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The work done in moving a test charge from one point to another in an equipotential surface is zero. State True/False.
  • a)
    True
  • b)
    False
Correct answer is option 'A'. Can you explain this answer?
Verified Answer
The work done in moving a test charge from one point to another in an ...
Answer: a
Explanation: Since the electric potential in the equipotential surface is the same, the work done will be zero.
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Most Upvoted Answer
The work done in moving a test charge from one point to another in an ...

Explanation:

Equipotential surfaces are surfaces where the electric potential is constant. This means that the work done in moving a test charge from one point to another on an equipotential surface is zero. Let's break down the explanation further:

Work done in moving a test charge:
- When a test charge is moved within an equipotential surface, it does not experience a change in electric potential energy since the potential is constant.
- Work done is defined as the change in energy, which in this case is zero.
- Therefore, the work done in moving a test charge on an equipotential surface is zero.

Significance of zero work:
- The fact that the work done in moving a test charge on an equipotential surface is zero implies that the electric field is perpendicular to the equipotential surfaces.
- This is because if the electric field had a component along the equipotential surface, work would be done in moving the charge against this field component.

Conclusion:
In conclusion, the statement that the work done in moving a test charge from one point to another on an equipotential surface is zero is true. This concept is important in understanding the behavior of electric fields and potential in various scenarios in electrical engineering.
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The work done in moving a test charge from one point to another in an equipotential surface is zero. State True/False.a)Trueb)FalseCorrect answer is option 'A'. Can you explain this answer?
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