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Date: 15-9-2020
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Date: 30-11-2020
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Date: 24-11-2020
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Acceleration
We have seen that velocity tells us how quickly position changes. Acceleration tells us how much velocity changes. The average acceleration is defined as:
and the instantaneous acceleration or just acceleration is defined as:
Now because v = we can write a =
v =
(
) which is often written instead as
, that is the second derivative of position with respect to time.
Example When driving your car, what is your average acceleration if you are able to reach 20 mph from rest in 5 seconds ?
Solution
v2 = 20 mph v1 = 0 t2 = 5 seconds t1 = 0
LECTURE DEMONSTRATION (previous demo continued):
1) Air track glider standing still
2) Air track glider moving at constant speed.
Now let's also plot an a, t graph for
1) Object standing still,
2) Object at constant speed.
Note that the a, t graph is the slope of the v, t graph.
FIGURE 1.1 Acceleration-time graphs for motion.
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