Based on the graph dete original function h(x) a) interval(s) where h(.

Calculus: Early Transcendentals
8th Edition
ISBN:9781285741550
Author:James Stewart
Publisher:James Stewart
Chapter1: Functions And Models
Section: Chapter Questions
Problem 1RCC: (a) What is a function? What are its domain and range? (b) What is the graph of a function? (c) How...
Question
4. Below is the graph of y = h' (x), the graph of the DERIVATIVE of h(x) , on the interval [-3,5].
Based on the graph determine properties of the
original function h(x).
a) interval(s) where h(x) is increasing
b) interval(s) where h(x) is decreasing
c) location of relative maxima of h(x)
-3
-2
d) location of relative minima of h(x)
e) interval(s) where h(x) is concave upward
f) interval(s) where h(x) is concave downward
y = h'(x)
g) critical numbers of h(x)
h) x-value where h(x) is increasing most rapidly
i) x-value where h(x) is decreasing most rapidly
j) h(2) =?
k) h' (2) =?
1) h" (2) =?
Transcribed Image Text:4. Below is the graph of y = h' (x), the graph of the DERIVATIVE of h(x) , on the interval [-3,5]. Based on the graph determine properties of the original function h(x). a) interval(s) where h(x) is increasing b) interval(s) where h(x) is decreasing c) location of relative maxima of h(x) -3 -2 d) location of relative minima of h(x) e) interval(s) where h(x) is concave upward f) interval(s) where h(x) is concave downward y = h'(x) g) critical numbers of h(x) h) x-value where h(x) is increasing most rapidly i) x-value where h(x) is decreasing most rapidly j) h(2) =? k) h' (2) =? 1) h" (2) =?
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