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$ sin \alpha = \frac{a}{c} $
$ a = sin \alpha \cdot c $
$ c = \frac{ a}{sin\alpha } $
$ cos \alpha = \frac{b}{c} $
$ b = cos \alpha \cdot c $
$ c = \frac{ b}{cos \alpha } $
$ tan \alpha = \frac{a}{b} $
$ a = tan \alpha \cdot b $
$ b = \frac{ a}{tan\alpha } $
Geometrie-Trigonometrie-Rechtwinkliges Dreieck
$sin \alpha = \frac{a}{c}$
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$a = sin \alpha \cdot c$
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$c = \frac{ a}{sin\alpha }$
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$cos \alpha = \frac{b}{c}$
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$b = cos \alpha \cdot c$
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$c = \frac{ b}{cos \alpha }$
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$tan \alpha = \frac{a}{b}$
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$a = tan \alpha \cdot b$
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$b = \frac{ a}{tan\alpha }$
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Beispiel Nr: 03
$\begin{array}{l}
\text{Gegeben:}\\\text{Winkel} \qquad \alpha \qquad [^{\circ}] \\
\text{Ankathete zu } \alpha \qquad b \qquad [m] \\
\\ \text{Gesucht:} \\\text{Hypotenuse} \qquad c \qquad [m] \\
\\ c = \frac{ b}{cos \alpha }\\ \textbf{Gegeben:} \\ \alpha=30^{\circ} \qquad b=\frac{1}{5}m \qquad \\ \\ \textbf{Rechnung:} \\
c = \frac{ b}{cos \alpha } \\
\alpha=30^{\circ}\\
b=\frac{1}{5}m\\
c = \frac{\frac{1}{5}m}{cos 30^{\circ} }\\\\c=0,231m
\\\\\\ \small \begin{array}{|l|} \hline alpha=\\ \hline 30 ° \\ \hline 1,8\cdot 10^{3} \text{'} \\ \hline 1,08\cdot 10^{5} \text{''} \\ \hline 33\frac{1}{3} gon \\ \hline 0,524 rad \\ \hline \end{array} \small \begin{array}{|l|} \hline b=\\ \hline \frac{1}{5} m \\ \hline 2 dm \\ \hline 20 cm \\ \hline 200 mm \\ \hline 2\cdot 10^{5} \mu m \\ \hline \end{array} \small \begin{array}{|l|} \hline c=\\ \hline 0,231 m \\ \hline 2,31 dm \\ \hline 23,1 cm \\ \hline 231 mm \\ \hline 2,31\cdot 10^{5} \mu m \\ \hline \end{array} \end{array}$