Deck 11: Vectors in the Plane

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vectors u and v whose initial and terminal points are given. Determine whether u and v are equivalent. vectors u and v whose initial and terminal points are given. Determine whether u and v are equivalent.  <div style=padding-top: 35px>
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the magnitude of the vector given below. Round your answer to four decimal places. the magnitude of the vector given below. Round your answer to four decimal places.  <div style=padding-top: 35px>
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  kilometers per hour. The wind at the plane's altitude is from the southwest at 100 kilometers per hour (see figure). What is the true direction of the plane? Round your answer to two decimal places.  <div style=padding-top: 35px> kilometers per hour. The wind at the plane's altitude is from the southwest at 100 kilometers per hour (see figure). What is the true direction of the plane? Round your answer to two decimal places.   kilometers per hour. The wind at the plane's altitude is from the southwest at 100 kilometers per hour (see figure). What is the true direction of the plane? Round your answer to two decimal places.  <div style=padding-top: 35px>
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the component form of vector v given its magnitude is the component form of vector v given its magnitude is    <div style=padding-top: 35px> the component form of vector v given its magnitude is    <div style=padding-top: 35px>
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vector v and its initial point is given. Find the terminal point. vector v and its initial point is given. Find the terminal point.  <div style=padding-top: 35px>
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the vector v whose initial and terminal points are given below. the vector v whose initial and terminal points are given below.  <div style=padding-top: 35px>
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   <div style=padding-top: 35px>    <div style=padding-top: 35px>
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   <div style=padding-top: 35px>    <div style=padding-top: 35px>
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Suppose a plane flies at a constant groundspeed of 500 miles per hour due east and encounters a 50 mile-per-hour wind from the northwest. Both the airspeed and the compass direction
Must change to for the plane to maintain its groundspeed and eastward direction. Find the airspeed to
Maintain its groundspeed and eastward direction. Round your answer to two decimal places. Suppose a plane flies at a constant groundspeed of 500 miles per hour due east and encounters a 50 mile-per-hour wind from the northwest. Both the airspeed and the compass direction Must change to for the plane to maintain its groundspeed and eastward direction. Find the airspeed to Maintain its groundspeed and eastward direction. Round your answer to two decimal places.  <div style=padding-top: 35px>
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the vector v whose initial and terminal points are given below. the vector v whose initial and terminal points are given below.  <div style=padding-top: 35px>
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the component form of vector the component form of vector    <div style=padding-top: 35px> the component form of vector    <div style=padding-top: 35px>
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   <div style=padding-top: 35px>    <div style=padding-top: 35px>
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   <div style=padding-top: 35px>    <div style=padding-top: 35px>
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the distance between the points given below. the distance between the points given below.  <div style=padding-top: 35px>
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   <div style=padding-top: 35px>    <div style=padding-top: 35px>
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Suppose a gun with a muzzle velocity of 1200 feet per second is fired at an angle of Suppose a gun with a muzzle velocity of 1200 feet per second is fired at an angle of  <div style=padding-top: 35px>
Question
Suppose a plane flies at a constant groundspeed of 600 miles per hour due east and encounters a 10 mile-per-hour wind from the northwest. Both the airspeed and the compass direction
Must change to for the plane to maintain its groundspeed and eastward direction. Find the airspeed to
Maintain its groundspeed and eastward direction. Round your answer to two decimal places. Suppose a plane flies at a constant groundspeed of 600 miles per hour due east and encounters a 10 mile-per-hour wind from the northwest. Both the airspeed and the compass direction Must change to for the plane to maintain its groundspeed and eastward direction. Find the airspeed to Maintain its groundspeed and eastward direction. Round your answer to two decimal places.  <div style=padding-top: 35px>
Question
the coordinates of the point that is located 4 units behind the yz-plane, 6 units to the left of xz-plane, and 4 units above the xy-plane.

