An AC source operating at 62 Hz with a maximum voltage of 170 V is connected in series with a resistor (R = 1.2 k) and an inductor (L= 2.4 H). (a) What is the maximum value of the current in the circuit? 0.112 ✔A (b) What are the maximum values of the potential difference across the resistor and the inductor? AVR,max = 134.4 ✔ V AVL,max = 104.7 ✓ V (c) When the current is at a maximum, what are the magnitudes of the potential differences across the resistor, the inductor, and the AC source? Ave 134.4 ✓ V Av₁ = 0 V ✓ V Av source = source 134.4 (d) When the current is zero, what are the magnitudes of the potential difference across the resistor, the inductor, and the AC source? AVR=0 ✓ V AV₁ = 0 X The correct answer is not zero. V AV source = 134.4 x

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Part D please

An AC source operating at 62 Hz with a maximum voltage of 170 V is connected in series with a resistor (R
=
(a) What is the maximum value of the current in the circuit?
0.112
A
(b) What are the maximum values of the potential difference across the resistor and the inductor?
ΔV,
= 134.4
V
ΔV,
104.7
R,max
L,max
(c) When the current is at a maximum, what are the magnitudes of the potential differences across the resistor, the inductor, and the AC source?
= 134.4
V
AVR
AVL
Av
= 0
source
134.4
source
V
(d) When the current is zero, what are the magnitudes of the potential difference across the resistor, the inductor, and the AC source?
AVR
0
AVL
0
X
The correct answer is not zero. V
Av.
134.4
=
X
Your response differs from the correct answer by more than 10%. Double check your calculations. V
1.2 k) and an inductor (L = 2.4 H).
Transcribed Image Text:An AC source operating at 62 Hz with a maximum voltage of 170 V is connected in series with a resistor (R = (a) What is the maximum value of the current in the circuit? 0.112 A (b) What are the maximum values of the potential difference across the resistor and the inductor? ΔV, = 134.4 V ΔV, 104.7 R,max L,max (c) When the current is at a maximum, what are the magnitudes of the potential differences across the resistor, the inductor, and the AC source? = 134.4 V AVR AVL Av = 0 source 134.4 source V (d) When the current is zero, what are the magnitudes of the potential difference across the resistor, the inductor, and the AC source? AVR 0 AVL 0 X The correct answer is not zero. V Av. 134.4 = X Your response differs from the correct answer by more than 10%. Double check your calculations. V 1.2 k) and an inductor (L = 2.4 H).
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