You are designing a box without a top by cutting squares of equal size from the corners of a piece of cardboard measuring 12 centimeters by 8 centimeters. After removing tne squares, you fold up the sides. A) Write the function that gives the volume of the box, where x is the side length of a square you remove. A) Use the graph of the function to estimate the greatest possible volume. Volume 80 60 B) Identify the domain for this scenario. 40 20 •20 Centimeters

Algebra & Trigonometry with Analytic Geometry
13th Edition
ISBN:9781133382119
Author:Swokowski
Publisher:Swokowski
Chapter4: Polynomial And Rational Functions
Section4.6: Variation
Problem 15E
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8 You are designing a box without a top by cutting squares of equal size from the corners of
a piece of cardboard measuring 12 centimeters by 8 centimeters. After removing tne squares,
you fold up the sides.
A) Write the function that gives the volume of the box, where x is the
Side length of a square you remove.
A) Use the graph of the function to estimate the greatest possible volume.
Volume
80
60
B) Identify the domain for this scenario.
40
20
•20
Centimeters
Transcribed Image Text:8 You are designing a box without a top by cutting squares of equal size from the corners of a piece of cardboard measuring 12 centimeters by 8 centimeters. After removing tne squares, you fold up the sides. A) Write the function that gives the volume of the box, where x is the Side length of a square you remove. A) Use the graph of the function to estimate the greatest possible volume. Volume 80 60 B) Identify the domain for this scenario. 40 20 •20 Centimeters
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