Clarify
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05.tex
8
05.tex
@ -669,12 +669,16 @@ ohne die Primfaktorzerlegung explizit zu kennen.
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\begin{align}
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\begin{align}
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f(x) &= q_1(x)· g(x)+r_1(x)&&\text{mit }\deg r_1 < \deg g\label{eq:Euklid_1}\\
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f(x) &= q_1(x)· g(x)+r_1(x)&&\text{mit }\deg r_1 < \deg g\label{eq:Euklid_1}\\
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g(x) &= q_2(x)·r_1(x)+r_2(x)&&\text{mit }\deg r_2 < \deg r_1\label{eq:Euklid_2}\\
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g(x) &= q_2(x)·r_1(x)+r_2(x)&&\text{mit }\deg r_2 < \deg r_1\label{eq:Euklid_2}\\
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r_1(x)&= q_3(x)·r_2(x)+r_3(x)&&\text{mit }\deg r_3 < \deg r_2 \\
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r_2(x)&= q_4(x)·r_3(x)+r_4(x)&&\text{mit }\deg r_4 < \deg r_3 \\
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r_3(x)&= q_5(x)·r_4(x)+r_5(x)&&\text{mit }\deg r_5 < \deg r_4 \\
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r_4(x)&= q_6(x)·r_5(x)+r_6(x)&&\text{mit }\deg r_6 < \deg r_5 \\
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&\qquad\vdots&&\qquad\vdots\nonumber\\
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&\qquad\vdots&&\qquad\vdots\nonumber\\
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\intertext{denn da die Grade immer kleiner werden, muss die Division irgendwann aufgehen}
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r_{n-2}(x) &= q_n(x)· r_{n-1}(x)+r_n(x)&&\text{mit } \deg r_{n} < \deg r_{n-1}\label{eq:Euklid_3}\\
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r_{n-2}(x) &= q_n(x)· r_{n-1}(x)+r_n(x)&&\text{mit } \deg r_{n} < \deg r_{n-1}\label{eq:Euklid_3}\\
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\intertext{und zuletzt}
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r_{n-1}(x) &= q_{n+1}(x)· r_n(x)\label{eq:Euklid_4}
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r_{n-1}(x) &= q_{n+1}(x)· r_n(x)\label{eq:Euklid_4}
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\end{align}
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\end{align}
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denn da die Grade immer kleiner werden, muss die Division irgendwann aufgehen.
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\end{bsp}
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\end{bsp}
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\begin{satz}
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\begin{satz}
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