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Question

If the magnetic field in a plane electromagnetic wave is given by B=3×10-8sin(1.6×103x+48×1010t)j^ T then what will be the expression for the electric field?


A

E=3×10-8sin(1.6×103x+48×1010t)i^Vm-1

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B

E=3×10-8sin(1.6×103x+48×1010t)j^Vm-1

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C

E=60sin(1.6×103x+48×1010t)k^Vm-1

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D

E=9sin(1.6×103x+48×1010t)k^Vm-1

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Solution

The correct option is D

E=9sin(1.6×103x+48×1010t)k^Vm-1


The explanation for the correct answer:

Option (D) is correct

Step 1 Given data

The magnetic field in a plane electromagnetic wave is given by B=3×10-8sin(1.6×103x+48×1010t)j^ T

Step 2 Formula used

The general magnetic field in a plane electromagnetic wave equation is given by B=B0coskx-ωtj^

The general electric field in a plane electromagnetic wave equation is given by E=E0coskx-ωtj^

E is electric field vector, and B is the magnetic field vector of the Electromagnetic wave is the velocity of light(c).

EB=c

Step 3 Electric field

The given magnetic field in a plane electromagnetic wave equation is given by B=3×10-8sin(1.6×103x+48×1010t)j^ T

By comparing the general magnetic field in a plane electromagnetic wave equation is given by B=B0coskx-ωtj^ with the given equation,

B0=3×10-8k=1.6×103ω=48×1010

The velocity of light is, c=3×108

The magnetic field vector of the Electromagnetic wave isE0B0=c

By rearranging this equation, the expression for electric field is,

E0=c×B0E0=3×108×3×10-8E0=9Vm-1

The expression electromagnetic wave equation is given by E=E0coskx-ωt

That is,

E=E0coskx-ωtE=9cos1.6×103x-48×1010t

Therefore, the expression electromagnetic wave equation is given by E=9cos1.6×103x-48×1010tk^

Hence, option (D) is the correct answer.


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