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Laser-beam interactions with metallic systems are a complex interplay between thermal, momentum and topological changes. Further complications arise when sufficient power density is achieved and a
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Familiarity with CFD applications working on industrial related projects using high performance computing clusters would also be advantageous Strong foundation in Fluid Dynamics Strong prior experience in CFD
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or adhesion applications (maximum 3 points). 5. Proven experience in laboratory experimental techniques related to rheologically complex materials or structured fluids (maximum 2 points). Additional comments In
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complex fluids; cholesteric LCs which are twisted or helical NLCs and smectic LCs that are layered LCs, along with more ordered and exotic LC phases such as columnar, twist-bend, splay-bend phases. LCs have
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and revise operations procedures. Fluid Systems Maintenance (30%) Perform maintenance, troubleshooting, and repair of fluid system facilities. Able to perform more complex and diversified technical
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acoustic discretion of surface vessels and submarines. They will also collaborate with the IEMN to design the prototype and the experimental protocol to be tested in heavy fluid Where to apply Website https
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Review Fluids (2025) 10, 053604. Keywords: numerical simulations, mechanics, complex fluids, foam, porous/granular media Where to apply E-mail olivier.pitois@univ-eiffel.fr Requirements Research
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of A/Prof Patrick Burr, please visit https://www.patrickburr.com/group At UNSW, you will join a vibrant materials research community within the School of Mechanical and Manufacturing Engineering and the
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Background Laser-beam interactions with metallic systems are a complex interplay between thermal, momentum and topological changes. Further complications arise when sufficient power density is
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. Landslides are complex, gravity-driven flows that exhibit both solid-like and fluid-like behaviour, and their accurate prediction is essential for natural-hazard assessment and risk mitigation. The project