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Applied Physics PhD Projects, Programs & Scholarships in Warwick

We have 7 Applied Physics PhD Projects, Programs & Scholarships in Warwick

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Showing 1 to 7 of 7
  Development of Novel Low Energy Laser Shock Peening
  Prof M Fitzpatrick, Dr P Shukla, Dr D Tanoko Ardi
Application Deadline: 29 June 2020

Funding Type

PhD Type

Coventry University and the Agency for Science, Technology and Research in Singapore (A*STAR) are inviting applications from suitably qualified UK/EU/international graduates for one fully-funded PhD studentship for the project ‘Development of Novel Low Energy Laser Shock Peening’.
  Laser shock and shot peening induced surface nanocrystallisation
  Prof M Fitzpatrick, Dr V Janik, Dr W Yuefan
Application Deadline: 30 June 2020

Funding Type

PhD Type

Coventry University and the Agency for Science, Technology and Research in Singapore (A*STAR) are inviting applications from suitably qualified UK/EU/international graduates for one fully-funded PhD studentship for the project ‘Laser shock and shot peening induced surface nanocrystallisation’.
  Selective epitaxial growth of Silicon Carbide thin film materials
  Dr M Myronov
Applications accepted all year round

Funding Type

PhD Type

This PhD project is an exciting opportunity to be involved in innovative and pioneering research on selective epitaxial growth of silicon carbide (SiC) semiconductor material.
  Gone in a flash: Femtosecond laser ablation of nanostructured alloys
  Dr P Brommer
Applications accepted all year round

Funding Type

PhD Type

Laser ablation, the removal of material with intense light pulses, is an important subtractive manufacturing technique. Femtosecond (10-15 s) laser pulses can result in superior quality of e.g.
  Novel Hybrid Wind and Wave Energy System and Its Structural Dynamic Responses Subjected to Combined Wind and Wave Loads
  Dr L Wang
Applications accepted all year round

Funding Type

PhD Type

The sustainable development of offshore wind and ocean energy needs an efficient use of the natural resources, optimising their exploitation and reducing costs.
  Diamond Formation in Giant Ice Planets
  Dr D Gericke
Applications accepted all year round

Funding Type

PhD Type

The internal structure of a planet, that is its radial material and density distribution, is largely defined by hydrostatic equilibrium.
  X-ray studies of dynamic fluctuations in Nano-scaled artificial Spin-Ices
  Dr T PA Hase
Applications accepted all year round

Funding Type

PhD Type

Geometric frustration, in which pair-wise interactions are incompatible with the underlying lattice can be found in many fields. Exploring the effect in bulk crystals is limited by the inability to modify the interactions in a systematic manner.
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