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Q.Electromagnetic waves with wavelength 10 nm are called : (A) Infrared waves (B) Ultraviolet rays (C) Gamma rays (D) X-rays

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Electromagnetic waves are classified by wavelength; 10 nm10 \text{ nm} falls in the X-ray region of the spectrum, which spans roughly 0.010.01 to 10 nm10 \text{ nm}.

Understanding the electromagnetic spectrum

The electromagnetic spectrum organizes all EM waves by wavelength (or equivalently, frequency and energy). Each region has characteristic wavelengths that determine how the radiation interacts with matter—and thus its name and applications.

The key is to know the approximate boundaries. Wavelength decreases as we move from radio waves through visible light to gamma rays, and energy increases correspondingly (since E=hcλE = \frac{hc}{\lambda}).

Locating 10 nm10 \text{ nm} on the spectrum

Let me walk through the relevant regions in order of decreasing wavelength:

  1. Infrared waves: These lie just beyond visible red light, with wavelengths from about 700 nm700 \text{ nm} up to 1 mm1 \text{ mm}. Our 10 nm10 \text{ nm} is far too short—off by nearly two orders of magnitude.

  2. Ultraviolet (UV) rays: UV radiation spans roughly 10 nm10 \text{ nm} to 400 nm400 \text{ nm}. At first glance, 10 nm10 \text{ nm} sits right at the boundary. However, the UV region is typically divided into near-UV, far-UV, and extreme-UV (EUV), with EUV extending down to about 10 nm10 \text{ nm}. The transition between EUV and X-rays is somewhat fuzzy, but by convention, 10 nm10 \text{ nm} is usually placed in the X-ray domain.

  3. X-rays: These occupy the range from approximately 0.01 nm0.01 \text{ nm} to 10 nm10 \text{ nm}. Our wavelength of 10 nm10 \text{ nm} falls at the long-wavelength (soft X-ray) end of this band. X-rays are produced by electronic transitions in inner atomic shells or by high-energy processes, and they penetrate matter more deeply than UV.

  4. Gamma rays: These are the highest-energy photons, with wavelengths shorter than about 0.01 nm0.01 \text{ nm} (or 10 pm10 \text{ pm}). They originate from nuclear processes. Our 10 nm10 \text{ nm} is a thousand times too long. …

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