答案1
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要将方程分成两行,一个选项是align
使用amsmath
包,正如 daleif 在注释中所说。然后可以选择括号的大小,并根据需要固定大小:
\[\Biggl( \biggl (\Bigl( \bigl( \times \bigr) \Bigr) \biggr) \Biggr)\]
或调整大小(如第一行所示):
\[\left( x \right)\quad\left( \frac{x}{y} \right)\]
你的等式可能是:
\documentclass{article}
\usepackage {amsmath} % for align
\begin{document}
\setcounter{equation}{6} % just for this example
\begin{align}
P_{\textup{d}}^{\textup{CED}}(\gamma) & =\mathcal{Q}\left( \frac{\mathcal{Q}^{-1}(P_{\textup{fa,target}}^{\textup{CED}})\sqrt{2N}-N\gamma}{\sqrt{2N}(1+\gamma)} \right)\notag\\
& \simeq \mathcal{Q}\left(\mathcal{Q}^{-1}(P_{\textup{fa,target}}^{\textup{CED}})-\sqrt{\frac{N}{2}}\gamma\right)
\end{align}
\end{document}
答案2
做
\begin{align}
{{P}_{d}}(\gamma )&=\mathcal Q\left( \frac{{{\mathcal Q}^{-1}}({P}_{\mathrm{fa},\mathrm{target}}^{\mathrm{CED}})\sqrt{2N}-N\gamma }{\sqrt{2N}(1+\gamma )} \right)\nonumber \\
&\simeq\mathcal Q\left({{\mathcal Q}^{-1}}({P}_{\mathrm{fa},\mathrm{target}}^{\mathrm{CED}})-\sqrt{\frac{N}{2}}\gamma \right)
\end{align}
你应该得到这个: