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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 What broad conclusion follows from an advanced study of conductors and insulators?

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Answer and explanation

02 How is a positive charge placed in the cavity of a neutral conductor balanced so that the electric field inside the conducting material remains zero?

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03 If a negative charge inside the cavity of a neutral conductor is not touching the conductor what will be the total charge on the outer surface?

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04 If the electric field inside a conductor is zero is it impossible to have electric field outside it?

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05 The electric field just outside a conductor is perpendicular to its surface. Which conclusion follows from this fact?

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06 Why does surface charge density vary over a conductor having regions with different curvatures?

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07 Why is ionisation of air more likely near a sharp conducting tip?

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08 Charge spreads uniformly on an isolated spherical conductor but not necessarily on an irregular conductor. What is the main reason?

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09 Why does the surface charge distribution change when an external charge is brought near an isolated conductor?

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10 Why does a positive effect appear at the far end of a neutral conductor when a positively charged rod is brought near it?

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11 Why does a negative effect appear at the far end of a neutral conductor when a negatively charged rod is brought near it?

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12 Why does the net charge remain unchanged when induction occurs in a neutral conductor without contact or earthing?

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13 Why must earthing be removed before the external object is removed during charging by induction?

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14 Why can electrons move from Earth to an earthed conductor near a positively charged rod?

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15 Why can electrons go from an earthed conductor to earth near a negatively charged rod?

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16 Why can attraction occur in an insulator due to polarisation even if its net charge remains zero?

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17 How can induction in a conductor and polarisation in an insulator be distinguished at the microscopic level?

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18 Treating an insulator as equipotential like a conductor is based on which wrong assumption?

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19 What condition allows charge to divide equally when two identical metal spheres are brought into contact?

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20 What is the correct reason charge may not divide equally when two unequal conductors touch?

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21 The electric field inside a conductor is zero. Which wrong conclusion should not be drawn from this?

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22 Why is excess volume charge density zero inside a conductor and charge present on the surface in electrostatic equilibrium?

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23 When does rearrangement of free charges in a conductor stop?

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24 If the electric field inside a closed conductor is zero, what is the conclusion about electric-field energy inside?

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25 Why can the effect of an external electrostatic field be reduced on a person inside a metal cage?

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