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NCERT Exemplar · Q8

Q.Equipotential surfaces

(a) are closer in regions of large electric fields compared to regions of lower electric fields.
(b) will be more crowded near sharp edges of a conductor.
(c) will be more crowded near regions of large charge densities.
(d) will always be equally spaced.
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Equipotential surfaces drawn for equal potential steps are packed closer where the electric field is stronger. So they crowd in large-field regions, near sharp conductor edges, and near high charge densities — but they are not equally spaced in general. Correct options: (a), (b), (c).

Concept understanding. The field is the negative gradient of potential; for a small normal displacement Δr\Delta r between two surfaces separated by a fixed potential difference ΔV\Delta V,

E=−dVdr  ⇒  Δr=ΔVE.E = -\frac{dV}{dr}\;\Rightarrow\; \Delta r = \frac{\Delta V}{E}.

Thus for a chosen constant step ΔV\Delta V, the perpendicular spacing Δr\Delta r is inversely proportional to EE: strong field ⇒\Rightarrow surfaces close together; weak field ⇒\Rightarrow surfaces far apart.

Testing each option.

  • (a) In regions of large EE, Δr=ΔV/E\Delta r = \Delta V/E is small, so the surfaces are closer than in low-field regions. Correct. …

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