Team:Valencia/PruebaDocs

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=== Fractions, matrices, multilines ===
 
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<table class="wikitable">
 
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<tr>
 
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<th>Feature</th>
 
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<th>Syntax</th>
 
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<th>How it looks rendered</th>
 
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</tr>
 
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<tr>
 
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<td>Fractions</td>
 
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<td><code>\frac{1}{2}=0.5</code></td>
 
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<td><math>\frac{1}{2}=0.5</math></td>
 
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</tr>
 
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<tr>
 
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<td>Small Fractions</td>
 
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<td><code>\tfrac{1}{2} = 0.5</code></td>
 
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<td><math>\tfrac{1}{2} = 0.5</math></td>
 
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</tr>
 
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<tr>
 
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<td>Large (normal) Fractions</td>
 
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<td><code>\dfrac{k}{k-1} = 0.5 \qquad \dfrac{2}{c + \dfrac{2}{d + \dfrac{1}{2}}} = a </code></td>
 
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<td><math>\dfrac{k}{k-1} = 0.5 \qquad \dfrac{2}{c + \dfrac{2}{d + \dfrac{1}{2}}} = a</math></td>
 
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</tr>
 
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<tr>
 
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<td>Large (nested) Fractions</td>
 
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<td><code>\cfrac{2}{c + \cfrac{2}{d + \cfrac{1}{2}}} = a</code></td>
 
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<td><math>\cfrac{2}{c + \cfrac{2}{d + \cfrac{1}{2}}} = a</math></td>
 
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</tr>
 
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<tr>
 
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<td>Binomial coefficients</td>
 
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<td><code>\binom{n}{k}</code></td>
 
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<td><math>\binom{n}{k}</math></td>
 
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</tr>
 
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<tr>
 
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<td>Small Binomial coefficients</td>
 
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<td><code>\tbinom{n}{k}</code></td>
 
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<td><math>\tbinom{n}{k}</math></td>
 
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</tr>
 
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<tr>
 
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<td>Large (normal) Binomial coefficients</td>
 
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<td><code>\dbinom{n}{k}</code></td>
 
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<td><math>\dbinom{n}{k}</math></td>
 
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</tr>
 
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<tr>
 
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<td rowspan="7">Matrices</td>
 
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<td><pre>\begin{matrix}
 
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  x & y \\
 
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  z & v
 
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\end{matrix}</pre></td>
 
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<td><math>\begin{matrix} x & y \\ z & v
 
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\end{matrix}</math></td>
 
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</tr>
 
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<tr>
 
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<td><pre>\begin{vmatrix}
 
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  x & y \\
 
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  z & v
 
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\end{vmatrix}</pre></td>
 
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<td><math>\begin{vmatrix} x & y \\ z & v
 
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\end{vmatrix}</math></td>
 
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</tr>
 
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<tr>
 
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<td><pre>\begin{Vmatrix}
 
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  x & y \\
 
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  z & v
 
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\end{Vmatrix}</pre></td>
 
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<td><math>\begin{Vmatrix} x & y \\ z & v
 
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\end{Vmatrix}</math></td>
 
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</tr>
 
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<tr>
 
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<td><pre>\begin{bmatrix}
 
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  0      & \cdots & 0      \\
 
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  \vdots & \ddots & \vdots \\
 
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  0      & \cdots & 0
 
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\end{bmatrix}</pre></td>
 
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<td><math>\begin{bmatrix} 0 & \cdots & 0 \\ \vdots
 
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& \ddots & \vdots \\ 0 & \cdots &
 
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0\end{bmatrix} </math></td>
 
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</tr>
 
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<tr>
 
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<td><pre>\begin{Bmatrix}
 
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  x & y \\
 
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  z & v
 
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\end{Bmatrix}</pre></td>
 
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<td><math>\begin{Bmatrix} x & y \\ z & v
 
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\end{Bmatrix}</math></td>
 
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</tr>
 
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<tr>
 
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<td><pre>\begin{pmatrix}
 
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  x & y \\
 
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  z & v
 
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\end{pmatrix}</pre></td>
 
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<td><math>\begin{pmatrix} x & y \\ z & v
 
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\end{pmatrix}</math></td>
 
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</tr>
 
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<tr>
 
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<td><pre>
 
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\bigl( \begin{smallmatrix}
 
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  a&b\\ c&d
 
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\end{smallmatrix} \bigr)
 
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</pre></td>
 
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<td><math>
 
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\bigl( \begin{smallmatrix}
 
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  a&b\\ c&d
 
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\end{smallmatrix} \bigr)
 
