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Subjects

Physics

Electric Flux and Electric Dipole

विद्युत फ्लक्स और विद्युत द्विध्रुव

In this Class 12 Physics topic from Chapter 1, Electric Charges and Fields, students learn how electric flux measures the electric field passing through a surface and how it depends on field strength, area, and orientation. They also study the electric dipole as a pair of equal and opposite charges, its dipole moment, electric field, potential, and the torque it experiences in an external electric field. These ideas build a foundation for understanding field patterns and applying electrostatic principles to physical situations.

Practice questions

01 For two equal and opposite charges, what is the field direction at a far point on the perpendicular bisector?

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Answer and explanation

02 A surface is rotated from being parallel to the electric field to being perpendicular to the field. How does the flux change?

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03 An electric dipole has zero net charge, yet why can it have an electric field?

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04 Why is the net force on a dipole not necessarily zero in a non-uniform electric field?

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05 At a far point on the axial line of a dipole, the electric field is generally in which direction?

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06 At a far point on the equatorial line of a dipole, what is the direction of the electric field?

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07 Why does the electric field of a dipole decrease faster than that of a point charge at far points?

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08 If the shape of a closed surface is changed but the net enclosed charge remains the same, what happens to total flux?

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09 Dipole field lines go from positive to negative. Why is the electric dipole moment defined from negative to positive?

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10 The electric flux through an open plane surface is zero. What can be one possible reason?

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11 Why can electric flux not be understood only from the magnitude of the electric field?

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12 Why is the electric-field direction different at the axial and equatorial points of a dipole?

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13 Flux through a surface is found to be negative. What does this generally mean?

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14 Which statement correctly connects electric flux and an electric dipole?

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15 A plane surface has area two square metres and a uniform electric field is perpendicular to it. If the field is five newtons per coulomb, what is the flux?

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16 The electric field passing near a surface is parallel to the surface. What will be the flux in this case?

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17 Why is an area vector used in electric flux?

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18 If the angle between the area vector and electric field is zero, what is the condition of flux?

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19 If the angle between the area vector and electric field is one hundred eighty degrees, what will be the sign of flux?

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20 A closed surface contains two coulombs of positive charge and two coulombs of negative charge. What will be the net flux?

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21 An entire electric dipole is inside a closed surface. Why will the net flux be zero?

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22 Why is dipole moment direction not taken from positive to negative?

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23 How can flux through an open surface change from positive to negative?

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24 If a plane surface is gradually rotated relative to an electric field, why does flux change?

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25 Why does an electric dipole have an electric field even though its net charge is zero?

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