Deck 13: Vectors and the Geometry of Space
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Deck 13: Vectors and the Geometry of Space
1
Find the indicated vector.
-Let u =
, v =
. Find u + v.
A)
B)
C)
D)
-Let u =


A)

B)

C)

D)


2
Find the indicated vector.
-Let u =
, v =
. Find u - v.
A)
B)
C)
D)
-Let u =


A)

B)

C)

D)


3
Find the indicated vector.
-Let u =
, v =
. Find v - u.
A)
B)
C)
D)
-Let u =


A)

B)

C)

D)


4
Find the indicated vector.
-Let u =
. Find 8u.
A)
B)
C)
D)
-Let u =

A)

B)

C)

D)

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5
Find the indicated vector.
-Let u =
. Find 2u.
A)
B)
C)
D)
-Let u =

A)

B)

C)

D)

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6
Find the indicated vector.
-Let u =
. Find -8u.
A)
B)
C)
D)
-Let u =

A)

B)

C)

D)

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7
Find the indicated vector.
-Let u =
. Find -6u.
A)
B)
C)
D)
-Let u =

A)

B)

C)

D)

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8
Find the indicated vector.
-Let u =
, v =
. Find -u + 2v.
A)
B)
C)
D)
-Let u =


A)

B)

C)

D)

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9
Find the indicated vector.
-Let u =
, v =
. Find
u +
v.
A)
B)
C)
D)
-Let u =




A)

B)

C)

D)

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10
Find the indicated vector.
-Let u =
, v =
. Find
u -
v.
A)
B)
C)
D)
-Let u =




A)

B)

C)

D)

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11
Find the corresponding position vector.
-Define the points P = ( -10, -6) and Q = ( -2, 5). Find the position vector corresponding to
.
A)
B)
C)
D)
-Define the points P = ( -10, -6) and Q = ( -2, 5). Find the position vector corresponding to

A)

B)

C)

D)

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12
Express the vector in the form ai + bj.
-
if
is the point ( 2, -6) and
is the point ( 4, -9)
A) v = -i + 3j
B) v = 2i - 3j
C) v = -2i + 3j
D) v = -2i - 3j
-



A) v = -i + 3j
B) v = 2i - 3j
C) v = -2i + 3j
D) v = -2i - 3j
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13
Express the vector in the form ai + bj.
-
if A is the point ( -1, -7) and B is the point ( 4, -14)
A) v = 5i + 7j
B) v = 5i - 7j
C) v = -5i + 7j
D) v = 7i - 5j
-

A) v = 5i + 7j
B) v = 5i - 7j
C) v = -5i + 7j
D) v = 7i - 5j
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14
Solve the problem.
-Let u = -2i + 8j, v = 2i + 3j, and w = i - j. Write u =
+
where
is parallel to v and
is parallel to w.
A)
= 3v
= 2w
B)
= -4 v
= -24 w
C)
= 1.200 v
= -4.400 w
D)
= 0.8333 v
= - 0.2273 w
-Let u = -2i + 8j, v = 2i + 3j, and w = i - j. Write u =




A)


B)


C)


D)


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15
Solve the problem.
-A force of magnitude 8 pounds pulling on a suitcase makes an angle of 30° with the ground. Express the force in terms of its i and j components.
A) 6.928i + 4.000 j
B) 4.000i + 6.928j
C) 1.234i - 7.904j
D) 0.8660i + + 0.5000j
-A force of magnitude 8 pounds pulling on a suitcase makes an angle of 30° with the ground. Express the force in terms of its i and j components.
A) 6.928i + 4.000 j
B) 4.000i + 6.928j
C) 1.234i - 7.904j
D) 0.8660i + + 0.5000j
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16
Solve the problem.
-An airplane is flying in the direction 50° west of north at 817 km/hr. Find the component form of the velocity of the airplane, assuming that the positive x-axis represents due east and the positive y-axis represents due north.
A)
B)
C)
D)
-An airplane is flying in the direction 50° west of north at 817 km/hr. Find the component form of the velocity of the airplane, assuming that the positive x-axis represents due east and the positive y-axis represents due north.
A)

