can of StarKist tuna has a height of 5.1 cm, a radius of 5.1 cm, a circumference of 32 cm, and a volume of 416.7 cm. a. determine the maximum optimized volume of the can and give an explanation of how you algebraically determined the maximum volume of the can. b. calculate how volume optimized the can is, i.e. the % error c. produce a graph of the can’s volume versus the can’s radius, and mark one point on the graph with the maximum possible volume, and another point on the graph which represents the actual
can of StarKist tuna has a height of 5.1 cm, a radius of 5.1 cm, a circumference of 32 cm, and a volume of 416.7 cm. a. determine the maximum optimized volume of the can and give an explanation of how you algebraically determined the maximum volume of the can. b. calculate how volume optimized the can is, i.e. the % error c. produce a graph of the can’s volume versus the can’s radius, and mark one point on the graph with the maximum possible volume, and another point on the graph which represents the actual
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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A can of StarKist tuna has a height of 5.1 cm, a radius of 5.1 cm, a circumference of 32 cm, and a volume of 416.7 cm.
a. determine the maximum optimized volume of the can and give an explanation of how you algebraically determined the maximum volume of the can.
b. calculate how volume optimized the can is, i.e. the % error
c. produce a graph of the can’s volume versus the can’s radius, and mark one point on the graph with the maximum possible volume, and another point on the graph which represents the actual can
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