3 papers
cond-mat.soft2026
Numerical analysis of capillarity-driven thinning rheometry for polydisperse polymer solutions
Isaac Pincus, Vincenzo Calabrese, Simon J. Haward +1
Liquid bridges of polymer solutions that are self-thinning due to the action of capillarity undergo a transition from Newtonian-like linear thinning to exponential elastocapillary…
cond-mat.soft2026
Pore-shape and its spatial organization control intrinsic permeability of porous media
Wenqiao Jiao, Isaac Pincus, Chiara Recalcati +2
The structure of a porous material, and in particular its spatial variability, is known to control the intrinsic permeability of the system. We investigate how dead-end pores influ…
cond-mat.soft2024
Flow dichroism of DNA can be quantitatively predicted via coarse-grained molecular simulations
Isaac Pincus, Alison Rodger, J. Ravi Prakash
We demonstrate the use of multiscale polymer modelling to quantitatively predict DNA linear dichroism (LD) in shear flow. LD is the difference in absorption of light polarised alon…