(d) Path D: Distance traveled = m Displacement = m Magnitude of Displacement = m (e) Using the example above, determine if the statement below is true or false. The distance traveled by an object is equal to the magnitude of the displacement when the path taken by the object is a straight line. True False (f) Using the example above, for any path, what is the relationship between the distance traveled and displacement? Displacement of an object is always greater than or equal to the distance traveled. Displacement of an object is always less than or equal to the distance traveled. Displacement of an object is equal to the distance traveled.
(d) Path D: Distance traveled = m Displacement = m Magnitude of Displacement = m (e) Using the example above, determine if the statement below is true or false. The distance traveled by an object is equal to the magnitude of the displacement when the path taken by the object is a straight line. True False (f) Using the example above, for any path, what is the relationship between the distance traveled and displacement? Displacement of an object is always greater than or equal to the distance traveled. Displacement of an object is always less than or equal to the distance traveled. Displacement of an object is equal to the distance traveled.
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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(d) Path D:
Distance traveled =
m
Displacement =
m
Magnitude of Displacement =
m
(e) Using the example above, determine if the statement below is true or false.
The distance traveled by an object is equal to the magnitude of the displacement when the path taken by the object is a straight line.
True
False
(f) Using the example above, for any path, what is the relationship between the distance traveled and displacement?
Displacement of an object is always greater than or equal to the distance traveled.
Displacement of an object is always less than or equal to the distance traveled.
Displacement of an object is equal to the distance traveled.
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