| Megajoules (MJ) | Centijoules (cJ) |
|---|---|
| 1 Megajoule | 100000000 cJ |
| 2 Megajoules | 200000000 cJ |
| 3 Megajoules | 300000000 cJ |
| 4 Megajoules | 400000000 cJ |
| 5 Megajoules | 500000000 cJ |
| 10 Megajoules | 1000000000 cJ |
| 20 Megajoules | 2000000000 cJ |
| 25 Megajoules | 2500000000 cJ |
| 50 Megajoules | 5000000000 cJ |
| 100 Megajoules | 10000000000 cJ |
| Reference | Megajoules (MJ) | Centijoules (cJ) |
|---|---|---|
| One food calorie (kcal) | 0.004184 MJ | 418400 cJ |
| An AA alkaline battery | 0.01 MJ | 1000000 cJ |
| Daily adult food intake | 8.368 MJ | 836800000 cJ |
| One unit on an electricity bill | 3.6 MJ | 360000000 cJ |
| A lightning strike | 1000 MJ | 1 × 1011 cJ |
The megajoule is a unit of energy equal to one million joules. Its symbol is MJ. It is the scale at which energy stops being a laboratory quantity and becomes something with visible physical consequences.
A moving vehicle is the easiest anchor. A family car of 1500 kilograms travelling at 100 kilometres per hour carries about 0.58 megajoules of kinetic energy, and all of it must go somewhere in a collision. Crash structures are designed around exactly this figure, which is why impact energy rather than speed is the quantity written into vehicle safety standards.
Explosives are rated here too. A stick of dynamite releases roughly one megajoule, and a kilogram of TNT about 4.2. Because the TNT equivalent is defined rather than measured, the megajoule provides the bridge between chemical explosives and other energy releases, allowing a meteor impact or an industrial accident to be described on the same scale as a demolition charge.
Daily human energy intake is around ten megajoules, which is the same figure as 2400 kilocalories seen from the other side. Physical work is comparable: a day of manual labour above resting metabolism costs a few megajoules, and a long cycling stage costs perhaps fifteen.
Fuel energy densities live at this scale per unit mass. Petrol holds about 46 megajoules per kilogram, wood around 16, and a modern lithium battery about 0.9. That last comparison, a factor of fifty, is the single number that explains why electric aircraft remain difficult while electric cars do not.
Industrial and military systems use the unit for stored and delivered energy. Railgun and electromagnetic launcher performance is quoted in megajoules at the muzzle, flywheel storage in megajoules, and the energy delivered by a large capacitor bank in a fusion experiment likewise.
Comparing storage technologies in this unit is instructive because the gaps are so wide. A kilogram of petrol holds about 46 megajoules, a kilogram of dry wood about 16, and a kilogram of lithium-ion battery only about 0.9 — some fifty times less than the fuel. That single ratio explains most of the engineering difficulty of electric aviation and much of the weight of an electric car. Working the other way, a kilogram of uranium-235 fissioned completely releases about 80 million megajoules, and a kilogram of matter converted entirely to energy would give 90 billion. The unit spans that whole range without changing prefix more than a few times.
One megajoule equals one million joules, about 0.278 kilowatt-hours, or about 239 kilocalories.
The centijoule is a unit of energy equal to one hundredth of a joule, or 0.01 joules. Its symbol is cJ. It is a perfectly valid member of the metric system, formed the same way as the centimetre and the centilitre, but it is one of the least written units in the whole of the International System, and understanding why says something useful about how prefixes actually get chosen.
The quantity itself is easy to picture. A small coin of about two grams falling half a metre lands with roughly one centijoule. Four keystrokes on a keyboard cost about the same, as does compressing a soft spring by a few millimetres. It is the energy of small deliberate gestures: enough to hear, not enough to feel as force.
The reason the unit is rare is that engineering settled on prefixes that step by a factor of a thousand. Milli, micro, nano and their upward counterparts kilo, mega and giga cover every scale with three orders of magnitude between neighbours, which keeps written values between one and a thousand without ever needing centi or deci. Ten millijoules is the form almost everyone writes, and it means exactly the same thing as one centijoule.
Centi has survived elsewhere because human dimensions happen to suit it. The centimetre matches the width of a finger, the centilitre matches a measure of drink, and the centigram matches a dose. Where a hundredth lands on a convenient human quantity the prefix persists; where it does not, as with the joule, it quietly disappears from practice without ever being withdrawn from the standard.
A few technical fields do keep it. Viscosity is still quoted in centipoise and centistokes across the lubricant and process industries, radiotherapy doses are prescribed in centigray rather than in grays, and soil moisture tension is read in centibars. These are cases where a hundredth of the base unit lands on the working range, exactly as with the centimetre, and the habit has outlived several attempts to modernise it.
When a centijoule does appear, usually in older text, in translated documentation or in a teaching example about prefixes, the safe move is to convert it at once. Multiply by ten to read it as millijoules, or divide by a hundred to read it as joules. No information is lost either way, and the resulting figure will match everything else on the page.
One centijoule equals 0.01 joules, about 0.00239 calories, or about 0.00000278 watt-hours.