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If a plane electromagnetic wave propagating in space has an electric field of amplitude 9 × 103V/m, then the amplitude of the magnetic field is
  • a)
    2.7 × 1012 T
  • b)
    3.0 × 10–5 T
  • c)
    9.0 × 10–3 T
  • d)
    3.0 × 10–4 T
Correct answer is option 'B'. Can you explain this answer?
Verified Answer
If a plane electromagnetic wave propagating in space has an electric f...
The E and B vector of a light is perpendicular to each other and perpendicular to motion of the wave. E and B are related as
E = Bcc being light velocity.
The correct answer is: 3.0 × 10–5 T
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Most Upvoted Answer
If a plane electromagnetic wave propagating in space has an electric f...
The E and B vector of a light is perpendicular to each other and perpendicular to motion of the wave. E and B are related as
E = Bcc being light velocity.
The correct answer is: 3.0 × 10–5 T
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Community Answer
If a plane electromagnetic wave propagating in space has an electric f...
If a plane electromagnetic wave propagating in space has an electric field of amplitude 9, then the maximum value of the electric field is 9 units. The actual value of the electric field can vary with time, but it will never exceed this maximum value.
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