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Q.For question 13, two statements are given – one labelled Assertion (A) and the other labelled Reason (R). Select the correct answer from the codes (A), (B), (C) and (D) below. (A) Both Assertion (A) and Reason (R) are true and Reason (R) is the correct explanation of the Assertion (A). (B) Both Assertion (A) and Reason (R) are true, but Reason (R) is not the correct explanation of the Assertion (A). (C) Assertion (A) is true, but Reason (R) is false. (D) Assertion (A) is false and Reason (R) is also false. Assertion (A) : In photoelectric effect, the kinetic energy of the emitted photoelectrons increases with increase in the intensity of the incident light. Reason (R) : Photoelectric current depends on the wavelength of the incident light.

CBSECBSE Class XII Board 2024MCQ· 1mImportance★★★★★
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The assertion is false because photoelectron kinetic energy depends on frequency, not intensity. The reason is also false because photoelectric current depends on intensity, not wavelength. So both are false — option (D).

The Core Idea: Photoelectric Effect

The photoelectric effect is one of those rare experiments that forced physicists to rethink the nature of light. When light hits a metal surface, electrons can be knocked out. But the way they come out — their energy and how many there are — follows rules that classical wave theory couldn't explain.

Einstein’s breakthrough was to treat light as packets of energy called photons. Each photon carries energy E=hfE = hf, where hh is Planck’s constant and ff is the frequency. When a photon hits an electron, it transfers all its energy. Some of that energy is used to overcome the binding force holding the electron in the metal (the work function ϕ\phi), and the rest becomes the electron’s kinetic energy.

This gives us the photoelectric equation:

Kmax=hf−ϕK_{\text{max}} = hf - \phi

Where KmaxK_{\text{max}} is the maximum kinetic energy of an emitted electron. This is the single most important relationship for this question.

Step-by-Step Analysis

1. What determines the kinetic energy of photoelectrons?

From the equation above, KmaxK_{\text{max}} depends only on:

  • The frequency ff (or wavelength λ\lambda, since f=c/λf = c/\lambda) of the incident light
  • The work function ϕ\phi of the metal (a fixed property of the material)

It does not depend on the intensity of light. Intensity is the energy per second per unit area. More intense light means more photons per second, but each photon still has the same energy hfhf. So each ejected electron gets the same kinetic energy — you just get more electrons.

Watch out

A very common mistake is to think that "more light" means "more energetic electrons." In the photoelectric effect, intensity controls the number of electrons (current), not their individual energy. Frequency controls the energy.

Assertion (A) says: "In photoelectric effect, the kinetic energy of the emitted photoelectrons increases with increase in the intensity of the incident light." This is false.

2. What determines the photoelectric current?

Photoelectric current is the number of electrons emitted per second. This depends on:

  • The intensity of the incident light (more photons → more electrons ejected)
  • Whether the frequency is above the threshold frequency (otherwise no electrons at all) …

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