Which one of the following statements is true for resistance in a parallel circuit? A. The total resistance is equal to the sum of the individual resistances in a parallel circuit. B. The total resistance of a parallel circuit is always less than the value of the smallest resistance C. The total resistance of a parallel circuit is equal to the total voltage D. The total resistance in a parallel circuit is equal to the average value of the individual resistances E. None of the above

The total resistance is equal to the sum of the individual resistances in a parallel circuit.
The total resistance of a parallel circuit is always less than the value of the smallest resistance
The total resistance of a parallel circuit is equal to the total voltage
The total resistance in a parallel circuit is equal to the average value of the individual resistances E. None of the above

The correct answer is: B. The total resistance of a parallel circuit is always less than the value of the smallest resistance.

In a parallel circuit, the current divides among the branches. This means that the current through each branch is less than the total current in the circuit. The total resistance of a parallel circuit is therefore less than the value of the smallest resistance in the circuit.

Option A is incorrect because the total resistance of a parallel circuit is not equal to the sum of the individual resistances.

In fact, the total resistance of a parallel circuit is always less than the value of the smallest resistance.

Option C is incorrect because the total

resistance of a parallel circuit is not equal to the total voltage. The total voltage in a parallel circuit is the same for all branches.

Option D is incorrect because the total resistance in a parallel circuit is not equal to the average value of the individual resistances. The total resistance of a parallel circuit is always less than the value of the smallest resistance.

Option E is incorrect because option B is the correct answer.