An AC circuit is composed of a serial connection of: a resistor with resistance 50 N, a coil with inductance 0.3 H and a capacitor with capacitance 15 µF. The circuit is connected to an AC voltage source with amplitude 25 V and frequency 50 Hz. Determine the amplitude of the electric current in the circuit and a phase difference between the voltage and the current. R=50 2 C=15 µF L=0.3 H u U.-25 V f=50 Hz Hi guys! Here is something you can practice with. Simplify the circuit above. The final answer is RLC circuit the amplitude of the current is approximate: /m = 0.2 A. %3D The phase difference between the voltage.

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An AC circuit is composed of a serial
connection of:
a resistor with resistance 50 0,
a coil with inductance 0.3 H
and a capacitor with capacitance 15 µF.
The circuit is connected to an AC voltage
source with amplitude 25 V and frequency 50
Hz. Determine the amplitude of the electric
current in the circuit and a phase difference
between the voltage and the current.
R=50 2
C=15 µF
omH
L=0.3 H
U.-25 V
f=50 Hz
Hi guys! Here is something you can practice
with. Simplify the circuit above. The final
answer is
RLC circuit the amplitude of the current is
approximate: /m = 0.2 A.
%3D
The phase difference between the voltage
and the current is about: p = -67°.
%3D
Transcribed Image Text:An AC circuit is composed of a serial connection of: a resistor with resistance 50 0, a coil with inductance 0.3 H and a capacitor with capacitance 15 µF. The circuit is connected to an AC voltage source with amplitude 25 V and frequency 50 Hz. Determine the amplitude of the electric current in the circuit and a phase difference between the voltage and the current. R=50 2 C=15 µF omH L=0.3 H U.-25 V f=50 Hz Hi guys! Here is something you can practice with. Simplify the circuit above. The final answer is RLC circuit the amplitude of the current is approximate: /m = 0.2 A. %3D The phase difference between the voltage and the current is about: p = -67°. %3D
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