1.5. The graph to the right shows the position of an ob- ject as a function of time as it moves along a one- dimensional track. Report the following about the ob- ject: (a) displacement from t = 0.0s to t = 1.0s (b) displacement from t = 0.0s to t = 2.0 s (c) total distance traveled from t = 0.0s to t = 1.0s (d) total distance traveled from t = 0.0s to t = 2.0s (e) average speed over the time interval from t = 0.0s to t=2.0s (f) average velocity over the time interval from t = 0.0s to t 2.0s Position (cm) 200 150 100 50 0 0.0 0.5 1.0 1.5 2 Time (s)
1.5. The graph to the right shows the position of an ob- ject as a function of time as it moves along a one- dimensional track. Report the following about the ob- ject: (a) displacement from t = 0.0s to t = 1.0s (b) displacement from t = 0.0s to t = 2.0 s (c) total distance traveled from t = 0.0s to t = 1.0s (d) total distance traveled from t = 0.0s to t = 2.0s (e) average speed over the time interval from t = 0.0s to t=2.0s (f) average velocity over the time interval from t = 0.0s to t 2.0s Position (cm) 200 150 100 50 0 0.0 0.5 1.0 1.5 2 Time (s)
Glencoe Physics: Principles and Problems, Student Edition
1st Edition
ISBN:9780078807213
Author:Paul W. Zitzewitz
Publisher:Paul W. Zitzewitz
Chapter3: Accelerated Motion
Section: Chapter Questions
Problem 68A
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Transcribed Image Text:1.5. The graph to the right shows the position of an ob-
ject as a function of time as it moves along a one-
dimensional track. Report the following about the ob-
ject:
(a) displacement from t = 0.0s to t = 1.0s
(b) displacement from t = 0.0s to t = 2.0 s
(c) total distance traveled from t = 0.0s to t = 1.0s
(d) total distance traveled from t = 0.0s to t = 2.0s
(e) average speed over the time interval from t =
0.0s to t=2.0s
(f) average velocity over the time interval from t =
0.0s to t 2.0s
Position (cm)
200
150
100
50
0
0.0
0.5 1.0
1.5
2
Time (s)
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