Part B. Find the steady-state expression for io (at the frequency found in the previous part) if ug - 30 cos wt V. Suppose that folo cos(ut +). where -180° << 180°. Determine the values Io. w, and Express your answers using three significant figures separated by commas. Express Io in milliamperes, in radians per second, and in degrees. | ΑΣΦ. της ενός → O 1 ?

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Part B
Find the steady-state expression for io (at the frequency found in the previous part) if ug-30 cos wt V. Suppose that io lo cos(ut +).
where -180° << 180°. Determine the values Io. w, and
in radians per second, and
Express your answers using three significant figures separated by commas. Express Io in milliamperes,
in degrees.
| ΑΣΦ
Io. w. 60, 10,0
Submit
Ivec 4 →
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mA, rad/s, °
Transcribed Image Text:Part B Find the steady-state expression for io (at the frequency found in the previous part) if ug-30 cos wt V. Suppose that io lo cos(ut +). where -180° << 180°. Determine the values Io. w, and in radians per second, and Express your answers using three significant figures separated by commas. Express Io in milliamperes, in degrees. | ΑΣΦ Io. w. 60, 10,0 Submit Ivec 4 → Previous Answers Request Answer * Incorrect; Try Again; 4 attempts remaining ? mA, rad/s, °
The frequency of the sinusoidal voltage source in the circuit in
(Figure 1) is adjusted until the current i, is in phase with
Vg.
Figure
+1
108
150 Ω
www
io
HE
10 Ω
www
4 mF
<
1 of 1
2 H
Transcribed Image Text:The frequency of the sinusoidal voltage source in the circuit in (Figure 1) is adjusted until the current i, is in phase with Vg. Figure +1 108 150 Ω www io HE 10 Ω www 4 mF < 1 of 1 2 H
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