In a certain series RLC circuit, Irms = 9.00 A, AV, = 155 V, and the current leads the voltage by 33.0⁰. rms (a) What is the total resistance (in 02) of the circuit? Q L = (b) Calculate the reactance (in 0) of the circuit (X-Xc). Q (c) What If? If the voltage in the circuit is maintained by an AC source operating at f= 60.0 Hz and the resonant frequency of the circuit is fo= 75.0 Hz, what are the values of C (in uF) and L (in mH) in the circuit? C= UF mH
In a certain series RLC circuit, Irms = 9.00 A, AV, = 155 V, and the current leads the voltage by 33.0⁰. rms (a) What is the total resistance (in 02) of the circuit? Q L = (b) Calculate the reactance (in 0) of the circuit (X-Xc). Q (c) What If? If the voltage in the circuit is maintained by an AC source operating at f= 60.0 Hz and the resonant frequency of the circuit is fo= 75.0 Hz, what are the values of C (in uF) and L (in mH) in the circuit? C= UF mH
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![In a certain series RLC circuit, Irms
=
9.00 A, AV,
= 155 V, and the current leads the voltage by 33.0⁰.
rms
(a) What is the total resistance (in 02) of the circuit?
Q
L =
(b) Calculate the reactance (in 0) of the circuit (X-Xc).
Q
(c) What If? If the voltage in the circuit is maintained by an AC source operating at f= 60.0 Hz and the resonant
frequency of the circuit is fo= 75.0 Hz, what are the values of C (in μF) and L (in mH) in the circuit?
C=
UF
mH](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F5eba2ec3-73d4-47ff-bb64-c4022783b383%2Fcbb2b3d3-d695-425c-932a-647c667dfe66%2Fmz10ni_processed.jpeg&w=3840&q=75)
Transcribed Image Text:In a certain series RLC circuit, Irms
=
9.00 A, AV,
= 155 V, and the current leads the voltage by 33.0⁰.
rms
(a) What is the total resistance (in 02) of the circuit?
Q
L =
(b) Calculate the reactance (in 0) of the circuit (X-Xc).
Q
(c) What If? If the voltage in the circuit is maintained by an AC source operating at f= 60.0 Hz and the resonant
frequency of the circuit is fo= 75.0 Hz, what are the values of C (in μF) and L (in mH) in the circuit?
C=
UF
mH
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