A)(-4,-6,-4)
B)(-4,6,4)
C)(4,-6,4)
D)(-4,6,-4)
E)(-4,-6,4)
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carry a 100-pound cylindrical weight, two workers lift on the ends of short ropes carry a 100-pound cylindrical weight, two workers lift on the ends of short ropes  <div style=padding-top: 35px>
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carry a 500-pound cylindrical weight, two workers lift on the ends of short ropes carry a 500-pound cylindrical weight, two workers lift on the ends of short ropes  <div style=padding-top: 35px>
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the standard equation of the sphere with center at the standard equation of the sphere with center at   yz-plane.  <div style=padding-top: 35px> yz-plane. the standard equation of the sphere with center at   yz-plane.  <div style=padding-top: 35px>
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a unit vector u in the direction opposite of a unit vector u in the direction opposite of    <div style=padding-top: 35px> a unit vector u in the direction opposite of    <div style=padding-top: 35px>
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the unit vector in the direction of u. the unit vector in the direction of u.  <div style=padding-top: 35px>
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     <div style=padding-top: 35px>      <div style=padding-top: 35px>      <div style=padding-top: 35px>
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the magnitude of the vector given below. the magnitude of the vector given below.  <div style=padding-top: 35px>
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Complete the square to write the following equation in the standard form for a sphere. Complete the square to write the following equation in the standard form for a sphere.  <div style=padding-top: 35px>
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   <div style=padding-top: 35px>    <div style=padding-top: 35px>
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the standard equation of the sphere with center (2, 8, 4), and radius 2. the standard equation of the sphere with center (2, 8, 4), and radius 2.  <div style=padding-top: 35px>
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the coordinates of the midpoint of the line segment joining the points given below. the coordinates of the midpoint of the line segment joining the points given below.  <div style=padding-top: 35px>
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the standard equation of a sphere that has diameter with the end points given below. the standard equation of a sphere that has diameter with the end points given below.  <div style=padding-top: 35px>
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   <div style=padding-top: 35px>    <div style=padding-top: 35px>
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the angle between the vectors for u and v given below. the angle between the vectors for u and v given below.  <div style=padding-top: 35px>
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<strong> </strong> A)-8 B)-4 C)4 D)7 E)-1 <div style=padding-top: 35px>

A)-8
B)-4
C)4
D)7
E)-1
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Given the vector v and its initial point find the terminal point of the vector. Given the vector v and its initial point find the terminal point of the vector.  <div style=padding-top: 35px>
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the magnitude of the vector v given its initial and terminal points. Round your answer to four decimal places.
Initial point: (-2, -4, -5)
Terminal point: (-3, -9, -10) the magnitude of the vector v given its initial and terminal points. Round your answer to four decimal places. Initial point: (-2, -4, -5) Terminal point: (-3, -9, -10)  <div style=padding-top: 35px>
Question
Suppose the guy wire to a 100-foot tower has a tension of 500 pounds. Using the distances shown in the figure, write the component form of the vector F representing the tension in
The wire. Round numerical values in your answer to the nearest integer. Suppose the guy wire to a 100-foot tower has a tension of 500 pounds. Using the distances shown in the figure, write the component form of the vector F representing the tension in The wire. Round numerical values in your answer to the nearest integer.  <div style=padding-top: 35px>
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   <div style=padding-top: 35px>    <div style=padding-top: 35px>
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the component form of the vector u with the given initial and terminal points. Initial point: (5, 7, 8 )
Terminal point: (-2 , 10 , 10 ) the component form of the vector u with the given initial and terminal points. Initial point: (5, 7, 8 ) Terminal point: (-2 , 10 , 10 )  <div style=padding-top: 35px>
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Given the vector v lies in the yz-plane, has magnitude 8, and makes Given the vector v lies in the yz-plane, has magnitude 8, and makes   with the positive y-axis. Find the component form of v.  <div style=padding-top: 35px> with the positive y-axis. Find the component form of v. Given the vector v lies in the yz-plane, has magnitude 8, and makes   with the positive y-axis. Find the component form of v.  <div style=padding-top: 35px>
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the vector v with the magnitude the vector v with the magnitude    <div style=padding-top: 35px> the vector v with the magnitude    <div style=padding-top: 35px>
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   <div style=padding-top: 35px>    <div style=padding-top: 35px>
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Determine whether u and v are orthogonal, parallel or neither. Determine whether u and v are orthogonal, parallel or neither.  <div style=padding-top: 35px>
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   <div style=padding-top: 35px>    <div style=padding-top: 35px>
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  Assume the only force to overcome is that due to gravity. Find the force perpendicular to the hill. Round your answer to one decimal place.  <div style=padding-top: 35px> Assume the only force to overcome is that due to gravity. Find the force perpendicular to the hill. Round your answer to one decimal place.   Assume the only force to overcome is that due to gravity. Find the force perpendicular to the hill. Round your answer to one decimal place.  <div style=padding-top: 35px>
Question
Suppose a car is towed using a force of 1300 newtons. The chain used to pull the car makes a <strong>Suppose a car is towed using a force of 1300 newtons. The chain used to pull the car makes a   your answer to two decimal places.</strong> A)9,426.60 km-N B)4,712.80 km-N C)4,726.80 km-N D)9,424.60 km-N E)2,197.61 km-N <div style=padding-top: 35px> your answer to two decimal places.

