mped simple harmonic oscillator, the block has a mass of 1.3 kg and the spring constant is 9.6 N/m. The damping force is given by -b(dx/dt), where b = 250 g/s. The block is pulled down 17.0 cm and released. (a) Calculate the time required for the amplitude of the resulting oscillations to fall to 1/7 of its initial value. (b) How many oscillations are made

University Physics Volume 1
18th Edition
ISBN:9781938168277
Author:William Moebs, Samuel J. Ling, Jeff Sanny
Publisher:William Moebs, Samuel J. Ling, Jeff Sanny
Chapter12: Static Equilibrium And Elasticity
Section: Chapter Questions
Problem 26P: Find the magnitude of the tension in each supporting cable shown below. In each case, the weight of...
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For a damped simple harmonic oscillator, the block has a mass of 1.3 kg and the spring constant is 9.6 N/m. The damping force is given by -b(dx/dt), where b = 250 g/s. The block is pulled down 17.0 cm and released. (a) Calculate the time required for the amplitude of the resulting oscillations to fall to 1/7 of its initial value. (b) How many oscillations are made by the block in this time?

Rigid support
Springiness, k
Mass m
Vane
Damping, b
Transcribed Image Text:Rigid support Springiness, k Mass m Vane Damping, b
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