Given: • V₂ = 20 20° V f = 22 kHz . R = 390 02 L = 3.9 mH C = 20 nF (a) Find the resistance and net reactance for the impedance in Ohms (22). Ζ = R Ω + j X+ kΩ Z = Ω + j (b) Find the magnitude and phase angle for the impedance in Ohms (22) and degrees (ᵒ). Z = |Z <0° Ω Z= 2 Vs (c) Also, find the circuit current in polar coordinates. | = ||| < 0° mA m R 390 Ω Ω 20 20° V 22 kHz Ω mA XL 3.9 mH XC 20 nF

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Given:
• V₂ = 20 20° V
f = 22 kHz
.
• R = 390 0
L = 3.9 mH
C = 20 nF
(a) Find the resistance and net reactance for the impedance in Ohms (22).
Ζ = R Ω + j X+ kΩ
Z =
Ω + j
(b) Find the magnitude and phase angle for the impedance in Ohms (22) and degrees (ᵒ).
Z = |Z <0° Ω
Z=
2
Vs
(c) Also, find the circuit current in polar coordinates.
|=|| 20° mA
m
R
390 02
Ω
20 20° V
22 kHz
Ω
mA
XL
3.9 mH
XC
20 nF
Transcribed Image Text:Given: • V₂ = 20 20° V f = 22 kHz . • R = 390 0 L = 3.9 mH C = 20 nF (a) Find the resistance and net reactance for the impedance in Ohms (22). Ζ = R Ω + j X+ kΩ Z = Ω + j (b) Find the magnitude and phase angle for the impedance in Ohms (22) and degrees (ᵒ). Z = |Z <0° Ω Z= 2 Vs (c) Also, find the circuit current in polar coordinates. |=|| 20° mA m R 390 02 Ω 20 20° V 22 kHz Ω mA XL 3.9 mH XC 20 nF
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