11 Consider g(y) = -6y + -3² + Determine the intervals on which g is concave down. g is concave down on: 9 is concave down nowhere. 2 Determine the intervals on which g is concave up. 9 is concave up on: g is concave up nowhere. Determine the value and location of any inflection point of g. Enter the solution in (y, g(y)) form. If multiple solutions exist, use a comma-separated list to enter the solutions. g has an inflection point at: Og has no inflection point.

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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12.2)
0
Consider g(y):
2
5
Determine the intervals on which g is concave down.
-6y +
11
==
Og is concave down on:
g is concave down nowhere.
g is concave up on:
9
is concave up nowhere.
7
+
9 has an inflection point at:
O
g has no inflection point.
-y³
Determine the intervals on which g is concave up.
+
Determine the value and location of any inflection point of g. Enter the solution in (y, g(y)) form. If
multiple solutions exist, use a comma-separated list to enter the solutions.
Transcribed Image Text:0 Consider g(y): 2 5 Determine the intervals on which g is concave down. -6y + 11 == Og is concave down on: g is concave down nowhere. g is concave up on: 9 is concave up nowhere. 7 + 9 has an inflection point at: O g has no inflection point. -y³ Determine the intervals on which g is concave up. + Determine the value and location of any inflection point of g. Enter the solution in (y, g(y)) form. If multiple solutions exist, use a comma-separated list to enter the solutions.
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