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Fluid Dynamics (complex systems) PhD Projects, Programs & Scholarships

We have 23 Fluid Dynamics (complex systems) PhD Projects, Programs & Scholarships

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  Integrated mathematical modelling and experimental research into interactions between microorganisms
  Dr J U Kreft
Applications accepted all year round

Funding Type

PhD Type

Our group aims to combine theoretical & experimental approaches to understand major problems in the ecology and evolution of microbes.
  20 Funded PhD Positions in the IMPRS-CellDevoSys - Integrating Biology, Physics, Chemistry & Computer Science

Funding Type

PhD Type

A 4-year PhD Program involving 3 renowned international institutes. the Max Planck Institute of Molecular Cell Biology and Genetics, the Center for Systems Biology Dresden, and the Max Planck Institute for the Physics of Complex Systems.
  20 Funded PhD Positions in the IMPRS-CellDevoSys - Integrating Biology, Physics, Chemistry & Computer Science

Funding Type

PhD Type

A 4-year PhD Program involving 3 renowned international institutes. the Max Planck Institute of Molecular Cell Biology and Genetics, the Center for Systems Biology Dresden, and the Max Planck Institute for the Physics of Complex Systems.
  Adding a New Layer to Biophysics
  Dr T Shendruk
Applications accepted all year round

Funding Type

PhD Type

In recent years, there has been an explosion in applying liquid crystal theory to biological systems. Dense suspensions of swimming microbes, cytoskeletal components, fibrous tissues and bacterial colonies all exhibit properties associated with nematic liquid crystals.
  Novel ways to model complex flows
  Research Group: Multiscale Modelling
  Prof A Masters
Applications accepted all year round

Funding Type

PhD Type

While the equations governing the flow of Newtonian liquids like water or petrol are well-understood and excellent numerical methods exist to make accurate predictions of how such liquids will behave, the situation regarding complex fluids, such as blood, paint, shampoos, etc, is considerably less well understood.
  Pattern Formation (Applied Nonlinear Dynamics): understanding the formation and stability of complex patterns such as quasipatterns, spatio-temporal chaos or turbulent spirals
  Prof A M Rucklidge
Applications accepted all year round

Funding Type

PhD Type

Regular patterns, such as stripes, squares and hexagons, are ubiquitous in nature, and their formation and stability are governed by the intricate and complex interactions of symmetry and nonlinearity.
  How hot is the bottom of Earth’s mantle?
  Dr A Walker, Dr C Davies, Dr A Nowacki
Application Deadline: 6 January 2020

Funding Type

PhD Type

Can you combine geophysics, fluid dynamics and mineralogy to construct a deep-Earth thermometer and better constrain Earth’s energy budget?.
  NERC-funded PhD studentships: Department of Earth Science and Engineering, Imperial College London

Funding Type

PhD Type

The Science and Solutions for a Changing Planet (SSCP) Doctoral Training Partnership integrates six host partners and a number of business and policy sector partners, to offer an exciting programme that trains and inspires the next generation of environmental experts and leaders to tackle some of the toughest challenges of our time.
  Microbial Micro-Engineers
  Dr M Mazza
Applications accepted all year round

Funding Type

PhD Type

Microorganisms occupy every crevice within global ecosystems and impact all aspects of life. However, too little is understood about their movement within physical crannies, and how they can restructure these microspaces for their own benefit.
  Severe weather over Southeast Asia: fieldwork and modelling
  Dr C Birch, Dr J Marsham, Dr R Neely
Application Deadline: 7 January 2020

Funding Type

PhD Type

The Maritime Continent in Southeast Asia is a key region in the global weather and climate system. Its complex island geography and position among the warmest oceans on Earth lead to a multi-scale concoction of severe atmospheric convective and dynamical weather systems.
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