In the diagram below, the spring is stretched a distance x from its equilibrium position. PEpring = 0 www A unstretched Force PEspring kx² wwW. B Stretched PEspring0 C unstretched www What is the spring's potential energy at the equilibrium position? What is the spring's potential energy at the maximum stretched position, x? Suppose the spring is pulled 0.40 meters away from the equilibrium position and then released from rest. How much work is done in pulling the spring away from its equilibrium position. Assume the spring constant is .10 N/m

Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter8: Conservation Of Energy
Section: Chapter Questions
Problem 42PQ: A 1.50-kg box rests atop a massless vertical spring with k = 4250 N/m that has been compressed by...
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In the diagram below, the spring is stretched a distance x from its equilibrium position.
PEpring = 0
www
A unstretched
Force
PEspring
kx²
wwW.
B Stretched
PEspring0
C unstretched
www
What is the spring's potential energy at the equilibrium position?
What is the spring's potential energy at the maximum stretched position, x?
Suppose the spring is pulled 0.40 meters away from the equilibrium position and then released from
rest. How much work is done in pulling the spring away from its equilibrium position. Assume the spring
constant is .10 N/m
Transcribed Image Text:In the diagram below, the spring is stretched a distance x from its equilibrium position. PEpring = 0 www A unstretched Force PEspring kx² wwW. B Stretched PEspring0 C unstretched www What is the spring's potential energy at the equilibrium position? What is the spring's potential energy at the maximum stretched position, x? Suppose the spring is pulled 0.40 meters away from the equilibrium position and then released from rest. How much work is done in pulling the spring away from its equilibrium position. Assume the spring constant is .10 N/m
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