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Q.Choose the correct statement: (A) Photons of light show diffraction whereas electrons do not show diffraction. (B) Electrons have momentum whereas photons do not have momentum. (C) Photons of light and electrons both exhibit dual nature. (D) All electromagnetic radiations do not have photons.

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Both photons and electrons exhibit wave-particle duality — the key idea is that both show diffraction (wave behaviour) and carry momentum (particle behaviour). The correct statement is (C).

Concept First: De Broglie Wavelength and Dual Nature

The entire foundation of modern quantum mechanics rests on wave-particle duality — the idea that every moving particle has a wavelength associated with it. Louis de Broglie proposed this in 1924, and it’s summarised by:

λ=hp\lambda = \frac{h}{p}

where λ\lambda is the de Broglie wavelength, hh is Planck’s constant, and pp is the momentum.

This means:

  • Photons (light quanta) have momentum p=hλp = \frac{h}{\lambda} and show wave phenomena like diffraction and interference.
  • Electrons (particles with mass) also have a de Broglie wavelength λ=hmv\lambda = \frac{h}{mv} and therefore do show diffraction — this was famously confirmed by Davisson and Germer in 1927.

So both photons and electrons possess both wave-like and particle-like properties. That is the dual nature.


Step-by-Step Analysis

1. Statement (A): “Photons of light show diffraction whereas electrons do not show diffraction.”

This is false. Electrons do show diffraction — the Davisson–Germer experiment proved it. In fact, electron diffraction is routinely used in techniques like transmission electron microscopy (TEM). The wavelength of an electron can be tuned by changing its accelerating voltage, making it a practical tool.

Watch out

A common mistake is to think diffraction is only for light. In reality, any particle with a de Broglie wavelength comparable to the slit spacing will diffract — electrons, neutrons, even large molecules like buckyballs have been shown to diffract.

2. Statement (B): “Electrons have momentum whereas photons do not have momentum.” …

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