3. Assume that 10 mg of a drug was dissolved in 100 ml to make an intravenous infusion. The same amount was injected intravenously. Plasma samples were withdrawn every 4 hours for a day. The following data were generated. Plasma drug concentration(ug/ml) Time(hr) 100 50 4 25 8 12.5 12 6.25 16 3.13 20 1.56 24 Required: A. Plot a graph on coordinate plane based on the above data B. Based on the graph, determine the order of the drug kinetics and give reason why the order is as such? C. Determine the types of order rate constant. Does it agree with your answer to 'B'? D. Label both t12 & elimination rate constant on a graph plotted for 'A', above. Do

Human Anatomy & Physiology (11th Edition)
11th Edition
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Chapter1: The Human Body: An Orientation
Section: Chapter Questions
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3. Assume that 10 mg of a drug was dissolved in 100 ml to make an intravenous
infusion. The same amount was injected intravenously. Plasma samples were
withdrawn every 4 hours for a day. The following data were generated.
Plasma drug concentration(ug/ml) Time(hr)
100
50
4
25
8
12.5
12
6.25
16
3.13
20
1.56
24
Required:
A. Plot a graph on coordinate plane based on the above data
B. Based on the graph, determine the order of the drug kinetics and give reason why
the order is as such?
C. Determine the types of order rate constant. Does it agree with your answer to 'B'?
D. Label both t2 & elimination rate constant on a graph plotted for 'A', above. Do
Transcribed Image Text:3. Assume that 10 mg of a drug was dissolved in 100 ml to make an intravenous infusion. The same amount was injected intravenously. Plasma samples were withdrawn every 4 hours for a day. The following data were generated. Plasma drug concentration(ug/ml) Time(hr) 100 50 4 25 8 12.5 12 6.25 16 3.13 20 1.56 24 Required: A. Plot a graph on coordinate plane based on the above data B. Based on the graph, determine the order of the drug kinetics and give reason why the order is as such? C. Determine the types of order rate constant. Does it agree with your answer to 'B'? D. Label both t2 & elimination rate constant on a graph plotted for 'A', above. Do
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