A)9,426.60 km-N
B)4,712.80 km-N
C)4,726.80 km-N
D)9,424.60 km-N
E)2,197.61 km-N
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the direction cosines of the vector u given below. the direction cosines of the vector u given below.  <div style=padding-top: 35px>
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   <div style=padding-top: 35px>    <div style=padding-top: 35px>
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object is pulled 5 feet horizontally across a floor, using a force of 95 pounds. The direction of the force is
Decimal places. <strong>object is pulled 5 feet horizontally across a floor, using a force of 95 pounds. The direction of the force is Decimal places.  </strong> A)467.78 ft-lb B)398.56 ft-lb C)82.48 ft-lb D)6.96 ft-lb E)511.94 ft-lb <div style=padding-top: 35px>

A)467.78 ft-lb
B)398.56 ft-lb
C)82.48 ft-lb
D)6.96 ft-lb
E)511.94 ft-lb
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the direction cosines of the vector u given below. the direction cosines of the vector u given below.  <div style=padding-top: 35px>
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  Assume the only force to overcome is that due to gravity. Find the force required to keep the truck from rolling down the hill. Round your answer to two decimal places.  <div style=padding-top: 35px> Assume the only force to overcome is that due to gravity. Find the force required to keep the truck from rolling down the hill. Round your answer to two decimal places.   Assume the only force to overcome is that due to gravity. Find the force required to keep the truck from rolling down the hill. Round your answer to two decimal places.  <div style=padding-top: 35px>
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   <div style=padding-top: 35px>    <div style=padding-top: 35px>
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   <div style=padding-top: 35px>    <div style=padding-top: 35px>
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   <div style=padding-top: 35px>    <div style=padding-top: 35px>
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     <div style=padding-top: 35px>      <div style=padding-top: 35px>      <div style=padding-top: 35px>
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the angle between the vectors for u and v. the angle between the vectors for u and v.  <div style=padding-top: 35px>
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Suppose a toy wagon is pulled by exerting a force of 25 pounds on a handle that makes a angle with the horizontal as shown in the figure below. Find the work done in pulling
The wagon 50 feet. Round your answer to one decimal place. Suppose a toy wagon is pulled by exerting a force of 25 pounds on a handle that makes a angle with the horizontal as shown in the figure below. Find the work done in pulling The wagon 50 feet. Round your answer to one decimal place.  <div style=padding-top: 35px>
Question
Determine whether u and v are orthogonal, parallel and pointing in the same direction, parallel and pointing in opposite directions, or neither. Determine whether u and v are orthogonal, parallel and pointing in the same direction, parallel and pointing in opposite directions, or neither.  <div style=padding-top: 35px>
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   <div style=padding-top: 35px>    <div style=padding-top: 35px>
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the direction angles of the vector u given below. Round your answer to one decimal place. the direction angles of the vector u given below. Round your answer to one decimal place.  <div style=padding-top: 35px>
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   <div style=padding-top: 35px>    <div style=padding-top: 35px>
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a set of symmetric equations of the line through the points a set of symmetric equations of the line through the points    <div style=padding-top: 35px> a set of symmetric equations of the line through the points    <div style=padding-top: 35px>
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the area of a parallelogram that has the given vectors as adjacent sides. Round your answer to two decimal places. the area of a parallelogram that has the given vectors as adjacent sides. Round your answer to two decimal places.  <div style=padding-top: 35px>
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a set of parametric equations of the line that passes through the point a set of parametric equations of the line that passes through the point  <div style=padding-top: 35px>
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Determine whether any of the lines given below are parallel or identical. Determine whether any of the lines given below are parallel or identical.  <div style=padding-top: 35px>
