Physicians often treat thyroid cancer with a radioactive form of iodine called iodiro-131 131 I . The radiological half-life of 131 I is approximately 18 days, but the biological half-life for most individual is 4.2 days. The biological half-Ida is shorter because in addition to 131 I being lost to decay, the iodine is also excreted from the body in urine, sweat, and saliva. For a patient treated with 100 mCi (millicuries) of 131 I , the radioactivity level R (in mCi) after t days is given by R = 100 2 − t / 4.2 . a. State law mandates that the patient stay in an isolated hospital room for 2 days after treatment with 131 I . Determine the radioactivity level at the end of 2 days. Round to the nearest whole unit. b. After the patient is released from the hospital, the patient is directed to avoid direct human contact until the radioactivity level drops below 30 mCi. For how many days after leaving the hospital will the patient need to stay in isolation? Round to the nearest tenth of a day.
Physicians often treat thyroid cancer with a radioactive form of iodine called iodiro-131 131 I . The radiological half-life of 131 I is approximately 18 days, but the biological half-life for most individual is 4.2 days. The biological half-Ida is shorter because in addition to 131 I being lost to decay, the iodine is also excreted from the body in urine, sweat, and saliva. For a patient treated with 100 mCi (millicuries) of 131 I , the radioactivity level R (in mCi) after t days is given by R = 100 2 − t / 4.2 . a. State law mandates that the patient stay in an isolated hospital room for 2 days after treatment with 131 I . Determine the radioactivity level at the end of 2 days. Round to the nearest whole unit. b. After the patient is released from the hospital, the patient is directed to avoid direct human contact until the radioactivity level drops below 30 mCi. For how many days after leaving the hospital will the patient need to stay in isolation? Round to the nearest tenth of a day.
Physicians often treat thyroid cancer with a radioactive form of iodine called iodiro-131
131
I
. The radiological half-life of
131
I
is approximately 18 days, but the biological half-life for most individual is 4.2 days. The biological half-Ida is shorter because in addition to
131
I
being lost to decay, the iodine is also excreted from the body in urine, sweat, and saliva. For a patient treated with 100 mCi (millicuries) of
131
I
, the radioactivity level R (in mCi) after t days is given by
R
=
100
2
−
t
/
4.2
.
a. State law mandates that the patient stay in an isolated hospital room for 2 days after treatment with
131
I
. Determine the radioactivity level at the end of 2 days. Round to the nearest whole unit.
b. After the patient is released from the hospital, the patient is directed to avoid direct human contact until the radioactivity level drops below 30 mCi. For how many days after leaving the hospital will the patient need to stay in isolation? Round to the nearest tenth of a day.
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
=
Q6 What will be the allowable bearing capacity of sand having p = 37° and ydry
19 kN/m³ for (i) 1.5 m strip foundation (ii) 1.5 m x 1.5 m square footing and
(iii)1.5m x 2m rectangular footing. The footings are placed at a depth of 1.5 m
below ground level. Assume F, = 2.5. Use Terzaghi's equations.
0
Ne
Na
Ny
35 57.8 41.4 42.4
40 95.7 81.3 100.4
Q1 The SPT records versus depth are given in table below. Find qan for the raft 12%
foundation with BxB-10x10m and depth of raft D-2m, the allowable
settlement is 50mm.
Elevation, m 0.5 2
2 6.5 9.5 13 18 25
No.of blows, N 11 15 29 32 30 44
0
estigate shear
12%
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