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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 A closed surface is changed from a sphere to an irregular shape while the enclosed net charge remains the same. Why does the total flux not change?

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02 A complete electric dipole is inside a closed surface. The net flux is zero, but will the electric field be zero everywhere on the surface?

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03 A closed surface encloses the positive charge of a dipole, while the negative charge lies outside it. The surface is then enlarged to enclose both charges. What happens to the net electric flux?

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04 Why is it necessary to choose an area vector for an open surface when calculating electric flux?

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05 Why is the convention of taking the area vector outward useful for a closed surface?

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06 Why does only the component of the electric field normal to a surface contribute to electric flux?

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07 If the angle between the electric field and the area vector changes from 30° to 60°, how does the flux change when the field magnitude and area remain constant?

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08 At the centre of a dipole, field lines are directed from positive to negative, but what is the direction of dipole moment?

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09 If the magnitude of charges of a dipole is doubled and their separation is also doubled, what happens to dipole moment?

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10 If charge magnitude of a dipole is halved and separation is made four times, what happens to dipole moment?

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11 Net charge of an electric dipole is zero. Still why can its dipole moment be non-zero?

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12 Why does a non-polar molecule have no permanent dipole moment without an external field?

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13 If electric field is not perpendicular to a surface, what is the most common mistake while finding flux?

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14 Area of a surface is doubled and electric field is tripled, but the angular factor becomes half. How many times does the flux become?

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15 If a surface is perpendicular to the electric field and the area vector is along the field, why is flux maximum?

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16 In a difficult problem, flux is zero and a dipole is present. What is the safest order of analysis?

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17 A plane surface is placed in a uniform electric field such that the angle between area vector and electric field is sixty degrees. If the surface is rotated so both become parallel, how will the flux change?

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18 In a dipole, the charge magnitude is made three times and the separation is made half. What will be the dipole moment compared with the initial value?

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19 If the dipole moment is to remain the same while the charge magnitude is made four times, how should the separation change?

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20 A uniform electric field acts on a plane surface. If the surface is rotated so that flux changes from positive to negative, what has changed?

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21 At a far axial point, the dipole field is sixty. What will be the equatorial field at the same distance?

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22 Why is the field at a far axial point of a dipole taken along the dipole moment?

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23 A dipole has zero net charge. Why can its field still exist at a far point?

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24 The distance from both a point charge and a dipole is doubled. Whose far field decreases more rapidly?

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25 If area is halved and electric field is made four times while angle remains the same, how does flux change?

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