Chapter 13: Problem 63
A point charge \(q\) and a charge \(-q\) are placed at \(x=-a\) and \(x=+a\), respectively. Which of the following represents a part of \(E-x\) graph?
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Chapter 13: Problem 63
A point charge \(q\) and a charge \(-q\) are placed at \(x=-a\) and \(x=+a\), respectively. Which of the following represents a part of \(E-x\) graph?
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Capacitance of a capacitor becomes \(\frac{4}{3}\) times its original value if a dielectric slab of thickness \(t=d / 2\) is inserted between the plates \((d=\) separation between the plates). The dielectric constant of the slab is (A) 2 (B) 4 (C) 6 (D) 8
Two thin wire rings each having a radius \(R\) are placed at a distance \(d\) apart with their axes coinciding. The charges on the two rings are \(+q\) and \(-q .\) The potential difference between the centres of the two rings is (A) \(\frac{q R}{4 \pi \varepsilon_{0} d^{2}}\) (B) \(\frac{q}{2 \pi \varepsilon_{0}}\left[\frac{1}{R}-\frac{1}{\sqrt{R^{2}+d^{2}}}\right]\) (C) Zero (D) \(\frac{q}{4 \pi \varepsilon_{0}}\left[\frac{1}{R}-\frac{1}{\sqrt{R^{2}+d^{2}}}\right]\)
On moving a charge of \(20 \mathrm{C}\) by \(2 \mathrm{~cm}, 2 \mathrm{~J}\) of work is done. The potential difference between the points (A) \(0.1 \mathrm{~V}\) (B) \(8 \mathrm{~V}\) (C) \(2 \mathrm{~V}\) (D) \(0.5 \mathrm{~V}\)
Coulomb's law is applicable to, (A) Point charges (B) Spherical charges (C) Like charges (D) All of these
There are two charges \(+1 \mu \mathrm{C}\) and \(+5 \mu \mathrm{C}\). The ratio of the forces acting on them will be (A) \(1: 5\) (B) \(1: 1\) (C) \(5: 1\) (D) \(1: 25\)
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