1. Using an Oscilloscope

Figure 4: Diagram showing a light bulb connected to a voltage supply with a switch. An oscilloscope is connected in parallel with the light bulb to measure its voltage (proportional to the current).
2. RL Circuit

Figure 5: Diagram showing an RL circuit, with one light bulb ( a) or two parallel light bulbs ( b) acting as the resistor (R). An oscilloscope is connected in parallel with the light bulb(s) to measure the voltage across the light bulb(s), proportional to the total current.
3. RC Circuit

Figure 6: Diagram showing a RC circuit, with one light bulb ( a) or two parallel light bulbs ( b) acting as the resistor (R). An oscilloscope is connected in parallel with the light bulb(s) to measure the voltage across the light bulb(s), proportional to the total current.
3. LC Circuit

Figure 7: Diagram showing an inductor (L) with a switch connected in parallel to a capacitor (C), which is part of a series RC circuit studied in Figure 6. The oscilloscope is now connected in parallel to the inductor to measure its voltage.
Source: Yong P. Chen, PhD, Department of Physics & Astronomy, College of Science, Purdue University, West Lafayette, IN
Capacitors (C), inductors (L),…
Chapters in this video
0:07
Overview
1:04
Principles Behind the RC/RL/LC Circuits
4:15
Using an Oscilloscope
5:06
RC Circuit
6:13
RL Circuit
7:09
LC Circuit
7:54
Applications
9:03
Summary
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