35. At 45° latitudes, the gravitational acceleration as a function of elevation 'z' above sea level is given g = a - bz, where a = 9.807 m/s² and b = 3.32 x 10“ m/s². Determine the height above sea level in meters where the weight of an object will decrease by 0.3 percent. a. 9,756.0248m b. 9,146.2733m c. 8,861.7470m d. 8,870.7831m

International Edition---engineering Mechanics: Statics, 4th Edition
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ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
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Chapter1: Introduction To Statics
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Problem 1.12P: A differential equation encountered in the vibration of beams is d4ydx4=2D where x = distance...
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35. At 45° latitudes, the gravitational acceleration as a function of elevation 'z’ above sea level is
given g = a - bz, where a = 9.807 m/s² and b = 3.32 x 10“ m/s². Determine the height above sea
level in meters where the weight of an object will decrease by 0.3 percent.
a. 9,756.0248m
b. 9,146.2733m
c. 8,861.7470m
d. 8,870.7831m
Transcribed Image Text:35. At 45° latitudes, the gravitational acceleration as a function of elevation 'z’ above sea level is given g = a - bz, where a = 9.807 m/s² and b = 3.32 x 10“ m/s². Determine the height above sea level in meters where the weight of an object will decrease by 0.3 percent. a. 9,756.0248m b. 9,146.2733m c. 8,861.7470m d. 8,870.7831m
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