Starting from the real-battery relation E=Ri+ri\mathcal{E} = R\,i + r\,i and multiplying by the current ii:

Ei=Ri2+ri2\mathcal{E}\,i = R\,i^2 + r\,i^2

Each term is a power and has a precise physical meaning.

The three terms of the balance

  • Ei\mathcal{E}\,i : power supplied by the chemical reaction (conversion of chemical energy into electrical energy).
  • Ri2R\,i^2 : power dissipated in the external load (the useful work).
  • ri2r\,i^2 : power dissipated inside the battery (heats the battery!).

The efficiency of the battery is thus the ratio of useful power to supplied power:

η=RR+r\ev{\eta = \dfrac{R}{R + r}}

The efficiency tends to 1 when RrR \gg r (almost all the power goes to the load), and collapses when RrR \sim r.

Short circuit — caution

When RrR \sim r (or worse, R0R \to 0) the efficiency collapses: leaving a copper wire connected directly from one terminal to the other heats the battery and destroys it, because the whole chemical power Ei\mathcal{E}\,i ends up dissipated in rr. A short circuit is the condition that sends the entire power of the source into internal dissipation.

Topics: Circuiti elettrici Concepts: Potenza · Forza elettromotrice

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