(a) Find the Thvenin or Norton equivalent circuit seen by (R_{mathrm{L}}) in Figure (mathrm{P}_{3}=4 underline{1}). (b) Select...
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(a) Find the Thévenin or Norton equivalent circuit seen by \(R_{\mathrm{L}}\) in Figure \(\mathrm{P}_{3}=4 \underline{1}\).
(b) Select a \(5 \%\) value of \(R_{\mathrm{L}}\) from Appendix \(\mathrm{G}\) that will result in an \(i_{\mathrm{L}}\) of \(1 \mathrm{~mA} \pm 5 \%\). Show that the specification is met.
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Related Book For
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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