Advertisements
Advertisements
प्रश्न
A laser beam has intensity 2.5 × 1014 W m−2. Find amplitudes of electric and magnetic fields in the beam.
उत्तर
Given:
Intensity, I = 2.5 × 1014 W/m2
We know :
`I = 1/2 ∈_0 E_0^2 c`
⇒ `E_0^2 = (2I)/(∈_0c)`
⇒ `E_0 = sqrt((2I)/(∈_0c))`
⇒ `E_0 = sqrt((2 xx 2.5 xx 10^14)/(8.85 xx 10^-12 xx 3 xx 10^8))`
⇒ `E_0 = 0.4339 xx 10^9`
⇒ `E_0 = 4.33 xx 10^8 "N/C"`
Maximum value of magnetic field ,
`B_0 = (E_0)/c`
`B_0 = (4.33 xx 10^8)/(3 xx 10^8)`
⇒ `B_0 = 1.43 "T"`
APPEARS IN
संबंधित प्रश्न
Arrange the following electromagnetic wave in the order of their increasing wavelength:
(a) γ- rays
(b) Microwaves
(c) X-rays
(d) Radio waves
Which mode of propagation is used by short wave broadcast serves?
Write the expression for speed of electromagnetic waves in a medium of electrical permittivity ε and magnetic permeability μ.
Which em waves lie near the high frequency end of visible part of em spectrum? Give its one use. In what way this component of light has harmful effects on humans?
How does a charge q oscillating at certain frequency produce electromagnetic waves?
Sketch a schematic diagram depicting electric and magnetic fields for an electromagnetic wave propagating along the Z-direction.
An electromagnetic wave going through vacuum is described by
E = E0 sin (kx − ωt); B = B0 sin (kx − ωt).
Which of the following equations is true?
State any one property which is common to all electromagnetic waves.
Write notes on Ampere-Maxwell law.
Explain the Maxwell’s modification of Ampere’s circuital law.
Velocity of plane electromagnetic waves in vacuum equals ______.
Magnitude of the electric and the magnetic fields in a plane electromagnetic wave are related by ______.
If a source is transmitting electromagnetic waves of frequency 8.2 × 106 Hz. then wavelength of electromagnetic waves transmitted from the source will be.
The velocity of light in vacuum can be changed by changing
For a plane electromagnetic wave propagating in x-direction, which one of the following combinations gives the correct possible directions for electric field (E) and magnetic field (B) respectively?
If `vecE` and `vecB` represent electric and magnetic field vectors of the electromagnetic wave, the direction of propagation of the electromagnetic wave is along ______.
An EM wave radiates outwards from a dipole antenna, with E0 as the amplitude of its electric field vector. The electric field E0 which transports significant energy from the source falls off as ______.
Show that the radiation pressure exerted by an EM wave of intensity I on a surface kept in vacuum is I/c.
Name the electromagnetic wave/radiation which is used to study crystal structure.