Deck 6: Applications of Integration
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Deck 6: Applications of Integration
1
Solve the problem.
-Given the velocity and initial position of a body moving along a coordinate line at time t, find the body's position at time t. v = cos
t, s(0) = 1
A) s = 2 sin
t
B) s = sin t
C) s =
sin
t
D) s =
sin
t +
-Given the velocity and initial position of a body moving along a coordinate line at time t, find the body's position at time t. v = cos

A) s = 2 sin

B) s = sin t
C) s =


D) s =


s =
sin
t


2
Solve the problem.
-Given the velocity and initial position of a body moving along a coordinate line at time t, find the body's position at time t. v =
sin
, s(
) = 2
A) s = -2 cos
+ 8
B) s = -2 cos
+ 3
C) s = -2 cos
+ 4
D) s = 2 cos
+ 4
-Given the velocity and initial position of a body moving along a coordinate line at time t, find the body's position at time t. v =



A) s = -2 cos

B) s = -2 cos

C) s = -2 cos

D) s = 2 cos

s = -2 cos
+ 4

3
Solve the problem.
-Given the acceleration, initial velocity, and initial position of a body moving along a coordinate line at time t, find the body's position at time t. a = 16, v(0) = 7, s(0) = 11
A) s = 8
+ 7t
B) s = -8
- 7t + 11
C) s = 8
+ 7t + 11
D) s = 16
+ 7t + 11
-Given the acceleration, initial velocity, and initial position of a body moving along a coordinate line at time t, find the body's position at time t. a = 16, v(0) = 7, s(0) = 11
A) s = 8

B) s = -8

C) s = 8

D) s = 16

s = 8
+ 7t + 11

4
Solve the problem.
-Given the acceleration, initial velocity, and initial position of a body moving along a coordinate line at time t, find the body's position at time t. a = 20 cos 5t, v(0) = 8, s(0) = 12
A) s = -
sin 5t + 8t + 
B) s =
cos 5t - 8t + 
C) s = -
cos 5t + 8t + 
D) s =
sin 5t + 8t + 
-Given the acceleration, initial velocity, and initial position of a body moving along a coordinate line at time t, find the body's position at time t. a = 20 cos 5t, v(0) = 8, s(0) = 12
A) s = -


B) s =


C) s = -


D) s =


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5
Solve the problem.
-A certain company has found that its expenditure rate per day (in hundreds of dollars) on a certain type of job is given by
where x is the number of days since the start of the job. Find the expenditure if the job takes 5 days.
A) $ 170
B) $ 59
C) $ 17,000
D) $ 5900
-A certain company has found that its expenditure rate per day (in hundreds of dollars) on a certain type of job is given by

A) $ 170
B) $ 59
C) $ 17,000
D) $ 5900
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6
Solve the problem.
-After a new firm starts in business, it finds that its rate of profits (in hundreds of dollars per year) after t years of operation is given by
Find the profit in year 8 of the operation.
A) $ 20,300
B) $ 64,000
C) $ 57,050
D) $ 46,900
-After a new firm starts in business, it finds that its rate of profits (in hundreds of dollars per year) after t years of operation is given by

A) $ 20,300
B) $ 64,000
C) $ 57,050
D) $ 46,900
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7
Solve the problem.
-In a certain memory experiment, subject A is able to memorize words at a rate given by
In the same memory experiment, subject B is able to memorize at the rate given by
How many more words does subject B memorize from t = 0 to t = 14 (during the first 14 minutes)?
A) 31
B) -8
C) 36
D) -3
-In a certain memory experiment, subject A is able to memorize words at a rate given by


A) 31
B) -8
C) 36
D) -3
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8
Provide an appropriate response.
-Which of the following integrals, if any, calculates the area of the shaded region?
A)
dx
B)
dx
C)
dx
D)
dx
-Which of the following integrals, if any, calculates the area of the shaded region?

