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- The '''Born-Green equation''' is given by: ...61231%29188%3A1012%3C10%3AAGKTOL%3E2.0.CO%3B2-9 M. Born and Herbert Sydney Green "A General Kinetic Theory of Liquids I: The Molecular Distribution Function ...847 bytes (126 words) - 18:49, 6 September 2007
- ...en-Kubo relations''' <ref>[http://dx.doi.org/10.1063/1.1740082 Melville S. Green "Markoff Random Processes and the Statistical Mechanics of Time-Dependent P .../1.481610 Debra J. Searles and Denis J. Evans "The fluctuation theorem and Green–Kubo relations", Journal of Chemical Physics '''112''' pp. 9727-9735 (2000) ...2 KB (271 words) - 16:33, 22 December 2009
Page text matches
- The '''Born-Green equation''' is given by: ...61231%29188%3A1012%3C10%3AAGKTOL%3E2.0.CO%3B2-9 M. Born and Herbert Sydney Green "A General Kinetic Theory of Liquids I: The Molecular Distribution Function ...847 bytes (126 words) - 18:49, 6 September 2007
- ...archy''' consists of distribution functions, named after Bogolyubov, Born, Green, [[John G. Kirkwood | Kirkwood]] and Yvon. #[http://dx.doi.org/10.1098/rspa.1946.0093 M. Born and H. S. Green "A General Kinetic Theory of Liquids. I. The Molecular Distribution Functio ...1 KB (160 words) - 15:19, 27 May 2010
- ...en-Kubo relations''' <ref>[http://dx.doi.org/10.1063/1.1740082 Melville S. Green "Markoff Random Processes and the Statistical Mechanics of Time-Dependent P .../1.481610 Debra J. Searles and Denis J. Evans "The fluctuation theorem and Green–Kubo relations", Journal of Chemical Physics '''112''' pp. 9727-9735 (2000) ...2 KB (271 words) - 16:33, 22 December 2009
- The critical point is highlighted by a red spot, and the green spots represent the ...408 bytes (60 words) - 12:09, 8 March 2010
- ...yl-3-methylimidazolium hexafluorophosphate from Monte Carlo simulations", Green Chemistry '''2''' pp. 112-118 (2002)]</ref> ...532 bytes (62 words) - 17:52, 20 February 2014
- ...[[critical points |critical point]] is highlighted by a red spot, and the green spot represents the ...482 bytes (68 words) - 14:33, 16 June 2011
- ==Green-Kubo relation== :''Main article: [[Green-Kubo relations]]'' ...3 KB (478 words) - 12:05, 23 June 2015
- ...med Makradi, and Salim Belouettar "Diffusion and viscosity of liquid tin: Green-Kubo relationship-based calculations from molecular dynamics simulations", ...886 bytes (110 words) - 13:39, 22 May 2015
- ...mined by equilibrium MD simulations following the [[Green-Kubo relations | Green-Kubo]] formalism. ...2 KB (318 words) - 16:48, 16 October 2017
- ...i.org/10.1063/1.4906085 Alexandros Chremos, Emmanouil Glynos and Peter F. Green "Structure and dynamical intra-molecular heterogeneity of star polymer melt ...1 KB (118 words) - 11:55, 3 July 2017
- ...[[integral equations |integral equation]] (Ref. 1) and the Yvon, and Born-Green ...30%2819461231%29188%3A1012%3C10%3AAGKTOL%3E2.0.CO%3B2-9 M. Born and H. S. Green "A General Kinetic Theory of Liquids. I. The Molecular Distribution Functio ...3 KB (429 words) - 18:27, 6 November 2013
- ...roll "Stochastic rotation dynamics. I. Formalism, Galilean invariance, and Green-Kubo relations", Physical Review E '''67''' 066705 (2003)]</ref>. ...3 KB (478 words) - 12:27, 10 November 2009
- *[[Green-Kubo relations]] ...2 KB (240 words) - 14:24, 1 October 2015
- *[[Green's theorem]] ...5 KB (628 words) - 17:52, 24 May 2016
- |[[Molecular dynamics]], [[Monte Carlo]], [[Green-Kubo relations | Green-Kubo]] formalism ...9 KB (1,012 words) - 08:53, 5 June 2020
- *[[Born-Green equation]] ...4 KB (437 words) - 11:46, 12 January 2020
- ...the red line represents an attractive implementation of the model, and the green line a repulsive implementation. ...5 KB (737 words) - 00:20, 31 July 2021
- ...following is a schematic for the interaction between atom <math>i</math> (green) and atom <math>j</math> (orange). Here we show the atoms having five Trot ...13 KB (1,890 words) - 22:04, 7 September 2020