Uploaded November 2017 | Updated September 2026, 3 weeks ago
In this video, I am given a circuit with an AC voltage source and a resistor, an inductor, and a capacitor in series. From the given information, I do the following:
1) Calculate the current (1:08)
2) Calculate the power factor (4:56)
3) Calculate average power dissipated by circuit (5:25)
4) Calculate average power delivered by the source (6:15)
5) Calculate the voltages across each component (7:08)
6) Confirm Kirchoff's Voltage Law by showing that the sum of the voltages across the components is equal to the voltage of the source (11:40)
David Williams
elen.ca
Intro: Those are the actual bells on my bikes.
Outro: Hexbug Racer by Rachael Pauls
In this video, I am given a circuit with an AC voltage source and a resistor, an inductor, and a capacitor in series. From the given information, I do the following:
1) Calculate the current (1:08)
2) Calculate the power factor (4:56)
3) Calculate average power dissipated by circuit (5:25)
4) Calculate average power delivered by the source (6:15)
5) Calculate the voltages across each component (7:08)
6) Confirm Kirchoff's Voltage Law by showing that the sum of the voltages across the components is equal to the voltage of the source (11:40)
David Williams
elen.ca
Intro: Those are the actual bells on my bikes.
Outro: Hexbug Racer by Rachael Pauls










