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Time Total Amount in Blood Let's examine what is happening using a different model: on [days) Stream (mg) 0 10 5. Run logistic regression (as

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Time Total Amount in Blood Let's examine what is happening using a different model: on [days) Stream (mg) 0 10 5. Run logistic regression (as demonstrated in the lecture 1 15.76 for section 4.7) on your completed data table (see right) to 2 find a model for the total amount in the blood stream as a our 3 function of t in hours. Call this model A(t). Store this model 4 in Y1 in your calculator and then write the model below. un 6 ing 9 10 6. Use your derivative rules to find a model for the instantaneous rate of change of the amount in the blood stream as a function of time in hours, A'((). Show your work in the space below. .UZ unt 7. Use your model for A'(t) and/or the nDeriv function to calculate how quickly the Lexapro quantity is increasing: a. at time 2 day's b. at 4 days C. at 6 days. 8. Using your understanding about the logistic model, what will happen to the total amount in the bloodstream if this patient continues this routine long-term? Draw a reasonable sketch of A (() to support your claim. 7 71 olized, it is eliminated continuously from the body at a rate of state concentrations are achieved within 7-10 days of

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