Difference between revisions of "Sandbox"

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(Math test)
 
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== Math test ==
 
== Math test ==
$N=20*sqrt(D)$
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Use LaTeX syntax.<br />
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Warning: the Preview doesn't work for mathematical expressions. You have to Publish (or Save page).
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$N=20*\sqrt{D}$
  
 
$$
 
$$
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   \frac{e^{-x^2}}{x\sqrt{\pi}}\sum_{n=0}^\infty (-1)^n \frac{(2n)!}{n!(2x)^{2n}}
 
   \frac{e^{-x^2}}{x\sqrt{\pi}}\sum_{n=0}^\infty (-1)^n \frac{(2n)!}{n!(2x)^{2n}}
 
$$
 
$$
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<math>
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N=\max\left(40+2\sqrt{D},\sqrt{40^{2}+\left(D+2\right)^{2}}\right)\label{eq:N_popsize}
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</math>
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== Text + Image Map ==
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<imagemap>
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Image:Flow_chart.png|right|thumb|280px|Standard APS flow chart
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rect 6 5 368 122 [[Initialisation|Initialisation]]
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rect 198 234 563 346 [[Selection|Selection]]
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rect 199 426 562 539 [[Expansion|Expansion]]
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rect 198 617 563 732 [[Contraction|Contraction]]
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rect 197 810 564 925 [[Local search|Local search]]
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rect 134 547 268 565 [[Improvement|Improvement]]
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rect 133 738 268 752 [[Improvement|Improvement]]
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desc none
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</imagemap>
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The main idea was to define ...<br />
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== Test ==
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Latest revision as of 19:02, 16 July 2013

Math test

Use LaTeX syntax.

Warning: the Preview doesn't work for mathematical expressions. You have to Publish (or Save page).

$N=20*\sqrt{D}$

$$ \operatorname{erfc}(x) = \frac{2}{\sqrt{\pi}} \int_x^{\infty} e^{-t^2}\,dt = \frac{e^{-x^2}}{x\sqrt{\pi}}\sum_{n=0}^\infty (-1)^n \frac{(2n)!}{n!(2x)^{2n}} $$

\( N=\max\left(40+2\sqrt{D},\sqrt{40^{2}+\left(D+2\right)^{2}}\right)\tag{1} \)

Text + Image Map

The main idea was to define ...

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...

Test

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