In the same way we use motion graphs to calculate velocity, we can use them to calculate acceleration. Let's take a look at how to analyze and interpret these graphs. 中 t (s) v (m/s) 1.For the motion graph to the right, what is the y-axis? 2.For the motion graph to the right, what is the x-axis? 3. How could we use this information to measure acceleration? Write your thoughts: We can also use v-t motion graphs to see if an object is speeding up or slowing down. For each of the graphs below, label whether the object is speeding up, slowing down, traveling at a constant velocity, or standing still. t (s) 示示 t(s) t (s)

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Velocity - Time Graphs
We also know that acceleration = final velocity - initial velocity
time
In the same way we use motion graphs to calculate velocity, we can use them to calculate acceleration.
Let's take a look at how to analyze and interpret these graphs.
A
t (s)
(s/w) A
Name
We can also use v-t motion graphs to see if an object is speeding up or slowing down. For each of the
graphs below, label whether the object is speeding up, slowing down, traveling at a constant velocity, or
standing still.
Example Problem
t (s)
1.For the motion graph to the right, what is the y-axis?
2. For the motion graph to the right, what is the x-axis?
3.
How could we use this information to measure acceleration? Write
your thoughts:
a =
t (s)
Use the y-axis to determine initial velocity (vi):
Use the y-axis to determine final velocity (v₁):
Using the x-axis to determine time
So, using our equation, a = vf - Vi
t (s
Period
(s/w) A
t (s)
10
ik
t (s)
30
Transcribed Image Text:Velocity - Time Graphs We also know that acceleration = final velocity - initial velocity time In the same way we use motion graphs to calculate velocity, we can use them to calculate acceleration. Let's take a look at how to analyze and interpret these graphs. A t (s) (s/w) A Name We can also use v-t motion graphs to see if an object is speeding up or slowing down. For each of the graphs below, label whether the object is speeding up, slowing down, traveling at a constant velocity, or standing still. Example Problem t (s) 1.For the motion graph to the right, what is the y-axis? 2. For the motion graph to the right, what is the x-axis? 3. How could we use this information to measure acceleration? Write your thoughts: a = t (s) Use the y-axis to determine initial velocity (vi): Use the y-axis to determine final velocity (v₁): Using the x-axis to determine time So, using our equation, a = vf - Vi t (s Period (s/w) A t (s) 10 ik t (s) 30
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