Let f(z) = (x+ 2)°e, (1) = -r(x+2)e and f"(z) = e"(7 – 2). %3D (a) Find r- and y- intercepts of the graph of y = f(x). (b) Find vertical and horizontal asymptote(s) of f, if it has any. (c) relative extrema of f. Find the critical number(s), intervals(s) of increasing and decreasing and points of (d) Find intervals of concavity and the point(s) of inflection of f, if any. (c) Sketch the graph of f, label all important points from part (a), (b) and (e).

Algebra & Trigonometry with Analytic Geometry
13th Edition
ISBN:9781133382119
Author:Swokowski
Publisher:Swokowski
Chapter7: Analytic Trigonometry
Section7.6: The Inverse Trigonometric Functions
Problem 91E
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Let f(z) = (x+ 2)°e, (1) = -r(x+2)e and f"(z) = e"(7 – 2).
%3D
(a)
Find r- and y- intercepts of the graph of y = f(x).
(b)
Find vertical and horizontal asymptote(s) of f, if it has any.
(c)
relative extrema of f.
Find the critical number(s), intervals(s) of increasing and decreasing and points of
(d)
Find intervals of concavity and the point(s) of inflection of f, if any.
(c)
Sketch the graph of f, label all important points from part (a), (b) and (e).
Transcribed Image Text:Let f(z) = (x+ 2)°e, (1) = -r(x+2)e and f"(z) = e"(7 – 2). %3D (a) Find r- and y- intercepts of the graph of y = f(x). (b) Find vertical and horizontal asymptote(s) of f, if it has any. (c) relative extrema of f. Find the critical number(s), intervals(s) of increasing and decreasing and points of (d) Find intervals of concavity and the point(s) of inflection of f, if any. (c) Sketch the graph of f, label all important points from part (a), (b) and (e).
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