aw the position vs. time graph for the following trip made by a bug. Before making your Braph draw the bug's path on a number line so you know what the maximum displacements Are. Alső, add up all the times so you know the total time. Make travelling left negative on your graph and travelling right positive. The bug starts at 2.0 m and.crawls to the left 6.0m in 10.0 seconds. It then rests for 2.0 seconds and crawls a further 2.0 m to the left in 6.0 seconds. iii) The bug then crawls 10.0 m to the right in 8.0 seconds. iv) It returns to its starting point in the next 4.0 seconds.

University Physics Volume 1
18th Edition
ISBN:9781938168277
Author:William Moebs, Samuel J. Ling, Jeff Sanny
Publisher:William Moebs, Samuel J. Ling, Jeff Sanny
Chapter4: Motion In Two And Three Dimensions
Section: Chapter Questions
Problem 24P: Clay Matthews, a linebacker for the Green Bay Packers, can reach a speed of 10.0 m/s. At the start...
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Draw position Vs time graph for following trip made by a bug.
taw the position vs. time graph for the following trip made by a bug. Before making your
Braph draw the bug's path on a number line so you know what the maximum displacements
are. Also, add up all the times so you know the total time. Make travelling left negative on
your graph and travelling right positive.
The bug starts at 2.0 m and crawls to the left 6.0m in 10.0 seconds..
ii) It then rests for 2.0 seconds and crawls a further 2.0 m to the left in 6.0 seconds.
iii) The bug then crawls 10.0 m to the right in 8.0 seconds.
iv) It returns to its starting point in the next 4.0 seconds.
v) Find the velocity of the bug for each of the 4 time intervals a) to d).
vi) What is the total distance covered by the bug?
vii) What is the total displacement of the bug?
viii)
ix) What is the average velocity of the bug?
x) Draw the velocity vs time graph for the bug.
What is the average speed of the bug?
Transcribed Image Text:taw the position vs. time graph for the following trip made by a bug. Before making your Braph draw the bug's path on a number line so you know what the maximum displacements are. Also, add up all the times so you know the total time. Make travelling left negative on your graph and travelling right positive. The bug starts at 2.0 m and crawls to the left 6.0m in 10.0 seconds.. ii) It then rests for 2.0 seconds and crawls a further 2.0 m to the left in 6.0 seconds. iii) The bug then crawls 10.0 m to the right in 8.0 seconds. iv) It returns to its starting point in the next 4.0 seconds. v) Find the velocity of the bug for each of the 4 time intervals a) to d). vi) What is the total distance covered by the bug? vii) What is the total displacement of the bug? viii) ix) What is the average velocity of the bug? x) Draw the velocity vs time graph for the bug. What is the average speed of the bug?
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