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प्रश्न
How are electromagnetic waves produced? What is the source of the energy carried by a propagating electromagnetic wave?
Identify the electromagnetic radiations used
(i) In remote switches of a household electronic device; and
(ii) as a diagnostic tool in medicine
उत्तर
According to Maxwell’s theory accelerated charges radiate electromagnetic waves. Consider a charge oscillating with some frequency. (An oscillating charge is an example of accelerating charge.) This produces an oscillating electric field in space, which produces an oscillating magnetic field, which in turn, is a source of the oscillating electric field, and so on. he oscillating electric and magnetic fields thus regenerate each other, so to speak, as the wave propagates through space. The frequency of the electromagnetic wave naturally equals the frequency of oscillation of the charge. The energy associated with the propagating wave comes at the expense of the energy of the source –the accelerated charge.
The electromagnetic radiation used are :
(1) Infrared rays
(2) X-rays
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संबंधित प्रश्न
Draw a schematic sketch of the electromagnetic waves propagating along the + x-axis. Indicate the directions of the electric and magnetic fields
State any one property which is common to all electromagnetic waves.
Which of the following electromagnetic radiations is used for viewing objects through fog ______.
In an electromagnetic wave in free space the rms value of the electric field is 3 V m-1. The peak value of the magnetic field is ______.
If the magnetic monopole exists, then which of the Maxwell’s equation to be modified?
Write a short note on the radio waves.
If the relative permeability and relative permittivity of the medium is 1.0 and 2.25, respectively. Find the speed of the electromagnetic wave in this medium.
Which of the following are not electromagnetic waves?
Which of the following statement is NOT true about the properties of electromagnetic waves?
The intensity of the light from a bulb incident on a surface is 0.22 W/m2 . The amplitude of the magnetic field in this light-wave is ______× 10–9 T.
(Given: Permittivity of vacuum ε0 = 8.85 × 10–12 C2 N–1 – m–2, speed of light in vacuum c = 3 × 108 ms-1)