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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 If electric field is zero at the midpoint between two equal positive charges, should field line density be shown high there?

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02 At a point the electric field is zero. If equal-magnitude positive and negative charges are placed there separately, what is correct about the forces?

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03 Two electric fields have magnitudes five and twelve newtons per coulomb and are mutually perpendicular. What is the magnitude of the resultant field?

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04 At a point the electric field is seven newtons per coulomb east and twenty-four newtons per coulomb north. What is the magnitude of the resultant field?

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05 If two electric fields of equal magnitude act at an angle of sixty degrees at a point, what is the resultant magnitude equal to?

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06 If two electric fields of equal magnitude act at an angle of one hundred twenty degrees, what will be the resultant magnitude?

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07 At a point two equal electric fields are in opposite directions. If the source of one field is removed, how will the net field change?

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08 If the same number of electric field lines leave and enter a closed surface, will the electric field be zero everywhere on the surface?

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09 If the electric field is zero at one point but nonzero at nearby points, how should that zero-field point be understood?

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10 A positive test charge is placed in a non-uniform field where field lines become denser toward the right. Which statement about the force is correct?

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11 In a non-uniform field, the lines point upward and become sparser upward. What happens to the force on an electron and to its magnitude?

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12 If field lines in a small region are nearly parallel but not equally spaced, is the electric field uniform?

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13 Points A and B lie on field lines. Lines are closer near A and farther near B. Where will the force on the same positive charge be greater?

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14 On a curved field line the tangent directions at two nearby points are different. What conclusion follows?

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15 If two field lines are assumed to intersect, what contradiction arises about force on a positive test charge at that point?

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16 A positive charge is held at rest in a uniform eastward electric field. What happens just after the external force is removed?

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17 An electron is released in a uniform westward electric field. In which direction will it accelerate?

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18 A proton and an electron are placed in the same uniform electric field. Which statement about the magnitudes of the forces is correct?

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19 If field lines are dense in a region but the force on a charge is small, what is the most likely reason?

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20 At a point, field lines are directed south. In which direction should an external force be applied to keep a negative charge at rest?

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21 The electric field due to a point charge at point A is nine times that at point B. If both points lie in the same direction from the charge, what is the ratio of their distances?

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22 If the distance from a point charge is doubled and the charge is made four times as large, how will the new electric field compare with the old one?

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23 If field lines in a region are directed from bottom to top and become closer upward, what happens to the force on a positive charge?

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24 At a place field lines point right but a particle is moving left. What conclusion cannot be made with certainty?

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25 What is the most mature use of electric field lines?

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