series circuit has a 50 Hz ac source, a 80 ohm resistor, a 0.50 H inductor, and a 20 uF capacitor, as shown. the rms current in the circuit is 3.5 A. in figure 22.3b, the power factor of the

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a series circuit has a 50 Hz ac source, a 80 ohm resistor, a 0.50 H inductor, and a 20 uF capacitor, as shown. the rms current in the circuit is 3.5 A. in figure 22.3b, the power factor of the circuit is closest to: i) 0.80 ii) 1.00 iii) 0.90 iv) 0.95 v) 0.85
The image depicts an electrical circuit diagram. The circuit consists of the following components arranged in a loop:

- **Voltage Source:** Represented by a circle with a sine wave symbol inside, labeled with a frequency of 50 Hz.
- **Resistor:** Denoted with a zigzag line and labeled as 80 Ω, positioned at the top of the circuit.
- **Inductor:** Drawn with a series of loops, located on the right side of the circuit.
- **Capacitor:** Illustrated by two parallel lines, placed at the bottom of the circuit, marked with a capacitance of 20 µF.

The circuit has two labeled points, 'a' and 'b,' which are connected through the components as described. This circuit likely represents an RLC (Resistor-Inductor-Capacitor) series circuit commonly studied in AC (Alternating Current) circuit analysis.
Transcribed Image Text:The image depicts an electrical circuit diagram. The circuit consists of the following components arranged in a loop: - **Voltage Source:** Represented by a circle with a sine wave symbol inside, labeled with a frequency of 50 Hz. - **Resistor:** Denoted with a zigzag line and labeled as 80 Ω, positioned at the top of the circuit. - **Inductor:** Drawn with a series of loops, located on the right side of the circuit. - **Capacitor:** Illustrated by two parallel lines, placed at the bottom of the circuit, marked with a capacitance of 20 µF. The circuit has two labeled points, 'a' and 'b,' which are connected through the components as described. This circuit likely represents an RLC (Resistor-Inductor-Capacitor) series circuit commonly studied in AC (Alternating Current) circuit analysis.
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