2) Assume that a 20mm by 20mm section of tissue was placed on top of a Cartesian plane with its center at the origin. The darker, shaded areas found on the tissue sample satisfy x+1 the rational inequality - -> 0. x² -9 a) Sketch a graph of the function x+1 f(x)= x² -9 by hand. Shade the region(s) of the graph that b) satisfy the inequality to reveal the light and dark regions of the biopsy noted by Dr. Philips.

Algebra: Structure And Method, Book 1
(REV)00th Edition
ISBN:9780395977224
Author:Richard G. Brown, Mary P. Dolciani, Robert H. Sorgenfrey, William L. Cole
Publisher:Richard G. Brown, Mary P. Dolciani, Robert H. Sorgenfrey, William L. Cole
Chapter10: Inequalities
Section10.7: Graphing Linear Inequalities
Problem 13OE
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2) Assume that a 20mm by 20mm section of tissue was placed on top of a Cartesian plane
with its center at the origin. The darker, shaded areas found on the tissue sample satisfy
x+1
the rational inequality·
>0.
x² -9
a)
Sketch a graph of the function
x+1
f(x) =
x² -9
by hand.
Shade the region(s) of the graph that
b)
satisfy the inequality to reveal the light and dark regions
of the biopsy noted by Dr. Philips.
10
2
1.
-10
-1
-1
10
-10
17
Transcribed Image Text:2) Assume that a 20mm by 20mm section of tissue was placed on top of a Cartesian plane with its center at the origin. The darker, shaded areas found on the tissue sample satisfy x+1 the rational inequality· >0. x² -9 a) Sketch a graph of the function x+1 f(x) = x² -9 by hand. Shade the region(s) of the graph that b) satisfy the inequality to reveal the light and dark regions of the biopsy noted by Dr. Philips. 10 2 1. -10 -1 -1 10 -10 17
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