B In Problems 15 and 16 , explain which of ( A ), ( B ), and ( C ) are equal before evaluating the expressions. Then evaluate each expression to two decimal places. 16. (A) ∫ 0 10 2 , 000 e 0.05 t e 0.12 ( 10 − t ) d t (B) 2 , 000 e 1.2 ∫ 0 10 e − 0.07 t d t (C) 2 , 000 e 0.05 ∫ 0 10 e 0.12 ( 10 − t ) d t
B In Problems 15 and 16 , explain which of ( A ), ( B ), and ( C ) are equal before evaluating the expressions. Then evaluate each expression to two decimal places. 16. (A) ∫ 0 10 2 , 000 e 0.05 t e 0.12 ( 10 − t ) d t (B) 2 , 000 e 1.2 ∫ 0 10 e − 0.07 t d t (C) 2 , 000 e 0.05 ∫ 0 10 e 0.12 ( 10 − t ) d t
Solution Summary: The author evaluates the expression 2,000e(0.05t)E0.12 (10-t
BIn Problems 15 and 16, explain which of (A), (B), and (C) are equal before evaluating the expressions. Then evaluate each expression to two decimal places.
16. (A)
∫
0
10
2
,
000
e
0.05
t
e
0.12
(
10
−
t
)
d
t
Show that the Laplace equation in Cartesian coordinates:
J²u
J²u
+
= 0
მx2 Jy2
can be reduced to the following form in cylindrical polar coordinates:
湯(
ди
1 8²u
+
Or 7,2 მ)2
= 0.
Draw the following graph on the interval
πT
5π
< x <
x≤
2
2
y = 2 cos(3(x-77)) +3
6+
5
4-
3
2
1
/2 -π/3 -π/6
Clear All Draw:
/6 π/3 π/2 2/3 5/6 x 7/6 4/3 3/2 5/311/6 2 13/67/3 5
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Determine the moment about the origin O of the force F4i-3j+5k that acts at a Point A. Assume that the position vector of A is (a) r =2i+3j-4k, (b) r=-8i+6j-10k, (c) r=8i-6j+5k
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