1. [-/2 Points] DETAILS MY NOTES Power supplies used in medical devices and in the vicinity of patients must pass several stringent tests, including a leakage test to ensure that touching the external enclosure of the power supply does not result in electric shock. The figure shows the circuit diagram for the measuring device used in the leakage test, with R₁ = 10.0 kn, R₁₂ = 1.20 kQ, and C₁ = 19.0 nF. a R₂ R₁ www V b The leads a and b are attached to the opposite sides of the power supply enclosure. If there is a potential difference between the sides, power is delivered to the circuit at 60.0 Hz. The potential difference across the capacitor is measured by an ideal voltmeter in the measuring device. (a) What is the impedance of the circuit in the measuring device (in (2)? Ω (b) If the maximum allowable leaked rms voltage drop measured by the voltmeter is 33.0 V, what is the rms current (in mA) in the branch of the circuit containing the capacitor for this voltage? MA Submit Answer

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1. [-/2 Points]
DETAILS
MY NOTES
Power supplies used in medical devices and in the vicinity of patients must pass several stringent tests, including a leakage test to ensure that touching the
external enclosure of the power supply does not result in electric shock. The figure shows the circuit diagram for the measuring device used in the leakage test,
with R₁ = 10.0 kn, R₁₂ = 1.20 kQ, and C₁ = 19.0 nF.
a
R₂
R₁
www
V
b
The leads a and b are attached to the opposite sides of the power supply enclosure. If there is a potential difference between the sides, power is delivered to the
circuit at 60.0 Hz. The potential difference across the capacitor is measured by an ideal voltmeter in the measuring device.
(a) What is the impedance of the circuit in the measuring device (in (2)?
Ω
(b) If the maximum allowable leaked rms voltage drop measured by the voltmeter is 33.0 V, what is the rms current (in mA) in the branch of the circuit
containing the capacitor for this voltage?
MA
Submit Answer
Transcribed Image Text:1. [-/2 Points] DETAILS MY NOTES Power supplies used in medical devices and in the vicinity of patients must pass several stringent tests, including a leakage test to ensure that touching the external enclosure of the power supply does not result in electric shock. The figure shows the circuit diagram for the measuring device used in the leakage test, with R₁ = 10.0 kn, R₁₂ = 1.20 kQ, and C₁ = 19.0 nF. a R₂ R₁ www V b The leads a and b are attached to the opposite sides of the power supply enclosure. If there is a potential difference between the sides, power is delivered to the circuit at 60.0 Hz. The potential difference across the capacitor is measured by an ideal voltmeter in the measuring device. (a) What is the impedance of the circuit in the measuring device (in (2)? Ω (b) If the maximum allowable leaked rms voltage drop measured by the voltmeter is 33.0 V, what is the rms current (in mA) in the branch of the circuit containing the capacitor for this voltage? MA Submit Answer
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