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project to study and numerically simulate multiphase fluids applied to volcanic processes. The research activity will involve different subjects: - Numerical analysis of partial differential equations
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. Their expertise is unique: fluid rheology, surface state control and physical chemistry on the IMMM side, instrumentation and acoustic signal analysis on the LAUM side. CRASH (University of Sherbrooke, Canada) has
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students with a master degree in fluid mechanics or physics (PhD degree also accepted) for conducting groundbreaking experimental research in fluid mechanics in porous materials, with application
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PhD. Offer: Design and evaluation of an opto-acoustic instrumentation for the study of loaded fluids
2 Apr 2024 Job Information Organisation/Company University of Strasbourg Research Field Technology » Instrumentation technology Researcher Profile First Stage Researcher (R1) Country France Application Deadline 13 May 2024 - 12:00 (Europe/Paris) Type of Contract Temporary Job...
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) while managing the crucial issue of pressure within the device. Project milestones Literature review on phase-change immersion set-up, with a focus on compatible fluids based on their physical
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). The LEGI carries out a wide range of activities with a common core of competences: research in fluid mechanics and transfer. A PhD position is available with following objectives: • Develop a novel two-phase
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-confined fluids. To this end, we will consider the flow of various fluids through nano-channels made from two-dimensional materials based on multi-layer graphene, hBN, MoS2 or MXene. The nanofabrication
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-pressure flows, more particularly in supercritical regimes. The applications of supercritical fluids are numerous. For example, CO2 supercritical fluid extraction is a clean and safe alternative
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liquids and semi-conducting systems. The aim is to explore interfacial coupling processes between fluids and solids. This coupling arises from the coherent energy exchange between the collective modes
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debris flows. The aim of this project is to develop a unified constitutive model to describe these debris-ice mixtures, which will link solid and fluid behavior regimes, taking into account possible phase