4. The box in the figure below has a mass of 14kg and is sitting on a frictionless surface, but is held in place by two springs. Spring one has a spring constant of 400N/m and spring 2 has a spring constant of 600N/m. Both spring are compressed from their equilibrium positions. Spring 1 is compressed 0.2m. How far is spring 2 compressed so that the box in at rest between the springs? spring 1 leeeeee spring 2 leeeeee box

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4. The box in the figure below has a mass of 14kg and is sitting on a frictionless surface, but is
held in place by two springs. Spring one has a spring constant of 400N/m and spring 2 has a
spring constant of 600N/m. Both spring are compressed from their equilibrium positions.
Spring 1 is compressed 0.2m. How far is spring 2 compressed so that the box in at rest between
the springs?
spring 1
leeeeee
spring 2
leeeeee
box
Transcribed Image Text:4. The box in the figure below has a mass of 14kg and is sitting on a frictionless surface, but is held in place by two springs. Spring one has a spring constant of 400N/m and spring 2 has a spring constant of 600N/m. Both spring are compressed from their equilibrium positions. Spring 1 is compressed 0.2m. How far is spring 2 compressed so that the box in at rest between the springs? spring 1 leeeeee spring 2 leeeeee box
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