1. Use the function g(x) = 2x2-4x %3D x2-9 a. Use a calculator to graph g(x). Make sure you have a window that is large enough to clearly see all the important features of the graph including intercepts, vertex, and potential asymptotes. Make sure that you have a window that is not so large that these important features are too small to clearly see. Xmin: Xmax: Ymin: Ymax: b. Use your calculator's TRACE function to estimate the x-values of any vertical asymptotes. c. Now find the vertical asymptotes algebraically by solving for the zeros of the denominator of the function g(x).

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
Problem 1RQ
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1. Use the function g(x) =
2x²-4x
%3D
x2-9
a. Use a calculator to graph g(x). Make sure you have a window that is large enough to
clearly see all the important features of the graph including intercepts, vertex, and
potential asymptotes. Make sure that you have a window that is not so large that
these important features are too small to clearly see.
Xmin:
Xmax:
Ymin:
Ymax:
b. Use your calculator's TRACE function to estimate the x-values of any vertical asymptotes.
c. Now find the vertical asymptotes algebraically by solving for the zeros of the denominator of
the function g(x).
Transcribed Image Text:1. Use the function g(x) = 2x²-4x %3D x2-9 a. Use a calculator to graph g(x). Make sure you have a window that is large enough to clearly see all the important features of the graph including intercepts, vertex, and potential asymptotes. Make sure that you have a window that is not so large that these important features are too small to clearly see. Xmin: Xmax: Ymin: Ymax: b. Use your calculator's TRACE function to estimate the x-values of any vertical asymptotes. c. Now find the vertical asymptotes algebraically by solving for the zeros of the denominator of the function g(x).
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