B)

C)

D)

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17
Solve the problem.
-An airplane is flying in the direction 10° east of south at 701 km/hr. Find the component form of the velocity of the airplane, assuming that the positive x-axis represents due east and the positive y-axis represents due north.
A)
B)
C)
D)
-An airplane is flying in the direction 10° east of south at 701 km/hr. Find the component form of the velocity of the airplane, assuming that the positive x-axis represents due east and the positive y-axis represents due north.
A)

B)

C)

D)

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18
Solve the problem.
-A bird flies from its nest 2 km in the direction 39° north of east, where it stops to rest on a tree. It then flies 5 km in the direction 13° south of west and lands atop a telephone pole. With an xy-coordinate system where the origin is the bird's nest, the x-axis points east, and the y-axis points north, at what point is the tree located?
A) ( 1.259, 1.554)
B) ( 1.554, 1.259)
C) ( 0.5333, 1.928)
D) ( 0.7771, 0.6293)
-A bird flies from its nest 2 km in the direction 39° north of east, where it stops to rest on a tree. It then flies 5 km in the direction 13° south of west and lands atop a telephone pole. With an xy-coordinate system where the origin is the bird's nest, the x-axis points east, and the y-axis points north, at what point is the tree located?
A) ( 1.259, 1.554)
B) ( 1.554, 1.259)
C) ( 0.5333, 1.928)
D) ( 0.7771, 0.6293)
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19
Solve the problem.
-A bird flies from its nest 4 km in the direction 4° north of east, where it stops to rest on a tree. It then flies 7 km in the direction 4° south of west and lands atop a telephone pole. With an xy-coordinate system where the origin is the bird's nest, the x-axis points east, and the y-axis points north, at what point is the telephone pole located?
A) ( -6.983, -0.4883)
B) ( 3.990, 0.2790)
C) ( -2.993, -0.2093)
D) ( 1.961, 1.548)
-A bird flies from its nest 4 km in the direction 4° north of east, where it stops to rest on a tree. It then flies 7 km in the direction 4° south of west and lands atop a telephone pole. With an xy-coordinate system where the origin is the bird's nest, the x-axis points east, and the y-axis points north, at what point is the telephone pole located?
A) ( -6.983, -0.4883)
B) ( 3.990, 0.2790)
C) ( -2.993, -0.2093)
D) ( 1.961, 1.548)
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20
Solve the problem.
-For the triangle with vertices located at A( 3, 3, 5), B( 4, 2, 2), and C(1, 1, 1) , find a vector from vertex C to the midpoint of side AB.
A)

B)

C)

D)

-For the triangle with vertices located at A( 3, 3, 5), B( 4, 2, 2), and C(1, 1, 1) , find a vector from vertex C to the midpoint of side AB.
A)

B)

C)

D)

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21
Express the vector in the form ai + bj + ck.
-
if
is the point ( 3, 6, -4) and
is the point ( 5, 3, -8)
A) v = -2i - 3j + 4k
B) v = -2i + 3j + 4k
C) v = -2i + 3j - 4k
D) v = 2i - 3j - 4k
-



A) v = -2i - 3j + 4k
B) v = -2i + 3j + 4k
C) v = -2i + 3j - 4k
D) v = 2i - 3j - 4k
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22
Express the vector in the form ai + bj + ck.
-
if A is the point ( -4, -8, -5) and B is the point ( 1, -15, -2)
A) v = 5i + 7j - 3k
B) v = 5i - 7j + 3k
C) v = 5i - 7j - 3k
D) v = 5i + 7j + 3k
-

A) v = 5i + 7j - 3k
B) v = 5i - 7j + 3k
C) v = 5i - 7j - 3k
D) v = 5i + 7j + 3k
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23
Express the vector in the form ai + bj + ck.
-2u - 6v if u =
and v = 
A) v = 2i + 2j - 6k
B) v = -16i + 8j - 6k
C) v = 20i + 2j - 6k
D) v = -16i + 2j - 6k
-2u - 6v if u =


