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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 For calculating total flux in Gauss's law, how can a closed surface be imagined?

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02 If electric field is same everywhere and normal to the Gaussian surface, how does flux calculation become?

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03 Using Gauss's law, what is the direction of electric field of a point charge?

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04 For a positive point charge, in which direction is field on a Gaussian surface?

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05 For a negative point charge, in which direction is field on a Gaussian surface?

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06 In Gauss's law, what can the net charge inside a closed surface be called?

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07 If a Gaussian surface has no charge inside but charges exist outside, what is the net flux?

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08 What is one major use of Gauss's law?

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09 In Gauss's law, which direction is used as standard for understanding flux sign?

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10 If electric field is parallel to a part of a Gaussian surface, what is the flux through that part?

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11 Why is a closed surface important in Gauss's law?

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12 Gauss's law is mainly related to what?

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13 What type of surface is used in Gauss's law?

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14 What is a Gaussian surface?

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15 In Gauss's law, total electric flux depends on what?

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16 If the net charge inside a closed surface is zero, what is the total electric flux?

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17 If a positive charge is inside a closed surface, what is the sign of total outward flux?

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18 If a negative charge is inside a closed surface, what is the sign of total outward flux?

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19 Why does a charge outside a closed surface not change the total electric flux?

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20 In which situation does Gauss's law simplify calculation the most?

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21 Which Gaussian surface is suitable for a point charge?

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22 Which Gaussian surface is suitable for an infinitely long uniformly charged line?

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23 For an infinite uniformly charged plane sheet, what Gaussian surface is usually chosen?

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24 What conclusion about electric field inside a conductor in electrostatic condition follows from Gauss's law?

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25 In electrostatic equilibrium, where does excess charge on a conductor reside?

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