Match the list-I with list-II and choose the correct option.
| List-I | List-II | ||
| (A). | Microwave | (P). | 1 nm - 400nm | 
| (B). | Ultraviolet | (Q). | 1 nm - 1nm | 
| (C). | X-rays | (R). | 2.5 µm - 750nm | 
| (D). | Infrared | (S). | 1 µm - 1nm | 
Understanding the Problem
We are given different types of electromagnetic waves and their corresponding wavelength ranges. We need to match the waves with their correct uses based on their wavelengths.
Solution
1. Microwave:
Has a wavelength \( \lambda > 700 \, \text{nm} \).
Suitable for communication purposes.
2. Ultraviolet:
Has wavelengths less than \( 400 \, \text{nm} \).
Typically used for sterilization and curing.
3. X-Ray:
Has a very short wavelength in the range of \( 1 \, \text{nm} \) to \( 10^{-3} \, \text{nm} \).
Ideal for medical imaging.
4. Infra-red:
With a wavelength between \( 400 \, \text{nm} \) to \( 700 \, \text{nm} \).
Used in thermal cameras and night vision technologies.
Matching Waves with Wavelengths
Based on the wavelength ranges and uses, we can match the waves as follows:
Microwave - Communication
Ultraviolet - Sterilization
X-Ray - Medical Imaging
Final Answer
Therefore, matching the waves with their wavelengths gives us the correct answer as option (2).
Given below are two statements: one is labelled as Assertion (A) and the other is labelled as Reason (R). 
Assertion (A): Electromagnetic waves carry energy but not momentum. 
Reason (R): Mass of a photon is zero. In the light of the above statements.
choose the most appropriate answer from the options given below:
The dimension of $ \sqrt{\frac{\mu_0}{\epsilon_0}} $ is equal to that of: (Where $ \mu_0 $ is the vacuum permeability and $ \epsilon_0 $ is the vacuum permittivity)
Given below are two statements:
Statement (I):
 
 are isomeric compounds. 
Statement (II): 
 are functional group isomers.
In the light of the above statements, choose the correct answer from the options given below:
The effect of temperature on the spontaneity of reactions are represented as: Which of the following is correct?

The term used by scientists to describe the entire range of light that exists is the electrostatic spectrum. Light is a wave of alternating electric and magnetic fields. The propagation of light doesn't vary from waves crossing an ocean. Like any other wave, light also has a few fundamental properties that describe it. One is its frequency. The frequency is measured in Hz, which counts the number of waves that pass by a point in one second.
The electromagnetic waves that your eyes detect are visible light and oscillate between 400 and 790 terahertz (THz). That’s several hundred trillion times a second.