A) v = 2i + 2j - 6k
B) v = -16i + 8j - 6k
C) v = 20i + 2j - 6k
D) v = -16i + 2j - 6k
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24
Find an equation for the sphere with the given center and radius.
-Center (0, -10, -7), radius = 5
A)

B)

C)

D)

-Center (0, -10, -7), radius = 5
A)

B)

C)

D)

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25
Find an equation for the sphere with the given center and radius.
-Center (-8, 10, 0), radius = 5
A)

B)

C)

D)

-Center (-8, 10, 0), radius = 5
A)

B)

C)

D)

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26
Find an equation for the sphere with the given center and radius.
-Center (0, 0, 5), radius = 10
A)

B)

C)

D)

-Center (0, 0, 5), radius = 10
A)

B)

C)

D)

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27
Find an equation for the sphere with the given center and radius.
-Center (-2, 0, 0), radius = 4
A)

B)

C)

D)

-Center (-2, 0, 0), radius = 4
A)

B)

C)

D)

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28
Give a geometric description of the set of points whose coordinates satisfy the given conditions.
-
+
+
> 1
A) All points outside the sphere of radius 1
B) All points in space
C) All points outside the cylinder with radius 1
D) All points on the surface of the cylinder with radius 1
-



A) All points outside the sphere of radius 1
B) All points in space
C) All points outside the cylinder with radius 1
D) All points on the surface of the cylinder with radius 1
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29
Give a geometric description of the set of points whose coordinates satisfy the given conditions.
-
+
+
< 1
A) All points outside the lower hemisphere centered at ( 1, 7, 3)
B) All points on the lower hemisphere centered at ( 1, 7, 3)
C) No set of points satisfy the given relations.
D) All points within the lower hemisphere centered at ( 1, 7, 3)
-



A) All points outside the lower hemisphere centered at ( 1, 7, 3)
B) All points on the lower hemisphere centered at ( 1, 7, 3)
C) No set of points satisfy the given relations.
D) All points within the lower hemisphere centered at ( 1, 7, 3)
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30
Find v ? u.
-v = 5i + 4j and u = 2i + 6j
A) 34
B) 7i + 10j
C) -14
D) 10i + 24j
-v = 5i + 4j and u = 2i + 6j
A) 34
B) 7i + 10j
C) -14
D) 10i + 24j
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31
Find v ? u.
-v = -3i + 6j and u = 9i + 3j
A) -27i + 18j
B) 6i + 9j
C) -45
D) -9
-v = -3i + 6j and u = 9i + 3j
A) -27i + 18j
B) 6i + 9j
C) -45
D) -9
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32
Find v ? u.
-v = 3i - 6j and u = -9i + 2j
A) -6i - 4j
B) -39
C) -27i - 12j
D) -15
-v = 3i - 6j and u = -9i + 2j
A) -6i - 4j
B) -39
C) -27i - 12j
D) -15
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33
Find v ? u.
-v = 8i - 7j and u = -4i - 5j
A) 4i - 12j
B) 3
C) -67
D) -32i + 35j
-v = 8i - 7j and u = -4i - 5j
A) 4i - 12j
B) 3
C) -67
D) -32i + 35j
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34
Find v ? u.
-v = 3i - 7j and u = -3
i + 7j
A) ( 3 - 3
)i + 0j
B) -49 - 9
C) -49
i - 9j
D) -49
+ 9
-v = 3i - 7j and u = -3

A) ( 3 - 3

B) -49 - 9

C) -49

D) -49

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35
Find v ? u.
-v =
and u = 
A)
i -
j
B) 0
C)
D)
i -
j
-v =


A)


B) 0
C)

D)


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36
Find v ? u.
-v =
and u = 
A)
i -
j
B)
i
C)
D) 0
-v =


A)


B)

C)

