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NCERT Exemplar · Q15

Q.Do free electrons travel to region of higher potential or lower potential?

Uttarakhand UbseShort· 2mImportance★★★★★
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Free electrons, being negatively charged, naturally travel from a region of lower electric potential to a region of higher electric potential — the exact opposite of conventional positive charge flow.

Why the answer isn’t obvious at first glance

The confusion here is classic. In everyday language, “potential” sounds like “opportunity” — so you might think electrons want to go where there’s more potential. But in physics, electric potential is defined in terms of the work done on a positive test charge. That definition flips everything for negative charges.

Let’s build the intuition from the ground up.


1. What electric potential actually means

Electric potential VV at a point is the potential energy per unit positive charge placed there. If you put a +1 C+1 \, \text{C} charge at a point with high potential, it has high electric potential energy. A positive charge wants to move from high potential to low potential — just like a ball rolls downhill from high gravitational potential to low gravitational potential.

V=Uq(potential = potential energy per unit charge)V = \frac{U}{q} \quad \text{(potential = potential energy per unit charge)}

For a positive charge q>0q > 0, U=qVU = qV — so higher VV means higher UU, and the charge “falls” toward lower VV.


2. But electrons are negative

An electron has charge q=−eq = -e, where e=1.6×10−19 Ce = 1.6 \times 10^{-19} \, \text{C}. Its potential energy is:

U=qV=(−e)V=−eVU = qV = (-e)V = -eV

Now watch what happens:

  • If VV is high (say +100 V+100 \, \text{V}), then U=−100eU = -100e — a low (very negative) potential energy.
  • If VV is low (say 0 V0 \, \text{V}), then U=0U = 0 — a higher potential energy.

So for an electron, higher potential means lower potential energy, and lower potential means higher potential energy.

Watch out

Never confuse electric potential VV with potential energy UU. For a negative charge, they are inversely related: U=qVU = qV with q<0q < 0.


3. Which way does the electron “fall”?

Nature always drives charges toward lower potential energy — that’s the direction of the electric force.

  • For an electron, lower UU occurs where VV is higher (because U=−eVU = -eV). …

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