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</math></td>
 
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</tr>
 
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<tr>
 
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<td>Case distinctions</td>
 
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<td><pre>
 
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f(n) =
 
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\begin{cases}
 
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  n/2,  & \mbox{if }n\mbox{ is even} \\
 
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  3n+1, & \mbox{if }n\mbox{ is odd}
 
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\end{cases}</pre></td>
 
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<td><math>f(n) =
 
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\begin{cases}
 
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  n/2,  & \mbox{if }n\mbox{ is even} \\
 
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  3n+1, & \mbox{if }n\mbox{ is odd}
 
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\end{cases} </math></td>
 
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</tr>
 
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<tr>
 
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<td rowspan="2">Multiline equations</td>
 
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<td><pre>
 
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\begin{align}
 
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f(x) & = (a+b)^2 \\
 
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      & = a^2+2ab+b^2 \\
 
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\end{align}
 
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</pre></td>
 
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<td><math>
 
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\begin{align}
 
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f(x) & = (a+b)^2 \\
 
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      & = a^2+2ab+b^2 \\
 
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\end{align}
 
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</math></td>
 
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</tr>
 
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<tr>
 
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<td><pre>
 
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\begin{alignat}{2}
 
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f(x) & = (a-b)^2 \\
 
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      & = a^2-2ab+b^2 \\
 
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\end{alignat}
 
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</pre></td>
 
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<td><math>
 
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\begin{alignat}{2}
 
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f(x) & = (a-b)^2 \\
 
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      & = a^2-2ab+b^2 \\
 
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\end{alignat}
 
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</math></td>
 
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</tr>
 
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<tr>
 
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<td>Multiline equations <small>(must define number of colums used ({lcr}) <small>(should not be used unless needed)</small></small></td>
 
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<td><pre>
 
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\begin{array}{lcl}
 
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  z        & = & a \\
 
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  f(x,y,z) & = & x + y + z 
 
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\end{array}</pre></td>
 
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<td><math>\begin{array}{lcl}
 
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  z        & = & a \\
 
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  f(x,y,z) & = & x + y + z 
 
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\end{array}</math></td>
 
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</tr>
 
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<tr>
 
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<td>Multiline equations (more)</td>
 
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<td><pre>
 
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\begin{array}{lcr}
 
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  z        & = & a \\
 
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  f(x,y,z) & = & x + y + z   
 
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\end{array}</pre></td>
 
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<td><math>\begin{array}{lcr}
 
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  z        & = & a \\
 
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  f(x,y,z) & = & x + y + z   
 
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\end{array}</math></td>
 
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</tr>
 
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<tr>
 
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<td>Breaking up a long expression so that it wraps when necessary.</td>
 
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<td><pre>
 
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<nowiki>
 
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<math>f(x) \,\!</math>
 
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<math>= \sum_{n=0}^\infty a_n x^n </math></nowiki></pre>
 
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<pre><nowiki><math>= a_0+a_1x+a_2x^2+\cdots</math>
 
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</nowiki>
 
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</pre>
 
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</td>
 
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<td>
 
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<math>f(x) \,\!</math> <math>= \sum_{n=0}^\infty a_n x^n </math> <math>= a_0 +a_1x+a_2x^2+\cdots</math>
 
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</td>
 
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</tr>
 
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<tr>
 
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<td>Simultaneous equations</td>
 
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<td><pre>\begin{cases}
 
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    3x + 5y +  z \\
 
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    7x - 2y + 4z \\
 
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  -6x + 3y + 2z
 
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\end{cases}</pre></td>
 
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<td><math>\begin{cases} 3x + 5y + z \\ 7x - 2y + 4z \\ -6x + 3y + 2z \end{cases}</math></td>
 
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</tr>
 
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<tr>
 
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<td>Arrays</td>
 
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<td><pre>
 
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\begin{array}{|c|c||c|} a & b & S \\
 
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\hline
 
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0&0&1\\
 
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0&1&1\\
 
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1&0&1\\
 
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1&1&0\\
 
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\end{array}
 
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</pre></td>
 
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<td><math>
 
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\begin{array}{|c|c||c|} a & b & S \\
 
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\hline
 
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0&0&1\\
 
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0&1&1\\
 
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1&0&1\\
 
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1&1&0\\
 
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\end{array}
 
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</math></td>
 
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</tr>
 
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</table>
 
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<html>
<html>
   <div align=center>
   <div align=center>

Latest revision as of 16:45, 13 August 2009


UPV[http://www.upv.es], VALENCIA TEAM 2009





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