Figure < 2012 > A single-scoop ice cream cone is a composite body made from a single scoop of ice cream placed into a cone. (Figure 2) Assume that the scoop of ice cream is a sphere with radius r = 3.20 cm that is placed into a 9.90 cm tall cone. The interior height of the cone is 9.00 cm. The cone has an exterior radius of 3.10 cm and an interior radius of 2.80 cm. The scoop of ice cream sits on the cone's interior radius and extends into the cone some distance. Find the centroid for the cone (the scoop of ice cream and the cone). Express your answer numerically in centimeters to three significant figures. ▸ View Available Hint(s) = 10.7 cm Submit ✓ Correct Correct answer is shown. Your answer 10.8 cm was either rounded differently or used a different number of significant figures than required for this part. ▾ Part C Previous Answers The specific weights of the cone and scoop of ice cream are Yeone = 2000 N/m³ and ice cream = 7500 N/m³, respectively. What is, the location of the center of gravity of the cone (i.e., the cone and sco of ice cream)? Express your answer numerically in meters to three significant figures. ▸ View Available Hint(s) [ΧΕΙ ΑΣΦ Submit Request Answer Part D Complete previous part(s) 2 m

Mathematics For Machine Technology
8th Edition
ISBN:9781337798310
Author:Peterson, John.
Publisher:Peterson, John.
Chapter64: Volumes Of Spheres And Composite Solid Figures
Section: Chapter Questions
Problem 27A
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Question
Figure
9.90 cm
-3.10 cm
y
< 2 of 2
Part B
A single-scoop ice cream cone is a composite body made from a single scoop of ice cream placed into a cone. (Figure 2) Assume that the scoop of ice cream is a sphere with radius r = 3.20 cm that is placed
into a 9.90 cm tall cone. The interior height of the cone is 9.00 cm. The cone has an exterior radius of 3.10 cm and an interior radius of 2.80 cm. The scoop of ice cream sits on the cone's interior radius and
extends into the cone some distance. Find the Z centroid for the cone (the scoop of ice cream and the cone).
Express your answer numerically in centimeters to three significant figures.
► View Available Hint(s)
Z = 10.7 cm
Submit
Part C
Correct
Correct answer is shown. Your answer 10.8 cm was either rounded differently or used a different number of significant figures than required for this part.
Z =
The specific weights of the cone and scoop of ice cream are Ycone = 2000 N/m³ and Vice cream = 7500 N/m³, respectively. What is z, the location of the center of gravity of the cone (i.e., the cone and scoop
of ice cream)?
Express your answer numerically in meters to three significant figures.
► View Available Hint(s)
Previous Answers
Submit
—| ΑΣΦ
Provide Feedback
Request Answer
Part D Complete previous part(s)
vec
?
m
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Transcribed Image Text:Figure 9.90 cm -3.10 cm y < 2 of 2 Part B A single-scoop ice cream cone is a composite body made from a single scoop of ice cream placed into a cone. (Figure 2) Assume that the scoop of ice cream is a sphere with radius r = 3.20 cm that is placed into a 9.90 cm tall cone. The interior height of the cone is 9.00 cm. The cone has an exterior radius of 3.10 cm and an interior radius of 2.80 cm. The scoop of ice cream sits on the cone's interior radius and extends into the cone some distance. Find the Z centroid for the cone (the scoop of ice cream and the cone). Express your answer numerically in centimeters to three significant figures. ► View Available Hint(s) Z = 10.7 cm Submit Part C Correct Correct answer is shown. Your answer 10.8 cm was either rounded differently or used a different number of significant figures than required for this part. Z = The specific weights of the cone and scoop of ice cream are Ycone = 2000 N/m³ and Vice cream = 7500 N/m³, respectively. What is z, the location of the center of gravity of the cone (i.e., the cone and scoop of ice cream)? Express your answer numerically in meters to three significant figures. ► View Available Hint(s) Previous Answers Submit —| ΑΣΦ Provide Feedback Request Answer Part D Complete previous part(s) vec ? m Next >
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