The velocity required to make an object overcome its gravitational force and rotate within an orbit is called orbital velocity. If an object is in a motion and is covering unequal distances for every equal interval of time, we can say it is moving with a variable velocity. If the velocity of an object is changing in either direction or magnitude or both, it is said to have a Variable Velocity. ![]() If a body is traveling at the same speed for a long time and is not changing direction, then its velocity will be considered as Constant Velocity for that particular interval of time. Instantaneous velocity is similar to average velocity but we need to narrow the time intervals i.e. The velocity of an object at a particular instant is known as the instantaneous velocity of that object. When an object is moving in a specific direction, the ratio between the total displacement covered and total time consumed is known as the average velocity of that particular body in motion. Provided an object traveled 300 meters in 2 minutes, to calculate the average velocity you should take the following steps:Ĭhange minutes into seconds (so that the final result would be in meters per second). ![]() Velocity = meter / second written as m/s or ms-1. Velocity = distance / Time where SI unit of distance is the meter and that of time in seconds. Velocity after a certain time of acceleration:įinal velocity = initial velocity + acceleration * timeĪverage velocity = velocity₁ * time₁ + velocity₂ * time₂ +. ![]() This calculator can be used to find initial velocity, final velocity, acceleration, or time as long as three of the variables are known.Ģ. This calculator does assume constant acceleration during the time traveled. This velocity calculator uses the equation that the final velocity of an object is equal to its initial velocity added to its acceleration multiplied by time of travel. The Velocity Calculator is a tool that enables one to estimate the speed of an object. Velocity is the rate of change of the object's position as a function of time.It is given by:
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