Breathing is cyclic and a full respiratory cycle from the beginning of inhalation (t =0) to the end of exhalation takes about t= 5 s. The maximum rate of air flow into the lungs is about 0.7 L/s. This explains, in part, why the function f(t) = sin(27/5) has often been used to model the rate of air flow into the lungs. Use this model to find the volume of inhaled air in the lungs at time t. 10 V(t) = liters

College Algebra
1st Edition
ISBN:9781938168383
Author:Jay Abramson
Publisher:Jay Abramson
Chapter3: Functions
Section3.3: Rates Of Change And Behavior Of Graphs
Problem 45SE: A driver of a car stopped at a gas station to fill up his gas tank. He looked at his watch, and the...
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Breathing is cyclic and a full respiratory cycle from the beginning of inhalation (t = 0) to the end of exhalation takes about t = 5 s. The maximum rate
7
of air flow into the lungs is about 0.7 L/s. This explains, in part, why the function f(t) = sin (27/5) has often been used to model the rate of air flow
10
into the lungs. Use this model to find the volume of inhaled air in the lungs at time t.
V(t) =
liters
Transcribed Image Text:Breathing is cyclic and a full respiratory cycle from the beginning of inhalation (t = 0) to the end of exhalation takes about t = 5 s. The maximum rate 7 of air flow into the lungs is about 0.7 L/s. This explains, in part, why the function f(t) = sin (27/5) has often been used to model the rate of air flow 10 into the lungs. Use this model to find the volume of inhaled air in the lungs at time t. V(t) = liters
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