Answer:
C)
volts
Step-by-step explanation:
f = frequency of oscillator = 1 kHz = 1000 Hz
= 12 Volts
L = Inductance of Inductor = 5 mH = 0.005 H
= Inductive reactance
Inductive reactance is given as
=

=

= Capacitive reactance
Capacitive reactance is given as


Impedance of the circuit is given as



Rms Current flowing is given as


A
Rms potential difference across the resistor is given as
volts