- Useful energy output
- 750
- Total energy input
- 1000
75.00%
Open with these values75.00%
Result: 75.00 %Efficiency is the useful output divided by the total input, times 100. Keep both figures in the same unit — joules and joules, watts and watts — so the units cancel and the answer is a clean percentage. Anything above 100 % means a typo or two different units, not a better machine.
75.00%
Open with these values80.00%
Open with these values90.00%
Open with these valuesefficiency = output ÷ input × 100
| Output, input | Lost | Efficiency |
|---|---|---|
| 500, 1000 | half | 50 |
| 333, 1000 | two thirds | 33.3 |
| 750, 1000 | a quarter | 75 |
| 1200, 1500 | a fifth | 80 |
| 90, 100 | a tenth | 90 |
Divide the useful output by the total input and multiply by 100. For 750 J of useful output from 1000 J of input that is 75 %. Keep both in the same unit so they cancel.
Efficiency is a ratio, so the result is a plain percentage with no unit. Just make sure output and input are in the same unit — joules and joules, watts and watts, kWh and kWh.
No. The useful output can never exceed the total input; that would create energy from nothing. A reading above 100 % means an input was mistyped or the two figures are in different units.
Every real process loses energy to heat, friction, sound or light that does no useful work. A car engine turns about 20–35 % of its fuel into motion, an LED bulb reaches 80–90 %, a large electric motor can exceed 95 %.
Anywhere you compare what you get out against what you put in: rating engines, motors and pumps, grading appliances and power supplies, sizing solar panels and boilers. One percentage puts very different devices on one scale.
Information, not professional advice.
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