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| <span>\[{e^{{\rm{ - }}\Delta {\rm{r}}{G^{' \circ }}/RT}}\]</span> | | <span>\[{e^{{\rm{ - }}\Delta {\rm{r}}{G^{' \circ }}/RT}}\]</span> |
| <span>$$\hat p=\sigma(\theta^T \cdot x_b)=\frac{1}{1+\mathbf{e}^{-{\theta^{T \cdot x_b}}}}$$</span> | | <span>$$\hat p=\sigma(\theta^T \cdot x_b)=\frac{1}{1+\mathbf{e}^{-{\theta^{T \cdot x_b}}}}$$</span> |
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| | | |
| + | <span>\[f{\rm{(r) = }}\frac{{{\rm{ }}{{\rm{e}}^{ - {\Delta _r}{G^{' \circ /RT}}}}}}{{{\rm{ 1 + }}{{\rm{e}}^{ - {\Delta _r}{G^{' \circ /RT}}}} + {\rm{ }}\sum {{r^'} \in {R_N}\backslash {{\left\{ r \right\}}^{{\rm{ }}{{\rm{e}}^{ - {\Delta _r}{G^{' \circ /RT}}}}}}} }}\]</span> |
| </body> | | </body> |
| </html> | | </html> |