Parent item: Heavy particles in turbulent flows RM-2007-GRAD-2048 Heavy point-wise Lagrangian particle evolution in homogeneous and isotropic turbulent velocity field from a 2048 cubed DNS. Trajectory
The supplied video file s661c1.avi shows the successful particle internalization event from Fig. 2 and Fig. 4 of the manuscript. The movie was recorded at 63x magnification on an Andor Neo sCMOS camer
A variety of coarse-grained (CG) models exists for simulation of proteins. An outstanding problem is the construction of a CG model with physically accurate conformational energetics rivaling all-atom
The first measurements of elliptic flow of $\mathrm{\pi}^{\pm}$, $\mathrm{K}^{\pm}$, $\mathrm{p}+\bar{\mathrm{p}}$, $\mathrm{K_{S}^{0}}$, $\Lambda+\bar{\Lambda}$, $\mathrm{\phi}$, $\mathrm{\Xi^{\mp}}$
Coarse-grained molecular dynamics (CGMD) simulation technique (MARTINI force field) is applied to monitor the aggregation of helical peptides representing the transmembrane sequence and its extension