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events:2016_summer_school:gpw

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events:2016_summer_school:gpw [2018/06/16 21:36] – [Energy ripples] mwatkinsevents:2016_summer_school:gpw [2020/08/21 10:15] (current) – external edit 127.0.0.1
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 \sum_{\alpha \beta} P_{\alpha \beta} \bar{\phi}_{\alpha \beta} (\mathbf{r}) = n(\mathbf{R}) \sum_{\alpha \beta} P_{\alpha \beta} \bar{\phi}_{\alpha \beta} (\mathbf{r}) = n(\mathbf{R})
 $$ $$
-where $n(\mathbf{R})$ is the density at grid points in the cell, and $\bar{\phi}_{\alpha \beta}$ are the products of two basis functions +where $n(\mathbf{R})$ is the density at grid points in the cell, and $\bar{\phi}_{\alpha \beta}$ are the products of two basis functions.
-{{materials/collocate.bmp}}+
  
   * numerical approximation of the gradient $n(\mathbf{R}) \rightarrow \nabla n(\mathbf{R})$   * numerical approximation of the gradient $n(\mathbf{R}) \rightarrow \nabla n(\mathbf{R})$
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 {{http://ars.els-cdn.com/content/image/1-s2.0-S0010465505000615-gr003.gif}} {{http://ars.els-cdn.com/content/image/1-s2.0-S0010465505000615-gr003.gif}}
  
-avoid with higher cutoff, or GAPW methodology. Whatever you do don't change settings between simulations you want to compare.+Avoid ripples with higher cutoff, or GAPW methodology.  
 + 
 +Whatever you do don't change settings between simulations you want to compare.
  
  
events/2016_summer_school/gpw.1529184966.txt.gz · Last modified: 2020/08/21 10:14 (external edit)