Consider the region bounded by the line y = 3, the curve y = Setup an integral with respect to x that gives the area of the region. Area = f(x) dx where f(x)= and the y-axis. Area = , a = Setup an integral with respect to y that gives the area of the region. Area = fg(y) dy where g(y)= Evaluate either (or both) of these integrals to find the area of the region. , C = 1 ,b= d =

Elementary Geometry For College Students, 7e
7th Edition
ISBN:9781337614085
Author:Alexander, Daniel C.; Koeberlein, Geralyn M.
Publisher:Alexander, Daniel C.; Koeberlein, Geralyn M.
Chapter9: Surfaces And Solids
Section9.3: Cylinders And Cones
Problem 6E: Suppose that r=12 cm and h=15 cm in the right circular cylinder. Find the exact and approximate a...
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Consider the region bounded by the line y = 3, the curve y = ✔ and the y-axis.
Setup an integral with respect to a that gives the area of the region.
=
f(x) dx where f(x)=
Area =
, a =
Setup an integral with respect to y that gives the area of the region.
Area =
g(y) dy where g(y)=
Evaluate either (or both) of these integrals to find the area of the region.
Area =
, C =
b=
, d =
Transcribed Image Text:Consider the region bounded by the line y = 3, the curve y = ✔ and the y-axis. Setup an integral with respect to a that gives the area of the region. = f(x) dx where f(x)= Area = , a = Setup an integral with respect to y that gives the area of the region. Area = g(y) dy where g(y)= Evaluate either (or both) of these integrals to find the area of the region. Area = , C = b= , d =
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