The attending physician in an emergency room treats an unconscious patient suspected of a drug overdose. The physician does not know the initial concentration A 0 of the drug in the bloodstream at the time of injection. However, the physician knows that after 3 hr , the drug concentration in the blood is 0.69 μ g / d L and after 4 hr, the concentration is 0.655 μ g /dL . The model A t = A 0 e − k t represents the drug concentration A t in μ g /dL in the bloodstream t hours after injection. The value of k is a constant related to the rate at which the drug is removed by the body. a. Substitute 0.69 for A t and 3 for t in the model and write the resulting equation. b. Substitute 0.655 for A t and 4 for t in the model and write the resulting equation. c. Use the system of equations from parts (a) and (b) to solve for k . Round to 3 decimal places. d. Use the system of equations from parts (a) and (b) to approximate the initial concentration A 0 in μ g /dL at the time of injection. Round to 2 decimal places. e. Determine the concentration of the drug after 12 hr . Round to 2 decimal places.
The attending physician in an emergency room treats an unconscious patient suspected of a drug overdose. The physician does not know the initial concentration A 0 of the drug in the bloodstream at the time of injection. However, the physician knows that after 3 hr , the drug concentration in the blood is 0.69 μ g / d L and after 4 hr, the concentration is 0.655 μ g /dL . The model A t = A 0 e − k t represents the drug concentration A t in μ g /dL in the bloodstream t hours after injection. The value of k is a constant related to the rate at which the drug is removed by the body. a. Substitute 0.69 for A t and 3 for t in the model and write the resulting equation. b. Substitute 0.655 for A t and 4 for t in the model and write the resulting equation. c. Use the system of equations from parts (a) and (b) to solve for k . Round to 3 decimal places. d. Use the system of equations from parts (a) and (b) to approximate the initial concentration A 0 in μ g /dL at the time of injection. Round to 2 decimal places. e. Determine the concentration of the drug after 12 hr . Round to 2 decimal places.
The attending physician in an emergency room treats an unconscious patient suspected of a drug overdose. The physician does not know the initial concentration
A
0
of the drug in the bloodstream at the time of injection. However, the physician knows that after
3
hr
, the drug concentration in the blood is
0.69
μ
g
/
d
L
and after
4
hr,
the concentration is
0.655
μ
g
/dL
.
The model
A
t
=
A
0
e
−
k
t
represents the drug concentration
A
t
in
μ
g
/dL
in the bloodstream
t
hours after injection. The value of
k
is a constant related to the rate at which the drug is removed by the body.
a. Substitute
0.69
for
A
t
and
3
for
t
in the model and write the resulting equation.
b. Substitute
0.655
for
A
t
and
4
for
t
in the model and write the resulting equation.
c. Use the system of equations from parts (a) and (b) to solve for
k
. Round to
3
decimal places.
d. Use the system of equations from parts (a) and (b) to approximate the initial concentration
A
0
in
μ
g
/dL
at the time of injection. Round to
2
decimal places.
e. Determine the concentration of the drug after
12
hr
.
Round to
2
decimal places.
Only 100% sure experts solve it correct complete solutions ok
rmine the immediate settlement for points A and B shown in
figure below knowing that Aq,-200kN/m², E-20000kN/m², u=0.5, Depth
of foundation (DF-0), thickness of layer below footing (H)=20m.
4m
B
2m
2m
A
2m
+
2m
4m
sy = f(x)
+
+
+
+
+
+
+
+
+
X
3
4
5
7
8
9
The function of shown in the figure is continuous on the closed interval [0, 9] and differentiable on the open
interval (0, 9). Which of the following points satisfies conclusions of both the Intermediate Value Theorem
and the Mean Value Theorem for f on the closed interval [0, 9] ?
(A
A
B
B
C
D
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