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Motion Along a Straight Line

Kinematic Equations - III

Description

The first two kinematic equations have time as a variable, but the third kinematic equation is independent of time. This equation expresses final velocity as a function of the acceleration and distance over which it acts. The fourth kinematic equation does not have an acceleration term and provides the final position of the object at time t<...

Transcript

The first and the second kinematic equations both have time as a variable.

The third equation is independent of time and includes the relationship between the variables displacement, velocity, and constant acceleration.

The first equation of kinematics is rearranged to obtain an expression for time. Further, t...

Tags

Kinematic EquationsConstant AccelerationFinal VelocityFinal PositionOne Dimensional MotionHigher DimensionsRotational MotionAngular AccelerationProblem Solving StrategiesPhysical Relationships

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