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the project timeframe, which consists of the following responsibilities: Explore different numerical models that can capture droplets physical behavior under both steady and transient state, at scales ranging
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Are you passionate about developing numerical algorithms or high-performance software for scientific computing? Do you have expertise in numerical linear algebra or experience with large-scale
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highly accurate and efficient computational model by integrating the newly developed approaches into the numerical program developed in the ‘OceanCoupling ’ project. We would like the successful applicant
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numerical algorithms or high-performance software for scientific computing? Do you have expertise in numerical linear algebra or experience with large-scale computing and want to broaden your skills? Would
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model by integrating the newly developed approaches into the numerical program developed in the ‘OceanCoupling ’ project. We would like the successful applicant to start in the first quarter of 2026
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degree in Mechanical or Vehicle Engineering or the related fields 3-year research experience in combustion, emission, or thermofluid modelling. Expertise in numerical simulation methods, particularly
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. Meeting the project deliverables within the project timeframe, which consists of the following responsibilities: Explore different numerical models that can capture droplets physical behavior under both
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systems and developing new design methods. Key Responsibilities: Conduct experiments on innovative structure systems Conduct numerical modelling Assess existing design codes Propose new improved design
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processes to the urban scale through numerical modeling of greening strategies in two cities, Toulouse (France) and Berlin (Germany), to assess the impact of the two types of green envelopes on carbon
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simulated wave conditions. Perform numerical study of the model test. Analyze and interpret data to make informed recommendations for costal protection system design and optimization Writing and publication