14. After doing all the work, Leni 1000 N got tired and suddenly lost grip on the string. 1000 [N] box slid down from the top of the inclined plane and collided to the other 1000 [N] box. The inclined plane has a surface length of 3.0 [m] that makes a 30.0° angle with respect to the ground. After the collision, the two boxes stuck and moved together with the same speed. Then, the boxes ran into an unstretched spring with a force constant 4000 [N/m]. Assuming that the sur- 4000 N/m 1000 N faces are frictionless, find the maximum distance of the compression of the spring from the equilibrium position. C. 0.87 m A. 0.38 m D. 1.2 m B. 0.61 m

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
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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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14.
After doing all the work, Leni
1000 N
got tired and suddenly lost grip on the string.
1000 [N] box slid down from the top of the inclined plane
and collided to the other 1000 [N] box. The inclined
plane has a surface length of 3.0 [m] that makes a 30.0°
angle with respect to the ground. After the collision,
the two boxes stuck and moved together with the same
speed. Then, the boxes ran into an unstretched spring
with a force constant 4000 [N/m]. Assuming that the sur-
4000 N/m
1000 N
faces are frictionless, find the maximum distance of the
compression of the spring from the equilibrium position.
C. 0.87 m
A. 0.38 m
D. 1.2 m
B. 0.61 m
Transcribed Image Text:14. After doing all the work, Leni 1000 N got tired and suddenly lost grip on the string. 1000 [N] box slid down from the top of the inclined plane and collided to the other 1000 [N] box. The inclined plane has a surface length of 3.0 [m] that makes a 30.0° angle with respect to the ground. After the collision, the two boxes stuck and moved together with the same speed. Then, the boxes ran into an unstretched spring with a force constant 4000 [N/m]. Assuming that the sur- 4000 N/m 1000 N faces are frictionless, find the maximum distance of the compression of the spring from the equilibrium position. C. 0.87 m A. 0.38 m D. 1.2 m B. 0.61 m
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