B In Problems 17-26, evaluate each iterated integral. (See the indicated problem for the evaluation of the inner integral.) 20. ∫ − 2 3 ∫ 1 4 ( 4 x + 6 y + 5 ) d y d x (See Problem 10.) 10. (A) ∫ ( 4 x + 6 y + 5 ) d y (B) ∫ 1 4 ( 4 x + 6 y + 5 ) d y
B In Problems 17-26, evaluate each iterated integral. (See the indicated problem for the evaluation of the inner integral.) 20. ∫ − 2 3 ∫ 1 4 ( 4 x + 6 y + 5 ) d y d x (See Problem 10.) 10. (A) ∫ ( 4 x + 6 y + 5 ) d y (B) ∫ 1 4 ( 4 x + 6 y + 5 ) d y
Solution Summary: The author calculates the iterated integral with respect to y.
BIn Problems 17-26, evaluate each iterated integral. (See the indicated problem for the evaluation of the inner integral.)
20.
∫
−
2
3
∫
1
4
(
4
x
+
6
y
+
5
)
d
y
d
x
(See Problem 10.)
10. (A)
∫
(
4
x
+
6
y
+
5
)
d
y
(B)
∫
1
4
(
4
x
+
6
y
+
5
)
d
y
With differentiation, one of the major concepts of calculus. Integration involves the calculation of an integral, which is useful to find many quantities such as areas, volumes, and displacement.
A population of muffles (a feathery species unrelated to tribbles) begins with 30 animals and has 100
animals after 36 hours.
A population of muffles (a feathery species unrelated to tribbles) begins with 30 animals and has 100
animals after 36 hours.
1. Find a formula describing the growth of the muffle population (4 points). Round any decimals to
five decimal places.
Chapter 7 Solutions
MyLab Math with Pearson eText - Stand Alone Access Card - for Calculus for Business, Economics, Life Sciences & Social Sciences, Brief Version (14th Edition)
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