The circuit below shows an AC power supply connected to a resistor  R = 24.2 Ω. A rectangular circuit diagram contains one resistor and three circles containing different labels. A circle containing a sinusoid shape is on the top wire of the circuit and is labeled ΔVmax. A circle containing the letter A is on the right wire. A resistor labeled R is on the bottom wire. Two wires, not part of the main rectangle, extend from either side of R and converge at a circle containing the letter V. The current through the resistor is measured by an ideal AC ammeter (has zero resistance), and the potential difference across the resistor is measured by an ideal voltmeter (has infinite resistance). If the maximum voltage supplied by the power supply is

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The circuit below shows an AC power supply connected to a resistor 
R = 24.2 Ω.
A rectangular circuit diagram contains one resistor and three circles containing different labels. A circle containing a sinusoid shape is on the top wire of the circuit and is labeled ΔVmax. A circle containing the letter A is on the right wire. A resistor labeled R is on the bottom wire. Two wires, not part of the main rectangle, extend from either side of R and converge at a circle containing the letter V.
The current through the resistor is measured by an ideal AC ammeter (has zero resistance), and the potential difference across the resistor is measured by an ideal voltmeter (has infinite resistance). If the maximum voltage supplied by the power supply is 
ΔVmax = 94.0 V,
 determine the following.
(a)
reading on the ammeter (in A)
 A
(b)
reading on the voltmeter (in V)
 
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