologies with a focus on sustainable developments towards practical user-centric e-textile systems. In these roles
-
Immunology discovery community, and CRUK Centres and Institutes across the UK. The Role We are seeking a highly motivated and enthusiastic Early Career Bioinformatician to apply and develop their computational
-
, augmented reality, healthcare, renewable energy, and environmental solutions. About the Role As a valued member of our team, you will play a key role in developing and producing advanced optoelectronic
-
We are seeking an outstanding, creative researcher with the skills to develop novel topological photonic crystal/metamaterials for terahertz light control. Our project - sponsored by the Royal
-
health risks in multimorbidity populations. The role requires strong organisational skills, independence, and proficiency in statistical analysis. You are expected to prepare findings for publications
-
the development of new anchoring technologies for floating offshore wind turbines. Your role will focus primarily on the development of simplified computational models, and you will contribute
-
to reconstruct the unique features of the delocalized quantum state; 2) To optically trap and manipulate (cool, squeeze) nanoparticles, to enable sufficient time for the wavefunction evolution into a