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@@ -995,6 +995,8 @@ The constants can be moved in front of the integrals.
\end{equation}
\end{definition}
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\begin{definition}{Integration of the Fourier transform}
\begin{equation}
\mathcal{F}\left\{\int\limits_{t'= -\infty}^{t} \underline{f}(t') \, \mathrm{d} t' \right\} = \frac{1}{j \omega} \underbrace{\underline{F} \left(j \omega\right)}_{= \mathcal{F}\left\{\underline{f}(t)\right\}}
@@ -1002,6 +1004,8 @@ The constants can be moved in front of the integrals.
\end{equation}
\end{definition}
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\begin{excursus}{Network analysis of reactive electrical circuits}
Linear, reactive electrical networks are analysed using the Fourier transform.