The following graph shows the rate of inhalation of oxygen (in liters per minutes) by a person riding a bicycle very rapidly for 10 minutes. Estimate the total volume of oxygen inhaled in the first 20 minutes after the beginning of the ride. Use rectangles with widths of 1 minute and use the left endpoint of each subinterval to determine the theight Calculate the area of the rectangle from minute 1 to minute 2. A=1x 22 (Round to the nearest tenth as needed.) 3- 24 1- 10 12 14 16 18 20 Minutes O Q 2
The following graph shows the rate of inhalation of oxygen (in liters per minutes) by a person riding a bicycle very rapidly for 10 minutes. Estimate the total volume of oxygen inhaled in the first 20 minutes after the beginning of the ride. Use rectangles with widths of 1 minute and use the left endpoint of each subinterval to determine the theight Calculate the area of the rectangle from minute 1 to minute 2. A=1x 22 (Round to the nearest tenth as needed.) 3- 24 1- 10 12 14 16 18 20 Minutes O Q 2
Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
Problem 1RQ
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Question
1

Transcribed Image Text:The following graph shows the rate of inhalation of
oxygen (in liters per minutes) by a person riding a bicycle
very rapidly for 10 minutes. Estimate the total volume of
oxygen inhaled in the first 20 minutes after the beginning
of the ride. Use rectangles with widths of 1 minute and
use the left endpoint of each subinterval to determine the
height.
Calculate the area of the rectangle from minute 1 to
minute 2
A=1x 22
(Round to the nearest tenth as needed.)
The total volume of oxygen inhaled in the first 20 minutes
is about liters
(Round to the nearest tenth as needed.)
Liter per minute
3-
24
4 6 8 10 12 14 16 18 20
Minutes
27
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