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Subjects

Physics

Gauss's Law and its Applications

गाउस का नियम और इसके अनुप्रयोग

In this Class 12 Physics topic from Chapter 1, Electric Charges and Fields, students learn how electric flux is related to the net charge enclosed by a closed surface through Gauss’s law. The topic develops the idea of Gaussian surfaces, uses symmetry to simplify electric-field calculations, and applies the law to charged spherical shells, uniformly charged spheres, infinite line charges, and plane sheets. It also helps students understand the electric field inside conductors and choose suitable surfaces for solving electrostatic problems.

Practice questions

01 In a diagram, the number of electric field lines leaving a closed surface is greater than the number entering it. What does this indicate about the net charge inside?

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02 If the same number of electric field lines enter and leave a closed surface, what is the most suitable conclusion about the net charge?

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03 If the same number of field lines enter and leave a closed surface, what is the most suitable conclusion about the net charge?

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04 If equal magnitude positive and negative charges are inside a closed surface, must the electric field outside the surface be zero?

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05 If net charge inside a closed surface is positive but field is inward through some parts of the surface, what is the sign of total flux?

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06 If total flux through a closed surface is zero, which conclusion is safest?

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07 There is no charge inside a closed surface, but the field on the surface is said to be outward everywhere. Why is this doubtful?

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08 A closed surface has zero net charge inside, but contains a dipole. What does correct use of Gauss law tell?

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09 Gauss law gives total flux. Why can the field at every point on an asymmetric surface not be found directly from it?

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10 A closed surface has zero net charge inside, but positive and negative charges are at different positions. Which statement about total flux and field is correct?

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11 A positive charge is inside a closed surface. If a very large negative charge is placed outside the same surface, what happens to total flux?

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12 Total flux through a closed surface enclosing a dipole is zero, but field lines appear to cross the surface. How is this possible?

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13 The net flux through a closed surface is zero, yet an electric field exists at different parts of the surface. What is the correct conclusion?

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14 If a closed surface is changed from a sphere to an irregular surface while the enclosed net charge remains the same, why does the total flux remain the same?

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15 Gauss law gives total flux. Why is it difficult to directly find field at every point on an asymmetric surface?

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16 Net charge inside a closed surface is negative and many positive charges are outside. What will be the sign of net flux?

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17 Total flux through a closed surface is zero. Which statement is not necessarily true?

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18 A point charge is inside a spherical Gaussian surface but not at the centre. Which statement about total flux is correct?

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19 A closed surface contains no charge, but an external positive charge creates electric field on the surface. What is the total flux?

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20 A charge is placed at the centre of a cube. By symmetry, flux through one face is what fraction of total flux?

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21 If a charge is placed at one corner of a cube and eight identical cubes can be joined so that the charge becomes the centre of a larger cube, what fraction of total flux belongs to the original cube?

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22 On a Gaussian surface, electric field magnitude is same everywhere, but it is outward on half the surface and inward on the other half. If the two areas are equal, what is the total flux?

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23 Total flux through a closed surface is zero. Is it correct to say that there is no charge inside the surface?

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24 A Gaussian surface is closed and has net positive charge inside. Still field enters through some parts of the surface. What will be the sign of total flux?

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25 A closed surface has net negative charge inside, but field leaves through a small part of the surface. Which statement about total flux is correct?

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