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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<...
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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, x velocity, and constant x acceleration.
The first equation of kinematics is rearranged to obtain an expression for time. Further, t...
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