GO An ac generator with emf amplitude ℰ m = 220 V and operating at frequency 400 Hz causes oscillations in a series RLC circuit having R = 220 Ω, L = 150 mH, and C = 24.0 µ F. Find (a) the capacitive reactance Xc , (b) the impedance Z , and (c) the current amplitude I . A second capacitor of the same capacitance is then connected in series with the other components. Determine whether the values of (d) X C , (e) Z , and (f) I increase, decrease, or remain the same.
GO An ac generator with emf amplitude ℰ m = 220 V and operating at frequency 400 Hz causes oscillations in a series RLC circuit having R = 220 Ω, L = 150 mH, and C = 24.0 µ F. Find (a) the capacitive reactance Xc , (b) the impedance Z , and (c) the current amplitude I . A second capacitor of the same capacitance is then connected in series with the other components. Determine whether the values of (d) X C , (e) Z , and (f) I increase, decrease, or remain the same.
GO An ac generator with emf amplitude ℰm = 220 V and operating at frequency 400 Hz causes oscillations in a series RLC circuit having R = 220 Ω, L = 150 mH, and C = 24.0 µF. Find (a) the capacitive reactance Xc, (b) the impedance Z, and (c) the current amplitude I. A second capacitor of the same capacitance is then connected in series with the other components. Determine whether the values of (d) XC, (e) Z, and (f) I increase, decrease, or remain the same.
In the given circuit the AC source has
@ = 100 rad s¯¹. Considering the inductor and
capacitor to be ideal, what will be the current I
flowing through the circuit?
100 μF 100 Ω
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0.50 Η 50 Ω
200 V
A series RLC circuit has resistance R = 18.0 Ω, inductive reactance XL = 38.0 Ω, and capacitive reactance
XC = 24.0 Ω.
If the maximum voltage across the resistor is
ΔVR = 165 V,
find the maximum voltage across the inductor and the capacitor.
(a)
the maximum voltage across the inductor (in V)
V
(b)
the maximum voltage across the capacitor (in V)
V
(c)
What is the maximum current in the circuit (in A)?
A
(d)
What is the circuit's impedance (in Ω)?
Ω
A series RLC circuit consists of a 60 resistor, a 2.2 mH inductor, and
a 720 nF capacitor. It is connected to an oscillator with a peak voltage
of 4.0 V.
You may want to review (Pages 915-918).
Part A
Determine the impedance at frequency 3000 Hz.
15| ΑΣΦ
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▾ Part B
Determine the peak current at frequency 3000 Hz.
VE ΑΣΦ
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Part C
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|Π| ΑΣΦ
C
Determine phase angle at frequency 3000 Hz.
Express your answer to the nearest degree.
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H
p
?
?
?
Ω
A
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