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In a plane electromagnetic wave travelling in free space the electric field component oscillates

Q. In a plane electromagnetic wave travelling in free space the electric field component oscillates sinusoidally at a frequency of 2.0{\rm{ }} \times {\rm{ }}{10^{10}} Hz and amplitude 48V{\rm{ }}{m^{ - 1}}. Then the amplitude of the oscillating magnetic field is (Speed of light in free space = 3{\rm{ }} \times {\rm{ }}{10^8}{\rm{ }}m{\rm{ }}{s^{ - 1}})                                                                          (NEET-2023)

In a plane electromagnetic wave travelling in free space the electric field component oscillates sinusoidally at a frequency of  Hz and amplitude 48. Then the amplitude of the oscillating magnetic field is (Speed of light in free space = ) 

 

 

Aditya Bhatt Answered question 8 February 2024
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