Home
Class 12
PHYSICS
Suppose that the electric field part of ...

Suppose that the electric field part of an electromagnetic wave in vacuum is E = `{(3.1 N//C)`` cos [(1.8 rad//m) y `+` (5.4 xx 10^6 rad//s)t]} hati` . What is the amplitude of the magnetic field part of the wave?

Promotional Banner

Similar Questions

Explore conceptually related problems

Suppose that the electric field part of an electromagnetic wave in vacuum is E = {(3.1 N//C) cos [(1.8 rad//m) y + (5.4 xx 10^6 rad//s)t]} hati . What is the wavelength ?

Suppose that the electric field part of an electromagnetic wave in vacuum is E = {(3.1 N//C) cos [(1.8 rad//m) y + (5.4 xx 10^6 rad//s)t]} hati . What is the frequency ?

Suppose that the electric field part of an electromagnetic wave in vacuum is E = {(3.1 N//C) cos [(1.8 rad//m) y + (5.4 xx 10^6 rad//s)t]} hati . Write an expression for the magnetic field part of the wave.

Suppose that the electric field part of an electromagnetic wave in vacuum is E = {(3.1 N//C) cos [(1.8 rad//m) y + (5.4 xx 10^6 rad//s)t]} hati . What is the direction of propagation?

The speed of electromagnetic waves in vacuum is equal to

The electric and magnetic fields in an electromagnetic wave are

Prove that for an electromagnetic wave E_0 = cB_0 .

The electric field in a plane electromagnetic wave is given by E_y = 72 sin [1.5 xx 10^3 x + 5 xx 10^(11)t] (in V m^(-1)) What are the amplitues of the electric and magnetic fiedls associated with the wave?