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Q.State Gauss Law in electrostatic and using it deduce Coulomb's Law.

Uttar Pradesh UpmspUP Board (UPMSP) Intermediate 2018Subjective· 2mImportance★★★★★
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Gauss's law (Φ = q_enclosed/ε₀) applied to a spherical surface around a point charge yields Coulomb's law.

Statement of Gauss's law: The net electric flux through any closed (Gaussian) surface equals the total charge enclosed divided by ε₀:

Φ = ∮ E·dA = q_enclosed / ε₀.

Deriving Coulomb's law:

Consider a point charge q. Choose a spherical Gaussian surface of radius r centred on q. By symmetry the field E is radial and has the same magnitude everywhere on the sphere, so

Φ = E × (4πr²).

By Gauss's law this equals q/ε₀:

E × 4πr² = q/ε₀ ⇒ E = q/(4πε₀ r²).

The force on a test charge q₀ placed at distance r is F = q₀E:

F = q q₀ /(4πε₀ r²),

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