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Exercises · 11.3

Q.The photoelectric cut-off voltage in a certain experiment is 1.5 V1.5\ \text{V}. What is the maximum kinetic energy of photoelectrons emitted?

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✓ Free question

The maximum kinetic energy of photoelectrons equals the stopping potential times the electron charge. Here, Kmax=1.5 eVK_{\text{max}} = 1.5\ \text{eV} or 2.4×10−19 J2.4 \times 10^{-19}\ \text{J}.

The photoelectric effect is one of those rare experiments where a single measurement — the cut-off (or stopping) voltage — directly gives you the maximum kinetic energy of the emitted electrons. No need to know the work function or the incident light frequency. That’s the beauty of it.

Why does this work?

When you apply a reverse voltage between the emitter and collector, you create an electric field that opposes the motion of photoelectrons. The most energetic electrons — those with maximum kinetic energy — are the hardest to stop. The cut-off voltage V0V_0 is exactly the voltage needed to bring these fastest electrons to rest just as they reach the collector. At that point, the electrical potential energy gained (eV0eV_0) equals the kinetic energy lost.

So the relation is direct:

Kmax=eV0K_{\text{max}} = e V_0

where e=1.6×10−19 Ce = 1.6 \times 10^{-19}\ \text{C} is the elementary charge.

Now let’s apply it.

  1. Identify the given data.

    The cut-off voltage is V0=1.5 VV_0 = 1.5\ \text{V}.

  2. Write the formula.

Kmax=eV0K_{\text{max}} = e V_0

  1. Compute in electronvolts (eV). Since e×1 V=1 eVe \times 1\ \text{V} = 1\ \text{eV}, the answer in eV is simply the numerical value of V0V_0:

Kmax=1.5 eVK_{\text{max}} = 1.5\ \text{eV}

  1. Convert to joules (SI unit). Multiply by ee:

Kmax=(1.6×10−19 C)×(1.5 V)=2.4×10−19 JK_{\text{max}} = (1.6 \times 10^{-19}\ \text{C}) \times (1.5\ \text{V}) = 2.4 \times 10^{-19}\ \text{J}

Watch out

A common mistake is to forget that the cut-off voltage is the stopping potential — it’s already the voltage that stops the fastest electrons. Do not multiply by anything extra like the work function or frequency. The relation Kmax=eV0K_{\text{max}} = eV_0 is complete.

Tip

In photoelectric problems, always check whether the answer is expected in eV or joules. If the question gives voltage in volts and asks for energy, the eV answer is just the same number — a handy shortcut for multiple-choice questions.

✓Final answer

The maximum kinetic energy is 1.5 eV1.5\ \text{eV} (or 2.4×10−19 J2.4 \times 10^{-19}\ \text{J}).

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