Editing Ice Ih
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|<math>245.5(6)~K</math> || 1 bar || [[TIP4P/Ew]] / [[Computation of phase equilibria | free energy calculation]] || <ref name="multiple1"> </ref> | |<math>245.5(6)~K</math> || 1 bar || [[TIP4P/Ew]] / [[Computation of phase equilibria | free energy calculation]] || <ref name="multiple1"> </ref> | ||
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| <math>251 \pm 1~K </math> || 1 bar || [[Q-TIP4P/F model of water | q-TIP4P/F ]] / [[Computation of phase equilibria#Direct simulation of the two phase system | direct coexistence]]|| <ref>[http://dx.doi.org/10.1063/1.3167790 Scott Habershon, Thomas E. Markland, and David E. Manolopoulos "Competing quantum effects in the dynamics of a flexible water model", Journal of Chemical Physics '''131''' 024501 (2009)]</ref> | | <math>251 \pm 1~K </math> || 1 bar || [[Q-TIP4P/F model of water | q-TIP4P/F ]] / [[Computation of phase equilibria#Direct simulation of the two phase system | direct coexistence]]|| <ref>[http://dx.doi.org/10.1063/1.3167790 Scott Habershon, Thomas E. Markland, and David E. Manolopoulos "Competing quantum effects in the dynamics of a flexible water model", Journal of Chemical Physics '''131''' 024501 (2009)]</ref> | ||
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|<math>289~K</math> || 1 bar || [[NvdE]] || <ref>[http://dx.doi.org/10.1063/1.2360276 José L. F. Abascal, Ramón García Fernández, Carlos Vega and Marcelo A. Carignano, "The melting temperature of the six site potential model of water", Journal of Chemical Physics, '''125''' 166101 (2006)]</ref> | |<math>289~K</math> || 1 bar || [[NvdE]] || <ref>[http://dx.doi.org/10.1063/1.2360276 José L. F. Abascal, Ramón García Fernández, Carlos Vega and Marcelo A. Carignano, "The melting temperature of the six site potential model of water", Journal of Chemical Physics, '''125''' 166101 (2006)]</ref> | ||
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| <math>303\pm 8~K</math> || 1 bar || [[TIP4P/FQ model of water | TIP4P/FQ]] || <ref>[http://dx.doi.org/10.1016/j.jcrysgro.2006.04.077 Benjamin F. Nicholson, Paulette Clancy and Steven W. Rick "The interface response function and melting point of the prism interface of ice Ih using a fluctuating charge model (TIP4P-FQ)", Journal of Crystal Growth '''293''' pp. 78-85 (2006) | | <math>303\pm 8~K</math> || 1 bar || [[TIP4P/FQ model of water | TIP4P/FQ]] || <ref>[http://dx.doi.org/10.1016/j.jcrysgro.2006.04.077 Benjamin F. Nicholson, Paulette Clancy and Steven W. Rick "The interface response function and melting point of the prism interface of ice Ih using a fluctuating charge model (TIP4P-FQ)", Journal of Crystal Growth '''293''' pp. 78-85 (2006) </ref> | ||
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|<math>360~K</math> || 1 bar || [[Becke-Lee-Yang-Parr functional | BLYP-D]] || <ref | |<math>360~K</math> || 1 bar || [[TTM3-F]] / [[Becke-Lee-Yang-Parr functional | BLYP-D]] || <ref>[http://dx.doi.org/10.1063/1.3573375 Soohaeng Yoo and Sotiris S. Xantheas "Communication: The effect of dispersion corrections on the melting temperature of liquid water", Journal of Chemical Physics '''134''' 121105 (2011)]</ref> | ||
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| <math>411 \pm 4~K</math> ||10,000 bar || [[Becke-Lee-Yang-Parr functional |BLYP]] || <ref name="multiple2"> [http://dx.doi.org/10.1063/1.3153871 Soohaeng Yoo, Xiao Cheng Zeng, and Sotiris S. Xantheas "On the phase diagram of water with density functional theory potentials: The melting temperature of ice Ih with the Perdew–Burke–Ernzerhof and Becke–Lee–Yang–Parr functionals", Journal of Chemical Physics '''130''' 221102 (2009)] </ref> | | <math>411 \pm 4~K</math> ||10,000 bar || [[Becke-Lee-Yang-Parr functional |BLYP]] || <ref name="multiple2"> [http://dx.doi.org/10.1063/1.3153871 Soohaeng Yoo, Xiao Cheng Zeng, and Sotiris S. Xantheas "On the phase diagram of water with density functional theory potentials: The melting temperature of ice Ih with the Perdew–Burke–Ernzerhof and Becke–Lee–Yang–Parr functionals", Journal of Chemical Physics '''130''' 221102 (2009)] </ref> |