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| ee1:task_c9fj1si7l797equs_with_calculation [2023/08/17 06:43] – Externe Bearbeitung 127.0.0.1 | ee1:task_c9fj1si7l797equs_with_calculation [2024/02/08 14:25] (current) – mexleadmin | ||
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| \begin{align*} | \begin{align*} | ||
| \underline{Z}_L &= {\rm j} \cdot \omega \cdot L \\ | \underline{Z}_L &= {\rm j} \cdot \omega \cdot L \\ | ||
| - | &= {\rm j} \cdot 2\pi \cdot 3.5 ~\rm mH | + | &= {\rm j} \cdot 2\pi \cdot 150 ~\rm kHz \cdot 3.5 ~\rm mH |
| \end{align*} | \end{align*} | ||
| # | # | ||
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| # | # | ||
| \begin{align*} | \begin{align*} | ||
| - | \underline{Z}_L &= 3.3 ~\rm k\Omega | + | \underline{Z}_L & |
| \end{align*} | \end{align*} | ||
| # | # | ||
| Line 38: | Line 38: | ||
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| - | 3. Calculate the output voltage $|\underline{U}_\rm O|$ and the phase shot between $\underline{U}_\rm O$ and $\underline{U}_\rm I$. | + | 3. Calculate the output voltage $|\underline{U}_\rm O|$ and the phase shift between $\underline{U}_\rm O$ and $\underline{U}_\rm I$. |
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