$${{\mathtt{x}}}^{{\mathtt{2}}}{\mathtt{\,\small\textbf+\,}}{\mathtt{96}}{\mathtt{\,\times\,}}{\mathtt{x}}{\mathtt{\,-\,}}{\mathtt{10}} = {\mathtt{0}} \Rightarrow \left\{ \begin{array}{l}{\mathtt{x}} = {\mathtt{\,-\,}}{\sqrt{{\mathtt{2\,314}}}}{\mathtt{\,-\,}}{\mathtt{48}}\\
{\mathtt{x}} = {\sqrt{{\mathtt{2\,314}}}}{\mathtt{\,-\,}}{\mathtt{48}}\\
\end{array} \right\} \Rightarrow \left\{ \begin{array}{l}{\mathtt{x}} = -{\mathtt{96.104\: \!053\: \!883\: \!222\: \!773\: \!6}}\\
{\mathtt{x}} = {\mathtt{0.104\: \!053\: \!883\: \!222\: \!773\: \!6}}\\
\end{array} \right\}$$
