An electromagnetic coil with L = 200 mH carries a current that varies with time according to I(t) = 2.0 A sin(62 s1. t). What is the equation/expression for the voltage induced on the coil? . OV(t) = -12.4 V sin(62 s ¹. t) OV(t) = 0.4 V sin (62 s ¹. t) OV(t)=-620 V sin (62 s ¹. t) 1 OV(t) = 124V cos(62 s ¹. t) . OV(t)= -24.8 V. cos(62 s 1 ¹. t)

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=
.
An electromagnetic coil with L 200 mH carries a current that varies with time
according to /(t) = 2.0 A sin(62 s1. t). What is the equation/expression for the
voltage induced on the coil?
OV(t) = -12.4 V sin(62 s ¹. t)
OV(t) = 0.4 V sin (62 s ¹. t)
-1
OV(t)=-620 V sin(62 s ¹. t)
OV(t) = 124V · cos(62 s ¹. t)
-1
-
.
-1
OV(t) = -24.8 V · cos(62 s¯¹. t)
S
Transcribed Image Text:Listen = . An electromagnetic coil with L 200 mH carries a current that varies with time according to /(t) = 2.0 A sin(62 s1. t). What is the equation/expression for the voltage induced on the coil? OV(t) = -12.4 V sin(62 s ¹. t) OV(t) = 0.4 V sin (62 s ¹. t) -1 OV(t)=-620 V sin(62 s ¹. t) OV(t) = 124V · cos(62 s ¹. t) -1 - . -1 OV(t) = -24.8 V · cos(62 s¯¹. t) S
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