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@@ -146,12 +146,12 @@ $$
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$$\Delta \gamma_h=-\eta\cfrac{\partial E_k}{\partial \gamma_h} = -\eta e_h$$
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## 5.15
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-$$\begin{align*}
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+$$\begin{aligned}
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e_h&=-\frac{\partial {E_k}}{\partial{b_h}}\cdot \frac{\partial{b_h}}{\partial{\alpha_h}}
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\\&=-\sum_{j=1}^l \frac{\partial {E_k}}{\partial{\beta_j}}\cdot \frac{\partial{\beta_j}}{\partial{b_h}}f^{\prime}(\alpha_h-\gamma_h)
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\\&=\sum_{j=1}^l w_{hj}g_j f^{\prime}(\alpha_h-\gamma_h)
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\\&=b_h(1-b_h)\sum_{j=1}^l w_{hj}g_j
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-\end{align*}$$
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+\end{aligned}$$
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[推导]:参见5.13
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## 5.16
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