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Regulation of stem cell behaviour using functional biomolecules

Investigate and develop new ways of manipulating different aspects of stem cell behaviour.  This knowledge paves the way towards understanding their fundamental biology and cre more...

Supervisor(s): Yeo, Giselle (Dr)

Extracting energy from flow induced vibration

The project aims to investigate various passive strategies for maximising flow induced vibration with potential applications to energy harvesting. more...

Supervisor(s): Lei, Chengwang (Professor)

Assessing modern slavery in global supply chains

This project will employ multi-region input-output analysis and a comprehensive global database (Lenzen et al. 2012a; Lenzen et al. 2013; Lenzen et al. 2017) to trace modern slavery more...

Supervisor(s): Murray, Joy (Dr), Malik, Arunima (Dr)

Nonlinear integrated photonics

Professor Benjamin Eggleton's breakthroughs in nonlinear optics of chalcogenide glasses have let to his deomonstations of new ultrafast optical devices for telecommunications applic more...

Supervisor(s): Eggleton, Benjamin (Professor)

Novel biophotonic devices

The project will explore novel biomedical applications of a new type of fibre, taking advantage of our recent breakthrough in fabrication of fibres in low Young's modulus materials more...

Supervisor(s): Fleming, Simon (Professor)

Poling multilayer dielectric structures for compact active optical devices

Optical communications technology has transformed the world. There is a need to get more optical processing functionality into smaller devices, for applications ranging from inexpen more...

Supervisor(s): Fleming, Simon (Professor)

Retaining Military Personal Model: Adequacy, Robustness and Simplicity

The project will focus on implementing Partial Least Squares Path Modelling techniques to determine the military turnover drivers and their contribution to turnover.  An econom more...

Supervisor(s): Jajo, Nethal (Dr), Peiris, Shelton (Associate Professor)

A complete solution of the internal erosion problem for granular media

One of the most common mechanisms for the failure of Earth structures is via internal erosion, where fine particles are washed out of the material by the action of water. This proje more...

Supervisor(s): Marks, Benjy (Dr), Einav, Itai (Professor)

Integration of supply chain elements in an automobile company: Discrete Event Simulation Model and Analysis

In collaboration with a global car company, the project will provide professional analysis of the Supply Chain Management system and suggest the required dynamic model to support st more...

Supervisor(s): Jajo, Nethal (Dr)

Riblet surfaces for reducing drag of marine vessels

This project aims to investigate the drag reduction performance of antifouling surfaces for marine vessels. more...

Supervisor(s): Lei, Chengwang (Professor)