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NCERT Exemplar · Q12

Q.Point charges are arranged along a straight horizontal line: a charge QQ, a charge 5Q5Q located a distance RR to the left of QQ, and a charge −2Q-2Q located a distance R/2R/2 from QQ (just below it). A spherical Gaussian surface of radius RR is centred on the charge QQ. Thus QQ (at the centre) and −2Q-2Q (at distance R/2<RR/2 < R) lie inside the sphere, while 5Q5Q lies at distance RR, on/outside the closed spherical surface. Which of the following statements is/are correct?

(a) The total flux through the surface of the sphere is −Q/ε0-Q/\varepsilon_0.
(b) The field on the surface of the sphere is −Q/(4πε0R2)-Q/(4\pi\varepsilon_0 R^2).
(c) The flux through the surface of the sphere due to 5Q5Q is zero.
(d) The field on the surface of the sphere due to −2Q-2Q is the same everywhere.
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Gauss's law fixes the flux from the enclosed charge only: QQ and −2Q-2Q are inside, giving net −Q-Q and flux −Q/ε0-Q/\varepsilon_0 (a). A charge outside the surface (5Q5Q) sends in as many lines as it sends out, so its net flux is zero (c). Statements about a uniform surface field are wrong because the charges are not at the centre / are off-axis, so the field varies over the sphere (b and d).

Concept

  • Flux depends only on enclosed charge: Φ=qenc/ε0\Phi = q_{enc}/\varepsilon_0.
  • The field on the surface depends on the positions of all charges and is uniform only for a single charge at the centre (full spherical symmetry).

Evaluating each statement

  1. Enclosed charge =Q+(−2Q)=−Q= Q + (-2Q) = -Q. So Φtotal=−Q/ε0\Phi_{total} = -Q/\varepsilon_0. (a) correct. …

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