Accurate Calculations
All calculations are performed after converting your values into standard SI units, kilograms, meters per second, and joules.
Calculate the kinetic energy of any moving object using its mass and velocity. You can also rearrange the formula to calculate mass or velocity with accurate unit conversions.
Select the value you want to calculate and enter the known values.
Enter the mass and velocity to calculate the object's energy.
This calculator measures the energy an object has because of its motion. It uses mass and velocity to produce an accurate result in joules.
All calculations are performed after converting your values into standard SI units, kilograms, meters per second, and joules.
Enter mass, speed, and energy using commonly used metric or imperial units without performing manual conversions.
Students, teachers, engineers, and science enthusiasts can view the formula, substituted values, and calculation steps.
The standard formula for translational kinetic energy
Kinetic energy depends on the object's mass and the square of its velocity. The standard unit of kinetic energy is the joule.
Complete the calculation in four simple steps without manually rearranging formulas or converting measurement units.
Choose whether you want to calculate kinetic energy, mass, or velocity.
Provide the values you already know using positive numbers.
Select the measurement unit used for each value you entered.
Calculate and review the final value, conversions, and working steps.
Consider a 1,500-kilogram car traveling at 20 meters per second.
The vehicle has a mass of 1,500 kg and a velocity of 20 m/s.
The car has 300,000 joules, or 300 kilojoules, of kinetic energy.
The following examples show how mass and velocity influence the energy of different moving objects.
| Moving Object | Mass | Velocity | Approximate Kinetic Energy |
|---|---|---|---|
| Tennis ball | 0.058 kg | 30 m/s | 26.1 J |
| Running person | 70 kg | 5 m/s | 875 J |
| Moving bicycle and rider | 90 kg | 10 m/s | 4,500 J |
| Passenger car | 1,500 kg | 20 m/s | 300,000 J |
| Loaded truck | 20,000 kg | 25 m/s | 6,250,000 J |
Find clear answers to frequently asked questions about kinetic energy, mass, velocity, formulas, and measurement units.
Kinetic energy is the energy an object possesses because it is moving. An object with greater mass or velocity generally has more kinetic energy.
The formula is KE = ½mv², where m represents mass in kilograms and v represents velocity in meters per second.
The standard SI unit is the joule. One joule equals one kilogram multiplied by one meter squared per second squared.
Kinetic energy is proportional to velocity squared. Doubling an object's velocity increases its kinetic energy by four times.
Translational kinetic energy cannot be negative because mass is positive and velocity is squared. A stationary object has zero kinetic energy.
Rearrange the formula as v = √(2KE ÷ m). Enter the kinetic energy and mass into the calculator after choosing the Find Velocity mode.
Not always. Kinetic energy depends on both mass and velocity. A lighter object traveling much faster can have more kinetic energy than a heavier but slower object.