Initial program 0.0
\[\frac{NdChar}{1 + e^{\frac{-\left(\left(\left(Ec - Vef\right) - EDonor\right) - mu\right)}{KbT}}} + \frac{NaChar}{1 + e^{\frac{\left(\left(Ev + Vef\right) + EAccept\right) + \left(-mu\right)}{KbT}}}\]
- Using strategy
rm Applied add-sqr-sqrt0.0
\[\leadsto \frac{NdChar}{1 + e^{\frac{-\left(\left(\left(Ec - Vef\right) - EDonor\right) - mu\right)}{KbT}}} + \frac{NaChar}{1 + \color{blue}{\sqrt{e^{\frac{\left(\left(Ev + Vef\right) + EAccept\right) + \left(-mu\right)}{KbT}}} \cdot \sqrt{e^{\frac{\left(\left(Ev + Vef\right) + EAccept\right) + \left(-mu\right)}{KbT}}}}}\]
- Using strategy
rm Applied add-cube-cbrt0.0
\[\leadsto \frac{NdChar}{1 + e^{\color{blue}{\left(\sqrt[3]{\frac{-\left(\left(\left(Ec - Vef\right) - EDonor\right) - mu\right)}{KbT}} \cdot \sqrt[3]{\frac{-\left(\left(\left(Ec - Vef\right) - EDonor\right) - mu\right)}{KbT}}\right) \cdot \sqrt[3]{\frac{-\left(\left(\left(Ec - Vef\right) - EDonor\right) - mu\right)}{KbT}}}}} + \frac{NaChar}{1 + \sqrt{e^{\frac{\left(\left(Ev + Vef\right) + EAccept\right) + \left(-mu\right)}{KbT}}} \cdot \sqrt{e^{\frac{\left(\left(Ev + Vef\right) + EAccept\right) + \left(-mu\right)}{KbT}}}}\]
Final simplification0.0
\[\leadsto \frac{NaChar}{1 + \sqrt{e^{\frac{\left(-mu\right) + \left(\left(Vef + Ev\right) + EAccept\right)}{KbT}}} \cdot \sqrt{e^{\frac{\left(-mu\right) + \left(\left(Vef + Ev\right) + EAccept\right)}{KbT}}}} + \frac{NdChar}{e^{\left(\sqrt[3]{-\frac{\left(\left(Ec - Vef\right) - EDonor\right) - mu}{KbT}} \cdot \sqrt[3]{-\frac{\left(\left(Ec - Vef\right) - EDonor\right) - mu}{KbT}}\right) \cdot \sqrt[3]{-\frac{\left(\left(Ec - Vef\right) - EDonor\right) - mu}{KbT}}} + 1}\]