4. Consider the function f(x) a. = Find the intervals f is increasing. b. Find the intervals f is decreasing. C. Find local maximum (s)/minimum(s), and give x-values at that time. d. Find the intervals f is concave up. Find the intervals f is concave down. e. x² f. Find inflection point (s) if f has.

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...
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question 4 

4. Consider the function f(x) =
a.
Find the intervals f is increasing.
b. Find the intervals f is decreasing.
1
x² - 1°
C. Find local maximum(s)/minimum(s), and give x-values at that time.
d. Find the intervals f is concave up.
e. Find the intervals f is concave down.
f. Find inflection point (s) if f has.
5. Apply Newton's method twice to approximate 7%. Use the initial approximati
S 1 + x² dx using four rectangles and the left endpoint method
0
f(n-1)
6. Approximate
f (x₂) +
n
x=b-a
= 4-
Transcribed Image Text:4. Consider the function f(x) = a. Find the intervals f is increasing. b. Find the intervals f is decreasing. 1 x² - 1° C. Find local maximum(s)/minimum(s), and give x-values at that time. d. Find the intervals f is concave up. e. Find the intervals f is concave down. f. Find inflection point (s) if f has. 5. Apply Newton's method twice to approximate 7%. Use the initial approximati S 1 + x² dx using four rectangles and the left endpoint method 0 f(n-1) 6. Approximate f (x₂) + n x=b-a = 4-
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