1. The graph shown below represent the position function s(t) of an object moving up and down on a coordinate line. t (time in hours) -2 a. Approximate the times when the velocity is equal to zero. b. Sketch a graph for s (t) the velocity fun ction. c. What are the critical values of s(t)? d. Approximate the intervals of time, when the object is moving away from the origin. e. Approximate the intervals of time, when the object is moving toward the origin. f. Approximate s (2) g. Using the graph of the velocity function sketch a graph for s"(t) the acceleration function. h. What are the critical values of s (1) ? i. Approximate the times when the acceleration is equal to zero. j. Approximate the intervals of time ,when the acceleration is positive. k. Approximate the intervals of time ,when the acceleration is negative. 1. What intervals does s(t) concaves up and con cave down? m. What values of t do inflection poin ts occur for s(t) n. Sketch the graph of s"(t) s(t) (displācement in miles)

Physics for Scientists and Engineers with Modern Physics
10th Edition
ISBN:9781337553292
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter6: Circular Motion And Other Applications Of Newton's Laws
Section: Chapter Questions
Problem 50CP: You have a great job working at a major league baseball stadium for the summer! At this stadium, the...
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1. The graph shown below represent the position function s(t) of an object
moving up and down on a coordinate line.
t (time in hours)
-2
a. Approximate the times when the velocity is equal to zero.
b. Sketch a graph for s (t) the velocity function.
c. What are the critical values of s(t)?
d. Approximate the intervals of time , when the object is moving away from the
origin.
e. Approximate the intervals of time , when the object is moving toward
the origin.
f. Approximate s (2)
g. Using the graph of the velocity function sketch a graph for s'(t) the
acceleration function.
h. What are the critical values of s (1) ?
i. Approximate the times when the acceleration is equal to zero.
j. Approximate the intervals of time ,when the acceleration is positive.
k. Approximate the intervals of time ,when the acceleration is negative.
1. What in tervals does s(t) concaves up and concave down?
m. What values of t doinflection points occur for s(t)
n. Sketch the graph of s"(t)
s(t) (displācement in miles)
Transcribed Image Text:1. The graph shown below represent the position function s(t) of an object moving up and down on a coordinate line. t (time in hours) -2 a. Approximate the times when the velocity is equal to zero. b. Sketch a graph for s (t) the velocity function. c. What are the critical values of s(t)? d. Approximate the intervals of time , when the object is moving away from the origin. e. Approximate the intervals of time , when the object is moving toward the origin. f. Approximate s (2) g. Using the graph of the velocity function sketch a graph for s'(t) the acceleration function. h. What are the critical values of s (1) ? i. Approximate the times when the acceleration is equal to zero. j. Approximate the intervals of time ,when the acceleration is positive. k. Approximate the intervals of time ,when the acceleration is negative. 1. What in tervals does s(t) concaves up and concave down? m. What values of t doinflection points occur for s(t) n. Sketch the graph of s"(t) s(t) (displācement in miles)
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