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- W3166763944 abstract "• The molecular nature of the drag force is revealed using Newtonian mechanics. • The new formulation reproduces the Stokes law with validity at the nanoscopic scale. • The formulation is general for bodies with arbitrary shapes, sizes, and compositions. The molecular nature of the drag force exerted by a fluid on a body is revealed from a fundamental perspective. To do this, the Newtonian and Brownian theories are employed to simulate the falling of a body with atomic structure in a liquid with the explicit and implicit presence of the fluid molecules, respectively. The body reaches a terminal velocity in the way predicted for macroscopic spherical bodies by the Stokes law. In this respect, the present approach shows the hydrodynamic limit for very small objects. The values of the viscosity are found in good agreement with the experimental data. The present formulation not only complements the continuous-medium approach, traditionally employed to study fluids, but also opens new ways in the investigation of fluids and their effects on bodies with different shapes, sizes, and compositions, due to the atomic nature of the simulations." @default.
- W3166763944 created "2021-06-22" @default.
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- W3166763944 date "2021-09-01" @default.
- W3166763944 modified "2023-10-14" @default.
- W3166763944 title "Molecular nature of the drag force" @default.
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- W3166763944 doi "https://doi.org/10.1016/j.molliq.2021.116466" @default.
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