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We have 18 Applied Mathematics (3d) PhD Projects, Programmes & Scholarships

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Applied Mathematics (3d) PhD Projects, Programmes & Scholarships

We have 18 Applied Mathematics (3d) PhD Projects, Programmes & Scholarships

AI enhanced 3D human body shape estimation and garment redressing from clothed 3D scan sequences

UK fashion retailers, particularly in online retail, have long struggled with the cost of returns. To reduce the number of returns in the fashion industry, 3D body scanning technology is a trend to build digital twins for customers, which makes it possible to fit garments remotely. Read more

An experimental 3D volumetric study of train aerodynamics

The aerodynamic slipstream created as a high-speed passenger train moves through the air is highly turbulent in nature. In particular the wake region is known to contain a series of helical vortices, which spread laterally into the far wake region, potentially affecting the stability of trackside workers. Read more

High Speed Stereo Imaging Techniques for Flame Studies

Turbulent flames are inherently 3D in nature, which demands for 3D diagnostic techniques. Digital 3D stereo imaging techniques have progressed significantly in recent years due to the advancement of digital imaging technique and computing power. Read more

Understanding crack branching via multiscale mathematical methods

There are many examples of branching in nature. the most celebrated of these is the way that rivers form by the coalescence of many small streams and rivers which build up to form a major river. Read more

Rapid production of hollow spheres using coaxial nozzles: experiments

Supervisory Team.   Ivo Peters, John Shrimpton. Project description. When a gas surrounded by a liquid film flows out of a coaxial nozzle, the stream can spontaneously deform into liquid shells. Read more

Computational modelling to understand the key drivers of placental evolution

Supervisory Team. Bram Sengers (SoE), Rohan Lewis (Medicine). Project description. This project will use computational modelling in combination with 3D multiscale multimodal imaging to improve our understanding of placental evolution, in close collaboration between Engineering and Medicine. Read more

Differential equation modelling to address male infertility

Infertility affects 1 in 6 couples, is emotionally devastating, and requires expensive and invasive treatments. Importantly, we place a significant and unequal burden on women, who often require risk-bearing procedures to address what is caused by, in 50% of cases, a male factor. Read more

Multiscale Numerical Approaches for Materials Design and Engineering

The Engineering and Mathematics Group within the School of Computing, Engineering and the Built Environment is inviting applications for a research studentship in developing novel numerical approaches for design and engineering of composite materials and metamaterials leading to the award of a PhD degree. Read more

Novel metamaterials for mechanical waves attenuation

The Engineering and Mathematics Group within the School of Computing, Engineering and the Built Environment is inviting applications for a research studentship in developing novel metamaterials for high-energy mechanical waves attenuation leading to the award of a PhD degree. Read more

New parameter inference for stochastic models of tissue growth

My research group is recruiting a PhD student who will work on a project to produce and apply new computational methods for parameter estimation with a focus on discrete models that describe tissue growth experiments. Read more

Chaos-based cryptography

These projects are open to students worldwide, but have no funding attached. Therefore, the successful applicant will be expected to fund tuition fees at the relevant level (home or international) and any applicable additional research costs. Read more

Robust Computational Methods for High-Dimensional Imaging

This project aims to develop new computational algorithms to optimize the acquisition and processing of single-photon data and enable fast imaging in extreme conditions using statistical and learning based approaches.   The project is funded for 3.5 years for international students and a ~£17K annual stipend. Read more

Rapid production of hollow spheres using coaxial nozzles: multiphase CFD

Supervisory Team.   Ivo Peters, John Shrimpton. Project description. When a gas surrounded by a liquid film flows out of a coaxial nozzle, the stream can spontaneously deform into liquid shells. Read more
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