9 (2). Consider the region R shown in the following figure, which involves the curves of equations x? + y? = 16, x? - y = 4. The double integrals that allow us to calculate the area of the region R corresponds to: R LL A+y 16-y A) + drdy 16-y2 16- drdy + 16-y? drdy B) -2 C) dydr + dydr LL- ²-4 dydz + L dydr 16- D) 16-7

Elementary Geometry For College Students, 7e
7th Edition
ISBN:9781337614085
Author:Alexander, Daniel C.; Koeberlein, Geralyn M.
Publisher:Alexander, Daniel C.; Koeberlein, Geralyn M.
Chapter10: Analytic Geometry
Section10.1: The Rectangular Coordinate System
Problem 40E: Find the exact volume of the solid that results when the region bounded in quadrant I by the axes...
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9 (2). Consider the region R shown in the following
figure, which involves the curves of equations
x² + y? = 16, x² - y = 4.
The double integrals that allow us to calculate the
area of the region R corresponds to:
R
drdy +
16-y2
16-y2
drdy
A)
drdy +
16-y?
drdy
B)
A+y
2-4
C)
16-r
16-7
LL-
2²-4
dydr +
dydr
16-r
D)
16-z
Transcribed Image Text:9 (2). Consider the region R shown in the following figure, which involves the curves of equations x² + y? = 16, x² - y = 4. The double integrals that allow us to calculate the area of the region R corresponds to: R drdy + 16-y2 16-y2 drdy A) drdy + 16-y? drdy B) A+y 2-4 C) 16-r 16-7 LL- 2²-4 dydr + dydr 16-r D) 16-z
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