A bicycle moves according to the velocity-versus-time graph shown in the figure. (The vertical axis is marked in increments of 6 m/s and the horizontal axis is marked in increments of 5 s.) a) Find the average acceleration of the bicycle during each of the segments of motion, A, B, and C. = 2.4 a "A m/s2 a. -0 m/s2 -0.6 m/s2 b) Find the displacement of the bicycle during each of the segments of motion, A, B, and C. XA = XB = Xc = В A Time, t (s) Velocity, v (m/s)

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
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Chapter2: Motion In One Dimension
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A bicycle moves according to the velocity-versus-time graph shown in the figure. (The vertical axis is marked in increments of 6 m/s and the horizontal axis is marked in
increments of 5 s.)
a) Find the average acceleration of the bicycle during each of the segments of motion, A, B, and C.
= 2.4
v m/s2
a, = 0
v m/s2
ac
= -0.6
m/s2
b) Find the displacement of the bicycle during each of the segments of motion, A, B, and C.
XA =
XB =
m
B
Time, t (s)
Velocity, v (m/s)
Transcribed Image Text:A bicycle moves according to the velocity-versus-time graph shown in the figure. (The vertical axis is marked in increments of 6 m/s and the horizontal axis is marked in increments of 5 s.) a) Find the average acceleration of the bicycle during each of the segments of motion, A, B, and C. = 2.4 v m/s2 a, = 0 v m/s2 ac = -0.6 m/s2 b) Find the displacement of the bicycle during each of the segments of motion, A, B, and C. XA = XB = m B Time, t (s) Velocity, v (m/s)
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