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Two point charges of 10 µC at point M and 20 µC at point N exerts a force of 4.8 N and 10 N respectively on a point charge of 40 µC at point O. Determine the electric field intensity at point O.
  • a)
    369
  • b)
    371
Correct answer is between '369,371'. Can you explain this answer?
Verified Answer
Two point charges of 10 µC at point M and 20 µC at point N exerts a f...
The electric field intensity is given as the force per unit charge.
E = F/Q
The electric field intensity due to two point charges Q1 at point M and Q2 at point N is the sum of the forces on the test charge Qt at point O, caused by the point charges Q1 and Q2 acting alone. Thus,
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Two point charges of 10 µC at point M and 20 µC at point N exerts a force of 4.8 N and 10 N respectively on a point charge of 40 µC at point O. Determine the electric field intensity at point O.a)369b)371Correct answer is between '369,371'. Can you explain this answer?
Question Description
Two point charges of 10 µC at point M and 20 µC at point N exerts a force of 4.8 N and 10 N respectively on a point charge of 40 µC at point O. Determine the electric field intensity at point O.a)369b)371Correct answer is between '369,371'. Can you explain this answer? for GATE 2024 is part of GATE preparation. The Question and answers have been prepared according to the GATE exam syllabus. Information about Two point charges of 10 µC at point M and 20 µC at point N exerts a force of 4.8 N and 10 N respectively on a point charge of 40 µC at point O. Determine the electric field intensity at point O.a)369b)371Correct answer is between '369,371'. Can you explain this answer? covers all topics & solutions for GATE 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for Two point charges of 10 µC at point M and 20 µC at point N exerts a force of 4.8 N and 10 N respectively on a point charge of 40 µC at point O. Determine the electric field intensity at point O.a)369b)371Correct answer is between '369,371'. Can you explain this answer?.
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