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\begin{aligned}
&U=50 \\
&R=5 \\
&C_{1}=20 \mu F=\left(2 \cdot 10^{-5}\right) F \\
&R_{1}=12 \\
&L_{2}=10 m H=\left(1 \cdot 10^{-2}\right) H
\end{aligned}
warunek rezonansu
\begin{aligned}
&X_{L}=X_{C} \\
&\omega \cdot 0.01=\frac{1}{\omega \cdot 2 \cdot 10^{-5}} \\
&\omega=2236.068
\end{aligned}
\begin{aligned}
&Z_{L}=1 \mathrm{j} \cdot \omega \cdot L_{2}=22.361 \mathrm{i} \quad \\
&Z_{C}=-1 \mathrm{j} \cdot \frac{1}{\omega \cdot C_{1}}=-22.361 \mathrm{i} \\
&I_{1}=\frac{U}{R+Z_{C}+\frac{R_{1} \cdot Z_{L}}{R_{1}+Z_{L}}}=1.414+1.714 \mathrm{i} \\
&I_{2}=I_{1} \cdot \frac{R_{1}}{R_{1}+Z_{L}}=1.03-0.206 \mathrm{i} \\
&I_{3}=I_{1} \cdot \frac{Z_{L}}{R_{1}+Z_{L}}=0.383+1.92 \mathrm{i} \\
\end{aligned}
sprawdzenie
\begin{aligned}
&U-I_{1} \cdot R-I_{1} \cdot Z_{C}-I_{3} \cdot R_{1}=0 \\
&U-I_{1} \cdot R-I_{1} \cdot Z_{C}-I_{2} \cdot Z_{L}=0
\end{aligned}