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Maximum Earth Resistance for Large Power Stations

What is the maximum permissible earth resistance for large power stations?
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Answer & Explanation
Correct AnswerC. 0.5 Ω

Quick Explanation

C — 0.5 Ω. This is the large-power-station earth-resistance value expected in the supplied examination.

Formula / Key Relation

Vgrid ≈ IgRg

Detailed Explanation

Correct answer: C — 0.5 Ω

Earth resistance and fault-current discharge

The expected maximum earth resistance for a large power station is 0.5 Ω. The earthing grid connects equipment frames, structures and other bonded metalwork to a common network of buried conductors and electrodes. It provides a path for earth-fault current and helps control dangerous potential differences during a fault.

When current enters the soil through the grid, the grid potential rises relative to remote earth. For a simplified resistive model, this rise is:

Earth-potential rise ≈ IgRg

Here Ig is the current actually discharged from the grid into earth, and Rg is the grid resistance. For the same discharged current, a lower grid resistance produces a smaller potential rise. Large stations can experience substantial fault currents, which explains the low resistance value used in this question.

The 0.5 Ω figure is the answer to this examination item. In an actual earthing design, resistance alone does not establish safety: grid geometry, soil resistivity, current division, fault-clearing time, and permissible touch and step voltages must also be considered. A low measured resistance and safe surface-potential gradients are related but distinct requirements.

Quick Trick

Large power station → very low resistance → 0.5 Ω.

Why Other Options Are Wrong

8 Ω, 5 Ω and 2 Ω are too high for the conventional large-power-station value used in such MCQs. The keyed value is 0.5 Ω.

Common Mistake

Memorizing one earth-resistance value for every installation type; permissible targets differ by application and standard.

Exam Tip

In earthing MCQs, larger fault level generally means a stricter (lower) target earth resistance.

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