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Acceleration and Momentum   Acceleration — Rate of change of velocity (speed and specific direction) over time. Positive Acceleration- speed increases.

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Presentation on theme: "Acceleration and Momentum   Acceleration — Rate of change of velocity (speed and specific direction) over time. Positive Acceleration- speed increases."— Presentation transcript:

1 Acceleration and Momentum   Acceleration — Rate of change of velocity (speed and specific direction) over time. Positive Acceleration- speed increases Negative Acceleration- speed decreases

2 Average acceleration Formula:
a = vf – vi Where: t a = accerlation (m/s2) vf = velocity final (m/s) vi = velocity initial (m/s) t = time (s) We shorten it as: a = v t Calculating Acceleration Change in velocity is Vf-Vi or V • Answers will look like: m/s2 - "meters per second squared"

3 Acceleration can be graphed with velocity on the y-axis and time on the x-axis.
An object that is decelerating (-)on a velocity-time graph line that slopes down. An object that is accelerating(+) on a velocity time graph  line that slopes upward. A horizontal line would indicate no acceleration or zero speed.

4 Momentum The amount of matter in an object  Mass Interia tendency of an object to resist a change in motion. Momentum —how hard it is to stop an object

5 p = m x v P m v p = momentum (kg •m/s) m = mass (kg)
Formula for Momentum p = momentum (kg •m/s) m = mass (kg) v = velocity (m/s) p = m x v P m v

6 Momentum increases if the mass or velocity of the object increases.
Momentum has direction that is the same as its velocity

7 Law of Conservation of Momentum —the total momentum of objects that collide with each other does not change. It only occurs when other outside forces act on the object.

8 There are two ways collisions can occur.
Objects stick & move still stuck together, although possibly at different speeds (inelastic collision)

9 Two objects bounce off each other when they collide, & transfer momentum from one to the other (elastic collision)

10 In both cases, the total momentum of the objects that collide is the same before and after the collision

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