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<!DOCTYPE html> | |
<html> | |
<head> | |
<title>MathJax AssistiveMML Test Page</title> | |
<!-- Copyright (c) 2015 The MathJax Consortium --> | |
<meta http-equiv="Content-Type" content="text/html; charset=UTF-8" /> | |
<meta name="viewport" content="width=device-width, initial-scale=1"> | |
<script type="text/x-mathjax-config"> | |
MathJax.Hub.Config({ | |
jax: ["input/TeX","output/HTML-CSS"], | |
extensions: ["tex2jax.js","MathMenu.js","MathZoom.js","AssistiveMML.js"], | |
tex2jax: {inlineMath: [["$","$"],["\\(","\\)"]]}, | |
}); | |
</script> | |
<script type="text/javascript" src="https://rawgit.com/mathjax/MathJax/develop/unpacked/MathJax.js"></script> | |
</head> | |
<body> | |
<p> | |
This page demonstrates the development version of MathJax's upcoming AssistiveMML extension, which embeds MathJax's internal | |
MathML source (visually-hidden) alongside MathJax visual output (aria-hidden). This enables most MathML-enabled screenreaders | |
to read expressions. | |
</p> | |
<p> | |
When $a \ne 0$, there are two solutions to \(ax^2 + bx + c = 0\) and they are | |
$$x = {-b \pm \sqrt{b^2-4ac} \over 2a}.$$ | |
</p> | |
<h2>The Lorenz Equations</h2> | |
<p> | |
\begin{align} | |
\dot{x} & = \sigma(y-x) \\ | |
\dot{y} & = \rho x - y - xz \\ | |
\dot{z} & = -\beta z + xy | |
\end{align} | |
</p> | |
<h2>The Cauchy-Schwarz Inequality</h2> | |
<p>\[ | |
\left( \sum_{k=1}^n a_k b_k \right)^{\!\!2} \leq | |
\left( \sum_{k=1}^n a_k^2 \right) \left( \sum_{k=1}^n b_k^2 \right) | |
\]</p> | |
</body> | |
</html> |
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