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Power Delivered to Load

A battery has a short-circuit current of 30 A and an open-circuit voltage of 12 V. If the battery is connected to a load resistance of 2Ω, then what will be the power delivered by the battery?
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Answer & Explanation
Correct AnswerC. 50 W

Quick Explanation

The battery internal resistance is found from open-circuit voltage and short-circuit current: r=12/30=0.4 Ω. With a 2 Ω load the current is 12/(2+0.4)=5 A, so load power is I²R=25×2=50 W.

Formula / Key Relation

r=Voc/Isc=0.4Ω; I=12/2.4=5A; PL=I²RL=50W
Power Delivered to Load explanatory diagram

Detailed Explanation

Correct Answer

C — 50 W

Concept and Reasoning

The battery internal resistance is found from open-circuit voltage and short-circuit current: r=12/30=0.4 Ω. With a 2 Ω load the current is 12/(2+0.4)=5 A, so load power is I²R=25×2=50 W.

Calculation / Key Relation

r=Voc/Isc=0.4Ω

I=12/2.4=5A

PL=I²RL=50W

Exam Takeaway

Short-circuit current reveals the internal resistance.

Common Mistake

Do not use 12 V directly across the load when the battery has internal resistance.

Quick Trick

Short-circuit current reveals the internal resistance.

Common Mistake

Do not use 12 V directly across the load when the battery has internal resistance.

Exam Tip

Short-circuit current reveals the internal resistance.

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