Difference between revisions of "Main Page"

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(Getting started)
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</math>
 
</math>
  
<math>
+
<amsmath>
 
   \mathbf{A}=
 
   \mathbf{A}=
 
  \begin{array}{ccccccccc}
 
  \begin{array}{ccccccccc}
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   \frac{\partial s_n(t_{mn})}{\partial \theta}&  \frac{\partial s_n(t_{mn})}{\partial \delta}&  \frac{\partial s_n(t_{mn})}{\partial \lambda}&  \frac{\partial s_n(t_{mn})}{\partial h}&  \frac{\partial s_n(t_{mn})}{\partial x}&  \frac{\partial s_n(t_{mn})}{\partial y}& \frac{\partial s_n(t_{mn})}{\partial w_1}&  \frac{\partial s_n(t_{mn})}{\partial w_k}
 
   \frac{\partial s_n(t_{mn})}{\partial \theta}&  \frac{\partial s_n(t_{mn})}{\partial \delta}&  \frac{\partial s_n(t_{mn})}{\partial \lambda}&  \frac{\partial s_n(t_{mn})}{\partial h}&  \frac{\partial s_n(t_{mn})}{\partial x}&  \frac{\partial s_n(t_{mn})}{\partial y}& \frac{\partial s_n(t_{mn})}{\partial w_1}&  \frac{\partial s_n(t_{mn})}{\partial w_k}
 
   \end{array}
 
   \end{array}
</math>
+
</amsmath>
 
[[TEST:test]]
 
[[TEST:test]]

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<amsmath>

  \mathbf{A}=
\begin{array}{ccccccccc}
\frac{\partial s_1(t_1)}{\partial \theta}&  \frac{\partial s_1(t_1)}{\partial \delta}&  \frac{\partial s_1(t_1)}{\partial \lambda}&   \frac{\partial s_1(t_1)}{\partial h}&   \frac{\partial s_1(t_1)}{\partial x}&  \frac{\partial s_1(t_1)}{\partial y}& \frac{\partial s_1(t_1)}{\partial w_1} &\frac{\partial s_1(t_1)}{\partial w_k}\\
   \frac{\partial s_1(t_{m1})}{\partial \theta}&  \frac{\partial s_1(t_{m1})}{\partial \delta}&  \frac{\partial s_1(t_{m1})}{\partial \lambda}&   \frac{\partial s_1(t_{m1})}{\partial h}&   \frac{\partial s_1(t_{m1})}{\partial x}&  \frac{\partial s_1(t_{m1})}{\partial y}& \frac{\partial s_1(t_{m1})}{\partial w_1}&  \frac{\partial s_1(t_{m1})}{\partial w_k}\\
 \frac{\partial s_n(t_1)}{\partial \theta}&  \frac{\partial s_n(t_1)}{\partial \delta}&  \frac{\partial s_n(t_1)}{\partial \lambda}&   \frac{\partial s_n(t_1)}{\partial h}&   \frac{\partial s_n(t_1)}{\partial x}&  \frac{\partial s_n(t_1)}{\partial y}& \frac{\partial s_n(t_1)}{\partial w_1}&  \frac{\partial s_n(t_1)}{\partial w_k}\\
 \frac{\partial s_n(t_{mn})}{\partial \theta}&  \frac{\partial s_n(t_{mn})}{\partial \delta}&  \frac{\partial s_n(t_{mn})}{\partial \lambda}&   \frac{\partial s_n(t_{mn})}{\partial h}&   \frac{\partial s_n(t_{mn})}{\partial x}&  \frac{\partial s_n(t_{mn})}{\partial y}& \frac{\partial s_n(t_{mn})}{\partial w_1}&  \frac{\partial s_n(t_{mn})}{\partial w_k}
 \end{array}

</amsmath> TEST:test