Given the acceleration versus time graph shown below, Figure 2.8, draw the corresponding position versus time (a) and velocity versus time (b) graphs. Assume that initial velocity at t = 0 equals 0 m/s. Acceleratiojn (m/s) 0.5- 2 4 6 Time (s) 8 10 Courtesy of PASCO Scientific - www.pasco.com
Given the acceleration versus time graph shown below, Figure 2.8, draw the corresponding position versus time (a) and velocity versus time (b) graphs. Assume that initial velocity at t = 0 equals 0 m/s. Acceleratiojn (m/s) 0.5- 2 4 6 Time (s) 8 10 Courtesy of PASCO Scientific - www.pasco.com
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
Transcribed Image Text:5. Given the acceleration versus time graph shown below, Figure 2.8, draw the corresponding position
versus time (a) and velocity versus time (b) graphs. Assume that initial velocity at t = 0 equals 0 m/s.
(a)
Acceleratiojn (m/s)
0.5
-O
0
6
Time (s)
Figure 2.8
8
(b)
10
Courtesy of PASCO Scientific www.pasco.com
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