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will be part of a team working overall on the implementation of 5D ED to solve and map the structures within multiphased particles during reactions and during changes in the environment. Each team
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Job description : ACER is excited to announce open rank positions for post-doctoral researchers dedicated to advancing the fields of Carbon Negative technology, Capture methods, Utilization processes, and Storage solutions. Successful candidates will have the opportunity to engage in...
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20th June 2025 Languages English English English The Department of Physics has a vacancy for a Postdoc position in multiphase flow in porous media Apply for this job See advertisement This is NTNU
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project within the SusMax network focused on developing interpretable machine-learning frameworks for kinetic multiphase reaction-network discovery in the catalytic conversion of renewable feedstocks
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continuum modelling and finite-element simulations of multicomponent, multiphase electrochemical systems. • Ability to manage own academic research and associated activities • Previous experience
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to lead a project related to the transport of bacteria in porous media and multiphase flow. A PhD degree in engineering or earth science is needed. 75% - Conduct laboratory experiments related
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modelling and finite-element simulations of multicomponent, multiphase electrochemical systems. Ability to manage own academic research and associated activities Previous experience of contributing
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will be part of a team working overall on the implementation of 5D ED to solve and map the structures within multiphased particles during reactions and during changes in the environment. Each team
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phenomena Create new reduced-order models and submodels related to fluid flow, heat transfer, thermochemistry, and electrochemistry in multiphase systems Use modeling tools such as computational fluid
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effort on active research projects and publish and present research results. Research work will focus on Computation Fluid Dynamics (CFD) models involving multiphase reacting flow simulations with emphasis