Suppose that the spread of a flu virus on a college campus is modelled by the function y t = 1000 1 + 999 e − 09 t where, y t is the number of infected students at time t (in days, starting with t = 0 ). Use a graphing utility to estimate the day on which the virus is spreading most rapidly.
Suppose that the spread of a flu virus on a college campus is modelled by the function y t = 1000 1 + 999 e − 09 t where, y t is the number of infected students at time t (in days, starting with t = 0 ). Use a graphing utility to estimate the day on which the virus is spreading most rapidly.
Suppose that the spread of a flu virus on a college campus is modelled by the function
y
t
=
1000
1
+
999
e
−
09
t
where,
y
t
is the number of infected students at time
t
(in days, starting with
t
=
0
). Use a graphing utility to estimate the day on which the virus is spreading most rapidly.
Question 2
Let F be a solenoidal vector field, suppose V × F = (-8xy + 12z², −9x² + 4y² + 9z², 6y²), and let
(P,Q,R) = V²F(.725, —.283, 1.73). Then the value of sin(2P) + sin(3Q) + sin(4R) is
-2.024
1.391
0.186
-0.994
-2.053
-0.647
-0.588
-1.851
1 pts
1 pts
Let F and G be vector fields such that ▼ × F(0, 0, 0) = (0.76, -9.78, 3.29), G(0, 0, 0) = (−3.99, 6.15, 2.94), and
G is irrotational. Then sin(5V (F × G)) at (0, 0, 0) is
Question 1
-0.246
0.072
-0.934
0.478
-0.914
-0.855
0.710
0.262
.
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