Exam 11: Section 1: Vectors and the Geometry of Space

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Suppose a plane is flying in the direction Suppose a plane is flying in the direction   (relative to the west). Its speed with respect to the air is 600 kilometers per hour. The wind at the plane's altitude is from the southwest at 80 kilometers per hour (see figure). What is its speed with respect to the ground? Round your answer to one decimal place.  (relative to the west). Its speed with respect to the air is 600 kilometers per hour. The wind at the plane's altitude is from the southwest at 80 kilometers per hour (see figure). What is its speed with respect to the ground? Round your answer to one decimal place. Suppose a plane is flying in the direction   (relative to the west). Its speed with respect to the air is 600 kilometers per hour. The wind at the plane's altitude is from the southwest at 80 kilometers per hour (see figure). What is its speed with respect to the ground? Round your answer to one decimal place.

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The vector v and its initial point is given. Find the terminal point. The vector v and its initial point is given. Find the terminal point.   , initial point  , initial point The vector v and its initial point is given. Find the terminal point.   , initial point

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E

Given Given   and   , find   . and Given   and   , find   . , find Given   and   , find   . .

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D

Three forces with magnitudes Three forces with magnitudes   pounds,   pounds and   pounds act on an object at angles   ,   , and   respectively, with the positive x-axis. Find the direction and magnitude of the resultant force. (The choices below are given to two decimal places.) pounds, Three forces with magnitudes   pounds,   pounds and   pounds act on an object at angles   ,   , and   respectively, with the positive x-axis. Find the direction and magnitude of the resultant force. (The choices below are given to two decimal places.) pounds and Three forces with magnitudes   pounds,   pounds and   pounds act on an object at angles   ,   , and   respectively, with the positive x-axis. Find the direction and magnitude of the resultant force. (The choices below are given to two decimal places.) pounds act on an object at angles Three forces with magnitudes   pounds,   pounds and   pounds act on an object at angles   ,   , and   respectively, with the positive x-axis. Find the direction and magnitude of the resultant force. (The choices below are given to two decimal places.) , Three forces with magnitudes   pounds,   pounds and   pounds act on an object at angles   ,   , and   respectively, with the positive x-axis. Find the direction and magnitude of the resultant force. (The choices below are given to two decimal places.) , and Three forces with magnitudes   pounds,   pounds and   pounds act on an object at angles   ,   , and   respectively, with the positive x-axis. Find the direction and magnitude of the resultant force. (The choices below are given to two decimal places.) respectively, with the positive x-axis. Find the direction and magnitude of the resultant force. (The choices below are given to two decimal places.)

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Find the vector v with the given magnitude ||v|| = 185 and the same direction as Find the vector v with the given magnitude ||v|| = 185 and the same direction as   . .

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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   above the horizontal. Find the horizontal component of the velocity. Round your answer to two decimal places. above the horizontal. Find the horizontal component of the velocity. Round your answer to two decimal places.

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Find the magnitude of the vector given below. Round your answer to four decimal places. Find the magnitude of the vector given below. Round your answer to four decimal places.

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Find the unit vector in the direction of u. Find the unit vector in the direction of u.

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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.

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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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Find the component form of vector v given its magnitude is Find the component form of vector v given its magnitude is   and the angle it makes with the positive x-axis is   . and the angle it makes with the positive x-axis is Find the component form of vector v given its magnitude is   and the angle it makes with the positive x-axis is   . .

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To carry a 100-pound cylindrical weight, two workers lift on the ends of short ropes tied to an eyelet on the top center of the cylinder. One rope makes a To carry a 100-pound cylindrical weight, two workers lift on the ends of short ropes tied to an eyelet on the top center of the cylinder. One rope makes a   angle away from the vertical and the other makes a   angle as shown in the figure below. Find each rope's tension if the resultant force is vertical.Round your answer to two decimal places.  angle away from the vertical and the other makes a To carry a 100-pound cylindrical weight, two workers lift on the ends of short ropes tied to an eyelet on the top center of the cylinder. One rope makes a   angle away from the vertical and the other makes a   angle as shown in the figure below. Find each rope's tension if the resultant force is vertical.Round your answer to two decimal places.  angle as shown in the figure below. Find each rope's tension if the resultant force is vertical.Round your answer to two decimal places. To carry a 100-pound cylindrical weight, two workers lift on the ends of short ropes tied to an eyelet on the top center of the cylinder. One rope makes a   angle away from the vertical and the other makes a   angle as shown in the figure below. Find each rope's tension if the resultant force is vertical.Round your answer to two decimal places.

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Find the component form of vector u + v given Find the component form of vector u + v given   and   and the angles that u and v make with the positive x-axis are   and   . and Find the component form of vector u + v given   and   and the angles that u and v make with the positive x-axis are   and   . and the angles that u and v make with the positive x-axis are Find the component form of vector u + v given   and   and the angles that u and v make with the positive x-axis are   and   . and Find the component form of vector u + v given   and   and the angles that u and v make with the positive x-axis are   and   . .

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Find the vector v whose initial and terminal points are given below. (5,5), (7,2)

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Find vectors u and v whose initial and terminal points are given. Determine whether u and v are equivalent. u: (6,5), (9,11) v: (3,-5), (6,1)

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Suppose a plane is flying in the direction Suppose a plane is flying in the direction   . Its speed with respect to the air is 900 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.  . Its speed with respect to the air is 900 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. Suppose a plane is flying in the direction   . Its speed with respect to the air is 900 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.

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Given Given   and   , find   . and Given   and   , find   . , find Given   and   , find   . .

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To carry a 500-pound cylindrical weight, two workers lift on the ends of short ropes tied to an eyelet on the top center of the cylinder. One rope makes a To carry a 500-pound cylindrical weight, two workers lift on the ends of short ropes tied to an eyelet on the top center of the cylinder. One rope makes a   angle away from the vertical and the other makes a   angle as shown in the figure below. Find the vertical component of each worker's force. Round your answer to two decimal places.  angle away from the vertical and the other makes a To carry a 500-pound cylindrical weight, two workers lift on the ends of short ropes tied to an eyelet on the top center of the cylinder. One rope makes a   angle away from the vertical and the other makes a   angle as shown in the figure below. Find the vertical component of each worker's force. Round your answer to two decimal places.  angle as shown in the figure below. Find the vertical component of each worker's force. Round your answer to two decimal places. To carry a 500-pound cylindrical weight, two workers lift on the ends of short ropes tied to an eyelet on the top center of the cylinder. One rope makes a   angle away from the vertical and the other makes a   angle as shown in the figure below. Find the vertical component of each worker's force. Round your answer to two decimal places.

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Find the vector v whose initial and terminal points are given below. (5.5,2.1), (9.5, 6.1)

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Given Given   , find   . , find Given   , find   . .

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