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modelling—particularly using the Discrete Element Method (DEM). Proficiency in programming tools such as Python and Matlab is expected, as well as a good command of written and spoken English. Additional
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methods based on discrete element modelling (DEM) provide accurate access to particle trajectories and velocities, their use requires significant computing time, which makes their direct deployment
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, remoulding, and pore-pressure variation. This project will develop a new computational model to simulate seabed–mooring interaction at the particle scale. It will combine the Discrete Element Method (DEM
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Posting Summary Logo Posting Number RTF00285PO25 USC Market Title Post Doctoral Fellow Link to USC Market Title https://uscjobs.sc.edu/titles/156387 Business Title (Internal Title) Post Doctoral
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of mesons through the analysis of Dalitz decays (e.g., η(′) → e⁺e⁻γ) to test the vector dominance model (VDM). Another key aspect is understanding the mechanism of particle mass generation by studying ρ−a
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Computational Fluid Dynamics. While traditional methods rely on a discretization of the Navier-Stokes equations at a macroscopic level, the LB method considers the fluid at a kinetic level. Capturing the dynamics
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within a Research Infrastructure? No Offer Description The spatial arrangement of nanoparticles on porous materials is critically important across many applications. However, there is currently no method