MP Board · Class 10 · Science · ElectricityState Ohm's law. Describe an activity to verify Ohm's law experimentally. Draw a labeled circuit diagram and the expected V-I graph.
Step-by-Step Solution
Ohm's Law\nOhm's law states that the electric current flowing through a metallic wire is directly proportional to the potential difference $V$ across its ends, provided its temperature remains constant.\nMathematically: $V \propto I$ or $V = IR$, where $R$ is resistance.
Experimental Verification\nTo verify Ohm's law, we set up an electric circuit.
Apparatus Required
- A resistance wire (or resistor)
- An ammeter (to measure current)
- A voltmeter (to measure potential difference)
- A battery or cell
- A plug key
- Connecting wires
Circuit Diagram and Setup
- Connect the resistance wire in series with the ammeter, battery, and plug key.
- Connect the voltmeter in parallel across the ends of the resistance wire.
- Ensure the positive terminals of both meters are connected to the positive terminal of the battery.
Procedure
- Close the key so that current starts flowing in the circuit.
- Note down the reading of the ammeter ($I$) and the voltmeter ($V$).
- Introduce one more cell in the circuit to change the potential difference. Note down the new readings of $V$ and $I$.
- Repeat this process by using different numbers of cells one by one.
- Calculate the ratio $V/I$ for each set of readings.
Observations and Calculations
- It is observed that the ratio $V/I$ is nearly constant for all readings.
- When a graph is plotted between the potential difference ($V$) along the x-axis and current ($I$) along the y-axis, we obtain a straight line passing through the origin.
Conclusion\nThis straight line graph confirms that current is directly proportional to the potential difference, thus verifying Ohm's law.
💡 Study Guide: This question tests core syllabus concepts from Electricity. For formulas, key summaries, and mock exam reference guides, read the full Electricity Revision Notes.