Explicit expression for the Stokes-Einstein relation for pure Lennard-Jones liquids.
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Rayleigh limit and fragmentation of multiply charged Lennard-Jones clusters: Can charged clusters provide clues to investigate the stability of electrospray droplets?System-size corrections for self-diffusion coefficients calculated from molecular dynamics simulations: The case of CO2, n-alkanes, and poly(ethylene glycol) dimethyl ethers.Molecular hydrodynamics: Vortex formation and sound wave propagation.Breakdown of the Stokes-Einstein relation in pure Lennard-Jones fluids: From gas to liquid via supercritical states.Molecular insights into the boundary conditions in the Stokes-Einstein relation.Explicit expressions of self-diffusion coefficient, shear viscosity, and the Stokes-Einstein relation for binary mixtures of Lennard-Jones liquids.
P2860
Explicit expression for the Stokes-Einstein relation for pure Lennard-Jones liquids.
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Explicit expression for the Stokes-Einstein relation for pure Lennard-Jones liquids.
@en
Explicit expression for the Stokes-Einstein relation for pure Lennard-Jones liquids.
@nl
type
label
Explicit expression for the Stokes-Einstein relation for pure Lennard-Jones liquids.
@en
Explicit expression for the Stokes-Einstein relation for pure Lennard-Jones liquids.
@nl
prefLabel
Explicit expression for the Stokes-Einstein relation for pure Lennard-Jones liquids.
@en
Explicit expression for the Stokes-Einstein relation for pure Lennard-Jones liquids.
@nl
P2860
P1433
P1476
Explicit expression for the Stokes-Einstein relation for pure Lennard-Jones liquids
@en
P2093
Norikazu Ohtori
P2860
P304
P356
10.1103/PHYSREVE.91.012111
P407
P577
2015-01-07T00:00:00Z