D) 0
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37
Find the angle between u and v in radians.
-u = 9i + 4j + 7k, v = 9i + 2j + 8k
A) 1.39
B) 1.06
C) 1.49
D) 0.18
-u = 9i + 4j + 7k, v = 9i + 2j + 8k
A) 1.39
B) 1.06
C) 1.49
D) 0.18
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38
Find the angle between u and v in radians.
-u = -2i + 8j - 8k, v = 8i + 4j - 5k
A) 1.57
B) 0.50
C) 1.33
D) 1.08
-u = -2i + 8j - 8k, v = 8i + 4j - 5k
A) 1.57
B) 0.50
C) 1.33
D) 1.08
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39
Find the angle between u and v in radians.
-u = 4i - 9j - 6k, v = 5i + 5j - 5k
A) 1.57
B) 1.55
C) 0.05
D) 1.52
-u = 4i - 9j - 6k, v = 5i + 5j - 5k
A) 1.57
B) 1.55
C) 0.05
D) 1.52
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40
Find the angle between u and v in radians.
-u = -2i - 2j, v = 4i + 9j + 8k
A) 1.59
B) 1.73
C) -0.81
D) 2.38
-u = -2i - 2j, v = 4i + 9j + 8k
A) 1.59
B) 1.73
C) -0.81
D) 2.38
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41
Find the angle between u and v in radians.
-u = 7j - 2k, v = 4i - 6j - 7k
A) -0.39
B) 1.75
C) 1.96
D) 1.58
-u = 7j - 2k, v = 4i - 6j - 7k
A) -0.39
B) 1.75
C) 1.96
D) 1.58
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42
Find the angle between u and v in radians.
-u = 8i, v = 7i - 9j
A) 0.91
B) 0.66
C) 1.28
D) 1.56
-u = 8i, v = 7i - 9j
A) 0.91
B) 0.66
C) 1.28
D) 1.56
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43
Find the angle between u and v in radians.
-u = -10j and v = 6i - 8k
A) 1.67
B) 0.10
C) 1.57
D) 0.00
-u = -10j and v = 6i - 8k
A) 1.67
B) 0.10
C) 1.57
D) 0.00
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44
Find u.
-v = 3i - j + 3k, u = 11i + 2j + 10k
A)

B)

C)

D)


-v = 3i - j + 3k, u = 11i + 2j + 10k
A)

B)

C)

D)

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45
Find u.
-v = i + j + k, u = 12i + 3j + 4k
A)

B)

C)

D)


-v = i + j + k, u = 12i + 3j + 4k
A)

B)

C)

D)

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46
Find u.
-v = k, u = 6i + 9j + 2k
A)

B)

C)

D)2k

-v = k, u = 6i + 9j + 2k
A)

B)

C)

D)2k
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47
Find u.
-v = 7i - 3j + k, u = -3j + 4k
A)

B)

C)

D)


-v = 7i - 3j + k, u = -3j + 4k
A)

B)

C)

D)

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48
Find u.
-v = 2i - 2j - 4k, u = 12i - 5k
A)

B)

C)

D)


-v = 2i - 2j - 4k, u = 12i - 5k
A)

B)

C)

D)

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49
Find u.
-v = 3j, u = 3i + 4k
A)

B)

C)

D) 0

-v = 3j, u = 3i + 4k
A)

B)

C)

