Which of the below properties explains electromagnetic waves are also known as transverse waves?
A.Polarization
B.Interference
C.Reflection
D.Diffraction
Answer
604.5k+ views
Hint: Only transverse waves can be polarized longitudinal waves cannot be polarized. If an electromagnetic wave is polarized it will show that electromagnetic waves are transverse in nature.
Complete answer:
Transverse waves are those waves in which direction of propagation of wave is perpendicular to direction of oscillations of constituent of wave. Longitudinal waves are those waves in which direction of propagation of wave is along the direction of oscillations of constituent waves.
Polarization is the phenomena in which wave oscillations align themselves in a particular direction after being passed through a polarizer. The light coming from the sun, bulb, etc. is generally unpolarized light. This means wave oscillations, i.e. the oscillations of electric fields, do not have a specific direction and are oscillating in random directions. When a polarizer is kept in the path of this light, it obstructs all of the oscillations which are not all its axis and allows only oscillation of that specific orientation to pass through it. If we place another polarizer (which will now become analyzer) along the path such that its axis is not aligning with the axis of the previous polarizer the intensity of light will get reduced. And if the polarizer is kept perpendicular to the previous polarizer the intensity of light will become zero as shown in the figure below.
This is the evidence that light becomes polarized after passing through the first polarizer (because now no light is able to pass through the analyzer which means all the oscillations were perpendicular to the analyzer and hence were in direction of polarizer). This shows that Electromagnetic waves can be polarized.
Polarization is a property of transverse waves. No longitudinal wave can be polarized. This is because in longitudinal waves direction of oscillations is already in a specific direction i.e. direction of propagation of wave. They are not oscillating in random directions. So by this explanation we concluded that polarization is the property which shows Electromagnetic waves are also known as transverse waves.
Hence option A is the correct answer.
Note:
The phenomena of interference, diffraction and reflection are properties of waves. They can be exhibited by both longitudinal as well as transverse waves. Hence if any wave shows this property it is not necessarily a transverse wave. Polarization is a characteristic property of transverse waves. Hence Polarization is evidence of a wave being transverse.
Complete answer:
Transverse waves are those waves in which direction of propagation of wave is perpendicular to direction of oscillations of constituent of wave. Longitudinal waves are those waves in which direction of propagation of wave is along the direction of oscillations of constituent waves.
Polarization is the phenomena in which wave oscillations align themselves in a particular direction after being passed through a polarizer. The light coming from the sun, bulb, etc. is generally unpolarized light. This means wave oscillations, i.e. the oscillations of electric fields, do not have a specific direction and are oscillating in random directions. When a polarizer is kept in the path of this light, it obstructs all of the oscillations which are not all its axis and allows only oscillation of that specific orientation to pass through it. If we place another polarizer (which will now become analyzer) along the path such that its axis is not aligning with the axis of the previous polarizer the intensity of light will get reduced. And if the polarizer is kept perpendicular to the previous polarizer the intensity of light will become zero as shown in the figure below.
This is the evidence that light becomes polarized after passing through the first polarizer (because now no light is able to pass through the analyzer which means all the oscillations were perpendicular to the analyzer and hence were in direction of polarizer). This shows that Electromagnetic waves can be polarized.
Polarization is a property of transverse waves. No longitudinal wave can be polarized. This is because in longitudinal waves direction of oscillations is already in a specific direction i.e. direction of propagation of wave. They are not oscillating in random directions. So by this explanation we concluded that polarization is the property which shows Electromagnetic waves are also known as transverse waves.
Hence option A is the correct answer.
Note:
The phenomena of interference, diffraction and reflection are properties of waves. They can be exhibited by both longitudinal as well as transverse waves. Hence if any wave shows this property it is not necessarily a transverse wave. Polarization is a characteristic property of transverse waves. Hence Polarization is evidence of a wave being transverse.
Recently Updated Pages
If x a + bt + ct2 where x is in meters and t is in class 11 physics CBSE

A car covers the first half distance between two places class 11 physics CBSE

The resultant of two vectors overrightarrow P and overrightarrow class 11 physics CBSE

Find the value of cos 135 class 11 maths CBSE

A mass M is held in place by an applied force F and class 11 physics CBSE

A solution of glucose in water is labelled as 10 dfracwv class 11 chemistry CBSE

Trending doubts
One Metric ton is equal to kg A 10000 B 1000 C 100 class 11 physics CBSE

Simon Commission came to India in A 1927 B 1928 C 1929 class 11 social science CBSE

How are involuntary actions and reflex actions different class 11 biology CBSE

Earth rotates in which direction A East to west B West class 11 physics CBSE

Study of snakes is called A Herpetology B Ichthyology class 11 biology CBSE

What are polar and nonpolar solvents class 11 chemistry CBSE

