Interaction of compact space debris clouds of repulsive forces similar to the
Lennard-Jones intermolecular forces. Computer experiments show that as a
Nonlocal heat transfer in two-dimensional Lennard-Jones crystal: Application of the molecular dynamics method-dimensional crystal consisting of particles interacting by means of the
Lennard-Jones potential with argon parameters
Nonlocal heat transfer in two-dimensional Lennard-Jones crystal: Application of the molecular dynamics method-dimensional crystal consisting of particles interacting by means of the
Lennard-Jones potential with argon parameters
On the limit of the thermodynamic stability of superheated crystals and mechanisms of its loss types of the chemical bond. The following interaction
potentials are utilized: the
Lennard-Jones Moire Patterns in Graphene on Pt(111) Substrate: Computer Simulation. Longitudinal deformations in graphene are small. The model uses the
Lennard–
Jones potential to calculate
Diffusion time-scale invariance, randomization processes, and memory effects in Lennard-Jones liquids. The approach was tested on
Lennard-Jones (LJ) liquids. The diffusion coefficients of LJ liquids were calculated
Diffusion processes and memory effects for two various systems:
Lennard-Jones fluids and the model of the Brownian particle in a one
Application the particle method in problems of mechanics deformable media of forces on the contact areas between the mineral particles. Two-parameter
potential Lennard-Jones MODELING of HYDRAULIC FRACTURING on the BASIS of the PARTICLE METHOD into it is solved. Analysis of the results shows that the use of the modified
Lennard-Jones potential for describing