Sort by
Refine Your Search
-
Listed
-
Category
-
Country
-
Program
-
Field
-
regeneration and Sustainable development, CUP: B49H26000290007). The model will reproduce the main electrochemical, fluid dynamic, and thermal phenomena governing the system, including the effects of mass
-
given to candidates who can start at this time). This position is funded through a project to research on roadway hydraulic structure perform, such as culvert, through computational fluid dynamics (CFD
-
, with co-supervision by dr. Hanneke Gelderblom (Eindhoven University of Technology, Department of Applied Physics and Science Education, group Fluids and Flows). Where to apply Website https
-
, oxygen, and construction materials. Depending on your background, interests, and expertise, your research may involve one or more of the following topics: Computational Fluid Dynamics (CFD
-
understood. Biofilms form a living composite with their host rock, where pore architecture and fluid flow continuously alter one another. Currently, resolving these coupled physical dynamics is fundamentally
-
of low-temperature geochemistry. Successful applicants could focus on a wide variety of topics, with examples including but not limited to water and carbon cycle dynamics, paleoclimate, and fluid-rock
-
alternatives, drug properties and interactions, and preventive health-care measures. Knowledge and prediction of physical principles, laws, their interrelationships, and applications to understanding fluid
-
of physical principles, laws, their interrelationships, and applications to understanding fluid, material, and atmospheric dynamics, and mechanical, electrical, atomic and sub-atomic structures and processes
-
. Experience in computational fluid dynamics, producing high-quality research outputs and contributing to industry or government funding opportunities will position you strongly for success in this role. To be
-
quantify the impact of nonlinearity on flow and transportin confined porous media. We put particular emphasis on three sources of nonlinearity: non-Newtonian rheology, large driving rates leading to dynamic