| Decijoules (dJ) | Watt-hours (Wh) |
|---|---|
| 1 Decijoule | 0.0000277777777778 Wh |
| 2 Decijoules | 0.0000555555555556 Wh |
| 3 Decijoules | 0.0000833333333333 Wh |
| 4 Decijoules | 0.000111111111111 Wh |
| 5 Decijoules | 0.000138888888889 Wh |
| 10 Decijoules | 0.000277777777778 Wh |
| 20 Decijoules | 0.000555555555556 Wh |
| 25 Decijoules | 0.000694444444444 Wh |
| 50 Decijoules | 0.00138888888889 Wh |
| 100 Decijoules | 0.00277777777778 Wh |
| Reference | Decijoules (dJ) | Watt-hours (Wh) |
|---|---|---|
| One food calorie (kcal) | 41840 dJ | 1.16222 Wh |
| An AA alkaline battery | 100000 dJ | 2.77778 Wh |
| Daily adult food intake | 83680000 dJ | 2324.44 Wh |
| One unit on an electricity bill | 36000000 dJ | 1000 Wh |
| A lightning strike | 1 × 1010 dJ | 277778 Wh |
The decijoule is a unit of energy equal to one tenth of a joule, or 0.1 joules. Its symbol is dJ. It is formed exactly as the decimetre and the decilitre are, and it is a legitimate part of the metric system, but it is written far less often than either of them because the quantity it names is usually reported as a decimal fraction of a joule instead.
The scale is easy to feel. An apple of a hundred grams falling ten centimetres arrives with about a decijoule. A spring-loaded mousetrap stores a few, a strong finger flick delivers roughly one, and a small pebble tossed underarm carries several. This is the first region on the way up from the millijoule where a person can sense the energy directly as a push rather than as a click.
Product safety uses the range even when it does not use the name. Toy projectile rules are written in joules and tenths of a joule, air-powered replicas are limited to about one joule in several countries, and impact tests on small plastic specimens report results in tenths. The figures are given as 0.3 J or 0.5 J rather than as 3 dJ or 5 dJ, but the quantity being controlled is precisely what the decijoule names.
Deci has survived in other units for reasons of convenience rather than logic. The decilitre is a standard kitchen measure across Scandinavia, Switzerland and much of central Europe, and the cubic decimetre is exactly the litre, which is why the prefix is quietly built into a unit almost everyone uses. The decigram appears in pharmacy and in precious-metal trading, and the decibel exists because the bel itself proved too coarse a step for describing sound.
With the joule, none of those pressures applied. Engineering had already fixed on prefixes stepping by a thousand, and the decimal point does the rest of the work: 0.4 joules is no harder to write than 4 decijoules and fits the same table as 40 joules or 4 kilojoules without a change of unit. A prefix earns its place by shortening what people write, and here it does not.
Encountering the unit is therefore mostly a matter of older literature, of translated technical documents and of teaching material that walks through the whole prefix ladder. The conversion is trivial in either direction: multiply by a hundred for millijoules, divide by ten for joules, and the value drops straight into whatever notation surrounds it.
One decijoule equals 0.1 joules, about 0.0239 calories, or about 0.0000278 watt-hours.
The watt-hour is a unit of energy equal to the energy delivered by one watt of power flowing for one hour, or exactly 3600 joules. Its symbol is Wh. It is the small change of the kilowatt-hour, used wherever quantities of energy are too modest to state in thousands.
Batteries are its main territory. The capacity of a laptop, phone, power tool or portable speaker is quoted in watt-hours, and this is the figure that matters when comparing devices, because it combines the two numbers usually printed on a cell. A battery marked 3000 milliampere-hours at 3.7 volts stores about 11 watt-hours, and the ampere-hour figure alone is meaningless without the voltage.
Aviation regulation has made the unit unexpectedly public. Lithium batteries above 100 watt-hours may not be carried in aircraft cabin baggage without airline approval, and above 160 watt-hours they are banned from passenger aircraft entirely. This is why laptop and camera batteries carry the figure printed on them, and why portable power banks are designed to sit just under the threshold.
Small-scale energy generation uses it as well. A solar panel on a garden light, an energy-harvesting sensor or a bicycle dynamo produces watt-hours per day rather than kilowatt-hours, and low-power electronics designed to run for years on a single cell are budgeted in milliwatt-hours.
The unit shares the criticism levelled at the kilowatt-hour: it combines a coherent SI unit of power with a non-SI unit of time. In strictly SI terms the correct expression is 3600 joules, or 3.6 kilojoules, and scientific writing uses joules. Everywhere else the practical link to a device's power rating wins.
Energy storage systems, from a home battery to a grid installation, scale upward through kilowatt-hours and megawatt-hours from the same starting point, so the whole family shares one arithmetic.
A common confusion is worth clearing up here. Battery cells are usually labelled in ampere-hours or milliampere-hours, which measure charge and not energy, and two cells with the same ampere-hour rating store quite different amounts if their voltages differ. Multiplying ampere-hours by the nominal voltage gives watt-hours: a 3000-milliampere-hour phone cell at 3.85 volts holds about 11.6 watt-hours. That is why capacity comparisons between devices are only meaningful in watt-hours, why airlines set their limits in watt-hours, and why a power bank advertised in milliampere-hours may deliver less than its number suggests once its own conversion losses are counted.
One watt-hour equals 3600 joules, 0.001 kilowatt-hours, or about 0.86 kilocalories.