Consider the area between the graphs x + 4y = 17 and x + 4 = y². This area can be computed in two different ways using integrals. First of all it can be computed as a sum of two integrals .b where a = , b = 0, c = 0 and L dx [* f(x) de + [[s(x) dz == f(x) g(x) = Alternatively this area can be computed as a single integral [ h(y) dy where a = B = =☐ a and h(y) Either way we find that the area is

Functions and Change: A Modeling Approach to College Algebra (MindTap Course List)
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Author:Bruce Crauder, Benny Evans, Alan Noell
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Consider the area between the graphs x + 4y = 17 and x + 4 = y². This area can be computed in
two different ways using integrals.
First of all it can be computed as a sum of two integrals
.b
where a =
, b = 0, c = 0 and
L
dx
[* f(x) de + [[s(x) dz
==
f(x)
g(x) =
Alternatively this area can be computed as a single integral
[ h(y) dy
where a =
B = =☐ a
and
h(y)
Either way we find that the area is
Transcribed Image Text:Consider the area between the graphs x + 4y = 17 and x + 4 = y². This area can be computed in two different ways using integrals. First of all it can be computed as a sum of two integrals .b where a = , b = 0, c = 0 and L dx [* f(x) de + [[s(x) dz == f(x) g(x) = Alternatively this area can be computed as a single integral [ h(y) dy where a = B = =☐ a and h(y) Either way we find that the area is
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