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? Problem 2.4. What is the phase constant for the oscillation? Problem 2.5. At t = 2 seconds, where is the student and what is their velocity?

Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter2: One Dimensional Motion
Section: Chapter Questions
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Answer two last questions, please.

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?
Problem 2.4. What is the phase constant for the oscillation?
Problem 2.5. At t = 2 seconds, where is the student and what is their velocity?
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? Problem 2.4. What is the phase constant for the oscillation? Problem 2.5. At t = 2 seconds, where is the student and what is their velocity?
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