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

We have 28 Applied Mathematics (3d) PhD Projects, Programs & Scholarships

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  Prediction of microscale geometry and performance of 3D-printed medical implants (AGUF2019)
  Dr A Gleadall
Application Deadline: 31 August 2020

Funding Type

PhD Type

Cutting-edge medical implants for bone fracture repair are manufactured from biodegradable polymers because, unlike permanent devices, they are fully absorbed by the body over several months and do not need surgical removal after healing.
  2D and 3D Computational Imaging Through Turbulence
  Dr Y Altmann, Prof S McLaughlin, Prof G Buller
Applications accepted all year round

Funding Type

PhD Type

The main objectives of this computational PhD project are to develop new and ground-breaking methods for fast and robust 3D imaging and sensing.
  Object Detection and Tracking Using High-Speed 3D Image Sensors
  Dr I Gyongy
Application Deadline: 29 June 2020

Funding Type

PhD Type

3D image capture by existing LIDAR and Time-of-Flight (ToF) sensors is typically limited to relatively low frame rates due to bottleneck issues in the data readout and/or the necessity for optical scanning to cover a sufficiently large field of view.
  Vision Based Robotic Guidance and Monitoring Using 3D Sensor and Industrial Internet of Things
  Dr H Ahmed
Application Deadline: 10 December 2019

Funding Type

PhD Type

Coventry University (CU) is inviting applications from suitably-qualified graduates for a fully-funded International PhD studentship in partnership with Oxford Vision and Sensor technology (OVST).
  Numerical Modelling of 3D Microstructure of Nonwovens
  Dr E Demirci, Dr A Gleadall
Applications accepted all year round

Funding Type

PhD Type

The main aim of the proposed project is to develop a novel scheme for the analysis of a 3D orientation distribution function (ODF) of fibers in nonwovens using non-destructive testing methods, such as, X-ray micro computed tomography (CT), and to benchmark nonwovens analytically & graphically based on their 3D fibrous structure.
  Computational Imaging: Improving the Acquisition and Processing of Single-Photon Data
  Dr AH Halimi, Prof S McLaughlin
Applications accepted all year round

Funding Type

PhD Type

Recent technological innovations, eg detection and acquisition hardware, have pushed sparse-photon imaging to the fore in a variety of applications including 3D Lidar imaging and microscopy.
  3D computer modelling of growing plants (SMITHJ20DTP)
  Dr R Smith
Application Deadline: 25 November 2019

Funding Type

PhD Type

The Smith lab is looking for a motivated computer scientist that would like to apply their skills to. fundamental questions in plant development.
  A fully funded PhD in Autonomous Mobile Robotic Systems for dismantling electrical vehicle`s battery pack
  Prof R Stolkin, Dr A Rastegarpanah
Application Deadline: 31 December 2019

Funding Type

PhD Type

About the Extreme Robotics Lab. The University of Birmingham Extreme Robotics Lab (ERL), is one of the leading university robotics labs in Europe dedicated to practical applications of robotics and AI to extreme environments.
  Advanced microscopy for blood flow field mapping in the heart
  Dr J Taylor, Prof A Harvey
Applications accepted all year round

Funding Type

PhD Type

A PhD studentship is available in the Imaging Concepts Group at Glasgow University, developing and applying advanced optical microscopy and computational imaging techniques to measure and study the blood flow and heart function in the developing zebrafish heart.
  3D Spectrum Imaging and Visualisation of Chemical Microstructure
  Dr J Leng
Application Deadline: 3 January 2020

Funding Type

PhD Type

This PhD studentship will make a key contribution to the development of a methodology to produce 3D chemical maps of a multiphase material (or the interface between two different materials) from the visible to the atomic scale by utilising the state of the art electron microscopy facilities in the Leeds Electron Microscopy and Spectroscopy centre (LEMAS).
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