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aims to improve the current understanding of the oxyfuel combustion processes through performing detailed computational fluid dynamics modelling of the oxy-coal combustion and experimental investigations
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carbon compounds doped with a variety of elements (for example nitrogen, sulphur, selenium). This project will involve the use of the Gaussian 09 program to perform detailed electronic structure modelling
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used, which is typically done for reasons of computational efficiency. The project can also include simulations where in-plane shear is acting on the potential crack plane. Funding Notes 1st or 2:1
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an emerging waste recovery and treatment technology using advanced gasification processes that can recover the useful materials in the waste in addition to harvesting the energy. Computational modelling will be
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or Distinction) in a relevant science or engineering subject from a reputable institution. Prospective candidates for this project should have an MSc, MMath or MEng in mathematics, statistics, physics, aerospace
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X-ray computed tomography and/or Focused Ion Beam Scanning Electron microscopy (FIB-SEM). These images will be used to obtain insights on how to improve the performance of the cathode electrodes
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carried out using the University of Sheffield’s state-of-the-art facilities. Funding Notes 1st or 2:1 degree in Engineering, Materials Science, Physics, Chemistry, Applied Mathematics, or other Relevant
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electrical conductivity and catalyst support over conventional carbon fibre based gas diffusion layers. Funding Notes 1st or 2:1 degree in Engineering, Materials Science, Physics, Chemistry, Applied Mathematics, or other
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, Materials Science, Physics, Chemistry, Applied Mathematics, or other Relevant Discipline. View DetailsEmail EnquiryApply Online
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the wind farm to reduce the turbine wake effects and maximize the wind farm power output. Advanced mathematical and computational fluid dynamics modeling techniques will be employed with supplementary