The values of the components in the circuit are L = 195 mH, R, = 390 N, R, = 280 2, and E = 10.0 V. Use downward as the positive direction for all currents. Find... R1 R2 L (a) immediately after the switch is closed (after being open a long time)... ..the current through the inductor I = 0 ...the current through R, I, = 14.93 (b) a long time after the switch has been closed... ..the current through the inductor I = 25.64 ...the current through R, I, = 0 (c) immediately after the switch is open (after being closed a long time)... ..the current through the inductor = 25.64 ..the current through R, = 10.7146 X mA

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Chapter1: Units, Trigonometry. And Vectors
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I need to find the current through R2 on part c. Thank you!

The values of the components in the circuit are L = 195 mH, R, = 390 N, R, = 280 2, and E = 10.0 V. Use downward as the positive direction for all currents. Find...
R1
R2
L
(a) immediately after the switch is closed (after being open a long time)...
..the current through the inductor
I = 0
...the current through R,
I, = 14.93
(b) a long time after the switch has been closed...
..the current through the inductor
I = 25.64
...the current through R,
I, = 0
(c) immediately after the switch is open (after being closed a long time)...
..the current through the inductor
= 25.64
..the current through R,
= 10.7146
X mA
Transcribed Image Text:The values of the components in the circuit are L = 195 mH, R, = 390 N, R, = 280 2, and E = 10.0 V. Use downward as the positive direction for all currents. Find... R1 R2 L (a) immediately after the switch is closed (after being open a long time)... ..the current through the inductor I = 0 ...the current through R, I, = 14.93 (b) a long time after the switch has been closed... ..the current through the inductor I = 25.64 ...the current through R, I, = 0 (c) immediately after the switch is open (after being closed a long time)... ..the current through the inductor = 25.64 ..the current through R, = 10.7146 X mA
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