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
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
Calculus: Early Transcendentals
8th Edition
ISBN:9781285741550
Author:James Stewart
Publisher:James Stewart
Chapter1: Functions And Models
Section: Chapter Questions
Problem 1RCC: (a) What is a function? What are its domain and range? (b) What is the graph of a function? (c) How...
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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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