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the set of parametric equations of the line through the point the set of parametric equations of the line through the point    <div style=padding-top: 35px> the set of parametric equations of the line through the point    <div style=padding-top: 35px>
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a set of parametric equations of the line through the point a set of parametric equations of the line through the point    <div style=padding-top: 35px> a set of parametric equations of the line through the point    <div style=padding-top: 35px>
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the area of the triangle with the vertices the area of the triangle with the vertices    <div style=padding-top: 35px> the area of the triangle with the vertices    <div style=padding-top: 35px>
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   <div style=padding-top: 35px>    <div style=padding-top: 35px>
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the volume of the parallelepiped with the following vertices. the volume of the parallelepiped with the following vertices.  <div style=padding-top: 35px>
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the magnitude and the direction of the force on a crankshaft change as the crankshaft rotates. Find the torque on the crankshaft using the position and data shown in the figure.
Round your answer to two decimal places. the magnitude and the direction of the force on a crankshaft change as the crankshaft rotates. Find the torque on the crankshaft using the position and data shown in the figure. Round your answer to two decimal places.    <div style=padding-top: 35px> the magnitude and the direction of the force on a crankshaft change as the crankshaft rotates. Find the torque on the crankshaft using the position and data shown in the figure. Round your answer to two decimal places.    <div style=padding-top: 35px>
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child applies the brakes on a bicycle by applying a downward force of 25 pounds <strong>child applies the brakes on a bicycle by applying a downward force of 25 pounds  </strong> A)12.50 ft-lb B)6.25 ft-lb C)75.00 ft-lb D)10.83 ft-lb E)21.65 ft-lb <div style=padding-top: 35px>

A)12.50 ft-lb
B)6.25 ft-lb
C)75.00 ft-lb
D)10.83 ft-lb
E)21.65 ft-lb
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a set of symmetric equations of the line through the point a set of symmetric equations of the line through the point    <div style=padding-top: 35px> a set of symmetric equations of the line through the point    <div style=padding-top: 35px>
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the triple scalar product to find the volume of the parallelepiped having adjacent edges given by the vectors the triple scalar product to find the volume of the parallelepiped having adjacent edges given by the vectors  <div style=padding-top: 35px>
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   <div style=padding-top: 35px>    <div style=padding-top: 35px>
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Determine whether the lines given below intersect, and, if so, find the point of intersection. Determine whether the lines given below intersect, and, if so, find the point of intersection.  <div style=padding-top: 35px>
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the area of the parallelogram that has the given vectors the area of the parallelogram that has the given vectors   adjacent sides.  <div style=padding-top: 35px> adjacent sides. the area of the parallelogram that has the given vectors   adjacent sides.  <div style=padding-top: 35px>
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the area of the parallelogram with the vertices the area of the parallelogram with the vertices  <div style=padding-top: 35px>
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 <div style=padding-top: 35px>
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a set of parametric equations of the line through the points a set of parametric equations of the line through the points    <div style=padding-top: 35px> a set of parametric equations of the line through the points    <div style=padding-top: 35px>
Question
Determine whether any of the lines given below are parallel or identical. Determine whether any of the lines given below are parallel or identical.  <div style=padding-top: 35px>
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Deck 11: Vectors in the Plane
1
vectors u and v whose initial and terminal points are given. Determine whether u and v are equivalent. vectors u and v whose initial and terminal points are given. Determine whether u and v are equivalent.
