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NCERT Exemplar · Q45

Q.Match the following

(i) X-rays
(ii) UV
(iii) Long radio waves
(iv) Microwave
(a) ν = 10^0 - 10^4 Hz
(b) ν = 10^10 Hz
(c) ν = 10^16 Hz
(d) ν = 10^18 Hz
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The electromagnetic spectrum is organized by frequency (or wavelength). Matching each region to its characteristic frequency: X-rays → 101810^{18} Hz, UV → 101610^{16} Hz, Microwaves → 101010^{10} Hz, Long radio waves → 100−10410^0 - 10^4 Hz.

Understanding the Electromagnetic Spectrum

The electromagnetic spectrum spans an enormous range of frequencies, from radio waves that oscillate just a few times per second to gamma rays vibrating trillions of trillions of times per second. Each region has characteristic frequencies that determine its energy and how it interacts with matter.

The key insight is that higher frequency means higher energy (since E=hνE = h\nu), and the spectrum follows a natural ordering from low-energy radio waves through visible light to high-energy X-rays and gamma rays.

c=νλc = \nu \lambda

where c=3×108c = 3 \times 10^8 m/s, ν\nu is frequency, and λ\lambda is wavelength.

Matching Each Region

Let me work through the spectrum from lowest to highest frequency:

  1. Long radio waves have the lowest frequencies in the electromagnetic spectrum. These are used for AM radio broadcasting, submarine communication, and can have wavelengths of kilometers. Their frequencies range from a few Hz up to about 10410^4 Hz (10 kHz). This matches (a) ν=100−104\nu = 10^0 - 10^4 Hz.

  2. Microwaves sit between radio waves and infrared. Used in radar, satellite communication, and microwave ovens, they typically have frequencies around 10910^9 to 101110^{11} Hz. The given value of 101010^{10} Hz (10 GHz) is squarely in the microwave range. This matches (b) ν=1010\nu = 10^{10} Hz.

  3. Ultraviolet (UV) radiation lies just beyond visible light on the high-frequency side. UV from the Sun causes sunburn and is divided into UV-A, UV-B, and UV-C. UV frequencies range from about 101510^{15} to 101710^{17} Hz, with 101610^{16} Hz being characteristic. This matches (c) ν=1016\nu = 10^{16} Hz. …

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