HRWiki:Sandbox
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- | + | Here are some examples of LaTeX output: | |
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- | + | * <pre><math>\int\limits_a^x f(\frac{\alpha}{2}\,)\,dx</math></pre> produces <math>\int\limits_a^x f(\frac{\alpha}{2}\,)\,dx</math> | |
- | ( | + | * <pre><math>\int\limits_1^\infin \frac{1}{k}\,dk</math></pre> produces <math>\int\limits_1^\infin \frac{1}{k}\,dk</math> |
- | + | * <pre><math>\sqrt{x^2+2x+1}=|x+1| - \left(\left(\frac{2x^2}{x}\right)^2\right)^2</math></pre> produces <math>\sqrt{x^2+2x+1}=|x+1| - \left(\left(\frac{2x^2}{x}\right)^2\right)^2</math> | |
- | * | + | * <pre><math>\sqrt{\sqrt{\sqrt{x}}}</math></pre> produces <math>\sqrt{\sqrt{\sqrt{x}}}</math> |
- | * | + | * <pre><math>\ E = \sum_{i=1}^N e^{- J_{ij} \sigma_i \sigma_j} </math></pre> produces <math>\ E = \sum_{i=1}^N e^{- J_{ij} \sigma_i \sigma_j} </math> |
- | * | + | * <pre><math>\left( \begin{smallmatrix} a&b \\ c&d \end{smallmatrix} \right)</math></pre> produces <math>\left( \begin{smallmatrix} a&b \\ c&d \end{smallmatrix} \right)</math> |
- | * | + | * <pre><math>\therefore</math></pre> produces <math>\therefore</math> |
- | * | + | * <pre><math>x=\frac{-b\pm\sqrt{b^2-4ac}}{2a}</math> </pre> produces <math>x=\frac{-b\pm\sqrt{b^2-4ac}}{2a}</math> |
- | + | * <pre><math>\dfrac{2}{4} = 0.5 \qquad \dfrac{2}{c + \dfrac{2}{d + \dfrac{2}{4}}} = a</math> </pre> produces <math>\dfrac{2}{4} = 0.5 \qquad \dfrac{2}{c + \dfrac{2}{d + \dfrac{2}{4}}} = a</math> | |
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Revision as of 02:45, 30 October 2009
Here are some examples of LaTeX output:
-
<math>\int\limits_a^x f(\frac{\alpha}{2}\,)\,dx</math>
produces -
<math>\int\limits_1^\infin \frac{1}{k}\,dk</math>
produces -
<math>\sqrt{x^2+2x+1}=|x+1| - \left(\left(\frac{2x^2}{x}\right)^2\right)^2</math>
produces -
<math>\sqrt{\sqrt{\sqrt{x}}}</math>
produces -
<math>\ E = \sum_{i=1}^N e^{- J_{ij} \sigma_i \sigma_j} </math>
produces -
<math>\left( \begin{smallmatrix} a&b \\ c&d \end{smallmatrix} \right)</math>
produces -
<math>\therefore</math>
produces -
<math>x=\frac{-b\pm\sqrt{b^2-4ac}}{2a}</math>
produces -
<math>\dfrac{2}{4} = 0.5 \qquad \dfrac{2}{c + \dfrac{2}{d + \dfrac{2}{4}}} = a</math>
produces