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Subjects

Physics

Conductors and Insulators

चालक और कुचालक

In this Class 12 Physics topic from Chapter 1, Electric Charges and Fields, students learn how materials respond to electric charge. They distinguish conductors, which contain mobile charge carriers, from insulators, in which charges are largely bound, and examine charge distribution, electrostatic equilibrium, and polarization. The topic explains why the electric field inside a conductor in electrostatic equilibrium is zero, how excess charge resides on its surface, and how these ideas support electrostatic shielding and everyday applications.

Practice questions

01 If a nonzero electric field exists within the conducting material of a conductor, what does it imply?

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Answer and explanation

02 The zero tangential electric field on a conductor surface is most directly related to which fact?

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03 Why is charge density not the same everywhere on an irregular conductor?

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04 Why is a closed conductor more useful for electrostatic shielding?

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05 How is the absence of the effect of an external charge inside a conductor cavity best understood?

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06 Which is the most appropriate reason why the electric field is zero within the conducting material in electrostatic equilibrium?

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07 Why does excess charge given to an isolated solid conductor reside on its outer surface in electrostatic equilibrium?

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08 A point charge \(+q\) is placed inside a closed cavity of a neutral conductor without touching the conductor. What is the total induced charge on the inner surface of the conductor?

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09 An isolated neutral conductor has a cavity. If a charge +q is placed inside the cavity without touching its wall, what is the total charge on the outer surface of the conductor?

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10 If the charge in a cavity is positive and the conductor is earthed which statement about charge on the outer surface is correct?

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11 At a point on the surface of a conductor in electrostatic equilibrium in vacuum, the magnitude of surface charge density |σ| is high. Which statement is correct for the magnitude of the electric field just outside the surface at that point?

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12 Why is electric discharge more likely from a charged conductor with a sharp point?

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13 A charged, isolated spherical conductor is in electrostatic equilibrium, with no external electric field or nearby charged object. What is the main reason its surface charge distribution is uniform?

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14 A positively charged rod is brought near an isolated neutral conductor without touching it. What are the induced charges on the nearer and farther surfaces, and what is the conductor’s net charge?

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15 Why is earthing removed first and the charged object removed later in charging by induction?

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16 What can happen if the external charged object is removed first while earthing remains during induction charging?

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17 Why can attraction appear in a polarised insulator even though net charge does not change?

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18 Why can final charge become equal when two identical metal spheres are brought into contact?

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19 Why may charge not divide equally between two unequal conductors in contact?

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20 The electric field inside a conductor is zero. Does this prove that there is no charge on the conductor?

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21 If volume charge density inside a conductor is zero in electrostatic equilibrium, where will excess charge be?

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22 What is the main physical reason for keeping the tip of a lightning rod sharp?

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23 A charged comb attracts small pieces of paper. What is the correct physical reason?

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24 Which statement gives the complete identity of electrostatic equilibrium for a conductor?

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25 What broad conclusion comes from advanced study of conductors and insulators?

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