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Apply now Job no:501879 Work type:Full time Location:Hobart Categories:Research Focused Calculate extreme heat indices for remote communities Undertake and publish high-quality research
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aviation fuel thru gasification processes. However, these high-temperature technologies remain costly, energy-intensive, and sensitive to the heterogeneity of raw materials. Smoldering or slow solid
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advance low-temperature Cu/dielectric hybrid bonding for fine-pitch, high-density interconnects by developing and validating a new flow with reliable dielectric sealing under ≤200 °C. The role integrates
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About the Project An exciting PhD project on the effects of heat transfer of transitional compressible boundary layers will be carried out under the UK Hypersonics Doctoral Network, which has been
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corridors and limits the reliability of design evaluations. Pedestrian heat stress during the warm season is rising significantly also in the continental climate of Nordic cities. In the cold season, winter
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advanced battery technologies with strong translational and commercialization potential. The project focuses on next-generation batteries in three parallel research directions: extreme-temperature (high
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Technical Skills Required: Strong understanding of HVAC/data center cooling systems (CRAC/CRAH units, in-row cooling, rear-door heat exchangers, chilled water systems). Knowledge of power distribution (PDUs
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profile: "Heat and Mass Transfer" (GIE). 2nd year, "Fluid Mechanics" (GITM). 2nd year, "Modeling I: Mechanics of Continuum Media" (MUIM). 1st year, "Exploration and Evaluation of Mineral Deposits" (MUMS
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