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strong emphasis on additive manufacturing, 3D printer-based system development, mechanical design, and mechatronics. The role involves extensive use of 3D printers for fabricating custom parts, modifying
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, conduct wind-tunnel-based experimental fluid mechanics studies, support CFD-driven design refinement, and analyse boundary-layer and drag-reduction performance data. The role involves close collaboration
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innovative research group focused on uncovering how cells maintain internal quality control and how these processes break down in disease. Our research centers on the molecular mechanisms of autophagy and
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measurement) and materials characterization (e.g., SEM, spectroscopy). Solid understanding of heat transfer mechanisms, including conduction, convection, and radiation, preferably in soft or porous materials
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The School of Mechanical & Aerospace Engineering (MAE) is a robust, dynamic and multi-disciplinary international research community comprising of world-class scientists and bright students. MAE
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energy storage and conversion, with a focus on solid-state batteries, interfacial chemistry, electro-chemo-mechanics, and novel energy materials. Key Responsibilities: Conduct advanced research on solid
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plant pathology assays in plant–microbe interaction systems Collaborate with interdisciplinary teams to validate candidate genes and underlying mechanisms Job Requirements PhD in Plant Biology, Molecular
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of the mechanisms behind model improvements, and paleoclimate simulations and climate projections. Should be familiar with CESM, WRF, SPEAR, CM1, and theoretical atmospheric models, as well as the land modules within
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reduction, hydrogenation and coouping reactions. The role will focus on catalyst design, mechanism study, and supervising students. Key Responsibilities: Synthesis model catalysts Evaluate the catalytic
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Requirements PhD in Mechanical Engineering, Energy Engineering, Chemical Engineering, or related field. Strong expertise in CFD (ANSYS Fluent / OpenFOAM or equivalent) for heat transfer and fluid flow