A)

B)

C)

D)

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9
Find the area of the shaded region.
-
A) 937/12
B) 343/12
C) 81/12
D) 768/12
-

A) 937/12
B) 343/12
C) 81/12
D) 768/12
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10
Find the area of the shaded region.
-
A) 1153/12
B) - 343/12
C) 937/12
D) 343/12
-

A) 1153/12
B) - 343/12
C) 937/12
D) 343/12
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11
Find the area of the shaded region.
-
A) 9/2
B) 41/6
C) 3
D) 25/6
-

A) 9/2
B) 41/6
C) 3
D) 25/6
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12
Find the area of the shaded region.
-
A) 7/15
B) 76/15
C) 22/15
D) 2
-

A) 7/15
B) 76/15
C) 22/15
D) 2
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13
Find the area of the shaded region.
-
A) 9/2
B) 8/3
C) 19/3
D) 11/6
-

A) 9/2
B) 8/3
C) 19/3
D) 11/6
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14
Find the area of the shaded region.
-
A) 128/3
B) 32
C) 64/3
D) 32/3
-

A) 128/3
B) 32
C) 64/3
D) 32/3
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15
Find the area of the shaded region.
-
A) 256/5
B) 516/5
C) 2816/5
D) 512/5
-

A) 256/5
B) 516/5
C) 2816/5
D) 512/5
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16
Find the area of the shaded region.
-
A) 4 +
B) 4
C) 8
D)
-

A) 4 +

B) 4
C) 8
D)

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17
Find the area of the shaded region.
-
A) 2
B) 2 +
C) 2 -
D) 2 +
-

A) 2
B) 2 +
C) 2 -

D) 2 +

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18
Find the area of the shaded region.
-
A)
B) 2 -
C) 1 +
D) 1 -
-

A)

B) 2 -

C) 1 +

D) 1 -

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19
Find the area enclosed by the given curves.
-y = 2x - x2, y = 2x - 4
A) 37/3
B) 32/3
C) 34/3
D) 31/3
-y = 2x - x2, y = 2x - 4
A) 37/3
B) 32/3
C) 34/3
D) 31/3
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20
Find the area enclosed by the given curves.
-y = x3, y = 4x
A) 4
B) 8
C) 16
D) 2
-y = x3, y = 4x
A) 4
B) 8
C) 16
D) 2
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21
Find the area enclosed by the given curves.
-y = x, y = x2
A) 1/12
B) 1/3
C) 1/6
D) 1/2
-y = x, y = x2
A) 1/12
B) 1/3
C) 1/6
D) 1/2
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22
Find the area enclosed by the given curves.
-y =
x2, y = -x2 + 6
A) 8
B) 16
C) 32
D) 4
-y =

A) 8
B) 16
C) 32
D) 4
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23
Find the area enclosed by the given curves.
-y = - 4sin x, y = sin 2x, 0 x
A) 1/2
B) 8
C) 16
D) 4
-y = - 4sin x, y = sin 2x, 0 x
A) 1/2
B) 8
C) 16
D) 4
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24
Find the area enclosed by the given curves.
-y = sin x, y =
x,
x 
A) 1 -
B)
- 
C)
- 
D)
+
-y = sin x, y =



A) 1 -

B)


C)


D)


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25
Find the area enclosed by the given curves.
-y =
x, y =
x, x =
, and x = 
A) /2
B)
C) 3 /4
D) /4
-y =




A) /2
B)
C) 3 /4
D) /4
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26
Find the area enclosed by the given curves.
-Find the area of the region in the first quadrant bounded by the line y = 8x, the line x = 1, the curve
and the x-axis.
A) 3/4
B) 3/2
C) 6
D) 5/4
-Find the area of the region in the first quadrant bounded by the line y = 8x, the line x = 1, the curve

A) 3/4
B) 3/2
C) 6
D) 5/4
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27
Find the area enclosed by the given curves.
-Find the area of the region in the first quadrant bounded on the left by the line y =
and on the right by the curves y =
x and y =
x. (Round to four decimal places.)
A) 0.3094
B) 0.5858
C) 4.3094
D) 0.4126
-Find the area of the region in the first quadrant bounded on the left by the line y =



A) 0.3094
B) 0.5858
C) 4.3094
D) 0.4126
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28
Find the area enclosed by the given curves.
-Find the area of the region in the first quadrant bounded on the left by the y-axis, below by the line
above left by y = x + 4, and above right by y = -
+ 10.
A) 39/2
B) 73/6
C) 39/4
D) 15
-Find the area of the region in the first quadrant bounded on the left by the y-axis, below by the line


