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Ohm's Law - UNSOLVED PRACTICE SET

Class 10

Chapter: Electricity | Topic: Ohms Law

Study Material.
Class 10

OHM'S LAW - UNSOLVED PRACTICE SET

Topic: Ohms Law

Time: 40 mins | Marks: 30 | Difficulty: Medium

Multiple Choice Questions

Q1. Ohm's Law states that, at constant temperature:

  1. Current is proportional to resistance
  2. Voltage is inversely proportional to current
  3. Current is directly proportional to potential difference
  4. Resistance increases with voltage

Q2. The V-I graph of an ohmic conductor is:

  1. A parabola
  2. A straight line passing through the origin
  3. A straight line not through the origin
  4. A curve

Q3. A conductor has a resistance of 4 ฮฉ and a potential difference of 20 V across it. The current through it is:

  1. 80 A
  2. 5 A
  3. 0.2 A
  4. 16 A

Q4. Which of the following is an ohmic (linear) conductor?

  1. A junction diode
  2. A filament bulb at varying temperatures
  3. A nichrome wire at constant temperature
  4. A thermistor

Q5. The SI unit of resistance is:

  1. Volt
  2. Ampere
  3. Siemens
  4. Ohm

Q6. If the potential difference across a resistor is doubled, the current (for an ohmic conductor):

  1. Remains the same
  2. Halves
  3. Doubles
  4. Quadruples

Short Answer Questions

Q7. State Ohm's Law. Write its mathematical form and explain what each symbol represents.

Q8. Define 1 Ohm of resistance. A student doubles the voltage across a resistor โ€” what happens to the current? (Assume constant temperature.)

Q9. What is a V-I graph? Describe the V-I graph of
(a) an ohmic conductor and
(b) a non-ohmic device like a filament bulb. What does the slope of the V-I graph represent?

Q10. A nichrome wire is connected to a 6 V battery and draws 0.5 A.
(a) Calculate its resistance.
(b) If the wire is replaced with a copper wire of the same dimensions, will the current increase or decrease? Explain.

Q11. What is meant by a 'linear' or 'ohmic' conductor? Give two examples. Why does the filament bulb NOT obey Ohm's Law at high temperatures?

Q12. Explain why Ohm's Law is not a universal law of nature but only applies to certain conductors under certain conditions. What conditions must be maintained?

Long Answer Questions

Q13. State and explain Ohm's Law in detail. Your answer must cover:
(a) the law in words and the formula V = IR,
(b) how to verify Ohm's Law experimentally (circuit diagram description, variables measured, expected graph),
(c) what the slope of the V-I graph represents,
(d) the condition under which Ohm's Law holds (constant temperature), and
(e) two examples of ohmic and two examples of non-ohmic devices with explanations.

Q14. Describe an experiment to verify Ohm's Law for a nichrome wire. Your answer should include:
(a) the circuit diagram description (components: battery, rheostat, ammeter, voltmeter, nichrome wire),
(b) the procedure โ€” how you vary the voltage and record current,
(c) a sample data table format with V and I columns,
(d) how you plot and interpret the V-I graph,
(e) the conclusion drawn from the straight-line graph, and (f) what precaution must be taken regarding the temperature of the wire.

Q15. An electric circuit in an Indian household workshop has a heater of resistance 44 ฮฉ connected to 220 V mains.
(a) Calculate the current drawn.
(b) Using Ohm's Law, verify: if the voltage fluctuates to 200 V, what is the new current?
(c) The heater's resistance increases to 50 ฮฉ when hot. Recalculate current at 220 V.
(d) Does the heater obey Ohm's Law? Explain why resistance increases with temperature.
(e) How does a fuse use the relationship between current and resistance to protect the circuit?

Numerical / Application-Based Problems

Q16. A resistor is connected to a variable voltage supply. The following readings are obtained:   
V (volts): 2   4   6   8   10   
I (amps): 0.1 0.2 0.3 0.4 0.5
(a) Show that the resistor obeys Ohm's Law by calculating V/I for each reading.
(b) What is the resistance of the resistor?
(c) Plot (or describe) the V-I graph. What is the slope?
(d) If V = 15 V, predict the current.

Q17. Three devices are connected to 230 V mains in separate experiments:   
Device A: current = 2 A   
Device B: current = 0.5 A   

Device C: current = 10 A
(a) Calculate the resistance of each device.
(b) Which device has the highest resistance?
(c) Identify each device as possibly a fan (250 W), a TV (115 W), or an iron (2300 W) by calculating power P = VI.

Q18. A student builds a circuit with a 9 V battery and a 180 ฮฉ resistor.
(a) Calculate the current.
(b) A second identical resistor is added in series โ€” find the new current.
(c) A third identical resistor is added in parallel with the second โ€” describe qualitatively (without full calculation) whether the total current increases or decreases and why.
(d) Which arrangement (series or parallel addition) keeps the current closest to the original?


Total: 30 Marks | Time: 40 mins

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