An alternating source with a variable frequency, a capacitor with capacitance C, and a resistor with resistance R are connected in series. The figure gives the impedance Z of the circuit versus the driving angular frequency wd; the curve reaches an asymptote of 535 Q2, and the horizontal scale is set by Wds = 326 rad/s. The figure also gives the reactance Xc for the capacitor versus wd. What are (a) R and (b) C? Assume Z, = 428 Q. (a) Number i (b) Number i Z, Xc (S2) Z₂ 0 Z Xc wa (rad/s) Units Units @ds

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An alternating source with a variable frequency, a capacitor with capacitance C, and a
resistor with resistance R are connected in series. The figure gives the impedance Z of the
circuit versus the driving angular frequency wd; the curve reaches an asymptote of 535 Q2,
and the horizontal scale is set by Wds = 326 rad/s. The figure also gives the reactance Xc for
the capacitor versus wd. What are (a) R and (b) C?
Assume Z, = 428 Q.
(a) Number i
(b) Number
i
Z, Xc (S2)
Z₂
0
Z
Xc
wa (rad/s)
Units
Units
@ds
Transcribed Image Text:An alternating source with a variable frequency, a capacitor with capacitance C, and a resistor with resistance R are connected in series. The figure gives the impedance Z of the circuit versus the driving angular frequency wd; the curve reaches an asymptote of 535 Q2, and the horizontal scale is set by Wds = 326 rad/s. The figure also gives the reactance Xc for the capacitor versus wd. What are (a) R and (b) C? Assume Z, = 428 Q. (a) Number i (b) Number i Z, Xc (S2) Z₂ 0 Z Xc wa (rad/s) Units Units @ds
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