A series circuit like the circuit in (Figure 1) consists of a 1.30 mH inductor, a 155 N resistor, and a 75.0 nF capacitor connected across an ac source having an rms voltage of 45.0 V and variable frequency. (a) At what angular frequencies will the current amplitude be equal to 3 of its maximum possible value? (b) At the frequencies in part (a), what are the current amplitude and the voltage amplitude across each circuit element (including the AC source)? igure 1 of 1 od b. R L

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I Review I Constants
A series circuit like the circuit in (Figure 1) consists of a
1.30 mH inductor, a 155 N resistor, and a 75.0 nF
capacitor connected across an ac source having an rms
voltage of 45.0 V and variable frequency. (a) At what
angular frequencies will the current amplitude be equal to
1
of its maximum possible value? (b) At the frequencies
Part B
Choose the equations that will allow you to find the angular frequencies in question.
Check all that apply.
3
in part (a), what are the current amplitude and the voltage
amplitude across each circuit element (including the AC
source)?
• View Available Hint(s)
VL = IXL
PAV = Vrms Irms Ccos(4)
2
Z =
R2 +
V = IZ
1
WO
VLC
Vc = IXc
Figure
1 of 1
VR = IR
Submit
d
Part C Complete previous part(s)
EXECUTE
Part D Complete previous part(s)
b
L
Part E Complete previous part(s)
Transcribed Image Text:I Review I Constants A series circuit like the circuit in (Figure 1) consists of a 1.30 mH inductor, a 155 N resistor, and a 75.0 nF capacitor connected across an ac source having an rms voltage of 45.0 V and variable frequency. (a) At what angular frequencies will the current amplitude be equal to 1 of its maximum possible value? (b) At the frequencies Part B Choose the equations that will allow you to find the angular frequencies in question. Check all that apply. 3 in part (a), what are the current amplitude and the voltage amplitude across each circuit element (including the AC source)? • View Available Hint(s) VL = IXL PAV = Vrms Irms Ccos(4) 2 Z = R2 + V = IZ 1 WO VLC Vc = IXc Figure 1 of 1 VR = IR Submit d Part C Complete previous part(s) EXECUTE Part D Complete previous part(s) b L Part E Complete previous part(s)
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