EM radiation -
According to electromagnetic wave theory, energy is emitted continuously from a source in the form of radiations (or waves), known as electromagnetic radiation. Electromagnetic radiations have both magnetic field as well as electric field components which oscillate in the phase perpendicular to each other as well as perpendicular to the direction of wave propagation. These waves do not require any medium for propagation and can propagate through vacuum. There are many types of electromagnetic radiations which constitute what is known as electromagnetic spectrum.
There are several parameters required to characterise or define a wave. These parameters are defined below:
1. Wavelength ($\lambda$): It is the distance travellled by the wave during one complete oscillation.

The maxima are called as Crests and the minima are called as Troughs. Alternatively, the distance between two consecutive crests or two consecutive troughs is also called as the wavelength.
2. Time Period (T): It is the time required for one complete oscillation or one complete cycle by a wave.
3. Frequency ($\nu$): It is number of waves produced by the source in one second
It is the inverse of the time period. Its SI unit is Hertz (Hz).
$\nu=\frac{1}{\mathrm{~T}}$
4. Speed (c): It is the distance travelled by the wave in one second.
In one time period, the wave travels a distance equal to its wavelength.
$\mathrm{c}=\frac{\text { distance }}{\text { time }}=\frac{\text { Wavelength }}{\text { Time Period }}=\frac{\lambda}{\mathrm{T}}$
$\because \nu=\frac{1}{\mathrm{~T}}$
$\therefore c=\nu \times \lambda$
The speed of all the different components of light is the same i.e. they travel with the speed of 3 $\times$ 108 m/s. Their frequency and wavelength are different
5. Wave number ($\bar{\nu}$) : It is the inverse of the wavelength. It can also be defined as the number of wavelengths present in unit length.
$\bar{\nu}=\frac{1}{\lambda}$

The rays present on the left extreme of the spectrum have the greatest frequency, least wavelegth and the greatest energy,
As the frequency increases, wavelength decreases and energy increases.
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| JEE MAIN | Atomic Structure |
Which of the following EM radiation lies in highest energy region?
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The value of Planck's constant is . The velocity of light is
. Which value is closest to the wavelength in nanometers of a quantum of light with frequency of
is ____
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The number of photons emitted by a monochromatic (single frequency) infrared range finder of power and wavelength of
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is
The value of
is ________.(Nearest integer)
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A 50 watt bulb emits monochromatic red light of wavelength of . The number of photons emitted per second by the bulb is
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is ______________.(Nearest integer)
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Which of the following colour have maximum velocity in vacuum?
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A proton accelerated from rest through a potential difference of ‘V’ volts has a wavelength associated with it. An alpha particle in order to have the same wavelength must be accelerated from rest through a potential difference of:
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Which of the following combination of phenomenon cannot be explained by wave nature of electromagnetic radiation?
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Which of the following phenomenon cannot be explained by the wave nature of electromagnetic radiation?
(a) Black body radiation
(b) Diffraction
(c) Interference
(d) Photoelectric effect
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The electric and magnetic fields of an electromagnetic wave are given by:
where x is the position, t is the time, and
What is the speed of the electromagnetic wave in a vacuum?
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Assertion: Electromagnetic waves can be polarised.
Reasoning: The direction of the electric field vector in an electromagnetic wave determines its polarisation.
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The number of incorrect statement/s about the black body from the following is_________
(1) Emit or absorb energy in the form of electromagnetic radiation.
(2) Frequency distribution of the emitted radiation depends on temperature.
(3) At a given temperature, intensity vs frequency curve passes through a maximum value.
(4) The maximum of the intensity vs frequency curve is at a higher frequency at higher temperature compared to that at lower temperature.
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Among I- micro wave II- Infrared
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Ratio of frequency of two radiations having wavelength 4000 and 6000 Ao respectively
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A particular station of All India Radio, New Dehli, broadcasts on a frequency of 1,368 kHz (kilohertz), the wavelength of the electromagnetic radiation emitted by the transmitter (in m) is : [speed of light, $\mathrm{e}=3.0 \times 10^8 \mathrm{~ms}^{-1}$].
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When electrically charged particle moves under accelaration, alternating electrical and magnetic fields are produced and transmitted. These fields are transmitted in the forms of waves called electromagnetic waves or electromagnetic radiation.