D) 0
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50
Solve the problem.
-A bullet is fired with a muzzle velocity of 1159 ft/sec from a gun aimed at an angle of 29° above the horizontal. Find the horizontal component of the velocity.
A) 1014 ft/sec
B) -867.0 ft/sec
C) 561.9 ft/sec
D) 642.4 ft/sec
-A bullet is fired with a muzzle velocity of 1159 ft/sec from a gun aimed at an angle of 29° above the horizontal. Find the horizontal component of the velocity.
A) 1014 ft/sec
B) -867.0 ft/sec
C) 561.9 ft/sec
D) 642.4 ft/sec
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51
Solve the problem.
-A bullet is fired with a muzzle velocity of 1489 ft/sec from a gun aimed at an angle of 12° above the horizontal. Find the horizontal component of the velocity.
A) 309.6 ft/sec
B) 1256 ft/sec
C) 1456 ft/sec
D) 316.5 ft/sec
-A bullet is fired with a muzzle velocity of 1489 ft/sec from a gun aimed at an angle of 12° above the horizontal. Find the horizontal component of the velocity.
A) 309.6 ft/sec
B) 1256 ft/sec
C) 1456 ft/sec
D) 316.5 ft/sec
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52
Solve the problem.
-A ramp leading to the entrance of a building is inclined upward at an angle of 6°. A suitcase is to be pulled up the ramp by a handle that makes an angle of 34° with the horizontal. How much force must be applied in the direction of the handle so that the component of the force parallel to the ramp is 50 lbs.?
A) 44.15 lbs
B) 59.98 lbs
C) -56.58 lbs
D) 55.90 lbs
-A ramp leading to the entrance of a building is inclined upward at an angle of 6°. A suitcase is to be pulled up the ramp by a handle that makes an angle of 34° with the horizontal. How much force must be applied in the direction of the handle so that the component of the force parallel to the ramp is 50 lbs.?
A) 44.15 lbs
B) 59.98 lbs
C) -56.58 lbs
D) 55.90 lbs
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53
Solve the problem.
-Find the work done by a force of 9i (newtons) in moving as object along a line from the origin to the point
(distance in meters).
A) 38.18 joules
B) 54
joules
C) 9
joules
D) 54 joules
-Find the work done by a force of 9i (newtons) in moving as object along a line from the origin to the point

A) 38.18 joules
B) 54

C) 9

D) 54 joules
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54
Solve the problem.
-Find the work done by a force of 19i (newtons) in moving an object along a line from the origin to the point
(distance in meters).
A) 28.60 joules
B) 152.0 joules
C) 228.8 joules
D) 98.65 joules
-Find the work done by a force of 19i (newtons) in moving an object along a line from the origin to the point

A) 28.60 joules
B) 152.0 joules
C) 228.8 joules
D) 98.65 joules
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55
Solve the problem.
-How much work does it take to slide a box 37 meters along the ground by pulling it with a 213 N force at an angle of 30° from the horizontal?
A) 3940.5
joules
B) 7881
joules
C)
joules
D) 7881 joules
-How much work does it take to slide a box 37 meters along the ground by pulling it with a 213 N force at an angle of 30° from the horizontal?
A) 3940.5

B) 7881

C)

D) 7881 joules
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56
Solve the problem.
-How much work does it take to slide a box 6 meters along the ground by pulling it with a 158 N force at an angle of 15° from the horizontal?
A) 915.7 joules
B) -720.2 joules
C) 152.6 joules
D) 948 joules
-How much work does it take to slide a box 6 meters along the ground by pulling it with a 158 N force at an angle of 15° from the horizontal?
A) 915.7 joules
B) -720.2 joules
C) 152.6 joules
D) 948 joules
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57
Write the word or phrase that best completes each statement or answers the question.
-The unit vectors u and v are combined to produce two new vectors
and
Show that a and b are orthogonal. Assume 
-The unit vectors u and v are combined to produce two new vectors



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58
Write the word or phrase that best completes each statement or answers the question.
-Show that the vectors
b +
a and
b -
a are orthogonal.
-Show that the vectors




