A 1.50 kg block is hanging from a spring of recoil constant 8.00 N/m and tied to a piston providing a a damping force of constant 230 g/s. If you pull the block down by 12.0 cm and release it a) How long does it take the amplitude to fall to 1/3 of the initial amplitude? b) How many oscillations does the block complete in this amount of time? c) How does your answer in b) change if you neglect the effect of damping?
A 1.50 kg block is hanging from a spring of recoil constant 8.00 N/m and tied to a piston providing a a damping force of constant 230 g/s. If you pull the block down by 12.0 cm and release it a) How long does it take the amplitude to fall to 1/3 of the initial amplitude? b) How many oscillations does the block complete in this amount of time? c) How does your answer in b) change if you neglect the effect of damping?
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
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Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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A 1.50 kg block is hanging from a spring of recoil constant 8.00 N/m and tied to a piston providing a a damping force of constant 230 g/s. If you pull the block down by 12.0 cm and release it
a) How long does it take the amplitude to fall to 1/3 of the initial amplitude?
b) How many oscillations does the block complete in this amount of time?
c) How does your answer in b) change if you neglect the effect of damping?
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