2 Bungee Oscillations An 83 kg student hangs from a bungee cord with spring constant 270 N/m. The student is pulled down to a point where the cord is 5.0 m longer than its unstretched length, then released. Problem 2.1. Draw a diagram describing this situation, including all the relevant forces. Problem 2.2. What is the maximum amplitude of the oscillation (hint: it is not 5.0 meters. You will have to find the displacement of the string at equilibrium)? Problem 2.3. What is the angular frequency of the oscillation?
2 Bungee Oscillations An 83 kg student hangs from a bungee cord with spring constant 270 N/m. The student is pulled down to a point where the cord is 5.0 m longer than its unstretched length, then released. Problem 2.1. Draw a diagram describing this situation, including all the relevant forces. Problem 2.2. What is the maximum amplitude of the oscillation (hint: it is not 5.0 meters. You will have to find the displacement of the string at equilibrium)? Problem 2.3. What is the angular frequency of the oscillation?
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
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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Transcribed Image Text:2 Bungee Oscillations
An 83 kg student hangs from a bungee cord with spring constant 270 N/m. The student
is pulled down to a point where the cord is 5.0 m longer than its unstretched length, then
released.
Problem 2.1. Draw a diagram describing this situation, including all the relevant forces.
Problem 2.2. What is the maximum amplitude of the oscillation (hint: it is not 5.0 meters.
You will have to find the displacement of the string at equilibrium)?
Problem 2.3. What is the angular frequency of the oscillation?
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