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docs: Improve consistency in MathJax examples.
Signed-off-by: Pol Dellaiera <pol.dellaiera@protonmail.com>
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@ -250,17 +250,18 @@ Note that not all servers allow embedding their content. See [our FAQ](https://d
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### MathJax
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### MathJax
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You can render *LaTeX* mathematical expressions using **MathJax**, as on [math.stackexchange.com](https://math.stackexchange.com/):
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You can render *LaTeX* mathematical expressions using [**MathJax**](https://www.mathjax.org/),
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as on [math.stackexchange.com](https://math.stackexchange.com/). Examples:
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The *Gamma function* satisfying $\Gamma(n) = (n-1)!\quad\forall n\in\mathbb N$ is via the Euler integral
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* The Euler's identity: $e^{i\pi} + 1 = 0$
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* The solution of $f(x)=ax^2+bx+c$ where $a \neq 0$ and $a, b, c \in R$ is
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$$
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$$
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x = {-b \pm \sqrt{b^2-4ac} \over 2a}.
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x = {-b \pm \sqrt{b^2-4ac} \over 2a}
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$$
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$$
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\Gamma(z) = \int_0^\infty t^{z-1}e^{-t}dt\,.
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$$
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$$
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* The *Gamma function*: $\Gamma(n) = \begin{cases}
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\displaystyle (n-1)!\quad\forall n\in\mathbb N\\
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\displaystyle \int_0^\infty t^{n-1}e^{-t}dt\quad\forall n\in\mathbb R^*_+
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\end{cases}$
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> More information about **LaTeX** mathematical expressions [here](https://meta.math.stackexchange.com/questions/5020/mathjax-basic-tutorial-and-quick-reference).
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> More information about **LaTeX** mathematical expressions [here](https://meta.math.stackexchange.com/questions/5020/mathjax-basic-tutorial-and-quick-reference).
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