The sand in the top part of this timer is in the shape of a cone. The radius of that cone is 1.8 centimeters and the height of that cone is 2.2 centimeters. The sand is falling at a rate of 2 cubic centimeters per minute. Calculate how long it will take the remaining sand to fall through. Round to the nearest tenth.

Algebra and Trigonometry (6th Edition)
6th Edition
ISBN:9780134463216
Author:Robert F. Blitzer
Publisher:Robert F. Blitzer
ChapterP: Prerequisites: Fundamental Concepts Of Algebra
Section: Chapter Questions
Problem 1MCCP: In Exercises 1-25, simplify the given expression or perform the indicated operation (and simplify,...
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Roboto
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d)
The sand in the top part of this timer is in the shape of a
cone. The radius of that cone is 1.8 centimeters and the
height of that cone is 2.2 centimeters.
The sand is falling at a rate of 2 cubic centimeters per
minute. Calculate how long it will take the remaining
sand to fall through. Round to the nearest tenth.
Alef Education Confidential & Proprietary Information
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Transcribed Image Text:nart Learning Gateway-lmäall X + B-D Figures Assignn X t/d/limSJ0xsaQZ0GPoyHUva1h2N_Qsmd0UXITTTT5k73zCo/edit gnment (1) O Tools Add-ons Help Last edit was 6 minutes ago ext Roboto 12 BIUA E 1 2 5 6 d) The sand in the top part of this timer is in the shape of a cone. The radius of that cone is 1.8 centimeters and the height of that cone is 2.2 centimeters. The sand is falling at a rate of 2 cubic centimeters per minute. Calculate how long it will take the remaining sand to fall through. Round to the nearest tenth. Alef Education Confidential & Proprietary Information Page 3 of 4 acer !!! II !!
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