Linked from
The 47 pages that link to Velocity, each with the reason it gives.
DerivativeRelated: For a position function, its derivative with respect to time is velocity.
Classical mechanicsRelated: Velocity distinguishes motion's direction as well as its speed.
AccelerationRelated: Acceleration measures how velocity changes, not merely how speed changes.
MomentumRelated: Momentum points in the direction of velocity and scales with its magnitude.
Lorentz forceRelated: The magnetic contribution vanishes for a charge at rest.
Kinetic energyRelated: Its magnitude supplies the speed used in the classical energy formula.
VectorRelated: Its direction distinguishes motion that speed alone cannot describe.
SlopeRelated: On a position-time graph, slope represents velocity.
Free fallRelated: Gravity changes the velocity throughout a free-fall trajectory.
Vector additionRelated: Relative and combined motions are calculated by adding velocity vectors.
DisplacementRelated: Average velocity is net displacement divided by elapsed time.
InertiaRelated: Inertia preserves velocity, not merely speed or position.
Power (physics)Related: Instantaneous mechanical power equals force dotted with velocity.
Difference quotientRelated: Position differences divided by elapsed time give average velocity.
Time-reversal symmetryRelated: Its sign reverses when the same trajectory is traversed backward.
AntiderivativeRelated: An antiderivative of velocity gives position as a function of time.
Mechanical energyRelated: Kinetic energy depends on the square of an object's speed.
Vector-valued functionRelated: It is the derivative of a particle’s vector-valued position function.
Linear motionRelated: It describes how quickly position changes along the path.