C
2
the magnitude of the vector given below. Round your answer to four decimal places. the magnitude of the vector given below. Round your answer to four decimal places.
C
3
  kilometers per hour. The wind at the plane's altitude is from the southwest at 100 kilometers per hour (see figure). What is the true direction of the plane? Round your answer to two decimal places.  kilometers per hour. The wind at the plane's altitude is from the southwest at 100 kilometers per hour (see figure). What is the true direction of the plane? Round your answer to two decimal places.   kilometers per hour. The wind at the plane's altitude is from the southwest at 100 kilometers per hour (see figure). What is the true direction of the plane? Round your answer to two decimal places.
A
4
the component form of vector v given its magnitude is the component form of vector v given its magnitude is    the component form of vector v given its magnitude is
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5
vector v and its initial point is given. Find the terminal point. vector v and its initial point is given. Find the terminal point.
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6
the vector v whose initial and terminal points are given below. the vector v whose initial and terminal points are given below.
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7
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8
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9
Suppose a plane flies at a constant groundspeed of 500 miles per hour due east and encounters a 50 mile-per-hour wind from the northwest. Both the airspeed and the compass direction
Must change to for the plane to maintain its groundspeed and eastward direction. Find the airspeed to
Maintain its groundspeed and eastward direction. Round your answer to two decimal places. Suppose a plane flies at a constant groundspeed of 500 miles per hour due east and encounters a 50 mile-per-hour wind from the northwest. Both the airspeed and the compass direction Must change to for the plane to maintain its groundspeed and eastward direction. Find the airspeed to Maintain its groundspeed and eastward direction. Round your answer to two decimal places.
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10
the vector v whose initial and terminal points are given below. the vector v whose initial and terminal points are given below.
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11
the component form of vector the component form of vector    the component form of vector
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12
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13
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14
the distance between the points given below. the distance between the points given below.
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15
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16
Suppose a gun with a muzzle velocity of 1200 feet per second is fired at an angle of Suppose a gun with a muzzle velocity of 1200 feet per second is fired at an angle of
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17
Suppose a plane flies at a constant groundspeed of 600 miles per hour due east and encounters a 10 mile-per-hour wind from the northwest. Both the airspeed and the compass direction
Must change to for the plane to maintain its groundspeed and eastward direction. Find the airspeed to
Maintain its groundspeed and eastward direction. Round your answer to two decimal places. Suppose a plane flies at a constant groundspeed of 600 miles per hour due east and encounters a 10 mile-per-hour wind from the northwest. Both the airspeed and the compass direction Must change to for the plane to maintain its groundspeed and eastward direction. Find the airspeed to Maintain its groundspeed and eastward direction. Round your answer to two decimal places.
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18
the coordinates of the point that is located 4 units behind the yz-plane, 6 units to the left of xz-plane, and 4 units above the xy-plane.

A)(-4,-6,-4)
B)(-4,6,4)
C)(4,-6,4)
D)(-4,6,-4)
E)(-4,-6,4)
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19
carry a 100-pound cylindrical weight, two workers lift on the ends of short ropes carry a 100-pound cylindrical weight, two workers lift on the ends of short ropes
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20
carry a 500-pound cylindrical weight, two workers lift on the ends of short ropes carry a 500-pound cylindrical weight, two workers lift on the ends of short ropes
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21
the standard equation of the sphere with center at the standard equation of the sphere with center at   yz-plane.  yz-plane. the standard equation of the sphere with center at   yz-plane.
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22
a unit vector u in the direction opposite of a unit vector u in the direction opposite of    a unit vector u in the direction opposite of
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23
the unit vector in the direction of u. the unit vector in the direction of u.
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24
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25
the magnitude of the vector given below. the magnitude of the vector given below.
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26
Complete the square to write the following equation in the standard form for a sphere. Complete the square to write the following equation in the standard form for a sphere.
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27
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28
the standard equation of the sphere with center (2, 8, 4), and radius 2. the standard equation of the sphere with center (2, 8, 4), and radius 2.
