MP Board · Class 12 · Physics · Electric Charges and FieldsAccording to Gauss's theorem, the total electric flux enclosed by a closed surface in vacuum is equal to:
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Step-by-Step Solution
Gauss's Law states that the total electric flux through any closed surface is $\frac{1}{\epsilon_0}$ times the net charge $q$ enclosed inside the surface: $\Phi_E = \frac{q}{\epsilon_0}$.
Detailed Options Breakdown
Option : $\frac{q}{\epsilon_0}$ (Correct Answer)
Correct choice. Refer to the step-by-step verified solution guidelines above for details.
Option 1: $\epsilon_0 q$
Incorrect choice. This distractor represents a common misunderstanding of the core principles of Electric Charges and Fields.
Option 2: $\frac{q}{2\epsilon_0}$
Incorrect choice. This distractor represents a common misunderstanding of the core principles of Electric Charges and Fields.
Option 3: $4\pi\epsilon_0 q$
Incorrect choice. This distractor represents a common misunderstanding of the core principles of Electric Charges and Fields.
💡 Study Guide: This question tests core syllabus concepts from Electric Charges and Fields. For formulas, key summaries, and mock exam reference guides, read the full Electric Charges and Fields Revision Notes.