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Concept explainers
A
a. Find a model for the amount of drug in the bloodstream
b. Find the average rate of change of drug in the bloodstream between
![Check Mark](/static/check-mark.png)
a.
A model for the amount of drug in the bloodstream
Answer to Problem 1EA
Solution:
A model for the amount of drug in the bloodstream
Explanation of Solution
Given information:
The dose is
Formula used:
The growth-decay is
Calculation:
The amount of drug in the bloodstream
Here,
The function has the form
The general equation of the half-life
Solving this equation for
Since the half-life of this drug is
Therefore, the model for the amount of drug in the bloodstream
![Check Mark](/static/check-mark.png)
b.
The average rate of change of the drug in the bloodstream between
And the average rate of change of drug in the blood stream between
Answer to Problem 1EA
Solution:
The average rate of change from
The average rate of change from
Explanation of Solution
Given information:
The dose is
Formula used:
The average rate of change of function at
Calculation:
A model for the amount of drug in the bloodstream
The average rate of change of drug in the bloodstream between
Therefore, the average rate of change of drug in the bloodstream between
And the average rate of change of drug in the bloodstream between from
Therefore, the average rate of change of amount of the drug in the bloodstream from
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Chapter 3 Solutions
Pearson eText for Calculus for the Life Sciences -- Instant Access (Pearson+)
- 3. We'd like to know the first time when the population reaches 7000 people. First, graph the function from part (a) on your calculator or Desmos. In the same window, graph the line y = 7000. Notice that you will need to adjust your window so that you can see values as big as 7000! Investigate the intersection of the two graphs. (This video shows you how to find the intersection on your calculator, or in Desmos just hover the cursor over the point.) At what value t> 0 does the line intersect with your exponential function? Round your answer to two decimal places. (You don't need to show work for this part.) (2 points)arrow_forwardSuppose the planet of Tattooine currently has a population of 6500 people and an annual growth rate of 0.35%. Use this information for all the problems below. 1. Find an exponential function f(t) that gives the population of Tattooine t years from now. (3 points)arrow_forwardA house was valued at $95,000 in the year 1988. The value appreciated to $170,000 by the year 2007. A) If the value is growing exponentially, what was the annual growth rate between 1988 and 2007? Round the growth rate to 4 decimal places. r = B) What is the correct answer to part A written in percentage form? r = 3 %.arrow_forward
- B G R + K Match each equation with a graph above - 3(0.9)* 1 a. green (G) 3(1.5)* b. black (K) 3(0.73)* c. blue (B) d. red (R) I ✪ 4(1.21)* - 3(1.21)* e. orange (O)arrow_forwardSuppose the planet of Tattooine currently has a population of 6500 people and an annual growth rate of 0.35%. Use this information for all the problems below.arrow_forwardTwo cables tied together at C are loaded as shown. Given: Q = 130 lb. 8 30° C B Q 3 4 Draw the free-body diagram needed to determine the range of values of P for which both cables remain taut.arrow_forward
- Cable AB is 103 ft long and the tension in the cable is 3900 lb. 56 ft A 50° 20° B x C Identify the angles 0.0, and 8, that define the direction of force. 1 By N 2 Match each of the options above to the items below. 142.1° 57.1° 73.3° 3 8.arrow_forwardIn the given figure, P = 51 lb . 65° C 25° 35° 75 lb P Determine the corresponding magnitude of the resultant. The corresponding magnitude of the resultant is| lb.arrow_forwardCable AB is 103 ft long and the tension in the cable is 3900 lb. 56 ft D y A B 20° 50° x C Identify the x, y, and z components of the force exerted by the cable on the anchor B. 1 F. FI 3 Fy 2 Match each of the options above to the items below. 2,120 lb 1,120 lb -3,076 lbarrow_forward
- In the given figure, P = 51 lb. 65° 25° 35° 75 lb P B Determine the required tension in cable AC, knowing that the resultant of the three forces exerted at point C of boom BC must be directed along BC. The required tension in cable AC is lb.arrow_forwardhelp on this question about Laplace transformation?arrow_forwardHelp me expand this fraction below.arrow_forward
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