Lennard-Jones model: Difference between revisions
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where: | where: | ||
V(r): Potential energy of interaction betweeen two particles at a distance r; | * <math> V(r) </math> : Potential energy of interaction betweeen two particles at a distance r; | ||
* <math> \sigma </math> : Diameter (length); | |||
* <math> \epsilon </math> : well depth (energy) | |||
==References== | Reduced units: | ||
* Density, <math> \rho^* \equiv \rho \sigma^3 </math>, where <math> \rho = N/V </math> (Number of particles <math> N </math> divided by the volume <math> V </math>.) | |||
* Temperature; <math> T^* = k_B T/\epsilon$, whre $T$ is the absolute temperature and <math> k_B </math> is the [[Boltzmann]] constant | |||
==References== | |||
J. E. Lennard-Jones "Cohesion", Proc. Phys. Soc. Lond. volume 43 pages 461 (1931) | J. E. Lennard-Jones "Cohesion", Proc. Phys. Soc. Lond. volume 43 pages 461 (1931) |
Revision as of 17:56, 16 February 2007
Lennard-Jones Potential:
where:
- : Potential energy of interaction betweeen two particles at a distance r;
- : Diameter (length);
- : well depth (energy)
Reduced units:
- Density, , where (Number of particles divided by the volume .)
- Temperature; is the Boltzmann constant
References
J. E. Lennard-Jones "Cohesion", Proc. Phys. Soc. Lond. volume 43 pages 461 (1931)