Further Applications 6. The concentration C of a chemical in the bloodstream t hours after injection into muscle tissue is 3t C(t) = 27+t3t20. a. Complete the table and use it to approximate the time when the concentration is the greatest. 0.5 1. 1.5 2 2.5 Ct) b. Graph the function in your calculator and approximate the time when the concentration is the greatest. c. Use calculus (the first derivative test) to determine analytically the time when the concentration is the greatest.

College Algebra
7th Edition
ISBN:9781305115545
Author:James Stewart, Lothar Redlin, Saleem Watson
Publisher:James Stewart, Lothar Redlin, Saleem Watson
Chapter3: Polynomial And Rational Functions
Section3.1: Quadratic Functions And Models
Problem 56E: When a certain drug is taken orally, the concentration of the drug in the patient's bloodstream...
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Further Applications
6. The concentration C of a chemical in the bloodstream t hours after injection into muscle tissue is
3t
C(t) =
27+t3t20.
a. Complete the table and use it to approximate the time when the concentration is the greatest.
0.5
1.
1.5
2
2.5
Ct)
b. Graph the function in your calculator and approximate the time when the concentration is the greatest.
c. Use calculus (the first derivative test) to determine analytically the time when the concentration is the
greatest.
Transcribed Image Text:Further Applications 6. The concentration C of a chemical in the bloodstream t hours after injection into muscle tissue is 3t C(t) = 27+t3t20. a. Complete the table and use it to approximate the time when the concentration is the greatest. 0.5 1. 1.5 2 2.5 Ct) b. Graph the function in your calculator and approximate the time when the concentration is the greatest. c. Use calculus (the first derivative test) to determine analytically the time when the concentration is the greatest.
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