Give your answer accurate to 3 decimal places. A man on a dock is pulling in a boat by means of a rope attached to the bow of the boat at a point that is 1 ft above water level. The rope goes from the bow of the boat to a pulley located at the edge of the dock 7 ft above water level. If he pulls in the rope at a rate of 2 ft/sec, how fast (in feet per second) is the boat approaching the dock when the point of attachment is 16 ft from the dock? ft/sec

Principles of Physics: A Calculus-Based Text
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Author:Raymond A. Serway, John W. Jewett
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Give your answer accurate to 3 decimal places.
A man on a dock is pulling in a boat by means of a rope attached to the bow of
the boat at a point that is 1 ft above water level. The rope goes from the bow of
the boat to a pulley located at the edge of the dock 7 ft above water level. If he
pulls in the rope at a rate of 2 ft/sec, how fast (in feet per second) is the boat
approaching the dock when the point of attachment is 16 ft from the dock?
ft/sec
Transcribed Image Text:Give your answer accurate to 3 decimal places. A man on a dock is pulling in a boat by means of a rope attached to the bow of the boat at a point that is 1 ft above water level. The rope goes from the bow of the boat to a pulley located at the edge of the dock 7 ft above water level. If he pulls in the rope at a rate of 2 ft/sec, how fast (in feet per second) is the boat approaching the dock when the point of attachment is 16 ft from the dock? ft/sec
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