A student drives a moped along a straight road as described by the velocity versus time graph in the figure. (a) Sketch a graph of the position versus time, aligning the time coordinates of the two graphs. (b) Sketch a graph of the acceleration versus time directly below the velocity - time graph, again aligning the time coordinates. m t = 7.0s ? S m 2 S (d) Find the position relative to the starting point (in m ) at t = 7.0s. m (e) What is the moped's final position (in m ) at t = 9.0s ? m A student drives a moped along a straight road as described by the velocity versus time graph in the figure. 15 10 5 -5 -10 15 (a) Sketch a graph of the position versus time, aligning the time coordinates of the two graphs. x (m) 201 4 x (m) 60 2 6 8 C (b) Sketch a graph of the acceleration versus time directly below the velocity-time graph, again aligning the time coordinates. a (m/s) a (m/s²) 2 4 8 2 6 -2 2 to-0·00 a (m/s²) 4 C 2 4 6 x (m) 40 20 t(s) 00 a (m/s²) of 4 2 2 6 8 2 4 6 -2 2 9-00 -6 (c) What is the acceleration (in m/s²) at t = 7.0 s? m/s² (d) Find the position relative to the starting point (in m) at t = 7.0 s. 69.9 m (e) What is the moped's final position (in m) at t = 9.0 s? m 00
A student drives a moped along a straight road as described by the velocity versus time graph in the figure. (a) Sketch a graph of the position versus time, aligning the time coordinates of the two graphs. (b) Sketch a graph of the acceleration versus time directly below the velocity - time graph, again aligning the time coordinates. m t = 7.0s ? S m 2 S (d) Find the position relative to the starting point (in m ) at t = 7.0s. m (e) What is the moped's final position (in m ) at t = 9.0s ? m A student drives a moped along a straight road as described by the velocity versus time graph in the figure. 15 10 5 -5 -10 15 (a) Sketch a graph of the position versus time, aligning the time coordinates of the two graphs. x (m) 201 4 x (m) 60 2 6 8 C (b) Sketch a graph of the acceleration versus time directly below the velocity-time graph, again aligning the time coordinates. a (m/s) a (m/s²) 2 4 8 2 6 -2 2 to-0·00 a (m/s²) 4 C 2 4 6 x (m) 40 20 t(s) 00 a (m/s²) of 4 2 2 6 8 2 4 6 -2 2 9-00 -6 (c) What is the acceleration (in m/s²) at t = 7.0 s? m/s² (d) Find the position relative to the starting point (in m) at t = 7.0 s. 69.9 m (e) What is the moped's final position (in m) at t = 9.0 s? m 00
Glencoe Physics: Principles and Problems, Student Edition
1st Edition
ISBN:9780078807213
Author:Paul W. Zitzewitz
Publisher:Paul W. Zitzewitz
Chapter2: Representing Motion
Section: Chapter Questions
Problem 66A
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