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29
the coordinates of the midpoint of the line segment joining the points given below. the coordinates of the midpoint of the line segment joining the points given below.
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30
the standard equation of a sphere that has diameter with the end points given below. the standard equation of a sphere that has diameter with the end points given below.
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31
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32
the angle between the vectors for u and v given below. the angle between the vectors for u and v given below.
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33
<strong> </strong> A)-8 B)-4 C)4 D)7 E)-1

A)-8
B)-4
C)4
D)7
E)-1
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34
Given the vector v and its initial point find the terminal point of the vector. Given the vector v and its initial point find the terminal point of the vector.
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35
the magnitude of the vector v given its initial and terminal points. Round your answer to four decimal places.
Initial point: (-2, -4, -5)
Terminal point: (-3, -9, -10) the magnitude of the vector v given its initial and terminal points. Round your answer to four decimal places. Initial point: (-2, -4, -5) Terminal point: (-3, -9, -10)
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36
Suppose the guy wire to a 100-foot tower has a tension of 500 pounds. Using the distances shown in the figure, write the component form of the vector F representing the tension in
The wire. Round numerical values in your answer to the nearest integer. Suppose the guy wire to a 100-foot tower has a tension of 500 pounds. Using the distances shown in the figure, write the component form of the vector F representing the tension in The wire. Round numerical values in your answer to the nearest integer.
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37
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38
the component form of the vector u with the given initial and terminal points. Initial point: (5, 7, 8 )
Terminal point: (-2 , 10 , 10 ) the component form of the vector u with the given initial and terminal points. Initial point: (5, 7, 8 ) Terminal point: (-2 , 10 , 10 )
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39
Given the vector v lies in the yz-plane, has magnitude 8, and makes Given the vector v lies in the yz-plane, has magnitude 8, and makes   with the positive y-axis. Find the component form of v.  with the positive y-axis. Find the component form of v. Given the vector v lies in the yz-plane, has magnitude 8, and makes   with the positive y-axis. Find the component form of v.
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40
the vector v with the magnitude the vector v with the magnitude    the vector v with the magnitude
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41
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42
Determine whether u and v are orthogonal, parallel or neither. Determine whether u and v are orthogonal, parallel or neither.
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43
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44
  Assume the only force to overcome is that due to gravity. Find the force perpendicular to the hill. Round your answer to one decimal place.  Assume the only force to overcome is that due to gravity. Find the force perpendicular to the hill. Round your answer to one decimal place.   Assume the only force to overcome is that due to gravity. Find the force perpendicular to the hill. Round your answer to one decimal place.
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45
Suppose a car is towed using a force of 1300 newtons. The chain used to pull the car makes a <strong>Suppose a car is towed using a force of 1300 newtons. The chain used to pull the car makes a   your answer to two decimal places.</strong> A)9,426.60 km-N B)4,712.80 km-N C)4,726.80 km-N D)9,424.60 km-N E)2,197.61 km-N your answer to two decimal places.

A)9,426.60 km-N
B)4,712.80 km-N
C)4,726.80 km-N
D)9,424.60 km-N
E)2,197.61 km-N
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46
the direction cosines of the vector u given below. the direction cosines of the vector u given below.
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47
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48
object is pulled 5 feet horizontally across a floor, using a force of 95 pounds. The direction of the force is
Decimal places. <strong>object is pulled 5 feet horizontally across a floor, using a force of 95 pounds. The direction of the force is Decimal places.  </strong> A)467.78 ft-lb B)398.56 ft-lb C)82.48 ft-lb D)6.96 ft-lb E)511.94 ft-lb

A)467.78 ft-lb
B)398.56 ft-lb
C)82.48 ft-lb
D)6.96 ft-lb
E)511.94 ft-lb
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49
the direction cosines of the vector u given below. the direction cosines of the vector u given below.
