The figure shows a shot-put ring. The shot is tossed from A and lands at B. Using modern electronic equipment, the distance of the toss can be measured without the use of measuring tapes. When the shot lands at B, an electronic transmitter placed at B sends a signal to a device in the official's booth above the track. The device determines the angles at B and C. At a track meet, the distance from the official's booth to the shot-put ring is 562 feet. If B = 85.3° and C = 5.7°, determine the length of the toss to the nearest tenth of a foot. %3D 5.7 562 feet -85.3° e B

Calculus: Early Transcendentals
8th Edition
ISBN:9781285741550
Author:James Stewart
Publisher:James Stewart
Chapter1: Functions And Models
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Problem 1RCC: (a) What is a function? What are its domain and range? (b) What is the graph of a function? (c) How...
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The figure shows a shot-put ring. The shot is tossed from A
and lands at B. Using modern electronic equipment, the
distance of the toss can be measured without the use of
measuring tapes. When the shot lands at B, an electronic
transmitter placed at B sends a signal to a device in the
official's booth above the track. The device determines
the angles at B and C. At a track meet, the distance from
the official's booth to the shot-put ring is 562 feet.
If B = 85.3° and C = 5.7°, determine the length of the
toss to the nearest tenth of a foot.
%3D
5.7
562 feet
-85.3°
e B
Transcribed Image Text:The figure shows a shot-put ring. The shot is tossed from A and lands at B. Using modern electronic equipment, the distance of the toss can be measured without the use of measuring tapes. When the shot lands at B, an electronic transmitter placed at B sends a signal to a device in the official's booth above the track. The device determines the angles at B and C. At a track meet, the distance from the official's booth to the shot-put ring is 562 feet. If B = 85.3° and C = 5.7°, determine the length of the toss to the nearest tenth of a foot. %3D 5.7 562 feet -85.3° e B
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