A) 39/2
B) 73/6
C) 39/4
D) 15
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29
Find the area enclosed by the given curves.
-Find the area between the curves y = ln x and y = ln 2x from x = 1 to x = 5.
A) ln 32
B) ln 16 - 8
C) ln 16
D) ln 2
-Find the area between the curves y = ln x and y = ln 2x from x = 1 to x = 5.
A) ln 32
B) ln 16 - 8
C) ln 16
D) ln 2
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30
Find the area enclosed by the given curves.
-Find the area of the "triangular" region in the first quadrant that is bounded above by the curve
, below by the curve y =
, and on the right by the line x = ln 2.
A) 1/2
B) 0
C) 11/2
D) 2 ln 2
-Find the area of the "triangular" region in the first quadrant that is bounded above by the curve


A) 1/2
B) 0
C) 11/2
D) 2 ln 2
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31
Find the area enclosed by the given curves.
-Find the area of the region between the curve y = 2x/(1 +
) and the interval
of the x-axis.
A) 2 ln 17
B) 0
C) 2
D) ln 17
-Find the area of the region between the curve y = 2x/(1 +


A) 2 ln 17
B) 0
C) 2

D) ln 17
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32
Find the area enclosed by the given curves.
-Find the area of the region between the curve y =
and the interval 0 x 2 on the x-axis.
A) 24/ ln 5
B) 25
C) 25 / In 5
D) 24 In 5
-Find the area of the region between the curve y =

A) 24/ ln 5
B) 25
C) 25 / In 5
D) 24 In 5
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33
Find the volume of the described solid.
-The solid lies between planes perpendicular to the x-axis at
and
. The cross sections perpendicular to the x-axis between these planes are squares whose bases run from the parabola
to the parabola
.
A) 245
B) 2450
C) 1225
D) 2400
-The solid lies between planes perpendicular to the x-axis at




A) 245
B) 2450
C) 1225
D) 2400
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34
Find the volume of the described solid.
-The solid lies between planes perpendicular to the x-axis at
and
. The cross sections perpendicular to the x-axis between these planes are squares whose bases run from the semicircle
to the semicircle
.
A) 72
B) 18
C) 144
D) 36
-The solid lies between planes perpendicular to the x-axis at




A) 72
B) 18
C) 144
D) 36
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35
Find the volume of the described solid.
-The base of the solid is the disk
+
9. The cross sections by planes perpendicular to the
between
and
are isosceles right triangles with one leg in the disk.
A) 144
B) 90
C) 18
D) 72
-The base of the solid is the disk





A) 144
B) 90
C) 18
D) 72
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36
Find the volume of the described solid.
-The solid lies between planes perpendicular to the x-axis at x = - 3 and x = 3. The cross sections perpendicular to the x-axis are semicircles whose diameters run from
to 
A) 72
B) 9
C) 36
D) 18
-The solid lies between planes perpendicular to the x-axis at x = - 3 and x = 3. The cross sections perpendicular to the x-axis are semicircles whose diameters run from


A) 72
B) 9
C) 36
D) 18
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37
Find the volume of the described solid.
-The solid lies between planes perpendicular to the x-axis at x = - 2 and x = 2. The cross sections perpendicular to the x-axis are circular disks whose diameters run from the parabola y =
to the parabola y = 8 -
.
A) 32/3
B) 512/15
C) 256/15
D) 256/5
-The solid lies between planes perpendicular to the x-axis at x = - 2 and x = 2. The cross sections perpendicular to the x-axis are circular disks whose diameters run from the parabola y =


A) 32/3
B) 512/15
C) 256/15
D) 256/5
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38
Find the volume of the described solid.
-The base of a solid is the region between the curve y = 4cos x and the x-axis from x = 0 to
. The cross sections perpendicular to the x-axis are squares with bases running from the x-axis to the curve.
A) 8
B) 2
C) 4
D) 15/4
-The base of a solid is the region between the curve y = 4cos x and the x-axis from x = 0 to

