A 10 Ω resistor is connected across a battery. The heat produced in the resistor per second is 40 J. The potential difference across the resistor is:

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AAI Junior Assistant (Fire Service) Official Paper (Held On: 15 Nov, 2022 Shift 2)
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  1. 1.5 V
  2. 15 V
  3. 10 V
  4. 20 V

Answer (Detailed Solution Below)

Option 4 : 20 V
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Detailed Solution

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The correct answer is 20 V.

Key Points

  • Given that the heat produced in the resistor per second is 40 J, this corresponds to the power dissipation in the resistor.
  • The power dissipated in a resistor (P) is given by P=V2R , where V is the potential difference and R is the resistance.
  • Rearranging the formula to solve for V, we get V=PR .
  • Substituting the given values, P=40 W and R=10Ω , into the formula, we get V=40×10=400=20 V .

Additional Information

  • Ohm's Law
    • It states that the current through a conductor between two points is directly proportional to the voltage across the two points.
    • The mathematical formula is V=I×R , where V is the voltage, I is the current, and R is the resistance.
  • Joule's Law of Heating
    • It states that the heat produced in a resistor is proportional to the square of the current, the resistance, and the time for which the current flows.
    • The formula is H=I2×R×t .
  • Power in Electrical Circuits
    • Power (P) in an electrical circuit is given by P=V×I , where V is the voltage and I is the current.
    • It can also be expressed using resistance as P=V2R or P=I2×R .
  • Resistance
    • Resistance (R) is a measure of the opposition to current flow in an electrical circuit.
    • The unit of resistance is Ohm (Ω).
    • Resistors are used to control the current in an electrical circuit.
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