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paper:latex:equation [2022/12/23 13:15]
odagawa
paper:latex:equation [2022/12/23 13:16] (current)
odagawa
Line 61: Line 61:
 \begin{align} \begin{align}
 \begin{split} \begin{split}
-\Delta\theta_\mathrm{rad'} &= \arctan\left(\frac{\bm{a}_1\cdot \hat{\bm{r'}}}{\bm{a}_1 \cdot \hat{\bm{t}}} \right) \\+\Delta\theta_\mathrm{rad'} &= \arctan\left(\frac{\bm{a}_1 \cdot \hat{\bm{r'}}}{\bm{a}_1 \cdot \hat{\bm{t}}} \right) \\
 &= \!\begin{multlined}[t] &= \!\begin{multlined}[t]
 \arctan\left( \left. \frac{-\tan\theta_{x0}\tan\theta_{x1} - \tan\theta_{y0}\tan\theta_{y1} + \tan^2\theta_{x0} + \tan^2\theta_{y0}}{\sqrt{\tan^2\theta_{x0} + \tan^2\theta_{y0} + (\tan^2\theta_{x0} + \tan^2\theta_{y0})^2}} \right. \right. \\ \arctan\left( \left. \frac{-\tan\theta_{x0}\tan\theta_{x1} - \tan\theta_{y0}\tan\theta_{y1} + \tan^2\theta_{x0} + \tan^2\theta_{y0}}{\sqrt{\tan^2\theta_{x0} + \tan^2\theta_{y0} + (\tan^2\theta_{x0} + \tan^2\theta_{y0})^2}} \right. \right. \\
paper/latex/equation.1671801359.txt.gz ยท Last modified: 2022/12/23 13:15 by odagawa