Carbon monoxide (CO) binds about 200 times more effectively than oxygen to hemoglobin, forming the complex called carboxyhemoglobin. This tight binding affinity makes death by carbon monoxide poisoning a problem in industrial settings as well as from running cars in a garage. Let p by the partial pressure of CO measured in torTs, then a dissociation curve for CO and hemoglobin is given by y(p) = 0.0625 + p where y is the fraction of hemoglobin bound by CO. a. Differentiate y(p). y (p) = b. Find the second derivative, y" (p). y" (p) =

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Chapter1: Functions And Models
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Carbon monoxide (CO) binds about 200 times more effectively than oxygen to hemoglobin, forming the complex called
carboxyhemoglobin. This tight binding affinity makes death by carbon monoxide poisoning a problem in industrial settings as well as from
running cars in a garage. Let p by the partial pressure of CO measured in torTs, then a dissociation curve for CO and hemoglobin is given
by
y(p) =
0.0625 + p
where y is the fraction of hemoglobin bound by CO.
a. Differentiate y(p).
y (p) =
b. Find the second derivative, y" (p).
y" (p) =
Transcribed Image Text:Carbon monoxide (CO) binds about 200 times more effectively than oxygen to hemoglobin, forming the complex called carboxyhemoglobin. This tight binding affinity makes death by carbon monoxide poisoning a problem in industrial settings as well as from running cars in a garage. Let p by the partial pressure of CO measured in torTs, then a dissociation curve for CO and hemoglobin is given by y(p) = 0.0625 + p where y is the fraction of hemoglobin bound by CO. a. Differentiate y(p). y (p) = b. Find the second derivative, y" (p). y" (p) =
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