#3: A 126 lb weight stretches a spring 14 feet. The weight hangs vertically from the spring and a damping force numerically equal to √7 times the instantaneous velocity acts on the system. The weight is released from 7 feet above the equilibrium position with a downward velocity of 30 ft/s. (a) Determine the time (in seconds) at which the mass passes through the equilibrium position. (b) Find the time (in seconds) at which the mass attains its extreme displacement from the equilibrium position.

Algebra & Trigonometry with Analytic Geometry
13th Edition
ISBN:9781133382119
Author:Swokowski
Publisher:Swokowski
Chapter2: Equations And Inequalities
Section2.7: More On Inequalities
Problem 44E
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#3: A 126 lb weight stretches a spring 14 feet. The weight hangs vertically from the spring and a damping force
numerically equal to √√7 times the instantaneous velocity acts on the system. The weight is released from 7 feet
above the equilibrium position with a downward velocity of 30 ft/s.
(a) Determine the time (in seconds) at which the mass passes through the equilibrium position.
(b) Find the time (in seconds) at which the mass attains its extreme displacement from the equilibrium position.
Transcribed Image Text:#3: A 126 lb weight stretches a spring 14 feet. The weight hangs vertically from the spring and a damping force numerically equal to √√7 times the instantaneous velocity acts on the system. The weight is released from 7 feet above the equilibrium position with a downward velocity of 30 ft/s. (a) Determine the time (in seconds) at which the mass passes through the equilibrium position. (b) Find the time (in seconds) at which the mass attains its extreme displacement from the equilibrium position.
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