A box of mass m is pressed against (but is not attached to) an ideal spring of force constant k and negligible mass, compressing the spring a distance x. After it is released, the box slides up a frictionless incline as shown in the figure and eventually stops. If we repeat this experiment but instead use a spring having force constant 2k k m 0000000- Smooth Smooth A just as it moves free of the spring, the speed of the box will be times as great as before. B) the box will go up the incline twice as high as before. c) just as it moves free of the spring, the kinetic energy of the box will be twice as great as before. All of the above choices are correct.

College Physics
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ISBN:9781305952300
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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 box of mass m is pressed against (but is not attached to) an ideal spring of force constant k and
negligible mass, compressing the spring a distance x. After it is released, the box slides up a
frictionless incline as shown in the figure and eventually stops. If we repeat this experiment but
instead use a spring having force constant 2k
k
m
0000000
Smooth
Smooth
A) just as it moves free of the spring, the speed of the box will be times as great as before.
B) the box will go up the incline twice as high as before.
just as it moves free of the spring, the kinetic energy of the box will be twice as great as before.
D) All of the above choices are correct.
Transcribed Image Text:A box of mass m is pressed against (but is not attached to) an ideal spring of force constant k and negligible mass, compressing the spring a distance x. After it is released, the box slides up a frictionless incline as shown in the figure and eventually stops. If we repeat this experiment but instead use a spring having force constant 2k k m 0000000 Smooth Smooth A) just as it moves free of the spring, the speed of the box will be times as great as before. B) the box will go up the incline twice as high as before. just as it moves free of the spring, the kinetic energy of the box will be twice as great as before. D) All of the above choices are correct.
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