A) 8
B) 2
C) 4
D) 15/4
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39
Find the volume of the described solid.
-The solid lies between planes perpendicular to the x-axis at x = /6 to x = /2. The cross sections perpendicular to the x-axis are circular disks with diameters running from the curve
to the curve 
A)
- 
B)
- 
C) (
- 1) + 
D) (2
- 2) -
-The solid lies between planes perpendicular to the x-axis at x = /6 to x = /2. The cross sections perpendicular to the x-axis are circular disks with diameters running from the curve


A)


B)


C) (


D) (2


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40
Find the volume of the solid generated by revolving the shaded region about the given axis.
-About the x-axis

A) 18
B) 48
C) 168
D) 24
-About the x-axis


A) 18
B) 48
C) 168
D) 24
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41
Find the volume of the solid generated by revolving the shaded region about the given axis.
-About the x-axis

A) 648/5
B) 3159/5
C) 1053/5
D)18
-About the x-axis


A) 648/5
B) 3159/5
C) 1053/5
D)18
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42
Find the volume of the solid generated by revolving the shaded region about the given axis.
-About the x-axis

A) 18
B) 21
C) 6
D) 36
-About the x-axis


A) 18
B) 21
C) 6
D) 36
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43
Find the volume of the solid generated by revolving the shaded region about the given axis.
-About the y-axis

A) 50/3
B) 20/3
C) 5
D) 40/3
-About the y-axis


A) 50/3
B) 20/3
C) 5
D) 40/3
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44
Find the volume of the solid generated by revolving the shaded region about the given axis.
-About the y-axis

A)
B) 625
C) 50
D) 25
-About the y-axis


A)

B) 625
C) 50
D) 25
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45
Find the volume of the solid generated by revolving the shaded region about the given axis.
-About the y-axis

A) 5 + 5
B) 10 -

C) 20 - 5
D) 20 - 5
-About the y-axis


A) 5 + 5

B) 10 -


C) 20 - 5

D) 20 - 5
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46
Find the volume of the solid generated by revolving the shaded region about the given axis.
-About the y-axis

A) 12
B) 3
- 6
C) 6
+ 3
D) 6
- 12
-About the y-axis


A) 12
B) 3

C) 6

D) 6

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47
Find the volume of the solid generated by revolving the shaded region about the given axis.
-About the y-axis

A) 16/3
B) 20/3
C) 32/5
D) 8/5
-About the y-axis


A) 16/3
B) 20/3
C) 32/5
D) 8/5
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48
Find the volume of the solid generated by revolving the shaded region about the given axis.
-About the x-axis

A) 567/5
B) 162/5
C) 648/ 5
D) 9
-About the x-axis



A) 567/5
B) 162/5
C) 648/ 5
D) 9
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49
Find the volume of the solid generated by revolving the shaded region about the given axis.
-About the x-axis

A) 8
B) 8
- 4
C) 8
+ 16
D) 8
- 16
-About the x-axis


A) 8

B) 8

C) 8

D) 8

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50
Find the volume of the solid generated by revolving the region bounded by the given lines and curves about the 
-y = x, y = 0, x = 3, x = 5
A) 98/3
B) 17
C) 8
D) 2/3

-y = x, y = 0, x = 3, x = 5
A) 98/3
B) 17
C) 8
D) 2/3
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51
Find the volume of the solid generated by revolving the region bounded by the given lines and curves about the 
-y =
, y = 0, x = 0, x = 9
A) 9
B) 81/2
C) 27
D)9/2

-y =

A) 9
B) 81/2
C) 27
D)9/2
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52
Find the volume of the solid generated by revolving the region bounded by the given lines and curves about the 
-y =
, y = 0, x = 0, x = 4
A) 1024/5
B) 256
C) 64
D) 64/3

-y =

A) 1024/5
B) 256
C) 64
D) 64/3
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53
Find the volume of the solid generated by revolving the region bounded by the given lines and curves about the 
-y =
, y = 0, x = 0, x = 1
A) 4
B) 3 /2
C)
D) 2

-y =

A) 4
B) 3 /2
C)
D) 2
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54
Find the volume of the solid generated by revolving the region bounded by the given lines and curves about the 
-y =
, y = 0, x = 1, x = 5
A) 2/5
B) ln 5
C) 3/5
D) 4/5

