International audienceMonte Carlo simulations of heterogeneous systems of tin at liquid–vapour equilibrium have been performed at several temperatures from 600 to 1500 K, using a modified embedded atom model potential. Surface tension of the corresponding planar interfaces has been evaluated using the test area method. Calculation results are in good agreement with experiments presenting a maximum deviation of 10% from experiments. In addition, the Monte Carlo simulations provide a temperature coefficient (the derivative of the surface tension in regard with temperature) in reasonable agreement with the experimental coefficient
Surface tension is central to many daily and industrial activities, ranging from washing with soap, ...
International audienceMonte Carlo simulations of heterogeneous systems of copper at liquid-vapor equ...
International audienceMonte Carlo simulations of heterogeneous systems of copper at liquid-vapor equ...
International audienceMonte Carlo simulations of heterogeneous systems of tin at liquid–vapour equil...
International audienceMonte Carlo simulations of heterogeneous systems of tin at liquid–vapour equil...
International audienceMonte Carlo simulations of heterogeneous systems of tin at liquid–vapour equil...
International audienceMonte Carlo simulations of heterogeneous systems of tin at liquid–vapour equil...
International audienceMonte Carlo simulations of heterogeneous systems of tin at liquid–vapour equil...
International audienceMonte Carlo simulations of heterogeneous systems of tin at liquid–vapour equil...
Monte Carlo simulations of heterogeneous systems of copper at liquid-vapor equilibrium have been per...
The surface tension of molten tin was determined by a set of self-developed digital equipment with s...
The surface tension of molten tin was determined by a set of self-developed digital equipment with s...
The surface tension of molten tin has been determined by a set of a self-developed digital equipment...
International audienceMonte Carlo simulations of heterogeneous systems of copper at liquid-vapor equ...
International audienceMonte Carlo simulations of heterogeneous systems of copper at liquid-vapor equ...
Surface tension is central to many daily and industrial activities, ranging from washing with soap, ...
International audienceMonte Carlo simulations of heterogeneous systems of copper at liquid-vapor equ...
International audienceMonte Carlo simulations of heterogeneous systems of copper at liquid-vapor equ...
International audienceMonte Carlo simulations of heterogeneous systems of tin at liquid–vapour equil...
International audienceMonte Carlo simulations of heterogeneous systems of tin at liquid–vapour equil...
International audienceMonte Carlo simulations of heterogeneous systems of tin at liquid–vapour equil...
International audienceMonte Carlo simulations of heterogeneous systems of tin at liquid–vapour equil...
International audienceMonte Carlo simulations of heterogeneous systems of tin at liquid–vapour equil...
International audienceMonte Carlo simulations of heterogeneous systems of tin at liquid–vapour equil...
Monte Carlo simulations of heterogeneous systems of copper at liquid-vapor equilibrium have been per...
The surface tension of molten tin was determined by a set of self-developed digital equipment with s...
The surface tension of molten tin was determined by a set of self-developed digital equipment with s...
The surface tension of molten tin has been determined by a set of a self-developed digital equipment...
International audienceMonte Carlo simulations of heterogeneous systems of copper at liquid-vapor equ...
International audienceMonte Carlo simulations of heterogeneous systems of copper at liquid-vapor equ...
Surface tension is central to many daily and industrial activities, ranging from washing with soap, ...
International audienceMonte Carlo simulations of heterogeneous systems of copper at liquid-vapor equ...
International audienceMonte Carlo simulations of heterogeneous systems of copper at liquid-vapor equ...