In Figure P15-14, the turns ratio is (n=5, L=120 mathrm{mH}), and (R_{mathrm{L}}=1.5 mathrm{k} Omega). Find (i_{mathrm{IN}}(t)) and

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In Figure P15-14, the turns ratio is \(n=5, L=120 \mathrm{mH}\), and \(R_{\mathrm{L}}=1.5 \mathrm{k} \Omega\). Find \(i_{\mathrm{IN}}(t)\) and \(v_{2}(t)\) when \(v_{1}(t)=100\)
\(\sin 377 t \mathrm{~V}\). Use Multisim to verify your results.

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The Analysis And Design Of Linear Circuits

ISBN: 9781119913023

10th Edition

Authors: Roland E. Thomas, Albert J. Rosa, Gregory J. Toussaint

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