Initial program 15.4
\[\sqrt[3]{\frac{g}{2 \cdot a}}\]
- Using strategy
rm Applied cbrt-div0.9
\[\leadsto \color{blue}{\frac{\sqrt[3]{g}}{\sqrt[3]{2 \cdot a}}}\]
Taylor expanded around -inf 62.8
\[\leadsto \color{blue}{e^{\frac{1}{3} \cdot \left(\log -1 - \log \left(\frac{-1}{g}\right)\right)} \cdot e^{\frac{1}{3} \cdot \left(\log \left(\frac{-1}{a}\right) + \log \frac{-1}{2}\right)}}\]
Simplified0.8
\[\leadsto \color{blue}{\sqrt[3]{\frac{-1}{a}} \cdot \left(\sqrt[3]{\frac{-1}{2}} \cdot \sqrt[3]{g}\right)}\]
- Using strategy
rm Applied cbrt-div0.9
\[\leadsto \color{blue}{\frac{\sqrt[3]{-1}}{\sqrt[3]{a}}} \cdot \left(\sqrt[3]{\frac{-1}{2}} \cdot \sqrt[3]{g}\right)\]
Applied associate-*l/0.9
\[\leadsto \color{blue}{\frac{\sqrt[3]{-1} \cdot \left(\sqrt[3]{\frac{-1}{2}} \cdot \sqrt[3]{g}\right)}{\sqrt[3]{a}}}\]
Final simplification0.9
\[\leadsto \frac{\left(\sqrt[3]{\frac{-1}{2}} \cdot \sqrt[3]{g}\right) \cdot \sqrt[3]{-1}}{\sqrt[3]{a}}\]