-y =

A) 2/5
B) ln 5
C) 3/5
D) 4/5
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55
Find the volume of the solid generated by revolving the region bounded by the given lines and curves about the 
-y = x + 3, y = 0, x = -3, x = 7
A) 100
B) 91/2
C) 5
D) 1000/3

-y = x + 3, y = 0, x = -3, x = 7
A) 100
B) 91/2
C) 5
D) 1000/3
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56
Find the volume of the solid generated by revolving the region bounded by the given lines and curves about the 
-y =
, y = 0, x = 0, x = 8
A) 256
B) 16
C) 2048 /3
D) 1024 /3

-y =

A) 256
B) 16
C) 2048 /3
D) 1024 /3
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57
Find the volume of the solid generated by revolving the region bounded by the given lines and curves about the 
-y =
, y = 0, 0 x 
A) 8
B) 2
C) 4
D) 1/2

-y =


A) 8
B) 2
C) 4
D) 1/2
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58
Find the volume of the solid generated by revolving the region bounded by the given lines and curves about the 
-y = 3csc x, y = 0, x =
, x = 
A) 9
B) 6
C) 27
D) 18

-y = 3csc x, y = 0, x =


A) 9
B) 6
C) 27
D) 18
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59
Find the volume of the solid generated by revolving the region bounded by the given lines and curves about the 
-y = 5cos x, y = 0, x = -0.5, x = 0.5
A) 25
B) 25/2
C) 50
D) 25/3

-y = 5cos x, y = 0, x = -0.5, x = 0.5
A) 25
B) 25/2
C) 50
D) 25/3
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60
Find the volume of the solid generated by revolving the region bounded by the given lines and curves about the 
-y =
, y = 0, x = 1, x = 7
A)
B)
(ln 7)
C)
D) (ln 7)

-y =

A)

B)

C)

D) (ln 7)
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61
Find the volume of the solid generated by revolving the region bounded by the given lines and curves about the 
-y = 8x, y = 8, x = 0
A) 128 /3
B) 64/3
C) 4
D) 24

-y = 8x, y = 8, x = 0
A) 128 /3
B) 64/3
C) 4
D) 24
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62
Find the volume of the solid generated by revolving the region bounded by the given lines and curves about the 
-y = - 3x + 6, y = 3x, x = 0
A) 54
B) 6
C) 18
D) 9

-y = - 3x + 6, y = 3x, x = 0
A) 54
B) 6
C) 18
D) 9
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63
Find the volume of the solid generated by revolving the region bounded by the given lines and curves about the 
-y =
, y = 7, x = 0
A) 343/4
B) 343/3
C) 343/2
D) 98

-y =

A) 343/4
B) 343/3
C) 343/2
D) 98
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Unlock Deck
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64
Find the volume of the solid generated by revolving the region bounded by the given lines and curves about the 
-y =
, y = 36, x = 0
A) 144
B) 46656/5
C) 7776/5
D) 31104/5

-y =

A) 144
B) 46656/5
C) 7776/5
D) 31104/5
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Unlock Deck
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65
Find the volume of the solid generated by revolving the region bounded by the given lines and curves about the 
-y =
+ 4, y = 2x + 4
A) 16/5
B) 8
C) 416/15
D) 224/15

-y =

A) 16/5
B) 8
C) 416/15
D) 224/15
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Unlock Deck
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66
Find the volume of the solid generated by revolving the region bounded by the given lines and curves about the 
-y =
, y = - x + 5
A) 12
B) 9
C) 27/4
D) 125/3

-y =

A) 12
B) 9
C) 27/4
D) 125/3
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Unlock Deck
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67
Find the volume of the solid generated by revolving the region bounded by the given lines and curves about the 
-y =
, y = 1, x = 0 to x = 
A) /8 -1/4
B)
-
C)
+
D)
- /4

-y =


A) /8 -1/4
B)

C)

D)

Unlock Deck
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68
Find the volume of the solid generated by revolving the region bounded by the given lines and curves about the 
-y = 7csc x, y = 7
,
x 
A) 49
- 98
B)
+ 14
C) 7
- 49
D) 49
+ 98

-y = 7csc x, y = 7



A) 49

B)

C) 7

D) 49

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Unlock Deck
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69
Find the volume of the solid generated by revolving the region bounded by the given lines and curves about the 
-y = 3cos ( x), y = 3, x = -0.5, x = 0.5
A) 18
B) 9
C) 3
D) 9/2

