For the function f(x)=- Use CALCULUS! x-1 a. Find the intervals of increase and decrease. Approximate x-values to nearest hundredth. b. Find the relative extrema. Approximate pertinent x- and y-values to nearest hundredth. c. Find the intervals of concavity. Approximate pertinent x-values to nearest hundredth. d. Find any points of inflection. Approximate pertinent x- and y-values to nearest hundredth. e. Numerically approximate lim f(x). x-1 f. Find all x- and y-intercepts of f(x). g. Identify any holes, cusps, vertical asymptotes, horizontal asymptotes, and slant asymptotes. h. Identify any points were the graph of f(x) crosses its slant asymptote. i. Sketch a calculus-quality graph and label all features. You can continue your work on the next 3 pages.

Algebra & Trigonometry with Analytic Geometry
13th Edition
ISBN:9781133382119
Author:Swokowski
Publisher:Swokowski
Chapter7: Analytic Trigonometry
Section7.6: The Inverse Trigonometric Functions
Problem 94E
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Calculus I 

May I please have the solutions for the following questions, more importantly, the sketch?

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For the function f(x)=-
Use CALCULUS!
x-1
a. Find the intervals of increase and decrease. Approximate x-values to nearest hundredth.
b. Find the relative extrema. Approximate pertinent x- and y-values to nearest hundredth.
c. Find the intervals of concavity. Approximate pertinent x-values to nearest hundredth.
d. Find any points of inflection. Approximate pertinent x- and y-values to nearest hundredth.
e. Numerically approximate lim f(x).
x-1
f. Find all x- and y-intercepts of f(x).
g. Identify any holes, cusps, vertical asymptotes, horizontal asymptotes, and slant asymptotes.
h. Identify any points were the graph of f(x) crosses its slant asymptote.
i. Sketch a calculus-quality graph and label all features.
You can continue your work on the next 3 pages.
Transcribed Image Text:For the function f(x)=- Use CALCULUS! x-1 a. Find the intervals of increase and decrease. Approximate x-values to nearest hundredth. b. Find the relative extrema. Approximate pertinent x- and y-values to nearest hundredth. c. Find the intervals of concavity. Approximate pertinent x-values to nearest hundredth. d. Find any points of inflection. Approximate pertinent x- and y-values to nearest hundredth. e. Numerically approximate lim f(x). x-1 f. Find all x- and y-intercepts of f(x). g. Identify any holes, cusps, vertical asymptotes, horizontal asymptotes, and slant asymptotes. h. Identify any points were the graph of f(x) crosses its slant asymptote. i. Sketch a calculus-quality graph and label all features. You can continue your work on the next 3 pages.
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