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remove png line (not needed anymore)
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@ -492,9 +492,7 @@ Borelsche Menge:
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\int 1_{B \cap M} * \frac{1}{4} d(x_1,x_2)
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\int 1_{B \cap M} * \frac{1}{4} d(x_1,x_2)
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\end{align}
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\end{align}
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Schnittmenge aus $B$ und $M$:
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Schnittmenge aus $B$ und $M$:
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\begin{center}
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\includegraphics[scale=0.3]{graph.png}
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\end{center}
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\begin{align}
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\begin{align}
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B \cap M = \{(x_1, x_2) \in \mathbb{R}^2\ | (0 \leq x_1 \leq \frac{1}{4} \wedge 0 \leq x_2 \leq
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B \cap M = \{(x_1, x_2) \in \mathbb{R}^2\ | (0 \leq x_1 \leq \frac{1}{4} \wedge 0 \leq x_2 \leq
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2) \vee (\frac{1}{4} \leq x_1 \leq 2 \wedge 0 \leq x_2 \leq \frac{1}{2x_1})\}\\
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2) \vee (\frac{1}{4} \leq x_1 \leq 2 \wedge 0 \leq x_2 \leq \frac{1}{2x_1})\}\\
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@ -510,6 +508,8 @@ ist
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\varepsilon_P X = \sum_{\omega \in \Omega} X(\omega)P\{\omega\}
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\varepsilon_P X = \sum_{\omega \in \Omega} X(\omega)P\{\omega\}
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\end{align}
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\end{align}
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\newpage
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\section{Marginaldichte - Beispielrechnung}
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\section{Marginaldichte - Beispielrechnung}
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\[
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\[
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f(x_1,x_2)=
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f(x_1,x_2)=
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