master > master: 10.1 (b) Übertragungsfehler
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							| @ -6482,13 +6482,13 @@ Das Hauptziel hier ist, eine Variant anzubieten, gegen die man seine Versuche ve | ||||
|                                 &\psi(\sum_{i=1}^{d}c_{i}w_{i})=\zerovector\\ | ||||
|                                 &&\text{wegen Linearität von $\psi$}\\ | ||||
|                             &\Longrightarrow | ||||
|                                 &\sum_{i=1}^{d}c_{i}w_{i}\in\ker(\psi)=\{\zerovector\}\\ | ||||
|                                 &&\text{wegen \uline{Injektivität} von $\psi$ + \cite[Lemma~6.1.4]{sinn2020}}\\ | ||||
|                                 &\sum_{i=1}^{d}c_{i}w_{i}\in\ker(\psi)\\ | ||||
|                             &\Longrightarrow | ||||
|                                 &\sum_{i=1}^{d}c_{i}w_{i}=\zerovector\\ | ||||
|                             &\sum_{i=1}^{d}c_{i}w_{i}=\zerovector\\ | ||||
|                             &&\text{wegen \uline{Injektivität} von $\psi$ + \cite[Lemma~6.1.4]{sinn2020}}\\ | ||||
|                             &\Longrightarrow | ||||
|                                 &c_{1},c_{2},\ldots,c_{d}=0_{K}\\ | ||||
|                                 &&\text{weil ${(x_{1},x_{2},\ldots,x_{d})}$ linear unabhängig ist.}\\ | ||||
|                                 &&\text{weil ${(w_{1},w_{2},\ldots,w_{d})}$ linear unabhängig ist.}\\ | ||||
|                     \end{longmathe} | ||||
| 
 | ||||
|                 Damit gilt | ||||
|  | ||||
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