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Fully Funded PhD Studentship (UK Students Only) Real-Time Sub-THz Electromagnetic Sensing and Machine Learning for Dynamic Particulate Characterization University of Birmingham with support from
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collaboration with both academics and researchers within the Centre for Bulk Solids and Particulate Technologies and TUNRA Bulk Solids. The numerical model of material interactions will be validated against
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mechanisms involved in wear of rubber materials Investigate the generation and dispersion of particulate matter in the tyre-road interaction Describe and characterise particle morphology as a function of usage
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species and the photochemically formed secondary air pollutants such as ozone and particulate matter. Secondly, a very large number of different hydrocarbons are emitted which makes their inclusion on air
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CESM) and analysis of large observational datasets. Nitrogen oxides (NOx) emitted into the troposphere contribute to the formation of fine particulate matter (PM2.5) and ozone (O3). NOx thus plays a
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(on the order of seconds to minutes) under extreme conditions. These environments are characterised by temperatures up to 3000 K, pressures up to 10 MPa, mass fluxes up to 6500 kg/m²·s (including particulate
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for transport of land-derived materials to the ocean floor in avalanche-like events called turbidity currents. Turbidity currents transport enormous amounts of sediment and Particulate Organic Carbon (POC) and
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of sediment and Particulate Organic Carbon (POC) and bury this in deposits below the ocean floor. They additionally convey abundant nutrients and oxygenated water masses, which together with the POC (as food
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, pressures up to 10 MPa, mass fluxes up to 6500 kg/m²·s (including particulate fluxes up to 300 kg/m²·s), gas velocities up to 1000 m/s, and heat transfer coefficients up to 35,000 W/m²·K. Under
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. Turbidity currents transport enormous amounts of sediment and Particulate Organic Carbon (POC) and bury this in deposits below the ocean floor. They additionally convey abundant nutrients and oxygenated water