A mass m = 10 kg is launched with a spring with spring constant k = 30 N/cm vertically from a height of h= 3m, onto a frictionless track that first turns into the horizontal direction before it enters a vertical loop-the-loop track of radius R = 2m (see sketch). h }x m R What is the minimum length x by which the spring must be compressed before the mass is released so that the mass can go around the loop?

Principles of Physics: A Calculus-Based Text
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Author:Raymond A. Serway, John W. Jewett
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Chapter7: Conservation Of Energy
Section: Chapter Questions
Problem 5P: A block of mass 0.250 kg is placed on top of a light, vertical spring of force constant 5 000 N/m...
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A mass m = 10 kg is launched with a spring with spring constant k = 30 N/cm
vertically from a height of h= 3m, onto a frictionless track that first turns into the
horizontal direction before it enters a vertical loop-the-loop track of radius R = 2m
(see sketch).
h
}x
m
R
What is the minimum length x by which the spring must be compressed before the
mass is released so that the mass can go around the loop?
Transcribed Image Text:A mass m = 10 kg is launched with a spring with spring constant k = 30 N/cm vertically from a height of h= 3m, onto a frictionless track that first turns into the horizontal direction before it enters a vertical loop-the-loop track of radius R = 2m (see sketch). h }x m R What is the minimum length x by which the spring must be compressed before the mass is released so that the mass can go around the loop?
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