(c) The circuit's switch in Figure 2(b) is in closed position for a long time before t= 0, when it is opened simultaneously at t> 0. + VR + VL l L =1H y(t) R = 2 Ohr R 10 V , t=0 5 Att> 0, VA + V -...


(c) The circuit's switch in Figure 2(b) is in closed position for a long time before t= 0, when<br>it is opened simultaneously at t> 0.<br>+ VR<br>+ VL<br>l<br>L =1H<br>y(t)<br>R = 2 Ohr<br>R<br>10 V ,<br>t=0<br>5<br>Att> 0,<br>VA<br>+ V -<br>ell<br>L =1H<br>y(t)<br>R = 2 Ohm<br>10 u(t) Vy<br>vc<br>F<br>Figure 2(b)<br>The loop equation of the circuit is<br>dy<br>+ 2 y(t) + 5 y(t)dı = 10 u(t)<br>dx<br>Determine the inductor current y(t) for t> 0.<br>

Extracted text: (c) The circuit's switch in Figure 2(b) is in closed position for a long time before t= 0, when it is opened simultaneously at t> 0. + VR + VL l L =1H y(t) R = 2 Ohr R 10 V , t=0 5 Att> 0, VA + V - ell L =1H y(t) R = 2 Ohm 10 u(t) Vy vc F Figure 2(b) The loop equation of the circuit is dy + 2 y(t) + 5 y(t)dı = 10 u(t) dx Determine the inductor current y(t) for t> 0.

Jun 11, 2022
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