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Job Purpose To carry out research relevant to the research project HiPOVor: Modelling of high-power vortex induced turbulence in free-space and fluid dynamic based optical propagation modelling
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The »Grid-free Methods« department at the Fraunhofer Institute for Industrial Mathematics ITWM focuses on the modeling and efficient simulation of complex industrial problems for the design and
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Fundación para la Investigación Biomédica del Hospital Gregorio Marañón (FIBHGM) | Spain | 16 days ago
or Engineering Where to apply Website https://www.iisgm.com/ofertas-de-empleo/ Requirements Research FieldOtherEducation LevelBachelor Degree or equivalent Skills/Qualifications Minimum job requirements: The
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Institut National des Sciences Appliquées de Lyon | Villeurbanne, Rhone Alpes | France | 19 days ago
introduces an important additional complexity: a strong fluid-structure coupling between the elastic pipe wall and the heavy internal fluid [6]. Depending on the frequency range and the circumferential modes
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, pressure and viscosity of fluids in complex structures, system design, exoskeleton testing, and evaluation. Within the research team, your main responsibilities will be: Modeling, simulating and design of
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Scheduled Hours 40 Position Summary Position performs routine and complex assays on blood and body fluids. Job Description Primary Duties & Responsibilities: Performs routine and complex assays
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the following skills: Professionnal skills: - Solid grounding in reactive fluid mechanics and materials - Ability to analyse complex phenomena and interpret experimental results Personal skills : - Ability
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with industrial research partners, develop innovations, and offer students excellent academic teaching in the fields systems theory, automation, and control engineering. More info at https
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mechanics, inert, anisothermal and reactive fluids, to effects related to complementary physical properties of thermal, combustion and detonation. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre
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‑order elements are often used for plasma simulation, but they remain insufficient to handle the complexity of magnetic‑field anisotropy without relying on field‑aligned meshes. Our objective is therefore