4. *The Leaning Tower of Pisa is inclined 5.5° from the vertical. At a distance of 100 meters from the wall of the tower, the angle of elevation to the top is 30.5°. Approximate the height (in feet) of the Leaning Tower. Note: There is approximately 3.28 feet in one meter.

Algebra & Trigonometry with Analytic Geometry
13th Edition
ISBN:9781133382119
Author:Swokowski
Publisher:Swokowski
Chapter6: The Trigonometric Functions
Section6.1: Angles
Problem 3E
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4. *The Leaning Tower of Pisa is inclined 5.5° from the vertical. At a distance of 100 meters from the wall of the
tower, the angle of elevation to the top is 30.5°. Approximate the height (in feet) of the Leaning Tower. Note:
There is approximately 3.28 feet in one meter.
5.
*** A submarine dives at an angle of 16° with the horizontal. If it takes 4 minutes to dive from the surface to a
depth of 300 feet, how fast does it move along its sloping path downward? Give your answer in feet per minute
and in nautical miles per hour. (Note: 1 nautical mile per hour is approximately 6800 feet per hour).
6. *If fencing costs $2.50 per foot, how much will it cost to buy fencing to
go around the plot of land shown to the right?
50 ft
128°
30 ft
7. Solve the triangle with the following information: p = 11 meters, q = 16 meters, and mZR = 121°.
Transcribed Image Text:4. *The Leaning Tower of Pisa is inclined 5.5° from the vertical. At a distance of 100 meters from the wall of the tower, the angle of elevation to the top is 30.5°. Approximate the height (in feet) of the Leaning Tower. Note: There is approximately 3.28 feet in one meter. 5. *** A submarine dives at an angle of 16° with the horizontal. If it takes 4 minutes to dive from the surface to a depth of 300 feet, how fast does it move along its sloping path downward? Give your answer in feet per minute and in nautical miles per hour. (Note: 1 nautical mile per hour is approximately 6800 feet per hour). 6. *If fencing costs $2.50 per foot, how much will it cost to buy fencing to go around the plot of land shown to the right? 50 ft 128° 30 ft 7. Solve the triangle with the following information: p = 11 meters, q = 16 meters, and mZR = 121°.
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