Initial program 23.6
\[\frac{\frac{\frac{\left(\alpha + \beta\right) \cdot \left(\beta - \alpha\right)}{\left(\alpha + \beta\right) + 2 \cdot i}}{\left(\left(\alpha + \beta\right) + 2 \cdot i\right) + 2.0} + 1.0}{2.0}\]
Applied simplify12.7
\[\leadsto \color{blue}{\frac{(\left(\frac{\beta + \alpha}{(i \cdot 2 + \beta)_* + \left(2.0 + \alpha\right)}\right) \cdot \left(\frac{\beta - \alpha}{(2 \cdot i + \left(\beta + \alpha\right))_*}\right) + 1.0)_*}{2.0}}\]
- Using strategy
rm Applied fma-udef12.7
\[\leadsto \frac{\color{blue}{\frac{\beta + \alpha}{(i \cdot 2 + \beta)_* + \left(2.0 + \alpha\right)} \cdot \frac{\beta - \alpha}{(2 \cdot i + \left(\beta + \alpha\right))_*} + 1.0}}{2.0}\]
- Using strategy
rm Applied add-cube-cbrt12.7
\[\leadsto \frac{\color{blue}{\left(\sqrt[3]{\frac{\beta + \alpha}{(i \cdot 2 + \beta)_* + \left(2.0 + \alpha\right)} \cdot \frac{\beta - \alpha}{(2 \cdot i + \left(\beta + \alpha\right))_*}} \cdot \sqrt[3]{\frac{\beta + \alpha}{(i \cdot 2 + \beta)_* + \left(2.0 + \alpha\right)} \cdot \frac{\beta - \alpha}{(2 \cdot i + \left(\beta + \alpha\right))_*}}\right) \cdot \sqrt[3]{\frac{\beta + \alpha}{(i \cdot 2 + \beta)_* + \left(2.0 + \alpha\right)} \cdot \frac{\beta - \alpha}{(2 \cdot i + \left(\beta + \alpha\right))_*}}} + 1.0}{2.0}\]