Motion equations, displacement, velocity, acceleration, and projectile motion calculators.
Most used tools
Find displacement from initial velocity, acceleration, and time using s = ut + ½at².
Calculate final velocity using the equation v = u + at.
Determine how long a projectile stays in the air using vertical motion equations.
Find the horizontal distance a projectile travels using R = v₀²sin(2θ)/g.
Solve free fall problems for velocity, distance, or time under gravitational acceleration.
Calculate trajectory values for an object launched horizontally from a given height.
15 tools available
Find displacement from initial velocity, acceleration, and time using s = ut + ½at².
Calculate final velocity using the equation v = u + at.
Find average velocity from initial and final velocity using v_avg = (u+v)/2.
Determine how long a projectile stays in the air using vertical motion equations.
Find the horizontal distance a projectile travels using R = v₀²sin(2θ)/g.
Determine the peak height of a projectile using H = v₀²sin²(θ)/(2g).
Solve free fall problems for velocity, distance, or time under gravitational acceleration.
Solve 1D vertical motion problems with initial velocity and gravitational acceleration.
Calculate trajectory values for an object launched horizontally from a given height.
Find the relative velocity between two objects moving along the same line.
Calculate acceleration from two velocity-time data points using the slope of the graph.
Find displacement by computing the area under a velocity-time graph for constant acceleration.
Compute acceleration from two points on a velocity-time graph.
Solve uniform motion problems where velocity is constant using d = vt.
Solve non-uniform motion problems with constant acceleration using kinematic equations.
Our kinematics calculators provide accurate, instant results for physics calculations. Whether you need to compute forces, velocities, energies, or other physical quantities, these tools have you covered.