-y = 3cos ( x), y = 3, x = -0.5, x = 0.5
A) 18
B) 9
C) 3
D) 9/2
Unlock Deck
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Unlock Deck
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70
Find the volume of the solid generated by revolving the region bounded by the given lines and curves about the 
-y = sec x, y = tan x, x = 0, x =
A)
B)
C)
D)

-y = sec x, y = tan x, x = 0, x =

A)

B)

C)

D)

Unlock Deck
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71
Find the volume of the solid generated by revolving the region about the y-axis.
-The region enclosed by x =
, x = 0, y = - 2, y = 2
A) 64/5
B) 16/5
C) 8/5
D) 8/3
-The region enclosed by x =

A) 64/5
B) 16/5
C) 8/5
D) 8/3
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Unlock Deck
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72
Find the volume of the solid generated by revolving the region about the y-axis.
-The region enclosed by x =
, x = 0, y = 27
A) 729/5
B) 243/4
C) 243
D) 81
-The region enclosed by x =

A) 729/5
B) 243/4
C) 243
D) 81
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Unlock Deck
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73
Find the volume of the solid generated by revolving the region about the y-axis.
-The region enclosed by x =
, x = 0, y = 1, y = 5
A) 96/5
B) 64 /25
C) 64/5
D) 16/5
-The region enclosed by x =

A) 96/5
B) 64 /25
C) 64/5
D) 16/5
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Unlock Deck
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74
Find the volume of the solid generated by revolving the region about the y-axis.
-The region enclosed by x = 2tan
, x = 0, y = - 
A) 7 + 7
B) 28 - 7
C) 14 -

D) 28 - 7
-The region enclosed by x = 2tan


A) 7 + 7

B) 28 - 7

C) 14 -


D) 28 - 7
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75
Find the volume of the solid generated by revolving the region about the y-axis.
-The region enclosed by x =
, 0 y
, x = 0
A) 5
B) 10
C) /5
D) /10
-The region enclosed by x =


A) 5
B) 10
C) /5
D) /10
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Unlock Deck
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76
Find the volume of the solid generated by revolving the region about the y-axis.
-The region enclosed by the triangle with vertices ( 1, 0), ( 1, 2), ( 3, 2)
A) 26/3
B) 20/3
C) 10/3
D) 4/3
-The region enclosed by the triangle with vertices ( 1, 0), ( 1, 2), ( 3, 2)
A) 26/3
B) 20/3
C) 10/3
D) 4/3
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Unlock Deck
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77
Find the volume of the solid generated by revolving the region about the y-axis.
-The region enclosed by the triangle with vertices (0, 0), ( 5, 0), ( 5, 2)
A) 100
B) 100/3
C) 25/3
D) 50/3
-The region enclosed by the triangle with vertices (0, 0), ( 5, 0), ( 5, 2)
A) 100
B) 100/3
C) 25/3
D) 50/3
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Unlock Deck
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78
Find the volume of the solid generated by revolving the region about the y-axis.
-The region in the first quadrant bounded on the left by the circle
+
= 4, on the right by the line
, and above by the line y = 2
A) 16/3
B) 2
C) 8
D) 8/3
-The region in the first quadrant bounded on the left by the circle



A) 16/3
B) 2
C) 8
D) 8/3
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Unlock Deck
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79
Find the volume of the solid generated by revolving the region about the y-axis.
-The region in the first quadrant bounded on the left by y =
, on the right by the line
, and below by the x-axis
A) 4
B) 32/5
C) 64/5
D) 96/5
-The region in the first quadrant bounded on the left by y =


A) 4
B) 32/5
C) 64/5
D) 96/5
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Unlock Deck
k this deck
80
Find the volume of the solid generated by revolving the region about the y-axis.
-The region in the first quadrant bounded on the left by y =
, on the right by the line
, and above by the line y = 2
A) 25
B) 25/3
C) 25 /2
D) 75 /2
-The region in the first quadrant bounded on the left by y =


A) 25
B) 25/3
C) 25 /2
D) 75 /2
Unlock Deck
Unlock for access to all 211 flashcards in this deck.
Unlock Deck
k this deck