At fixed heat input, useful work raises efficiency and lowers waste. Exact arithmetic here means exact results for the stated model inputs; measured inputs still carry uncertainty and significant-figure limits.

highlighted = computed this step

Six joules of work is one fifth

With heat input fixed at 30 joules, useful work 6 joules leaves 24 joules as waste.

η=6 J/30 J=15\eta=6\ \text{J}/30\ \text{J}=\tfrac{1}{5}
Engine work scanInput, work, and waste bars share one energy scale.30 Jinput6 Jwork24 Jwaste

Twelve joules of work raises the fraction

The middle row converts 12 joules to work and rejects 18 joules. Efficiency rises to two fifths.

η=12 J/30 J=25\eta=12\ \text{J}/30\ \text{J}=\tfrac{2}{5}
Engine work scanThe middle checked budget matches the middle row.30 Jinput12 Jwork18 Jwaste

Eighteen joules of work leaves less waste

The third row converts 18 joules and leaves 12 joules. Three rows expose the useful-work fraction.

QinWQwasteη30 J6 J24 J1530 J12 J18 J2530 J18 J12 J35\begin{array}{c|c|c|c}Q_{\text{in}}&W&Q_{\text{waste}}&\eta\\30\ \text{J}&6\ \text{J}&24\ \text{J}&\tfrac{1}{5}\\30\ \text{J}&12\ \text{J}&18\ \text{J}&\tfrac{2}{5}\\30\ \text{J}&18\ \text{J}&12\ \text{J}&\tfrac{3}{5}\\\end{array}
Engine work scanThe last checked budget matches the last row.30 Jinput18 Jwork12 Jwaste