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59
Write the word or phrase that best completes each statement or answers the question.
-Show that the midpoint of the hypotenuse of a right triangle is equidistant from all three vertices. [Hint: See the figure below. Show that
=
.]
![Write the word or phrase that best completes each statement or answers the question. -Show that the midpoint of the hypotenuse of a right triangle is equidistant from all three vertices. [Hint: See the figure below. Show that = .]](https://storage.examlex.com/TB9662/11ee9522_354a_b8b8_bdb6_7bffcefbb680_TB9662_11.jpg)
-Show that the midpoint of the hypotenuse of a right triangle is equidistant from all three vertices. [Hint: See the figure below. Show that
![Write the word or phrase that best completes each statement or answers the question. -Show that the midpoint of the hypotenuse of a right triangle is equidistant from all three vertices. [Hint: See the figure below. Show that = .]](https://storage.examlex.com/TB9662/11ee9522_354a_b8b6_bdb6_b9506e48d3cb_TB9662_11.jpg)
![Write the word or phrase that best completes each statement or answers the question. -Show that the midpoint of the hypotenuse of a right triangle is equidistant from all three vertices. [Hint: See the figure below. Show that = .]](https://storage.examlex.com/TB9662/11ee9522_354a_b8b7_bdb6_937d9a3e6956_TB9662_11.jpg)
![Write the word or phrase that best completes each statement or answers the question. -Show that the midpoint of the hypotenuse of a right triangle is equidistant from all three vertices. [Hint: See the figure below. Show that = .]](https://storage.examlex.com/TB9662/11ee9522_354a_b8b8_bdb6_7bffcefbb680_TB9662_11.jpg)
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60
Find the magnitude of u × v and the unit vector parallel to u × v in the direction of u × v.
-u = 4i, v = 3j
A) 4; 3k
B) 12; -k
C) 12; 12k
D) 12; k
-u = 4i, v = 3j
A) 4; 3k
B) 12; -k
C) 12; 12k
D) 12; k
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61
Find the magnitude of u × v and the unit vector parallel to u × v in the direction of u × v.
-u = 7i + 5j , v = i - j
A) 2; 2k
B) 2; -2k
C) 12; -k
D) 12; -12k
-u = 7i + 5j , v = i - j
A) 2; 2k
B) 2; -2k
C) 12; -k
D) 12; -12k
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62
Find the magnitude of u × v and the unit vector parallel to u × v in the direction of u × v.
-u = -3i - 2j - 3k, v = 6i + 4j + 6k
A)
;
( 3 i + 2 j + 3 k )
B) 0; no direction
C) 0; 3i+ 2j + 3k
D)
;
( 3 i + 2 j + 3 k )
-u = -3i - 2j - 3k, v = 6i + 4j + 6k
A)


B) 0; no direction
C) 0; 3i+ 2j + 3k
D)


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63
Find the magnitude of u × v and the unit vector parallel to u × v in the direction of u × v.
-u = 4i + 2j + 8k, v = -i - 2j - 2k
A) 180;
i +
k
B) 6
;
i +
k
C) 180;
i +
j +
k
D) 6
;
i -
k
-u = 4i + 2j + 8k, v = -i - 2j - 2k
A) 180;


B) 6



C) 180;



D) 6



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64
Find the magnitude of u × v and the unit vector parallel to u × v in the direction of u × v.
-u = 2i + 2j - k, v = -i + k
A) 3;
i +
j -
k
B) 9;
i +
j -
k
C) 3;
i -
j +
k
D) 9;
i -
j +
k
-u = 2i + 2j - k, v = -i + k
A) 3;



B) 9;



C) 3;



D) 9;



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65
Find the magnitude of u × v and the unit vector parallel to u × v in the direction of u × v.
-u = -
i +
j + k, v = i + j + 2k
A) 2
; -
i +
j -
k
B) 8;
i -
j -
k
C) 2
;
i +
j -
k
D) 8;
i -
j +
k
-u = -


A) 2




B) 8;



C) 2




D) 8;



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66
Find the magnitude of u × v and the unit vector parallel to u × v in the direction of u × v.
-u = -3i - 8i + 5k, v = 0
A) 0; no direction
B) 0; -3i - 8i + 5k
C) 7
;
( -3i - 8i + 5k)
D) 0;
( -3i - 8i + 5k)
-u = -3i - 8i + 5k, v = 0
A) 0; no direction
B) 0; -3i - 8i + 5k
C) 7


D) 0;