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50
  Assume the only force to overcome is that due to gravity. Find the force required to keep the truck from rolling down the hill. Round your answer to two decimal places.  Assume the only force to overcome is that due to gravity. Find the force required to keep the truck from rolling down the hill. Round your answer to two decimal places.   Assume the only force to overcome is that due to gravity. Find the force required to keep the truck from rolling down the hill. Round your answer to two decimal places.
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51
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52
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53
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54
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55
the angle between the vectors for u and v. the angle between the vectors for u and v.
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56
Suppose a toy wagon is pulled by exerting a force of 25 pounds on a handle that makes a angle with the horizontal as shown in the figure below. Find the work done in pulling
The wagon 50 feet. Round your answer to one decimal place. Suppose a toy wagon is pulled by exerting a force of 25 pounds on a handle that makes a angle with the horizontal as shown in the figure below. Find the work done in pulling The wagon 50 feet. Round your answer to one decimal place.
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57
Determine whether u and v are orthogonal, parallel and pointing in the same direction, parallel and pointing in opposite directions, or neither. Determine whether u and v are orthogonal, parallel and pointing in the same direction, parallel and pointing in opposite directions, or neither.
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58
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59
the direction angles of the vector u given below. Round your answer to one decimal place. the direction angles of the vector u given below. Round your answer to one decimal place.
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60
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61
a set of symmetric equations of the line through the points a set of symmetric equations of the line through the points    a set of symmetric equations of the line through the points
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62
the area of a parallelogram that has the given vectors as adjacent sides. Round your answer to two decimal places. the area of a parallelogram that has the given vectors as adjacent sides. Round your answer to two decimal places.
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63
a set of parametric equations of the line that passes through the point a set of parametric equations of the line that passes through the point
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64
Determine whether any of the lines given below are parallel or identical. Determine whether any of the lines given below are parallel or identical.
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65
the set of parametric equations of the line through the point the set of parametric equations of the line through the point    the set of parametric equations of the line through the point
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66
a set of parametric equations of the line through the point a set of parametric equations of the line through the point    a set of parametric equations of the line through the point
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67
the area of the triangle with the vertices the area of the triangle with the vertices    the area of the triangle with the vertices
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68
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69
the volume of the parallelepiped with the following vertices. the volume of the parallelepiped with the following vertices.
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70
the magnitude and the direction of the force on a crankshaft change as the crankshaft rotates. Find the torque on the crankshaft using the position and data shown in the figure.
Round your answer to two decimal places. the magnitude and the direction of the force on a crankshaft change as the crankshaft rotates. Find the torque on the crankshaft using the position and data shown in the figure. Round your answer to two decimal places.    the magnitude and the direction of the force on a crankshaft change as the crankshaft rotates. Find the torque on the crankshaft using the position and data shown in the figure. Round your answer to two decimal places.
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71
child applies the brakes on a bicycle by applying a downward force of 25 pounds <strong>child applies the brakes on a bicycle by applying a downward force of 25 pounds  </strong> A)12.50 ft-lb B)6.25 ft-lb C)75.00 ft-lb D)10.83 ft-lb E)21.65 ft-lb

A)12.50 ft-lb
B)6.25 ft-lb
C)75.00 ft-lb
D)10.83 ft-lb
E)21.65 ft-lb
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72
a set of symmetric equations of the line through the point a set of symmetric equations of the line through the point    a set of symmetric equations of the line through the point
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73
the triple scalar product to find the volume of the parallelepiped having adjacent edges given by the vectors the triple scalar product to find the volume of the parallelepiped having adjacent edges given by the vectors
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74
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75
Determine whether the lines given below intersect, and, if so, find the point of intersection. Determine whether the lines given below intersect, and, if so, find the point of intersection.
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76
the area of the parallelogram that has the given vectors the area of the parallelogram that has the given vectors   adjacent sides.  adjacent sides. the area of the parallelogram that has the given vectors   adjacent sides.
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77
the area of the parallelogram with the vertices the area of the parallelogram with the vertices
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78
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79
a set of parametric equations of the line through the points a set of parametric equations of the line through the points    a set of parametric equations of the line through the points
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80
Determine whether any of the lines given below are parallel or identical. Determine whether any of the lines given below are parallel or identical.
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