# How to find final velocity with acceleration and distance

Well, there’s a formula relating velocity, acceleration and distance traveled in what is called kinematics, the study of motion without regard for the forces that cause it. The formula is V (final)^2 = V (initial)^2 + (2•a•d) where a= acceleration, d= distance traveled, and the .

**Calculating Distance from Initial \u0026 Final Velocity**

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. v-v 0 = at. At constant acceleration, we take the average of the initial and final velocity, thus adding v 0 and dividing by 2 on both the side we get, v-v 0 +v 0 / 2 = (v 0 + at) / 2. v a – v 0 / 2= (v 0 + at) / 2. Thus we get equation of velocity as. v a =v 0 +at/2.

Key Equations ; Velocity from acceleration, v=v0+at(constanta) v = v 0 + a t (constant a) ; Position from velocity and acceleration, x=x0+v0t+12at2(constanta) x. Velocity, acceleration and distance This equation applies to objects in uniform acceleration: (final velocity) 2 – (initial velocity) 2 = 2 × acceleration × distance.

### V-v 0 = at. At constant acceleration, we take the average of the initial and final velocity, thus adding v 0 and dividing by 2 on both the side we get, v-v 0 +v 0 / 2 = (v 0 + at) / 2. v a – v 0 / 2= (v 0 + at) / 2. Thus we get equation of velocity as. v a =v 0 +at/2.: How to find final velocity with acceleration and distance

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