Tag: the electromagnetic spectrum

Questions Related to the electromagnetic spectrum

Which one of the following is not a electromagnetic waves?

  1. X - rays

  2. Gamma rays

  3. cathode rays

  4. Infrared rays


Correct Option: C

Neglecting reduced mass effects, what optical transition in the ${ He }^{ + }$ spectrum would have the same wavelength as the first Lyman transition of hydrogen ($n=2$ to $n=1$)

  1. $n = 2$ to $n = 1$

  2. $n = 3$ to $n = 1$

  3. $n = 4$ to $n = 2$

  4. None of the above


Correct Option: C

The rms value of the electric filed of a plane electromagnetic wave is 720 V/m.The average energy density of electric field and the average energy density are 

  1. $4.58*{ 10 }^{ -6 }{ Jm }^{ -3 };2.15*{ 10 }^{ -7 }{ Jm }^{ -3 }$

  2. $4.3{ 10 }^{ -7 }{ Jm }^{ -3 };8.6{ 10 }^{ -7 }{ Jm }^{ -3 }$

  3. $2.15{ 10 }^{ -7 }{ Jm }^{ -3 };4.3{ 10 }^{ -7 }{ Jm }^{ -3 }$

  4. $8.6{ 10 }^{ -7 }{ Jm }^{ -3 };4.3{ 10 }^{ -7 }{ Jm }^{ -3 }$


Correct Option: A

The solar spectrum is -

  1. Continuous

  2. Line spectrum

  3. Spectrum of black lines

  4. Spectrum of black bands


Correct Option: A

The following can be arranged in decreasing order of wave number
A. AM radio
B. TV and FM radio
C. Microwave
D. Short radio wave

  1. A > B > D > C

  2. C > D > B > A

  3. A > B > C > D

  4. D > C > B > A


Correct Option: B

A welder wears special glasses to protect his eyes mostly from the harmful effect of 

  1. Very intense visible light

  2. infrared radiation

  3. ultraviolet rays

  4. microwaves.


Correct Option: C
Explanation:

During the welding process, the ultra-violet rays are produced which are not visible but have an intense effect on the eyes. Therefore, the welder makes use of the special glass to protect his eyes.

Option (C) is correct.

The wavelengths for the light of red and blue colours are roughly $7.8\times 10^{-7}m$ and $4.8\times 10^{-7}m$ respectively. Which colour has the greater speed in vacuum?

  1. Red

  2. Violet

  3. Yellow

  4. All colors have same speed


Correct Option: D
Explanation:

All electromagnetic waves travels at the same speed in vacuum i.e $3\times10^8$ m/s. Due to the absence of matter, there is no change in speed corresponding to wavelength. There is no absorption and re-emission of light in the absence of matter.

An electromagnetic wave has a frequency of $500MHz$ and a wavelength of $60cm$. Name the medium through which it is traveling.

  1. air

  2. water

  3. salt

  4. cardboard


Correct Option: A
Explanation:

The formula for velocity, when given wavelength and the frequency of the wave, is written as: $v=f\lambda $.
In this formula, $f$ represents frequency, $V$ represents the velocity of the wave, and $\lambda $ represents the wavelength of the wave.  
Here, the frequency of the wave is $500 MHz = 500000000 Hz$  and the wavelength is $60 cm = 0.6 m$
Therefore, the velocity of the wave is $3\times { 10 }^{ 8 }m/s$.
This determined velocity is the velocity of the light in air. Hence, the medium through which the wave is travelling is air.

Two waves $A$ and $B$ have wavelength $0.01A^o$ and $9000A^o$ respectively. Compare the speeds of these waves when they travel in vacuum.

  1. $1:9$

  2. $9:1$

  3. $1:1$

  4. None of the above


Correct Option: C
Explanation:

The electromagnetic spectrum consists of the full range of known electromagnetic waves, including gamma rays, X-rays, ultraviolet light, visible light, infrared light, microwaves, and radio waves. All of these are produced by various forms of oscillating charges or currents. Electromagnetic waves are transverse waves which travel at the speed of light and involve oscillating electric and magnetic fields at right angles to each other.
Hence, the speeds of these waves when they travel in vacuum is same as the speed of visible light, that is, $3\times { 10 }^{ 8 }m/s$. Therefore, the ratio of their speeds is $1:1$.

High energetic radiations among the following:

  1. $\lambda=0.01 A $

  2. $\lambda=0.10 A $

  3. $\lambda=1.00 A $

  4. $\lambda=40.0 A $


Correct Option: A
Explanation:

We know that, $E = hv = \dfrac{hc}{\lambda}$
Hence highest energetic rediation is whose wavelength is atleast i.e $ \lambda = 0.01 A^{\circ}$