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Recoil-growth

Consta S, Wilding N B, Frenkel D and Alexandrowicz Z 1999 Recoil growth an efficient simulation method for multi-... [Pg.2384]

Consta, S., Vlugt, T.J.H., Hoeth, J.W., Smit, B., Frenkel, D. Recoil growth algorithm for chain molecules with continuous interactions. Mol. Phys. 1999, 97, 1243-54. [Pg.75]

Z. Alexandrowicz and N. B. Wilding, Recoil Growth An Efficient Simulation Method for Multi Polymer Systems, preprint. [Pg.365]

Z. Alexandrowicz and N. B. Wilding. Recoil Growth An Efficient Simulation Method for Multi-Polymer Systems , preprint. D. A. Kofke, J. Chem. Phys., 1993, 98, 4149-4162. [Pg.1774]

Recoil growth algorithm for chain molecules with continuous interactions ... [Pg.25]

In summary, we have extended the recoil growth scheme for systems with continuous potentials. We find that in a NVT simulation RG is much more efficient thcin CBMC for long chains and high densities. However, in appendix B we have shown that RG is less suitable for parallelization using the parallel algorithm of section 2.3. We found that the standard Metropolis acceptance/rejection rule is a reasonable stochastic rule when a Lennard-Jones potential is used. [Pg.34]

In chapter 3, we discuss an alternative for CBMC (Recoil Growth, RG). One of the main disadvantages of CBMC is that when all trial segments have unfavorable energies, the growth of the chain will be terminated. In RG, two new concepts are introduced to solve this problem ... [Pg.109]

In hoofdstuk 3 wordt een alternatief voor CBMC besproken. Recoil Growth (RG). Een van de belangrijkste nadelen van CBMC is, dat op een bepaald moment alle trial-segmenten ongunstig... [Pg.113]


See other pages where Recoil-growth is mentioned: [Pg.2365]    [Pg.246]    [Pg.407]    [Pg.2365]    [Pg.340]    [Pg.1770]    [Pg.1770]    [Pg.6]    [Pg.25]    [Pg.121]   
See also in sourсe #XX -- [ Pg.3 , Pg.1770 ]




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Recoil growth algorithm for chain molecules with continuous interactions

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