Advertisements
Advertisements
प्रश्न
The energy contained in a small volume through which an electromagnetic wave is passing oscillates with
विकल्प
zero frequency
the frequency of the wave
half the frequency of the wave
double the frequency of the wave
उत्तर
double the frequency of the wave
The energy per unit volume of an electromagnetic wave,
`u = 1/2 ∈_0 E^2 + B^2/(2u_0)`
The energy of the given volume can be calculated by multiplying the volume with the above expression.
`U = u xx V = (1/2 ∈_0 E^2 + B^2/(2u_0)) xx V` ...(1)
Let the direction of propagation of the electromagnetic wave be along the z-axis. Then, the electric and magnetic fields at a particular point are given by
Ex= E0 sin (kz – ωt)
By= B0 sin (kz – ωt)
Substituting the values of electric and magnetic fields in (1), we get :
`U = (1/2 ∈_0 (E_0^2 sin^2(kz - ωt) + (B_0^2sin^2(kz – ωt))/(2u_0)) xx V`
⇒ `U = (∈_0 E_0^2 ((1-cos(2kz - 2ωt)))/4 + (B_0^2(1-cos(2kz-2ωt)))/(4u_0)) xx V`
From the above expression, it can be easily understood that the energy of the electric and magnetic fields have angular frequency 2ω. Thus, the frequency of the energy of the electromagnetic wave will also be double.
APPEARS IN
संबंधित प्रश्न
How are electromagnetic waves produced?
An em wave exerts pressure on the surface on which it is incident. Justify.
A capacitor is connected to an alternating-current source. Is there a magnetic field between the plates?
Can an electromagnetic wave be polarised?
This is an example of step-up transformer.
State any one property which is common to all electromagnetic waves.
If the magnetic monopole exists, then which of the Maxwell’s equation to be modified?
Fraunhofer lines are an example of _______ spectrum.
Which of the following is an electromagnetic wave?
Give two uses of IR radiation.
A transmitter consists of LC circuit with an inductance of 1 μH and a capacitance of 1 μF. What is the wavelength of the electromagnetic waves it emits?
A pulse of light of duration 10-6 s is absorbed completely by a small object initially at rest. If the power of the pulse is 60 x 10-3 W, calculate the final momentum of the object.
A plane electromagnetic wave travels in free space along x-axis. At a particular point in space, the electric field along y-axis is 9.3 Vm−1. The magnetic induction (B) along z-axis is:
The velocity of light in vacuum can be changed by changing
Electromagnetic waves are produced by ______.
For a plane electromagnetic wave propagating in the x-direction, which one of the following combinations gives the correct possible directions for the electric field (E) and magnetic field (B) respectively?
Why is the orientation of the portable radio with respect to broadcasting station important?
A plane EM wave travelling along z direction is described by `E = E_0 sin (kz - ωt)hati` and `B = B_0 sin (kz - ωt)hatj`. show that
- The average energy density of the wave is given by `u_(av) = 1/4 ε_0E_0^2 + 1/4 B_0^2/mu_0`.
- The time averaged intensity of the wave is given by `I_(av) = 1/2 cε_0 E_0^2`.
A 27 mW laser beam has a cross-sectional area of 10 mm2. The magnitude of the maximum electric field in this electromagnetic wave is given by:
[Given permittivity of space ∈0 = 9 × 10-12 SI units, Speed of light c = 3 108 m/s]