Download Computer Simulations in Condensed Matter: Systems: From by Mauro Ferrario (Editor), Giovanni Ciccotti (Editor), Kurt PDF

Download Computer Simulations in Condensed Matter: Systems: From by Mauro Ferrario (Editor), Giovanni Ciccotti (Editor), Kurt PDF

By Mauro Ferrario (Editor), Giovanni Ciccotti (Editor), Kurt Binder (Editor)

This finished number of lectures by way of best specialists within the box introduces and studies all appropriate desktop simulation tools and their functions in condensed topic structures. quantity 1 is an in-depth creation to an unlimited spectrum of computational innovations for statistical mechanical platforms of condensed topic. quantity 2 is a suite of state of the art surveys on numerical experiments conducted for various structures.

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Extra resources for Computer Simulations in Condensed Matter: Systems: From Materials to Chemical Biology. Volume 1

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Klein (1980) Clusters and Ising critical droplets: a renormalisation group approach. J. Phys. A 13, pp. 2775–2780 24. M. E. Fisher (1967) The theory of condensation and the critical point. Physics 3, pp. 255–283 25. M. P. Allen and D. J. Tildesley (1987) Computer Simulation of Liquids. Oxford: Clarendon 26. J. Liu and E. Luijten (2004) Stabilization of colloidal suspensions by means of highly charged nanoparticles. Phys. Rev. Lett. 93, p. 247802 27. S. Asakura and F. Oosawa (1954) On interaction between two bodies immersed in a solution of macromolecules.

Whereas the distribution is a monotonously decreasing function of cluster size at high temperatures, it becomes bimodal at temperatures around 25% above the critical temperature. The bimodal form is indicative of the formation of large clusters. It turns out to be possible to influence the cluster-size distribution by placing the pivot in a biased manner. Rather than first choosing the pivot location, a particle is selected that will become the first member of the cluster. Subsequently, the pivot is placed at random within a cubic box of linear size δ, centered around the position of this particle.

2775–2780 24. M. E. Fisher (1967) The theory of condensation and the critical point. Physics 3, pp. 255–283 25. M. P. Allen and D. J. Tildesley (1987) Computer Simulation of Liquids. Oxford: Clarendon 26. J. Liu and E. Luijten (2004) Stabilization of colloidal suspensions by means of highly charged nanoparticles. Phys. Rev. Lett. 93, p. 247802 27. S. Asakura and F. Oosawa (1954) On interaction between two bodies immersed in a solution of macromolecules. J. Chem. Phys. 22, pp. 1255–1256 28. K. Binder and E.

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