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Subjects

Physics

Electric Field and Electric Field Lines

विद्युत क्षेत्र और विद्युत क्षेत्र रेखाएँ

In this Class 12 Physics topic from Chapter 1, Electric Charges and Fields, students learn how electric charges produce an electric field and how the field is represented using electric field lines. The topic explains field strength, direction, the role of a test charge, and the principle of superposition for multiple charges. Students also study the properties, patterns, and relative density of field lines, including their use in understanding isolated charges and electric dipoles.

Practice questions

01 At a point the electric field is towards east. Which statement is correct about the forces on equal magnitude positive and negative charges placed at that point?

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02 Two equal positive charges are placed on a straight line. At a point slightly above their exact midpoint what will be the direction of the net electric field?

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03 Two equal negative charges are placed on a line. At a point slightly above the exact midpoint what is the direction of the net electric field?

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04 If the distance from a point charge is halved and the source charge is also halved, how will the electric field change?

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05 At a point the electric field is zero. Must the electric potential there also be zero?

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06 If a positive test charge has zero force in a region but field lines are shown close together at the same location, what is the best comment?

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07 For two unequal positive charges, where is the point of zero net electric field generally found?

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08 For an electric dipole, a point is taken on the axial line outside the positive charge. What is the direction of electric field there?

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09 At a point on the equatorial line of an electric dipole, how is the direction of net electric field related to the dipole moment direction?

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10 In a region the net electric field due to two charges is zero. What is the issue if field lines are shown passing through that exact point?

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11 If the distance from a positive point charge is made three times and the charge is doubled, what will be the electric field compared to the initial value?

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12 The net electric field at the midpoint of two equal positive charges is zero, but why does it not remain zero when the point is slightly shifted upward?

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13 Why is the zero-field point between two unequal positive charges closer to the smaller charge?

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14 Why is the zero-field point for unequal opposite charges generally not found between the two charges on their joining line?

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15 A closed conductor has an empty cavity with no charge inside and is in electrostatic equilibrium. What is the electric field inside the cavity?

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16 At the centre of an electric dipole, in which direction are the field lines directed?

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17 If electric field lines are very close in a region but arrow directions change rapidly, which statement best describes the field?

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18 A diagram shows parallel field lines whose spacing keeps decreasing. What kind of field does it indicate?

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19 At a point, the electric field is ten newtons per coulomb. If the test charge is halved, what should happen to the correctly measured electric field?

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20 In a region, field lines point left and become more sparse toward the left. Which statement about force on a negative charge is correct?

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21 A positive test charge is kept small to find electric field. If it is large and shifts the source charges, what is the main error in the obtained field?

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22 A positive test charge at a point experiences zero force. Is it correct to say that there is no charge nearby?

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23 If the distance from a positive point charge is made three times and the charge magnitude is also made three times, what will be the electric field compared to the earlier value?

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24 The electric field at the midpoint between two equal positive charges is zero. If the right charge is doubled, where will the zero-field point be found?

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25 A positive and a negative charge have equal magnitude. Why is the electric field at the midpoint on the line joining them not zero?

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