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67
Solve the problem.
-Find the area of the triangle determined by the points P(1, 1, 1), Q( 6, 6, -3), and
A)
B)
C)
D)
-Find the area of the triangle determined by the points P(1, 1, 1), Q( 6, 6, -3), and

A)

B)

C)

D)

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68
Solve the problem.
-Find the area of the triangle determined by the points P(-3, 6, -4), Q( 10, -1, -2), and
A)
B)
C)
D) 3
-Find the area of the triangle determined by the points P(-3, 6, -4), Q( 10, -1, -2), and

A)

B)

C)

D) 3

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69
Solve the problem.
-Find the area of the parallelogram determined by the points P(7, -5, 5), Q( 2, -7, -3),
and 
A)
B)
C)
D)
-Find the area of the parallelogram determined by the points P(7, -5, 5), Q( 2, -7, -3),


A)

B)

C)

D)

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70
Find the triple scalar product (u x v) ? w of the given vectors.
-u = i + j + k; v = 8i + 5j + 2k; w = 9i + 6j + 4k
A) -9
B) 25
C) 75
D) -3
-u = i + j + k; v = 8i + 5j + 2k; w = 9i + 6j + 4k
A) -9
B) 25
C) 75
D) -3
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71
Find the triple scalar product (u x v) ? w of the given vectors.
-u = -5i - 3j + 4k; v = 5i - 4j + 2k; w = 10i - 5j - 8k
A) -330
B) -3
C) -410
D) 30
-u = -5i - 3j + 4k; v = 5i - 4j + 2k; w = 10i - 5j - 8k
A) -330
B) -3
C) -410
D) 30
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72
Find the triple scalar product (u x v) ? w of the given vectors.
-u = 2i - 4j + 3k; v = -5i - 7j + 8k; w = 9i - 2j + 4k
A) 563
B) -39
C) 153
D) -173
-u = 2i - 4j + 3k; v = -5i - 7j + 8k; w = 9i - 2j + 4k
A) 563
B) -39
C) 153
D) -173
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73
Find the triple scalar product (u x v) ? w of the given vectors.
-u = 4i + 2j - k; v = 6i + 6j - 4k; w = 1i + 8j - 4k
A) 70
B) -50
C) -222
D) 30
-u = 4i + 2j - k; v = 6i + 6j - 4k; w = 1i + 8j - 4k
A) 70
B) -50
C) -222
D) 30
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74
Solve the problem.
-Find the magnitude of the torque in foot-pounds at point P for the following lever:
A)
ft-lb
B)
ft-lb
C) -
ft-lb
D)
ft-lb
-Find the magnitude of the torque in foot-pounds at point P for the following lever:

A)


B)


C) -


D)


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75
Solve the problem.
-Find the magnitude of the torque in foot-pounds at point P for the following lever:
A) 6.34 ft-lb
B) 3.78 ft-lb
C) 50 ft-lb
D) 1.76 ft-lb
-Find the magnitude of the torque in foot-pounds at point P for the following lever:

A) 6.34 ft-lb
B) 3.78 ft-lb
C) 50 ft-lb
D) 1.76 ft-lb
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k this deck
76
Solve the problem.
-For the vectors u and v with magnitudes
= 7 and
= 8, find the angle between u and v which makes
= 5
A) 45.58°
B) 44.42°
C) 28.96°
D) 51.32°
-For the vectors u and v with magnitudes



A) 45.58°
B) 44.42°
C) 28.96°
D) 51.32°
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77
Determine whether the following is always true or not always true. Given reasons for your answers.
-|u| =
-|u| =

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78
Determine whether the following is always true or not always true. Given reasons for your answers.
-u × 0 = 0
-u × 0 = 0
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79
Determine whether the following is always true or not always true. Given reasons for your answers.
-(u × v) . w = u . (w × v)
-(u × v) . w = u . (w × v)
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80
Determine whether the following is always true or not always true. Given reasons for your answers.
-u × v = -(v × u)
-u × v = -(v × u)
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