Use the mesh-current method to find the steady-state expression for vo(t) in the circuit seen in if v, equals 400 cos 5000t V. Write the steady-state expression for vo(t) as vo(t) = V. cos(wt+ o), where -180° << 180°. Suppose that R = 110. Part A V₂ = Find the numerical value of Vo Express your answer to three significant figures and include the appropriate units. ANSWER: Part B Find the numerical value of . Express your answer in degrees to three significant figures. ANSWER: ø= Part C V8 Find the numerical value of w. Express your answer in radians per second to three significant figures. ANSWER: rad/s 60 mH 50 2 150 is 2 μF HE + R{%

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Use the mesh-current method to find the steady-state expression for vo(t) in the circuit seen in if v, equals 400 cos 5000t V.
Write the steady-state expression for vo(t) as
vo(t) = V. cos(wt+ o), where -180° << 180°. Suppose that
R = 110.
Part A
V₂ =
Find the numerical value of Vo
Express your answer to three significant figures and include the appropriate units.
ANSWER:
Part B
Find the numerical value of .
Express your answer in degrees to three significant figures.
ANSWER:
ø=
Part C
V8
Find the numerical value of w.
Express your answer in radians per second to three significant figures.
ANSWER:
rad/s
60 mH
50 2
150 is
2 μF
HE
+
R{%
Transcribed Image Text:Use the mesh-current method to find the steady-state expression for vo(t) in the circuit seen in if v, equals 400 cos 5000t V. Write the steady-state expression for vo(t) as vo(t) = V. cos(wt+ o), where -180° << 180°. Suppose that R = 110. Part A V₂ = Find the numerical value of Vo Express your answer to three significant figures and include the appropriate units. ANSWER: Part B Find the numerical value of . Express your answer in degrees to three significant figures. ANSWER: ø= Part C V8 Find the numerical value of w. Express your answer in radians per second to three significant figures. ANSWER: rad/s 60 mH 50 2 150 is 2 μF HE + R{%
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